Author
Listed:
- H. S. Jat
(ICAR-Central Soil Salinity Research Institute (CSSRI)
International Maize and Wheat Improvement Centre (CIMMYT))
- K. M. Choudhary
(Borlaug Institute for South Asia (BISA), CIMMYT)
- D. P. Nandal
(CCS Haryana Agricultural University)
- A. K. Yadav
(SKN Agriculture University)
- Tanuja Poonia
(Swami Keshwanand Rajasthan Agricultural University)
- Yadvinder Singh
(Borlaug Institute for South Asia (BISA), CIMMYT)
- P. C. Sharma
(ICAR-Central Soil Salinity Research Institute (CSSRI))
- M. L. Jat
(International Maize and Wheat Improvement Centre (CIMMYT))
Abstract
In the Indo-Gangetic Plains of South Asia, the quadruple challenges of deteriorating soil quality, declining groundwater, energy shortages, and diminishing farm profitability threaten sustainability of conventional till (CT)-based cereal production systems. A 5-year study was conducted to evaluate the effect of conservation agriculture (CA)-based management (tillage, crop establishment, residue management, and system intensification through mungbean integration) on energy budget, water productivity, and economic profitability in cereal (rice–wheat, RW/maize–wheat, MW)-based systems compared with CT-based management. In CA systems, crop residues contributed the maximum (~76%) in total energy input (167,995 MJ ha−1); however, fertilizer application (nonrenewable energy source) contributed the maximum (43%) in total energy input (47,760 MJ ha−1) in CT-based systems. CA-based cereal (rice/maize) systems recorded higher net energy and energy-intensiveness (EI) levels of 251% and 300%, respectively, compared with those of the CT-based rice–wheat system (RW/CT) (295,217 MJ ha−1 and 46.05 MJ USD−1), irrespective of mungbean integration. MWMb/ZT+R utilized 204% more input energy, which resulted in 14% higher net energy and 229% higher EI compared with RW/CT. CA-based RW and MW systems enhanced the crop productivity by 10 and 16%, water productivity by 56 and 33%, and profitability by 34 and 36%, while saving in irrigation water by 38 and 32%, compared with their respective CT-based systems, respectively. CA-based system improved net energy, crop productivity, and profitability; therefore, it should be outscaled to improve the soil and environmental quality in north-west India.
Suggested Citation
H. S. Jat & K. M. Choudhary & D. P. Nandal & A. K. Yadav & Tanuja Poonia & Yadvinder Singh & P. C. Sharma & M. L. Jat, 2020.
"Conservation Agriculture-based Sustainable Intensification of Cereal Systems Leads to Energy Conservation, Higher Productivity and Farm Profitability,"
Environmental Management, Springer, vol. 65(6), pages 774-786, June.
Handle:
RePEc:spr:envman:v:65:y:2020:i:6:d:10.1007_s00267-020-01273-w
DOI: 10.1007/s00267-020-01273-w
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