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Raghavendra Singh

Biographic Data

ID4463687
NAMERaghavendra Singh
GIVEN NAMESRaghavendra
FAMILY NAMESingh
SIGNATURESINGH R
AFFILIATIONSICAR—Indian Institute of Farming Systems Research Modipuram Uttar Pradesh India
ORCID0000-0002-0766-3806
VERIFIEDYes
TOTAL WORKS6
TOTAL CITATIONS0
AUTHOR COUNT6
EDITOR COUNT0
FIRST PUBLICATION YEAR2021
LATEST PUBLICATION YEAR2026
H-INDEX0
  • Assessment of Organic Carbon Stock and Soil Organic Carbon Fractions Across Different Cropping Systems in the Red and Laterite Soils of Meghalaya, India

    Open Access•Subhash Babu, Raghavendra Singh et al.•ARTICLE•Land Degradation and Development•2026

    Soil carbon (C) depletion is a prime indicator of land degradation. Cropping system intensification with short‐duration legumes is a perceived important strategy to restore soil C in agricultural land. Hence, the impact of six cropping systems (maize [ Zea mays ]—French bean [ Phaseolus vulgaris ], maize–soybean [ Glycine max ], maize–urdbean [ Vigna mungo ], maize–mungbean [ Vigna radiata ], maize–toria [ Brassica campestris var. toria], and mai…

  • Optimizing Food‐Energy‐Water‐Carbon Synergies Through Conservation Tillage and Organic Nutrient Management in Eastern Himalayan Rice–Pea System

    Open Access•Subhash Babu, S Suresh Babu et al.•ARTICLE•Land Degradation and Development•2026

    Balancing economic returns and environmental outcomes is a global priority, making the development of a sustainable bioeconomy vital for greening agriculture and Sustainable Development Goals‐linked targets. Thus, a 5‐year field study was undertaken to develop a robust tillage and nutrient management model to improve system productivity and energy use efficiency while reducing the carbon and water footprints of the organic rice–pea system. Three …

  • A Quantitative Comparison of Conventional and Conservation Tillage of Diverse Agro‐Ecologies

    Open Access•Chaitanya Prasad Nath, T K Das et al.•ARTICLE•Land Degradation and Development•2025

    A detailed insight on global yield change of crops, soil quality parameters, and water‐nutrient‐energy nexus and biotic factors under conservation tillage (CT) in comparison to conventional tillage (CONT) is limited. We summarized the impacts of CT on yields, profitability, soil quality, and ecosystem sustainability in comparison to CONT. Globally, average yields of crops increased by 3.7% ( p 3 years) compared to CONT. The CT has led to a signif…

  • Effect of Land‐Use Management on Soil Erosion Under Two Distinct Climates of Indian Himalayas

    Open Access•Owais Ali Wani, Vikas Sharma et al.•ARTICLE•Land Degradation and Development•2025

    Soil erosion is a growing concern, especially in regions where the combination of climate, land‐use, and soil characteristics increases the risk of degradation. The study utilized a stratified random sampling method across various land‐use types in both subtropical and temperate climatic zones of the Indian Himalayas. A total of 50 sampling locations were strategically selected, with 25 in each climate zone, to ensure representative data collecti…

  • Conservation agriculture practices for improving productivity and soil health in maize–wheat systems under Indian conditions

    Open Access•Amit Kumar, Uk Behera et al.•ARTICLE•Sustainable Futures•2025•References: 2

    Achieving sustainable development in agri-food production systems requires integrated strategies that boost productivity while preserving soil and environmental health. This study examined the conservation agriculture (CA) practices (tillage, crop residue management, and phosphorus fertilization) on the performance of a maize–wheat (M-W) system in India. A two-year field experiment involving fifteen treatment combinations was conducted. The resul…

  • Conservation tillage and organic nutrients management improve soil properties, productivity, and economics of a maize‐vegetable pea system in the Eastern Himalayas

    Open Access•Raghavendra Singh, Subhash Babu et al.•ARTICLE•Land Degradation and Development•2021

    Soil quality restoration and sustainable crop production in the rainfed ecosystem of the Indian Himalayas can be achieved through effective conservation tillage and organic management. Hence, a six‐year (2013 to 2019) study was conducted to quantify the effect of tillage and organic nutrient management on soil properties, productivity, and profitability of the maize‐vegetable pea ( Pisum sativum ) system. Three tillage practices [conventional (CT…

No prominent works on this page.

  • Conservation tillage and organic nutrients management improve soil properties, productivity, and economics of a maize‐vegetable pea system in the Eastern Himalayas

    Open Access•Raghavendra Singh, Subhash Babu et al.•ARTICLE•Land Degradation and Development•2021

    Soil quality restoration and sustainable crop production in the rainfed ecosystem of the Indian Himalayas can be achieved through effective conservation tillage and organic management. Hence, a six‐year (2013 to 2019) study was conducted to quantify the effect of tillage and organic nutrient management on soil properties, productivity, and profitability of the maize‐vegetable pea ( Pisum sativum ) system. Three tillage practices [conventional (CT…

  • A Quantitative Comparison of Conventional and Conservation Tillage of Diverse Agro‐Ecologies

    Open Access•Chaitanya Prasad Nath, T K Das et al.•ARTICLE•Land Degradation and Development•2025

    A detailed insight on global yield change of crops, soil quality parameters, and water‐nutrient‐energy nexus and biotic factors under conservation tillage (CT) in comparison to conventional tillage (CONT) is limited. We summarized the impacts of CT on yields, profitability, soil quality, and ecosystem sustainability in comparison to CONT. Globally, average yields of crops increased by 3.7% ( p 3 years) compared to CONT. The CT has led to a signif…

  • Effect of Land‐Use Management on Soil Erosion Under Two Distinct Climates of Indian Himalayas

    Open Access•Owais Ali Wani, Vikas Sharma et al.•ARTICLE•Land Degradation and Development•2025

    Soil erosion is a growing concern, especially in regions where the combination of climate, land‐use, and soil characteristics increases the risk of degradation. The study utilized a stratified random sampling method across various land‐use types in both subtropical and temperate climatic zones of the Indian Himalayas. A total of 50 sampling locations were strategically selected, with 25 in each climate zone, to ensure representative data collecti…

  • Conservation agriculture practices for improving productivity and soil health in maize–wheat systems under Indian conditions

    Open Access•Amit Kumar, Uk Behera et al.•ARTICLE•Sustainable Futures•2025•References: 2

    Achieving sustainable development in agri-food production systems requires integrated strategies that boost productivity while preserving soil and environmental health. This study examined the conservation agriculture (CA) practices (tillage, crop residue management, and phosphorus fertilization) on the performance of a maize–wheat (M-W) system in India. A two-year field experiment involving fifteen treatment combinations was conducted. The resul…

  • Assessment of Organic Carbon Stock and Soil Organic Carbon Fractions Across Different Cropping Systems in the Red and Laterite Soils of Meghalaya, India

    Open Access•Subhash Babu, Raghavendra Singh et al.•ARTICLE•Land Degradation and Development•2026

    Soil carbon (C) depletion is a prime indicator of land degradation. Cropping system intensification with short‐duration legumes is a perceived important strategy to restore soil C in agricultural land. Hence, the impact of six cropping systems (maize [ Zea mays ]—French bean [ Phaseolus vulgaris ], maize–soybean [ Glycine max ], maize–urdbean [ Vigna mungo ], maize–mungbean [ Vigna radiata ], maize–toria [ Brassica campestris var. toria], and mai…

  • Optimizing Food‐Energy‐Water‐Carbon Synergies Through Conservation Tillage and Organic Nutrient Management in Eastern Himalayan Rice–Pea System

    Open Access•Subhash Babu, S Suresh Babu et al.•ARTICLE•Land Degradation and Development•2026

    Balancing economic returns and environmental outcomes is a global priority, making the development of a sustainable bioeconomy vital for greening agriculture and Sustainable Development Goals‐linked targets. Thus, a 5‐year field study was undertaken to develop a robust tillage and nutrient management model to improve system productivity and energy use efficiency while reducing the carbon and water footprints of the organic rice–pea system. Three …

Soil Carbon and Nitrogen Dynamics (4 works) · Biology (3 works) · Environmental Science (3 works) · Tillage (3 works) · Agroforestry (2 works) · Ecology (2 works) · Geography (2 works) · Nutrient (2 works) · Nutrient Management (2 works) · Soil carbon (2 works)

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