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首页> 外文期刊>Archives of Agronomy and Soil Science >Agronomic productivity, nitrogen fertilizer savings and soil organic carbon in conservation agriculture: efficient nitrogen and weed management in maize-wheat system
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Agronomic productivity, nitrogen fertilizer savings and soil organic carbon in conservation agriculture: efficient nitrogen and weed management in maize-wheat system

机译:保护农业农艺生产力,氮肥储蓄和土壤有机碳:玉米小麦系统的高效氮和杂草管理

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摘要

Conservation agriculture (CA) practice increases agronomic productivity and soil fertility, yet CA stimulate nitrogen (N) immobilization and weed interference during the early periods of implementation. This study focuses on efficient N management by soil testing and optical sensor (GreenSeeker (TM)) information; and weed management using brown manuring (Sesbania aculeata co-culture) and herbicide mixtures under CA-based maize (Zea mays L.) - wheat (Triticum aestivum L. emend Fiori & Paol) system in the Indo-Gangetic Plains. Fertilizer N application guided by the optical sensor increased grain yields of maize and wheat up to 20 and 14% (average of two years), respectively, compared to whole N application at sowing. Weed management using brown manuring in maize and herbicide mixtures in wheat increased the grain yields up to 10 and 21%, respectively, over the weedy check. The optical sensor-based N management saved up to 45 and 30 kg N ha(-1) of the optimized N fertilizer rate in maize and wheat, respectively, over whole N application. Fertilizer N management coupled with brown manuring resulted in 5 and 4% higher soil organic carbon accumulation. Implementing efficient N fertilizer and weed management in the early years of CA can improve agronomic yield, fertilizer savings, and soil organic carbon content.
机译:保护农业(CA)实践提高了农艺生产力和土壤肥力,尚未在实施早期刺激氮气(n)固定和杂草干扰。本研究专注于土壤测试和光学传感器的高效N管理(GreenSeeker(TM)信息;和杂草管理使用棕色皱纹(Sesbania Aculeata Co.培养)和除草剂的玉米(Zea Mays L.) - 小麦(Triticum Aestivum L. Fomend Fiori&PAOL)系统中的除草剂混合物。与整体N应用相比,光学传感器引导的肥料N适用于光学传感器的玉米和小麦的谷物产量增加到20%和14%(平均两年)。在小麦中使用棕色皱纹的杂草管理在小麦中增加谷物产量,分别在杂草检查中分别高达10%和21%。基于光学传感器的N管理分别在整个N应用中,分别在玉米和小麦中优化的N和30千克(-1)优化为优化的N肥率。肥料N管理加上棕色挤压,导致土壤有机碳积累率为5%至4%。在CA初期实施高效的N肥和杂草管理可以提高农艺产品产量,肥料储蓄和土壤有机碳含量。

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