The optimization of conservation agriculture practices requires attention to location-specific performance: Evidence from large scale gridded simulations across South Asia

Author:

Zhang Tianning,Xiong Wei,Sapkota Tek B.,Jat M.L.,Montes Carlo,Krupnik Timothy J.,Jat Raj Kumar,Karki Saral,Nayak Harisankar,Faisal Asif Al,Jat H.S.

Publisher

Elsevier BV

Subject

Soil Science,Agronomy and Crop Science

Reference62 articles.

1. Decreasing the carbon footprint of an intensive rice-based cropping system using conservation agriculture on Eastern Gangetic Plains;Alam;J. Clean. Prod.,2019

2. Differential evolution with DEoptim: an application to non-convext portfolio optimizatioin;Aridia;R. J.,2011

3. Conservation agriculture with drip irrigation: effects of soil quality and crop yield in sub-Saharan Africa;Assefa;J. Soil Water Conserv,2020

4. Global wheat production potentials and management flexibility under the representative concentration pathways;Balkovic;Glob. Planet. Change,2014

5. A homogenized soil data file for global environmental research: a subset of F.A.O. ISRIC and NRCS profiles (version 1.0). Working paper and preprint 95/;Batjes;Int. Soil Ref. Inf. Cent., Wagening., Neth.,1995

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