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Ramkrushna Gandhiji Idapuganti

Biographic Data

ID8843253
NAMERamkrushna Gandhiji Idapuganti
GIVEN NAMESRamkrushna Gandhiji
FAMILY NAMEIdapuganti
SIGNATUREIDAPUGANTI R G
AFFILIATIONSICAR–Central Institute for Cotton Research Nagpur Maharashtra India
VERIFIEDNo
TOTAL WORKS4
TOTAL CITATIONS0
AUTHOR COUNT4
EDITOR COUNT0
FIRST PUBLICATION YEAR2020
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…

  • Can biochar conserve soil moisture and improve soil properties for sustainable intensification of acid soils in the Eastern Indian Himalayas

    Open Access•Ramkrushna Gandhiji Idapuganti, Anup Das et al.•ARTICLE•Land Degradation and Development•2024

    The marginal Himalayan ecosystems have great potential for biochar application for conserving soil moisture, ameliorating soil acidity, improving soil fertility, and thus, contributing to sustainable intensification. Thus, the efficacy of biochar was tested along with nutrient management practices (NMP) on the performance of maize ( Zea mays L.)‐French bean ( Phaseolus vulgaris L.) as the emerging cropping system in an acid soil under rainfed hil…

  • Liming and micronutrient application improves soil properties and productivity of the groundnut‐rapeseed cropping system in an acidic Inceptisol of India's eastern Himalayas

    Open Access•Santanu Das, Anup Das et al.•ARTICLE•Land Degradation and Development•2023

    Aluminum toxicity, nutrient imbalance, and reduced microbial activity are the most limiting factors for optimum agronomic productivity in acid soils. A field study was conducted to investigate the impact of micronutrient and liming on soil properties and productivity of groundnut‐rapeseed system in an acidic Inceptisol. The impact of six micronutrient (control or no micronutrient, Zn at 5 kg ha −1 , B at 1 kg ha −1 , Mo at 0.5 kg ha −1 , Zn + Mo,…

  • Conservation tillage and residue management improves soil properties under a upland rice–rapeseed system in the subtropical eastern Himalayas

    Open Access•Anup Das, Jayanta Layek et al.•ARTICLE•Land Degradation and Development•2020

    Poor soil properties and low soil moisture content (SMC) are major limitations for cultivating a second crop after the rainy season rice ( Oryza sativa L.) in the uplands of the Eastern Himalayas. Information on impact of conservation tillage and residue management (RM) to alleviate soil constraints is limited in the region. Thus, a field study was conducted in a rice–rapeseed ( Brassica campestris Var. Toria) system under rainfed conditions with…

No prominent works on this page.

  • Conservation tillage and residue management improves soil properties under a upland rice–rapeseed system in the subtropical eastern Himalayas

    Open Access•Anup Das, Jayanta Layek et al.•ARTICLE•Land Degradation and Development•2020

    Poor soil properties and low soil moisture content (SMC) are major limitations for cultivating a second crop after the rainy season rice ( Oryza sativa L.) in the uplands of the Eastern Himalayas. Information on impact of conservation tillage and residue management (RM) to alleviate soil constraints is limited in the region. Thus, a field study was conducted in a rice–rapeseed ( Brassica campestris Var. Toria) system under rainfed conditions with…

  • Liming and micronutrient application improves soil properties and productivity of the groundnut‐rapeseed cropping system in an acidic Inceptisol of India's eastern Himalayas

    Open Access•Santanu Das, Anup Das et al.•ARTICLE•Land Degradation and Development•2023

    Aluminum toxicity, nutrient imbalance, and reduced microbial activity are the most limiting factors for optimum agronomic productivity in acid soils. A field study was conducted to investigate the impact of micronutrient and liming on soil properties and productivity of groundnut‐rapeseed system in an acidic Inceptisol. The impact of six micronutrient (control or no micronutrient, Zn at 5 kg ha −1 , B at 1 kg ha −1 , Mo at 0.5 kg ha −1 , Zn + Mo,…

  • Can biochar conserve soil moisture and improve soil properties for sustainable intensification of acid soils in the Eastern Indian Himalayas

    Open Access•Ramkrushna Gandhiji Idapuganti, Anup Das et al.•ARTICLE•Land Degradation and Development•2024

    The marginal Himalayan ecosystems have great potential for biochar application for conserving soil moisture, ameliorating soil acidity, improving soil fertility, and thus, contributing to sustainable intensification. Thus, the efficacy of biochar was tested along with nutrient management practices (NMP) on the performance of maize ( Zea mays L.)‐French bean ( Phaseolus vulgaris L.) as the emerging cropping system in an acid soil under rainfed hil…

  • 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…

Soil Carbon and Nitrogen Dynamics (4 works) · Soil water (4 works) · Agronomy (3 works) · Biology (3 works) · Animal science (2 works) · Chemistry (2 works) · Cropping system (2 works) · Environmental Science (2 works) · Fertilizer (2 works) · Rapeseed (2 works)

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