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Conservation agriculture and climate resilience

机译:保护性农业与气候适应力

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Agricultural productivity growth is vital for economic and food security outcomes which are threatened by climate change. In response, governments and development agencies are encouraging the adoption of 'climate-smart' agricultural technologies, such as conservation agriculture (CA). However, there is little rigorous evidence that demonstrates the effect of CA on production or climate resilience, and what evidence exists is hampered by selection bias. Using panel data from Zimbabwe, we test how CA performs during extreme rainfall events - both shortfalls and surpluses. We control for the endogenous adoption decision and find that use of CA in years of average rainfall results in no yield gains, and in some cases yield loses. However, CA is effective in mitigating the negative impacts of deviations in rainfall. We conclude that the lower yields during normal rainfall seasons may be a proximate factor in low uptake of CA. Policy should focus promotion of CA on these climate resilience benefits. (C) 2018 The Authors. Published by Elsevier Inc.
机译:农业生产力的增长对于受气候变化威胁的经济和粮食安全成果至关重要。作为回应,政府和发展机构正在鼓励采用“气候智能”农业技术,例如保护性农业(CA)。但是,几乎没有严格的证据证明CA对生产或气候适应力的影响,并且存在哪些证据受到选择偏见的阻碍。利用来自津巴布韦的面板数据,我们测试了CA在极端降雨事件(包括短缺和过剩)中的表现。我们控制着内生的采用决策,发现在多年平均降雨的年份中使用CA不会带来增产,在某些情况下还会导致减产。但是,CA可以有效减轻降雨偏差的负面影响。我们得出结论,正常降雨季节较低的单产可能是CA吸收率低的一个直接因素。政策应将促进CA的重点放在这些气候适应力收益上。 (C)2018作者。由Elsevier Inc.发布

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