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Quantifying spatial variability of indigenous nitrogen supply for precision nitrogen management in small scale farming

机译:量化本地氮供应的空间变异性,以实现小规模农业的精确氮管理

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Understanding spatial variability of indigenous nitrogen (N) supply (INS) is important to the implementation of precision N management (PNM) strategies in small scale agricultural fields of the North China Plain (NCP). This study was conducted to determine: (1) field-to-field and within-field variability in INS; (2) the potential savings in N fertilizers using PNM technologies; and (3) winter wheat (Triticum aestivum L.) N status variability at the Feekes 6 stage and the potential of using a chlorophyll meter (CM) and a GreenSeeker active crop canopy sensor for estimating in-season N requirements. Seven farmer’s fields in Quzhou County of Hebei Province were selected for this study, but no fertilizers were applied to these fields. The results indicated that INS varied significantly both within individual fields and across different fields, ranging from 33.4 to 268.4 kg ha−1, with an average of 142.6 kg ha−1 and a CV of 34%. The spatial dependence of INS, however, was not strong. Site-specific optimum N rates varied from 0 to 355 kg ha−1 across the seven fields, with an average of 173 kg ha−1 and a CV of 46%. Field-specific N management could save an average of 128 kg N ha−1 compared to typical farmer practices. Both CM and GreenSeeker sensor readings were significantly related to crop N status and demand across different farmer’s fields, showing a good potential for in-season site-specific N management in small scale farming systems. More studies are needed to further evaluate these sensing technology-based PNM strategies in additional farmer fields in the NCP.
机译:了解本地氮(N)供应(INS)的空间变异性对于在华北平原(NCP)小型农业领域中实施精确氮管理(PNM)策略很重要。进行这项研究以确定:(1)INS的田间和田间变异性; (2)使用PNM技术可节省氮肥; (3)Feekes 6阶段的冬小麦(Triticum aestivum L.)氮素状态变异,以及使用叶绿素仪(CM)和GreenSeeker活性农作物冠层传感器估算季节氮素需求的潜力。本研究选择了河北省zhou州市的七个农地,但未在这些地上施肥。结果表明,INS在各个田间和不同田间均存在显着差异,范围从33.4至268.4 kg ha -1 ,平均为142.6 kg ha -1 和CV为34%。但是,INS的空间依赖性并不强。在这七个田间,特定地点的最佳氮素含量从0到355 kg ha -1 不等,平均173 kg ha -1 ,CV为46%。与典型的农民做法相比,田间特定的氮素管理平均可节省128 kg N ha -1 。 CM和GreenSeeker传感器的读数都与不同农民田间作物的氮素状况和需求密切相关,显示出在小型农业系统中按季节进行特定地点的氮素管理的巨大潜力。需要更多的研究来进一步评估NCP其他农民田地中基于传感技术的PNM策略。

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