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Maize Yield Response to Water Supply and Fertilizer Input in a Semi-Arid Environment of Northeast China

机译:东北半干旱环境下玉米产量对供水和施肥的响应

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摘要

Maize grain yield varies highly with water availability as well as with fertilization and relevant agricultural management practices. With a 311-A optimized saturation design, field experiments were conducted between 2006 and 2009 to examine the yield response of spring maize (Zhengdan 958, Zea mays L) to irrigation (I), nitrogen fertilization (total nitrogen, urea-46% nitrogen,) and phosphorus fertilization (P2O5, calcium superphosphate-13% P2O5) in a semi-arid area environment of Northeast China. According to our estimated yield function, the results showed that N is the dominant factor in determining maize grain yield followed by I, while P plays a relatively minor role. The strength of interaction effects among I, N and P on maize grain yield follows the sequence N+I >P+I>N+P. Individually, the interaction effects of N+I and N+P on maize grain yield are positive, whereas that of P+I is negative. To achieve maximum grain yield (10506.0 kg·ha−1) for spring maize in the study area, the optimum application rates of I, N and P are 930.4 m3·ha−1, 304.9 kg·ha−1 and 133.2 kg·ha−1 respectively that leads to a possible economic profit (EP) of 10548.4 CNY·ha−1 (CNY, Chinese Yuan). Alternately, to obtain the best EP (10827.3 CNY·ha−1), the optimum application rates of I, N and P are 682.4 m3·ha−1, 241.0 kg·ha−1 and 111.7 kg·ha−1 respectively that produces a potential grain yield of 10289.5 kg·ha−1.
机译:玉米籽粒产量随可用水量以及施肥和相关农业管理实践的不同而有很大差异。利用311-A优化的饱和度设计,在2006年至2009年之间进行了田间试验,以检验春玉米(郑单958,玉米)对灌溉(I),氮肥(总氮,尿素46%氮)的产量响应。 )和磷肥(P2O5,过磷酸钙13%P2O5)在东北的半干旱地区环境中。根据我们估计的产量函数,结果表明,氮是决定玉米籽粒产量的主要因素,其次是I,而P的作用相对较小。 I,N和P之间相互作用对玉米籽粒产量的影响强度遵循N + I> P + I> N + P的顺序。 N + I和 N + P 对玉米籽粒产量的交互影响是正的,而 P + I的交互作用则是正的。 是否定的。为了使研究区的春玉米达到最高产量(10506.0 kg·ha −1 ), I N 的最佳施用量和 P 为930.4 m 3 ·ha -1 ,304.9 kg·ha -1 和133.2 kg·ha -1 分别导致10548.4 CNY·ha -1 (人民币,CNY)的可能的经济利润( EP )。或者,为了获得最佳的 EP (10827.3 CNY·ha −1 ), I N 的最佳施用量em>和 P 分别为682.4 m 3 ·ha -1 ,241.0 kg·ha -1 和111.7 kg ·ha -1 分别产生10289.5 kg·ha -1 的潜在谷物产量。

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