尼泊尔特莱地区农民田间气候智能型农业实践干预措施提高冬玉米产量和生产力

J. Gairhe, M. Adhikari
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引用次数: 3

摘要

气候变化一直是农业领域亟待解决的问题。研究界正致力于开发适当的技术、创新和概念来应对这一变化。气候智慧型农业[CSA]已在全球范围内适用于不断变化的环境下的种植和作物管理,而不影响产量和生产力。CSA涉及范围广泛的改变技术和创新,如使用弹性品种、水管理、免耕、豆类种植、覆盖种植、特定地点肥料管理、种植日期变化等。基于CSA的类似实践和原则,2014年在尼泊尔东部的农民田间进行了玉米研究。选择3名进步农民,1公顷土地,采用免耕种肥拖拉机种植玉米。该田间试验认为农民可重复使用六种不同的处理方法。根据养分管理、水管理、残留物管理、耕作方法、作物种植以及豆科作物纳入种植系统,所有处理方法都有所不同。六种处理方式的编码如下:当前灌溉(CI)、改良低灌溉(IIL)、改良高灌溉(IIH)、低气候智慧型农业(CSA-L)、中气候智慧型农业(CSA-M)和高气候智慧型农业(CSA-H)。在气候智能型农业实践试验中,与农民的传统做法相比,干预措施对产量和产量属性的影响显著。在气候智能型实践中,植株密度、穗数、每穗轴实粒数和籽粒产量显著提高,这表明CSA是减少气候变化潜在损失的合适技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intervention of Climate Smart Agriculture Practices in Farmers Field to Increase Production and Productivity of Winter Maize in Terai Region of Nepal
Climate change has been the burning issue in agriculture sector. The research world is focused on developing appropriate technology, innovations and concept to cope up this change. The Climate Smart Agriculture [CSA] has been adapted globally for cultivation and crop management in changing context without compromising yield and productivity. The CSA involves wide range altered techniques and innovations like using resilient varieties, water management, zero tillage, legumes incorporation, cover cropping, site specific fertilizer management, variation in planting date etc. Grounding on the similar practices and principles of CSA, the research in maize was conducted in 2014 in farmers' field of Eastern Nepal. Three progressive farmers with 1 hector of land were selected and Maize was cultivated using Zero tillage seed cum fertilizer driller tractor. This field experiment considers farmers as replication with six different treatments. All treatments differ to each other based on nutrient management, water management, residue management, tillage practice, crop establishment, and inclusion of legumes in the cropping system. Six treatments are coded as follows: Current Irrigated (CI), Improved Irrigated Low (IIL), Improved Irrigated High (IIH), Climate Smart Agriculture-Low (CSA-L), Climate Smart Agriculture-Medium (CSA-M), and Climate Smart Agriculture-High (CSA-H). Significant impact of intervention was observed in yield and yield attributes in the trial with climate smart agriculture practices than in conventional practices of farmers. Plant density, ear number, filled grains per cob and grain yield was substantially higher in climate smart practices revealing CSA to be the appropriate technology to minimize potential loss of climate change.
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