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Modern Agriculture India
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  • News
    Transforming Manufacturing: TAGMA’s Next-Gen Tooling Showcase at 2026 Expo

    Transforming Manufacturing: TAGMA’s Next-Gen Tooling Showcase at 2026 Expo

    Texas Agriculture Issues Urgent Alert As Invasive Pest Detected In Multiple Counties, Including Houston Area

    Texas Agriculture Issues Urgent Alert As Invasive Pest Detected In Multiple Counties, Including Houston Area

    USDA Launches New Regenerative Pilot Program To Lower Farmer Production Costs And Advance MAHA Agenda

    USDA Launches New Regenerative Pilot Program To Lower Farmer Production Costs And Advance MAHA Agenda

    Shibu Jose Joins Global Council Of The World Agriculture Forum (WAF)

    Shibu Jose Joins Global Council Of The World Agriculture Forum (WAF)

    India’s First Edible Oil Consumption Survey Underway

    India’s First Edible Oil Consumption Survey Underway

    Prime Minister Sets Out AI Action Plan At UCL

    Prime Minister Sets Out AI Action Plan At UCL

    UAE To Develop Lander For Emirates Asteroid Belt Mission

    UAE To Develop Lander For Emirates Asteroid Belt Mission

    US To Have Unlimited Access To Al Chips

    US To Have Unlimited Access To Al Chips

  • Agriculture
    South India Agriculture Conference Pushes Digital Farming, Precision Agriculture and Climate-Resilient Agriculture

    South India Agriculture Conference Pushes Digital Farming, Precision Agriculture and Climate-Resilient Agriculture

    Uneven Monsoon Raises Concerns Over India’s Kharif Crop Output as Harvest Season Nears

    Uneven Monsoon Raises Concerns Over India’s Kharif Crop Output as Harvest Season Nears

    FAO Calls for Better Climate Finance to Strengthen Global Agrifood Systems

    FAO Calls for Better Climate Finance to Strengthen Global Agrifood Systems

    India Begins Soil-Carbon Payments to Farmers, Opening a New Revenue Opportunity for Sustainable Agriculture  **NEW DELHI:** India has begun making payments to farmers linked to verified soil-carbon credits, marking a significant development in the country’s efforts to connect sustainable farming practices with emerging carbon markets.  More than **2,500 farmers across Punjab and Haryana** are receiving payments associated with measured improvements in soil carbon, according to reports on the initiative. The development offers a new potential source of income for farmers while encouraging agricultural practices aimed at improving soil health and reducing greenhouse-gas emissions.  The initiative comes as agriculture faces growing pressure to increase productivity while protecting natural resources. Continuous cultivation, excessive tillage, inefficient fertiliser use and declining soil organic matter can affect soil quality over time. Carbon-focused farming practices seek to address some of these challenges by increasing the amount of carbon stored in agricultural soils.  ## What Are Soil-Carbon Credits?  Soil-carbon credits are linked to the amount of carbon that agricultural practices can help remove from the atmosphere or retain in soil.  Farmers can potentially generate credits by adopting practices that increase soil organic carbon or reduce emissions. Depending on the methodology used, these practices can include **reduced or zero tillage, improved residue management, cover crops, crop diversification, efficient fertiliser use and other regenerative farming techniques**.  Credits are generally based on measured or verified changes rather than simply on whether a farmer has adopted a particular practice.  This distinction is important because carbon markets require evidence that claimed emissions reductions or carbon storage have actually occurred.  ## Creating an Additional Income Stream  For farmers, the most significant feature of carbon farming is the possibility of receiving income beyond conventional crop sales.  Agricultural revenue can fluctuate considerably because of weather, input prices, crop prices and market conditions. Payments associated with verified environmental outcomes could potentially provide farmers with an additional source of income.  The emerging model links a farmer’s land-management decisions with demand from organisations seeking to account for or compensate for greenhouse-gas emissions.  If carbon markets continue to develop, farmers who adopt suitable practices could potentially earn additional payments while also improving the long-term condition of their soil.  ## Why Soil Health Matters  Soil is one of agriculture’s most important natural resources.  Healthy soils contain organic matter that supports soil structure, water retention and biological activity. Increasing soil organic carbon can contribute to improved soil quality, although the effects depend on local conditions, crop systems and management practices.  Improved soil structure can potentially help fields retain water and withstand periods of moisture stress.  For Indian agriculture, this is particularly relevant as farmers in many regions face increasing pressure from irregular rainfall and water availability.  Better soil management can therefore have benefits that extend beyond carbon accounting.  ## Farmers and Regenerative Agriculture  The growth of soil-carbon programmes is also encouraging greater interest in **regenerative and climate-smart agriculture**.  These approaches generally focus on improving soil health while maintaining or increasing agricultural productivity.  Practices such as reduced tillage can limit soil disturbance. Keeping crop residues in fields can return organic material to the soil. Cover crops can protect soil between production cycles, while crop diversification can support soil biological activity.  However, no single practice is suitable for every farm.  Farmers need to consider local soil characteristics, water availability, crop requirements, machinery, labour and economics before changing their production systems.  ## Measuring Carbon Is a Critical Step  One of the biggest challenges in soil-carbon markets is determining how much carbon has actually been stored.  Unlike a manufactured product, soil carbon can change over time because of weather, cultivation and biological processes.  Carbon-credit programmes therefore need systems for **measurement, reporting and verification**.  Soil samples, field records, remote sensing, modelling and other monitoring methods can be combined to estimate changes in soil carbon.  Reliable verification is essential because buyers of carbon credits need confidence that the environmental benefit represented by a credit is real.  For farmers, accurate measurement is equally important because payments depend on the amount of verified carbon benefits attributed to their land.  ## The Importance of Long-Term Monitoring  Soil-carbon storage is not necessarily permanent.  Carbon levels can decline if land-management practices are reversed. For example, a farmer who moves toward reduced tillage and improved residue management may increase soil carbon over time, but changes in future farming practices could affect those gains.  This means carbon programmes need long-term monitoring rather than relying only on a one-time measurement.  Clear rules around monitoring, verification and the duration of carbon storage will be important as India’s agricultural carbon market develops.  ## Punjab and Haryana at the Centre of the Initiative  Punjab and Haryana have particular significance in India’s agricultural landscape.  The two states are major contributors to the country’s food production, particularly through intensive cereal-based farming systems.  At the same time, intensive agriculture has created concerns around soil health, water use and crop-residue management.  This makes the region an important testing ground for approaches that attempt to combine farm productivity with environmental improvements.  If carbon-linked payments prove economically viable, they could provide farmers with an additional incentive to experiment with improved soil-management practices.  ## Carbon Markets and Indian Agriculture  The emergence of agricultural carbon credits reflects the broader development of India’s carbon-market ecosystem.  Carbon markets are designed to create an economic value for emissions reductions or carbon removal. Companies and other organisations may purchase credits depending on regulatory requirements, voluntary commitments or other market mechanisms.  Agriculture represents a potentially large area of opportunity because soils, vegetation and agricultural practices interact directly with the carbon cycle.  However, agricultural carbon markets are still developing, and their long-term impact will depend on the quality of crediting methodologies, market demand and the costs associated with monitoring and verification.  ## Technology Could Lower the Cost of Participation  Digital technologies could play an increasingly important role in expanding soil-carbon programmes.  Satellite imagery can help monitor agricultural land, while digital farm records can provide information about crop rotations and field practices. Soil sensors and improved sampling techniques can provide additional data.  Artificial intelligence and machine-learning models may also help analyse large quantities of agricultural and environmental information.  The use of technology could eventually reduce the cost of measuring and verifying carbon outcomes, making smaller farms more practical participants in carbon markets.  ## Making Carbon Farming Accessible to Small Farmers  India’s agricultural landscape is dominated by small and marginal farmers, which means that accessibility will be critical.  If carbon-credit programmes involve expensive testing, complicated contracts or high administrative costs, smaller farmers may struggle to participate.  Programmes that aggregate farmers across multiple villages or regions could potentially reduce these costs.  Farmer-producer organisations, cooperatives and other agricultural institutions could also play a role by helping farmers understand carbon programmes, coordinate participation and access technical assistance.

    India Begins Soil-Carbon Payments to Farmers, Opening a New Revenue Opportunity for Sustainable Agriculture **NEW DELHI:** India has begun making payments to farmers linked to verified soil-carbon credits, marking a significant development in the country’s efforts to connect sustainable farming practices with emerging carbon markets. More than **2,500 farmers across Punjab and Haryana** are receiving payments associated with measured improvements in soil carbon, according to reports on the initiative. The development offers a new potential source of income for farmers while encouraging agricultural practices aimed at improving soil health and reducing greenhouse-gas emissions. The initiative comes as agriculture faces growing pressure to increase productivity while protecting natural resources. Continuous cultivation, excessive tillage, inefficient fertiliser use and declining soil organic matter can affect soil quality over time. Carbon-focused farming practices seek to address some of these challenges by increasing the amount of carbon stored in agricultural soils. ## What Are Soil-Carbon Credits? Soil-carbon credits are linked to the amount of carbon that agricultural practices can help remove from the atmosphere or retain in soil. Farmers can potentially generate credits by adopting practices that increase soil organic carbon or reduce emissions. Depending on the methodology used, these practices can include **reduced or zero tillage, improved residue management, cover crops, crop diversification, efficient fertiliser use and other regenerative farming techniques**. Credits are generally based on measured or verified changes rather than simply on whether a farmer has adopted a particular practice. This distinction is important because carbon markets require evidence that claimed emissions reductions or carbon storage have actually occurred. ## Creating an Additional Income Stream For farmers, the most significant feature of carbon farming is the possibility of receiving income beyond conventional crop sales. Agricultural revenue can fluctuate considerably because of weather, input prices, crop prices and market conditions. Payments associated with verified environmental outcomes could potentially provide farmers with an additional source of income. The emerging model links a farmer’s land-management decisions with demand from organisations seeking to account for or compensate for greenhouse-gas emissions. If carbon markets continue to develop, farmers who adopt suitable practices could potentially earn additional payments while also improving the long-term condition of their soil. ## Why Soil Health Matters Soil is one of agriculture’s most important natural resources. Healthy soils contain organic matter that supports soil structure, water retention and biological activity. Increasing soil organic carbon can contribute to improved soil quality, although the effects depend on local conditions, crop systems and management practices. Improved soil structure can potentially help fields retain water and withstand periods of moisture stress. For Indian agriculture, this is particularly relevant as farmers in many regions face increasing pressure from irregular rainfall and water availability. Better soil management can therefore have benefits that extend beyond carbon accounting. ## Farmers and Regenerative Agriculture The growth of soil-carbon programmes is also encouraging greater interest in **regenerative and climate-smart agriculture**. These approaches generally focus on improving soil health while maintaining or increasing agricultural productivity. Practices such as reduced tillage can limit soil disturbance. Keeping crop residues in fields can return organic material to the soil. Cover crops can protect soil between production cycles, while crop diversification can support soil biological activity. However, no single practice is suitable for every farm. Farmers need to consider local soil characteristics, water availability, crop requirements, machinery, labour and economics before changing their production systems. ## Measuring Carbon Is a Critical Step One of the biggest challenges in soil-carbon markets is determining how much carbon has actually been stored. Unlike a manufactured product, soil carbon can change over time because of weather, cultivation and biological processes. Carbon-credit programmes therefore need systems for **measurement, reporting and verification**. Soil samples, field records, remote sensing, modelling and other monitoring methods can be combined to estimate changes in soil carbon. Reliable verification is essential because buyers of carbon credits need confidence that the environmental benefit represented by a credit is real. For farmers, accurate measurement is equally important because payments depend on the amount of verified carbon benefits attributed to their land. ## The Importance of Long-Term Monitoring Soil-carbon storage is not necessarily permanent. Carbon levels can decline if land-management practices are reversed. For example, a farmer who moves toward reduced tillage and improved residue management may increase soil carbon over time, but changes in future farming practices could affect those gains. This means carbon programmes need long-term monitoring rather than relying only on a one-time measurement. Clear rules around monitoring, verification and the duration of carbon storage will be important as India’s agricultural carbon market develops. ## Punjab and Haryana at the Centre of the Initiative Punjab and Haryana have particular significance in India’s agricultural landscape. The two states are major contributors to the country’s food production, particularly through intensive cereal-based farming systems. At the same time, intensive agriculture has created concerns around soil health, water use and crop-residue management. This makes the region an important testing ground for approaches that attempt to combine farm productivity with environmental improvements. If carbon-linked payments prove economically viable, they could provide farmers with an additional incentive to experiment with improved soil-management practices. ## Carbon Markets and Indian Agriculture The emergence of agricultural carbon credits reflects the broader development of India’s carbon-market ecosystem. Carbon markets are designed to create an economic value for emissions reductions or carbon removal. Companies and other organisations may purchase credits depending on regulatory requirements, voluntary commitments or other market mechanisms. Agriculture represents a potentially large area of opportunity because soils, vegetation and agricultural practices interact directly with the carbon cycle. However, agricultural carbon markets are still developing, and their long-term impact will depend on the quality of crediting methodologies, market demand and the costs associated with monitoring and verification. ## Technology Could Lower the Cost of Participation Digital technologies could play an increasingly important role in expanding soil-carbon programmes. Satellite imagery can help monitor agricultural land, while digital farm records can provide information about crop rotations and field practices. Soil sensors and improved sampling techniques can provide additional data. Artificial intelligence and machine-learning models may also help analyse large quantities of agricultural and environmental information. The use of technology could eventually reduce the cost of measuring and verifying carbon outcomes, making smaller farms more practical participants in carbon markets. ## Making Carbon Farming Accessible to Small Farmers India’s agricultural landscape is dominated by small and marginal farmers, which means that accessibility will be critical. If carbon-credit programmes involve expensive testing, complicated contracts or high administrative costs, smaller farmers may struggle to participate. Programmes that aggregate farmers across multiple villages or regions could potentially reduce these costs. Farmer-producer organisations, cooperatives and other agricultural institutions could also play a role by helping farmers understand carbon programmes, coordinate participation and access technical assistance.

    BRICS New Delhi Summit Puts Focus on Agro-Ecology, Digital and Climate-Resilient Agriculture

    BRICS New Delhi Summit Puts Focus on Agro-Ecology, Digital and Climate-Resilient Agriculture

    PI Industries Introduces CARVINT, a Next-Generation Insecticide for Advanced Pest Management in India

    PI Industries Introduces CARVINT, a Next-Generation Insecticide for Advanced Pest Management in India

    New Holland’s ‘Super Safar’: A Customer-Led Journey Through Haryana and Punjab

    New Holland’s ‘Super Safar’: A Customer-Led Journey Through Haryana and Punjab

    Manipal University Jaipur Launches International Innovation Challenge IIC 3.0

    Manipal University Jaipur Launches International Innovation Challenge IIC 3.0

  • Farmers
    Shivraj Singh Chouhan Highlights PM-KISAN Milestone in Patna: Empowering India’s Farmers

    Shivraj Singh Chouhan Highlights PM-KISAN Milestone in Patna: Empowering India’s Farmers

    Gau Sampurna: Revolutionizing Livestock Management for India’s Farmers

    Gau Sampurna: Revolutionizing Livestock Management for India’s Farmers

    VK Packwell: Transforming Indian Agriculture with Affordable & Innovative Irrigation Solutions

    VK Packwell: Transforming Indian Agriculture with Affordable & Innovative Irrigation Solutions

    India has three cropping seasons -- summer, kharif, and rabi.

    India’s kharif crop planting area rises; paddy leading year-on-year

    Robust rains accelerate rice planting in India

    Robust rains accelerate rice planting in India

    Govt says crop insurance claims worth Rs 2,761.10 cr pending under PMFBY till 2021-22

    Govt says crop insurance claims worth Rs 2,761.10 cr pending under PMFBY till 2021-22

    India's rice planting gathers pace as monsoon rains revive

    India’s rice planting gathers pace as monsoon rains revive

    Farm labourers plant rice saplings in a field on the outskirts of Ahmedabad, India, July 21, 2023. REUTER

    Rice planting gathers pace as monsoon rains revive

  • technology
    New Holland’s ‘Super Safar’: A Customer-Led Journey Through Haryana and Punjab

    New Holland’s ‘Super Safar’: A Customer-Led Journey Through Haryana and Punjab

    Indian Car Makers Plan Major Manufacturing Expansion After Record Gst-Driven Sales

    Indian Car Makers Plan Major Manufacturing Expansion After Record Gst-Driven Sales

    AI for Bharat: Revolutionizing Agriculture, Healthcare, and Education

    AI for Bharat: Revolutionizing Agriculture, Healthcare, and Education

    Driving Transparency: KOLTIVA Leads Sustainable Agribusiness Innovation at Agri Vietnam 2025

    Driving Transparency: KOLTIVA Leads Sustainable Agribusiness Innovation at Agri Vietnam 2025

    AI Leadership: A New Era of Innovation in Information Management

    AI Leadership: A New Era of Innovation in Information Management

    Prime Minister Sets Out AI Action Plan At UCL

    Prime Minister Sets Out AI Action Plan At UCL

    COLINES Innovative Cast MOPE Film for Printing on Show at DRUPA Event

    COLINES Innovative Cast MOPE Film for Printing on Show at DRUPA Event

    Ola Cloud Migration: Shifting IT Workload From AWS After Exiting Microsoft Azure

    Ola Cloud Migration: Shifting IT Workload From AWS After Exiting Microsoft Azure

  • Research
    HarvestPlus and Odisha University of Agriculture and Technology Join Forces to Accelerate Biofortification Research in India

    HarvestPlus and Odisha University of Agriculture and Technology Join Forces to Accelerate Biofortification Research in India

    There are four priority areas on which focused discussions will take place: food security and nutrition, sustainable agriculture through approaches of climate resilient agriculture, digitisation for agricultural transformation and public-private partnerships for research and development in the sector, an official said

    G20 MACS to focus on sustainable agriculture, food security

    Growth dips, public investment stagnant in agriculture sector

    Growth dips, public investment stagnant in agriculture sector

    State requires an outlook report to remove uncertainty in agriculture: CM

    State requires an outlook report to remove uncertainty in agriculture: CM

    Crop waste cattle feed solution ‘averts toxic fires’

    Crop waste cattle feed solution ‘averts toxic fires’

    There is need to intensify agricultural research: Minister

    There is need to intensify agricultural research: Minister

  • Economy
    India to host World Coffee Conference for first time in September

    India to host World Coffee Conference for first time in September

    India's agriculture and food inflation face challenges from erratic rains and El Nino

    India’s agriculture and food inflation face challenges from erratic rains and El Nino

    Explained: How D2C Organic Farming Is Also Empowering Local Communities

    Explained: How D2C Organic Farming Is Also Empowering Local Communities

    India can become sustainable fuel hub by using agri waste: Honeywell

    India can become sustainable fuel hub by using agri waste: Honeywell

    Sahakar Se Samriddhi: 2,500 Kisan Drones To Be Procured By IFFCO For Sustainable Agriculture

    Sahakar Se Samriddhi: 2,500 Kisan Drones To Be Procured By IFFCO For Sustainable Agriculture

    Small dairy farmers: The backbone of Indian dairy

    Small dairy farmers: The backbone of Indian dairy

    Farmers face various challenges while transitioning to organic/natural farming, including a lack of knowledge, non-availability of quality organic and bio-inputs, as well as a lack of market support to get fair and remunerative prices.

    Union Budget 2023-24: India’s farmers can take to organic agriculture with proper support

    Challenges faced by farmers due to climate change have further exacerbated the food insecurity situation across India

    Opinion | From Crop Failure to Food Security: How Climate Change Affects Farmers and Communities

  • India
    New Holland’s ‘Super Safar’: A Customer-Led Journey Through Haryana and Punjab

    New Holland’s ‘Super Safar’: A Customer-Led Journey Through Haryana and Punjab

    Manipal University Jaipur Launches International Innovation Challenge IIC 3.0

    Manipal University Jaipur Launches International Innovation Challenge IIC 3.0

    Ethereal Machines Raises US$13 Million to Boost Advanced Manufacturing in India

    Ethereal Machines Raises US$13 Million to Boost Advanced Manufacturing in India

    10th Ecowaste Exhibition & Forum To Create Blueprint For Addressing Region’s Waste Challenges

    10th Ecowaste Exhibition & Forum To Create Blueprint For Addressing Region’s Waste Challenges

    Pakka Limited and Brawny Bear Join Hands to Launch India’s First Compostable  Flexible Packaging

    Pakka Limited and Brawny Bear Join Hands to Launch India’s First Compostable Flexible Packaging

    SIG lays Foundation of its First Indian Aseptic Carton plant in Ahmedabad

    SIG lays Foundation of its First Indian Aseptic Carton plant in Ahmedabad

    VK Packwell: Transforming Indian Agriculture with Affordable & Innovative Irrigation Solutions

    VK Packwell: Transforming Indian Agriculture with Affordable & Innovative Irrigation Solutions

    Climate Change Leading to Erratic Agriculture in India

    Climate Change Leading to Erratic Agriculture in India

    India’s G20 Presidency Highlights Food Safety Net Programmes, Says Agriculture Ministry

    India’s G20 Presidency Highlights Food Safety Net Programmes, Says Agriculture Ministry

    • Rural
      Impact of Startups on Indian Agriculture and Rural Growth

      Impact of Startups on Indian Agriculture and Rural Growth

      Sahakar Se Samriddhi: 2,500 Kisan Drones To Be Procured By IFFCO For Sustainable Agriculture

      Sahakar Se Samriddhi: 2,500 Kisan Drones To Be Procured By IFFCO For Sustainable Agriculture

      Pioneering Pigeonpea Project Unveiled in India

      Pioneering Pigeonpea Project Unveiled in India

      Crop waste cattle feed solution ‘averts toxic fires’

      Crop waste cattle feed solution ‘averts toxic fires’

      Promoting Inclusive Business in Agriculture and Food Systems in India

      Promoting Inclusive Business in Agriculture and Food Systems in India

      Agri finance company Kissandhan eyes 15% of Farmers Producer Organisation business, signs up four FPOs in West Bengal

      Agri finance company Kissandhan eyes 15% of Farmers Producer Organisation business, signs up four FPOs in West Bengal

      Agro Tech 2022: Rural farmers bat for technology in agriculture

      Agro Tech 2022: Rural farmers bat for technology in agriculture

    • Startup
      Karsan’s 100% Electric Autonomous e-JEST  Hits the Roads in America

      Karsan’s 100% Electric Autonomous e-JEST Hits the Roads in America

      65 Startups Named to MedTech Innovator 2024 Cohort

      65 Startups Named to MedTech Innovator 2024 Cohort

      Yatra Unveils AI-Powered Tool to Help Smes, Large Enterprises Manage Expenses Efficiently

      Yatra Unveils AI-Powered Tool to Help Smes, Large Enterprises Manage Expenses Efficiently

      Vietnam Education Startup Prep Bags US$7 Million in Series A Funding

      Vietnam Education Startup Prep Bags US$7 Million in Series A Funding

      ’80-100 Hours a Week, No WFH’: Sachin Bansal on Building Fintech Startup Navi After Flipkart

      ’80-100 Hours a Week, No WFH’: Sachin Bansal on Building Fintech Startup Navi After Flipkart

      ‘Never had a Funding Winter… Good Firms Always had Enough Money to Back Them’: Sanjeev Bikhchandani

      ‘Never had a Funding Winter… Good Firms Always had Enough Money to Back Them’: Sanjeev Bikhchandani

      Amazon Invests US$2.75 Billion in AI Startup Anthropic

      Amazon Invests US$2.75 Billion in AI Startup Anthropic

      Agriculture Accelerator Fund To Encourage Startups: Finance Minister

      Agriculture Accelerator Fund To Encourage Startups: Finance Minister

      The agriculture budget has increased

      The agriculture budget has increased; we have now over 3,000 agri startups: PM Modi

  • Home
  • News
    Transforming Manufacturing: TAGMA’s Next-Gen Tooling Showcase at 2026 Expo

    Transforming Manufacturing: TAGMA’s Next-Gen Tooling Showcase at 2026 Expo

    Texas Agriculture Issues Urgent Alert As Invasive Pest Detected In Multiple Counties, Including Houston Area

    Texas Agriculture Issues Urgent Alert As Invasive Pest Detected In Multiple Counties, Including Houston Area

    USDA Launches New Regenerative Pilot Program To Lower Farmer Production Costs And Advance MAHA Agenda

    USDA Launches New Regenerative Pilot Program To Lower Farmer Production Costs And Advance MAHA Agenda

    Shibu Jose Joins Global Council Of The World Agriculture Forum (WAF)

    Shibu Jose Joins Global Council Of The World Agriculture Forum (WAF)

    India’s First Edible Oil Consumption Survey Underway

    India’s First Edible Oil Consumption Survey Underway

    Prime Minister Sets Out AI Action Plan At UCL

    Prime Minister Sets Out AI Action Plan At UCL

    UAE To Develop Lander For Emirates Asteroid Belt Mission

    UAE To Develop Lander For Emirates Asteroid Belt Mission

    US To Have Unlimited Access To Al Chips

    US To Have Unlimited Access To Al Chips

  • Agriculture
    South India Agriculture Conference Pushes Digital Farming, Precision Agriculture and Climate-Resilient Agriculture

    South India Agriculture Conference Pushes Digital Farming, Precision Agriculture and Climate-Resilient Agriculture

    Uneven Monsoon Raises Concerns Over India’s Kharif Crop Output as Harvest Season Nears

    Uneven Monsoon Raises Concerns Over India’s Kharif Crop Output as Harvest Season Nears

    FAO Calls for Better Climate Finance to Strengthen Global Agrifood Systems

    FAO Calls for Better Climate Finance to Strengthen Global Agrifood Systems

    India Begins Soil-Carbon Payments to Farmers, Opening a New Revenue Opportunity for Sustainable Agriculture  **NEW DELHI:** India has begun making payments to farmers linked to verified soil-carbon credits, marking a significant development in the country’s efforts to connect sustainable farming practices with emerging carbon markets.  More than **2,500 farmers across Punjab and Haryana** are receiving payments associated with measured improvements in soil carbon, according to reports on the initiative. The development offers a new potential source of income for farmers while encouraging agricultural practices aimed at improving soil health and reducing greenhouse-gas emissions.  The initiative comes as agriculture faces growing pressure to increase productivity while protecting natural resources. Continuous cultivation, excessive tillage, inefficient fertiliser use and declining soil organic matter can affect soil quality over time. Carbon-focused farming practices seek to address some of these challenges by increasing the amount of carbon stored in agricultural soils.  ## What Are Soil-Carbon Credits?  Soil-carbon credits are linked to the amount of carbon that agricultural practices can help remove from the atmosphere or retain in soil.  Farmers can potentially generate credits by adopting practices that increase soil organic carbon or reduce emissions. Depending on the methodology used, these practices can include **reduced or zero tillage, improved residue management, cover crops, crop diversification, efficient fertiliser use and other regenerative farming techniques**.  Credits are generally based on measured or verified changes rather than simply on whether a farmer has adopted a particular practice.  This distinction is important because carbon markets require evidence that claimed emissions reductions or carbon storage have actually occurred.  ## Creating an Additional Income Stream  For farmers, the most significant feature of carbon farming is the possibility of receiving income beyond conventional crop sales.  Agricultural revenue can fluctuate considerably because of weather, input prices, crop prices and market conditions. Payments associated with verified environmental outcomes could potentially provide farmers with an additional source of income.  The emerging model links a farmer’s land-management decisions with demand from organisations seeking to account for or compensate for greenhouse-gas emissions.  If carbon markets continue to develop, farmers who adopt suitable practices could potentially earn additional payments while also improving the long-term condition of their soil.  ## Why Soil Health Matters  Soil is one of agriculture’s most important natural resources.  Healthy soils contain organic matter that supports soil structure, water retention and biological activity. Increasing soil organic carbon can contribute to improved soil quality, although the effects depend on local conditions, crop systems and management practices.  Improved soil structure can potentially help fields retain water and withstand periods of moisture stress.  For Indian agriculture, this is particularly relevant as farmers in many regions face increasing pressure from irregular rainfall and water availability.  Better soil management can therefore have benefits that extend beyond carbon accounting.  ## Farmers and Regenerative Agriculture  The growth of soil-carbon programmes is also encouraging greater interest in **regenerative and climate-smart agriculture**.  These approaches generally focus on improving soil health while maintaining or increasing agricultural productivity.  Practices such as reduced tillage can limit soil disturbance. Keeping crop residues in fields can return organic material to the soil. Cover crops can protect soil between production cycles, while crop diversification can support soil biological activity.  However, no single practice is suitable for every farm.  Farmers need to consider local soil characteristics, water availability, crop requirements, machinery, labour and economics before changing their production systems.  ## Measuring Carbon Is a Critical Step  One of the biggest challenges in soil-carbon markets is determining how much carbon has actually been stored.  Unlike a manufactured product, soil carbon can change over time because of weather, cultivation and biological processes.  Carbon-credit programmes therefore need systems for **measurement, reporting and verification**.  Soil samples, field records, remote sensing, modelling and other monitoring methods can be combined to estimate changes in soil carbon.  Reliable verification is essential because buyers of carbon credits need confidence that the environmental benefit represented by a credit is real.  For farmers, accurate measurement is equally important because payments depend on the amount of verified carbon benefits attributed to their land.  ## The Importance of Long-Term Monitoring  Soil-carbon storage is not necessarily permanent.  Carbon levels can decline if land-management practices are reversed. For example, a farmer who moves toward reduced tillage and improved residue management may increase soil carbon over time, but changes in future farming practices could affect those gains.  This means carbon programmes need long-term monitoring rather than relying only on a one-time measurement.  Clear rules around monitoring, verification and the duration of carbon storage will be important as India’s agricultural carbon market develops.  ## Punjab and Haryana at the Centre of the Initiative  Punjab and Haryana have particular significance in India’s agricultural landscape.  The two states are major contributors to the country’s food production, particularly through intensive cereal-based farming systems.  At the same time, intensive agriculture has created concerns around soil health, water use and crop-residue management.  This makes the region an important testing ground for approaches that attempt to combine farm productivity with environmental improvements.  If carbon-linked payments prove economically viable, they could provide farmers with an additional incentive to experiment with improved soil-management practices.  ## Carbon Markets and Indian Agriculture  The emergence of agricultural carbon credits reflects the broader development of India’s carbon-market ecosystem.  Carbon markets are designed to create an economic value for emissions reductions or carbon removal. Companies and other organisations may purchase credits depending on regulatory requirements, voluntary commitments or other market mechanisms.  Agriculture represents a potentially large area of opportunity because soils, vegetation and agricultural practices interact directly with the carbon cycle.  However, agricultural carbon markets are still developing, and their long-term impact will depend on the quality of crediting methodologies, market demand and the costs associated with monitoring and verification.  ## Technology Could Lower the Cost of Participation  Digital technologies could play an increasingly important role in expanding soil-carbon programmes.  Satellite imagery can help monitor agricultural land, while digital farm records can provide information about crop rotations and field practices. Soil sensors and improved sampling techniques can provide additional data.  Artificial intelligence and machine-learning models may also help analyse large quantities of agricultural and environmental information.  The use of technology could eventually reduce the cost of measuring and verifying carbon outcomes, making smaller farms more practical participants in carbon markets.  ## Making Carbon Farming Accessible to Small Farmers  India’s agricultural landscape is dominated by small and marginal farmers, which means that accessibility will be critical.  If carbon-credit programmes involve expensive testing, complicated contracts or high administrative costs, smaller farmers may struggle to participate.  Programmes that aggregate farmers across multiple villages or regions could potentially reduce these costs.  Farmer-producer organisations, cooperatives and other agricultural institutions could also play a role by helping farmers understand carbon programmes, coordinate participation and access technical assistance.

    India Begins Soil-Carbon Payments to Farmers, Opening a New Revenue Opportunity for Sustainable Agriculture **NEW DELHI:** India has begun making payments to farmers linked to verified soil-carbon credits, marking a significant development in the country’s efforts to connect sustainable farming practices with emerging carbon markets. More than **2,500 farmers across Punjab and Haryana** are receiving payments associated with measured improvements in soil carbon, according to reports on the initiative. The development offers a new potential source of income for farmers while encouraging agricultural practices aimed at improving soil health and reducing greenhouse-gas emissions. The initiative comes as agriculture faces growing pressure to increase productivity while protecting natural resources. Continuous cultivation, excessive tillage, inefficient fertiliser use and declining soil organic matter can affect soil quality over time. Carbon-focused farming practices seek to address some of these challenges by increasing the amount of carbon stored in agricultural soils. ## What Are Soil-Carbon Credits? Soil-carbon credits are linked to the amount of carbon that agricultural practices can help remove from the atmosphere or retain in soil. Farmers can potentially generate credits by adopting practices that increase soil organic carbon or reduce emissions. Depending on the methodology used, these practices can include **reduced or zero tillage, improved residue management, cover crops, crop diversification, efficient fertiliser use and other regenerative farming techniques**. Credits are generally based on measured or verified changes rather than simply on whether a farmer has adopted a particular practice. This distinction is important because carbon markets require evidence that claimed emissions reductions or carbon storage have actually occurred. ## Creating an Additional Income Stream For farmers, the most significant feature of carbon farming is the possibility of receiving income beyond conventional crop sales. Agricultural revenue can fluctuate considerably because of weather, input prices, crop prices and market conditions. Payments associated with verified environmental outcomes could potentially provide farmers with an additional source of income. The emerging model links a farmer’s land-management decisions with demand from organisations seeking to account for or compensate for greenhouse-gas emissions. If carbon markets continue to develop, farmers who adopt suitable practices could potentially earn additional payments while also improving the long-term condition of their soil. ## Why Soil Health Matters Soil is one of agriculture’s most important natural resources. Healthy soils contain organic matter that supports soil structure, water retention and biological activity. Increasing soil organic carbon can contribute to improved soil quality, although the effects depend on local conditions, crop systems and management practices. Improved soil structure can potentially help fields retain water and withstand periods of moisture stress. For Indian agriculture, this is particularly relevant as farmers in many regions face increasing pressure from irregular rainfall and water availability. Better soil management can therefore have benefits that extend beyond carbon accounting. ## Farmers and Regenerative Agriculture The growth of soil-carbon programmes is also encouraging greater interest in **regenerative and climate-smart agriculture**. These approaches generally focus on improving soil health while maintaining or increasing agricultural productivity. Practices such as reduced tillage can limit soil disturbance. Keeping crop residues in fields can return organic material to the soil. Cover crops can protect soil between production cycles, while crop diversification can support soil biological activity. However, no single practice is suitable for every farm. Farmers need to consider local soil characteristics, water availability, crop requirements, machinery, labour and economics before changing their production systems. ## Measuring Carbon Is a Critical Step One of the biggest challenges in soil-carbon markets is determining how much carbon has actually been stored. Unlike a manufactured product, soil carbon can change over time because of weather, cultivation and biological processes. Carbon-credit programmes therefore need systems for **measurement, reporting and verification**. Soil samples, field records, remote sensing, modelling and other monitoring methods can be combined to estimate changes in soil carbon. Reliable verification is essential because buyers of carbon credits need confidence that the environmental benefit represented by a credit is real. For farmers, accurate measurement is equally important because payments depend on the amount of verified carbon benefits attributed to their land. ## The Importance of Long-Term Monitoring Soil-carbon storage is not necessarily permanent. Carbon levels can decline if land-management practices are reversed. For example, a farmer who moves toward reduced tillage and improved residue management may increase soil carbon over time, but changes in future farming practices could affect those gains. This means carbon programmes need long-term monitoring rather than relying only on a one-time measurement. Clear rules around monitoring, verification and the duration of carbon storage will be important as India’s agricultural carbon market develops. ## Punjab and Haryana at the Centre of the Initiative Punjab and Haryana have particular significance in India’s agricultural landscape. The two states are major contributors to the country’s food production, particularly through intensive cereal-based farming systems. At the same time, intensive agriculture has created concerns around soil health, water use and crop-residue management. This makes the region an important testing ground for approaches that attempt to combine farm productivity with environmental improvements. If carbon-linked payments prove economically viable, they could provide farmers with an additional incentive to experiment with improved soil-management practices. ## Carbon Markets and Indian Agriculture The emergence of agricultural carbon credits reflects the broader development of India’s carbon-market ecosystem. Carbon markets are designed to create an economic value for emissions reductions or carbon removal. Companies and other organisations may purchase credits depending on regulatory requirements, voluntary commitments or other market mechanisms. Agriculture represents a potentially large area of opportunity because soils, vegetation and agricultural practices interact directly with the carbon cycle. However, agricultural carbon markets are still developing, and their long-term impact will depend on the quality of crediting methodologies, market demand and the costs associated with monitoring and verification. ## Technology Could Lower the Cost of Participation Digital technologies could play an increasingly important role in expanding soil-carbon programmes. Satellite imagery can help monitor agricultural land, while digital farm records can provide information about crop rotations and field practices. Soil sensors and improved sampling techniques can provide additional data. Artificial intelligence and machine-learning models may also help analyse large quantities of agricultural and environmental information. The use of technology could eventually reduce the cost of measuring and verifying carbon outcomes, making smaller farms more practical participants in carbon markets. ## Making Carbon Farming Accessible to Small Farmers India’s agricultural landscape is dominated by small and marginal farmers, which means that accessibility will be critical. If carbon-credit programmes involve expensive testing, complicated contracts or high administrative costs, smaller farmers may struggle to participate. Programmes that aggregate farmers across multiple villages or regions could potentially reduce these costs. Farmer-producer organisations, cooperatives and other agricultural institutions could also play a role by helping farmers understand carbon programmes, coordinate participation and access technical assistance.

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Workflow Automation Drives the Future of Print

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Workflow Automation Drives the Future of Print

For more than 60 years, we have talked about workflow automation, driven by data, to add efficiency, reduce costs, manage labor challenges, and increase margins. In this century, we stepped up the volume, embracing the Fourth Industrial Revolution, branding it Industry 4.0, and demonstrating the value workflow automation brings to print manufacturing. With an efficient, scalable, automated workflow that begins before you sell the job, every printer can survive the pressures of increasing paper and consumables costs, demands for faster turnaround, labor challenges, and the requirements to support very long and very short print runs.

Automating workflows is the core of the future of all manufacturing, but the results can be dramatic for print manufacturing. In the print industry, we look at workflow as the rules, protocols, and processes that are defined, documented, repeatable, and auditable. Your print business has many workflows that guide work through your front office, back office, and production to delivery. Each time you sell a product or service, one or more workflow routines manage the sales pitch, estimating, contracts, job onboarding, preparation, production, delivery, and payment.

Beginning when a customer agrees to buy print and delivers the job to the shop to when the work is handed over for delivery, and the job tickets are closed in production and sent to accounting, every step is at risk. Bottlenecks that add time and complexity to the job can happen at any and every step. Those bottlenecks cost time and money that eliminate expected profits. Tuning and tightening print manufacturing workflows using automation tools adds efficiency and scalability and keeps more revenue in the business.

10 Steps to plan for automation

The current marketplace for workflow automation is vast. There are tools available for every size printer in every print segment. Spend the time to look at the software available for the market segments you serve. Many tools are built to serve the needs of multiple print technologies and products. However, before you  go shopping, you need a clear understanding of your  current workflow state.

Begin with an honest self-assessment, looking at all of your workflows.

1. Make a list of your production workflows and the workflows that touch them. If you produce a variety of print products, identify the workflows used for each one. If you have automated some or all of your workflows, note that on your list.
2. Who is responsible for the architecture of each workflow?
3. Who is responsible for solving bottlenecks in each workflow?
4. Where do workflows intersect?
5. What are the rules for Sales interacting with Production?
6. What are the rules for Customer Service Representatives to interact with Production?
7. Who is responsible for interacting with customers when there are problems with inbound files?
8. How are Change Requests managed?
9. How are Proofs and Approvals managed, and who monitors customer approvals?
10. How is accounting notified of additional charges and the final job costs?

You may want to add more items to your assessment list. Consider the areas that rarely experience bottlenecks and those that are more susceptible. Think about the people in the processes as well as the technologies. Look at any existing automation to determine if it is still providing the expected results.

Automate to eliminate friction

There are three fundamental reasons to spend the time and money to implement and tune automation:

1. Reduce the time to onboard work: There are dozens of whitepapers that pop up in searches related to job onboarding in print manufacturing, even where there are web-to-production and digital portals available. Walk your workflow and watch a range of jobs as they arrive and move through the processes that get them into production. Record the time and the number of steps. How many loops do you see? Is everyone working by the same set of rules, or is everyone writing their own rules?
2.Reduce the time to make the job ready: How much time and effort is expended to move work into production? How many loops, delays, and reworks? Mistakes and misunderstandings reduce the margin on the job, so look at your averages. There may be a pot of gold waiting for you in an automated workflow.
3.Reduce production time: Your recipe for production has time elements, but also people and tasks. Count the manual steps and the loops in those tasks that extend the time to completion. How many tools are in use officially and covertly?

These three reductions open the door to less waste, fewer missed deadlines, more efficient production, and higher profit margins.

People Cause Friction

The print industry is actively working to bring back apprenticeships and find more efficient ways to train newcomers and those transitioning to new roles. While that is happening, people performing tasks create workflow friction. Tasks performed inconsistently may lead to job rework and reruns, missed specification changes, and mispriced work that erodes profit margins through a long series of minor incidents during production.

People are inconsistent. They may be wonderful teammates and enthusiastic workers, but that is not the same as repeating the same tasks daily with reliable precision. They are not robots, but that is what you need – software robots that execute repeatable and auditable tasks in a manner that is predictable and auditable.

Use your data to understand where staff members spend their time, how long tasks take, and how many loops they make. Most shops don’t track their teams by the minute, so consider a quick survey to see what they think takes the most time in their day and the sources of frustration. Look at the number of touchpoints from when a file arrives in Production. How much time do they spend verifying inventory, resolving preflight errors, chasing missing assets, and handling color management or finishing questions by trading emails, text messages, phone calls, and chats? Automation can get much of that time back, freeing the team to handle more significant challenges.

Paper and consumables cause friction

Paper, film, vinyl, and the vast range of specialty substrates a shop may need to stock, along with the consumables that are part of the print process, like ink, toner, solvents, and cleaning tools, are a source of friction, but automation can be a lubricant.

Take stock of everything you keep in inventory and your replenishment rates. You may have a dedicated inventory management system for tracking, but you might be doing it manually using spreadsheets. Look at what has been sitting in stock for longer than average and what you regularly expedite. If you automate your orders based on agreed replenishment quantities and update received goods in your internal inventory management system, you should find that material management becomes easier.

Take it a step further and integrate order and received goods management into the systems that feed your estimating and quoting to ensure that you have the raw materials you need to complete the work. Over time you should find that your stockholding becomes more efficient.

Deploy automation as the lubricant

Preparing for the future demand’s efficiency and optimization of every process. Islands of automation linked by manual processes is not a best practice. End-to-End workflow automation is the path to follow. Follow the Crawl-Walk-Run rule!

If you have islands of automation, begin by reviewing those automation tools and the manual processes that link them. Review your installed software solutions. What are your options for expanding your adoption and deployment of adopting tools you own to achieve end-to-end automation?

Look at Job Onboarding, Prepress, Production, and Delivery. Anthony Thirlby at Venn Holding in Belgium shares his productivity numbers on LinkedIn. He says that 55% of the life of a job is spent in Estimating, Job Administration, and Scheduling. Focusing on these areas in your Crawl phase builds repeatable results that may save minutes to hours in bringing the job on board, adding money to the bottom line.

Even if you have a web-to-production portal or digital storefront, take a few steps back and review if they are still working for you or need a tune-up. If jobs arrive and seamlessly flow to prepress and production, great! But if there are still loops and bottlenecks, it is time to look at how your tools are set up and solve the bottlenecks.

If you are in a manual job onboarding environment, using hot folders and email, this is the time to stop. Your Crawl phase should be the development of a requirements and specification protocol to inform acquisition and implementation of automated job onboarding. Automated job onboarding will save time, create consistency and efficiency, and free team members to spend time on more valuable tasks.

After job onboarding, walk into automating customer approval management, change request and resolution, and then close the loop. Verify that every job is invoiced, including change requests—set policies for discounts. And use your production data to keep pricing up to date.

When all processes are connected and sharing data, you are ready to run. It may take two years to build the end-to-end process, but new automated step lifts your level of efficiency.

What happens when you embrace automation?

Automation is not magic. Automation takes a well-defined plan that is transparent. It takes executive sponsorship and team leadership. It is part art and part science. Automation requires calming the fears of employees that their jobs may be eliminated. It requires a different type of conversation with the current array of software vendors. But if you do your assessment and have those conversations, the waste reduction, production efficiencies, and customer satisfaction that result can change the trajectory of the company.

If you need talking points for your team, here are the top reasons to embrace automation:

Eliminate manual and repetitive tasks: Automation eliminates repetitive tasks and errors, allowing faster processing, reducing turnaround times and increasing overall efficiency.

Integration enabling data sharing across applications: Integrating digital technologies with traditional print methods is the bridge to the future. It allows seamless integration between design software, content management systems, and data-driven workflow processes.

Easier to collaborate: Work rules are different in every country, but the global economy lets us sell print around the world. Automation paired with cloud-based workflow solutions fosters more efficient communication, faster approvals, and reduced lead times.

Enables waste reduction: By identifying workflow inefficiencies and eliminating them, reprints due to production mistakes become a thing of the past. Leveraging vendor data and integrating business workflows with production workflows minimizes waste through better inventory management. The ability to print on-demand and in smaller quantities reduces excess inventory and waste associated with outdated or unused materials.

Print manufacturing workflow automation brings increased efficiency, improved production quality, and more flexibility in scheduling. The business result is increased capacity through efficiency and higher available profit margin on each job.

Automation and management of the automation rules allow the print shop to adapt to changing customer demands, integrate with digital processes, improve efficiency, reduce costs, and deliver a better overall experience. The resulting optimized print workflows are essential to staying competitive in a digital age while still leveraging the unique benefits and tangible qualities of print.

www.drupa.com

#modernbusinessnetwork#modernusinessindia#modernbusinessamerica#modernbusinesseurope #modernbusinessasia #modernbusinessgulf #modernbusinessgermany#modernbusinessworld #technologies#transitioning#profit#stockholding

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India Begins Soil-Carbon Payments to Farmers, Opening a New Revenue Opportunity for Sustainable Agriculture  **NEW DELHI:** India has begun making payments to farmers linked to verified soil-carbon credits, marking a significant development in the country’s efforts to connect sustainable farming practices with emerging carbon markets.  More than **2,500 farmers across Punjab and Haryana** are receiving payments associated with measured improvements in soil carbon, according to reports on the initiative. The development offers a new potential source of income for farmers while encouraging agricultural practices aimed at improving soil health and reducing greenhouse-gas emissions.  The initiative comes as agriculture faces growing pressure to increase productivity while protecting natural resources. Continuous cultivation, excessive tillage, inefficient fertiliser use and declining soil organic matter can affect soil quality over time. Carbon-focused farming practices seek to address some of these challenges by increasing the amount of carbon stored in agricultural soils.  ## What Are Soil-Carbon Credits?  Soil-carbon credits are linked to the amount of carbon that agricultural practices can help remove from the atmosphere or retain in soil.  Farmers can potentially generate credits by adopting practices that increase soil organic carbon or reduce emissions. Depending on the methodology used, these practices can include **reduced or zero tillage, improved residue management, cover crops, crop diversification, efficient fertiliser use and other regenerative farming techniques**.  Credits are generally based on measured or verified changes rather than simply on whether a farmer has adopted a particular practice.  This distinction is important because carbon markets require evidence that claimed emissions reductions or carbon storage have actually occurred.  ## Creating an Additional Income Stream  For farmers, the most significant feature of carbon farming is the possibility of receiving income beyond conventional crop sales.  Agricultural revenue can fluctuate considerably because of weather, input prices, crop prices and market conditions. Payments associated with verified environmental outcomes could potentially provide farmers with an additional source of income.  The emerging model links a farmer’s land-management decisions with demand from organisations seeking to account for or compensate for greenhouse-gas emissions.  If carbon markets continue to develop, farmers who adopt suitable practices could potentially earn additional payments while also improving the long-term condition of their soil.  ## Why Soil Health Matters  Soil is one of agriculture’s most important natural resources.  Healthy soils contain organic matter that supports soil structure, water retention and biological activity. Increasing soil organic carbon can contribute to improved soil quality, although the effects depend on local conditions, crop systems and management practices.  Improved soil structure can potentially help fields retain water and withstand periods of moisture stress.  For Indian agriculture, this is particularly relevant as farmers in many regions face increasing pressure from irregular rainfall and water availability.  Better soil management can therefore have benefits that extend beyond carbon accounting.  ## Farmers and Regenerative Agriculture  The growth of soil-carbon programmes is also encouraging greater interest in **regenerative and climate-smart agriculture**.  These approaches generally focus on improving soil health while maintaining or increasing agricultural productivity.  Practices such as reduced tillage can limit soil disturbance. Keeping crop residues in fields can return organic material to the soil. Cover crops can protect soil between production cycles, while crop diversification can support soil biological activity.  However, no single practice is suitable for every farm.  Farmers need to consider local soil characteristics, water availability, crop requirements, machinery, labour and economics before changing their production systems.  ## Measuring Carbon Is a Critical Step  One of the biggest challenges in soil-carbon markets is determining how much carbon has actually been stored.  Unlike a manufactured product, soil carbon can change over time because of weather, cultivation and biological processes.  Carbon-credit programmes therefore need systems for **measurement, reporting and verification**.  Soil samples, field records, remote sensing, modelling and other monitoring methods can be combined to estimate changes in soil carbon.  Reliable verification is essential because buyers of carbon credits need confidence that the environmental benefit represented by a credit is real.  For farmers, accurate measurement is equally important because payments depend on the amount of verified carbon benefits attributed to their land.  ## The Importance of Long-Term Monitoring  Soil-carbon storage is not necessarily permanent.  Carbon levels can decline if land-management practices are reversed. For example, a farmer who moves toward reduced tillage and improved residue management may increase soil carbon over time, but changes in future farming practices could affect those gains.  This means carbon programmes need long-term monitoring rather than relying only on a one-time measurement.  Clear rules around monitoring, verification and the duration of carbon storage will be important as India’s agricultural carbon market develops.  ## Punjab and Haryana at the Centre of the Initiative  Punjab and Haryana have particular significance in India’s agricultural landscape.  The two states are major contributors to the country’s food production, particularly through intensive cereal-based farming systems.  At the same time, intensive agriculture has created concerns around soil health, water use and crop-residue management.  This makes the region an important testing ground for approaches that attempt to combine farm productivity with environmental improvements.  If carbon-linked payments prove economically viable, they could provide farmers with an additional incentive to experiment with improved soil-management practices.  ## Carbon Markets and Indian Agriculture  The emergence of agricultural carbon credits reflects the broader development of India’s carbon-market ecosystem.  Carbon markets are designed to create an economic value for emissions reductions or carbon removal. Companies and other organisations may purchase credits depending on regulatory requirements, voluntary commitments or other market mechanisms.  Agriculture represents a potentially large area of opportunity because soils, vegetation and agricultural practices interact directly with the carbon cycle.  However, agricultural carbon markets are still developing, and their long-term impact will depend on the quality of crediting methodologies, market demand and the costs associated with monitoring and verification.  ## Technology Could Lower the Cost of Participation  Digital technologies could play an increasingly important role in expanding soil-carbon programmes.  Satellite imagery can help monitor agricultural land, while digital farm records can provide information about crop rotations and field practices. Soil sensors and improved sampling techniques can provide additional data.  Artificial intelligence and machine-learning models may also help analyse large quantities of agricultural and environmental information.  The use of technology could eventually reduce the cost of measuring and verifying carbon outcomes, making smaller farms more practical participants in carbon markets.  ## Making Carbon Farming Accessible to Small Farmers  India’s agricultural landscape is dominated by small and marginal farmers, which means that accessibility will be critical.  If carbon-credit programmes involve expensive testing, complicated contracts or high administrative costs, smaller farmers may struggle to participate.  Programmes that aggregate farmers across multiple villages or regions could potentially reduce these costs.  Farmer-producer organisations, cooperatives and other agricultural institutions could also play a role by helping farmers understand carbon programmes, coordinate participation and access technical assistance.

India Begins Soil-Carbon Payments to Farmers, Opening a New Revenue Opportunity for Sustainable Agriculture **NEW DELHI:** India has begun making payments to farmers linked to verified soil-carbon credits, marking a significant development in the country’s efforts to connect sustainable farming practices with emerging carbon markets. More than **2,500 farmers across Punjab and Haryana** are receiving payments associated with measured improvements in soil carbon, according to reports on the initiative. The development offers a new potential source of income for farmers while encouraging agricultural practices aimed at improving soil health and reducing greenhouse-gas emissions. The initiative comes as agriculture faces growing pressure to increase productivity while protecting natural resources. Continuous cultivation, excessive tillage, inefficient fertiliser use and declining soil organic matter can affect soil quality over time. Carbon-focused farming practices seek to address some of these challenges by increasing the amount of carbon stored in agricultural soils. ## What Are Soil-Carbon Credits? Soil-carbon credits are linked to the amount of carbon that agricultural practices can help remove from the atmosphere or retain in soil. Farmers can potentially generate credits by adopting practices that increase soil organic carbon or reduce emissions. Depending on the methodology used, these practices can include **reduced or zero tillage, improved residue management, cover crops, crop diversification, efficient fertiliser use and other regenerative farming techniques**. Credits are generally based on measured or verified changes rather than simply on whether a farmer has adopted a particular practice. This distinction is important because carbon markets require evidence that claimed emissions reductions or carbon storage have actually occurred. ## Creating an Additional Income Stream For farmers, the most significant feature of carbon farming is the possibility of receiving income beyond conventional crop sales. Agricultural revenue can fluctuate considerably because of weather, input prices, crop prices and market conditions. Payments associated with verified environmental outcomes could potentially provide farmers with an additional source of income. The emerging model links a farmer’s land-management decisions with demand from organisations seeking to account for or compensate for greenhouse-gas emissions. If carbon markets continue to develop, farmers who adopt suitable practices could potentially earn additional payments while also improving the long-term condition of their soil. ## Why Soil Health Matters Soil is one of agriculture’s most important natural resources. Healthy soils contain organic matter that supports soil structure, water retention and biological activity. Increasing soil organic carbon can contribute to improved soil quality, although the effects depend on local conditions, crop systems and management practices. Improved soil structure can potentially help fields retain water and withstand periods of moisture stress. For Indian agriculture, this is particularly relevant as farmers in many regions face increasing pressure from irregular rainfall and water availability. Better soil management can therefore have benefits that extend beyond carbon accounting. ## Farmers and Regenerative Agriculture The growth of soil-carbon programmes is also encouraging greater interest in **regenerative and climate-smart agriculture**. These approaches generally focus on improving soil health while maintaining or increasing agricultural productivity. Practices such as reduced tillage can limit soil disturbance. Keeping crop residues in fields can return organic material to the soil. Cover crops can protect soil between production cycles, while crop diversification can support soil biological activity. However, no single practice is suitable for every farm. Farmers need to consider local soil characteristics, water availability, crop requirements, machinery, labour and economics before changing their production systems. ## Measuring Carbon Is a Critical Step One of the biggest challenges in soil-carbon markets is determining how much carbon has actually been stored. Unlike a manufactured product, soil carbon can change over time because of weather, cultivation and biological processes. Carbon-credit programmes therefore need systems for **measurement, reporting and verification**. Soil samples, field records, remote sensing, modelling and other monitoring methods can be combined to estimate changes in soil carbon. Reliable verification is essential because buyers of carbon credits need confidence that the environmental benefit represented by a credit is real. For farmers, accurate measurement is equally important because payments depend on the amount of verified carbon benefits attributed to their land. ## The Importance of Long-Term Monitoring Soil-carbon storage is not necessarily permanent. Carbon levels can decline if land-management practices are reversed. For example, a farmer who moves toward reduced tillage and improved residue management may increase soil carbon over time, but changes in future farming practices could affect those gains. This means carbon programmes need long-term monitoring rather than relying only on a one-time measurement. Clear rules around monitoring, verification and the duration of carbon storage will be important as India’s agricultural carbon market develops. ## Punjab and Haryana at the Centre of the Initiative Punjab and Haryana have particular significance in India’s agricultural landscape. The two states are major contributors to the country’s food production, particularly through intensive cereal-based farming systems. At the same time, intensive agriculture has created concerns around soil health, water use and crop-residue management. This makes the region an important testing ground for approaches that attempt to combine farm productivity with environmental improvements. If carbon-linked payments prove economically viable, they could provide farmers with an additional incentive to experiment with improved soil-management practices. ## Carbon Markets and Indian Agriculture The emergence of agricultural carbon credits reflects the broader development of India’s carbon-market ecosystem. Carbon markets are designed to create an economic value for emissions reductions or carbon removal. Companies and other organisations may purchase credits depending on regulatory requirements, voluntary commitments or other market mechanisms. Agriculture represents a potentially large area of opportunity because soils, vegetation and agricultural practices interact directly with the carbon cycle. However, agricultural carbon markets are still developing, and their long-term impact will depend on the quality of crediting methodologies, market demand and the costs associated with monitoring and verification. ## Technology Could Lower the Cost of Participation Digital technologies could play an increasingly important role in expanding soil-carbon programmes. Satellite imagery can help monitor agricultural land, while digital farm records can provide information about crop rotations and field practices. Soil sensors and improved sampling techniques can provide additional data. Artificial intelligence and machine-learning models may also help analyse large quantities of agricultural and environmental information. The use of technology could eventually reduce the cost of measuring and verifying carbon outcomes, making smaller farms more practical participants in carbon markets. ## Making Carbon Farming Accessible to Small Farmers India’s agricultural landscape is dominated by small and marginal farmers, which means that accessibility will be critical. If carbon-credit programmes involve expensive testing, complicated contracts or high administrative costs, smaller farmers may struggle to participate. Programmes that aggregate farmers across multiple villages or regions could potentially reduce these costs. Farmer-producer organisations, cooperatives and other agricultural institutions could also play a role by helping farmers understand carbon programmes, coordinate participation and access technical assistance.

September 17, 2026

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