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首页> 外文期刊>Soil & Tillage Research >Coupling effects of depth of film-bottomed tillage and amount of irrigation and nitrogen fertilizer on spring wheat yield.
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Coupling effects of depth of film-bottomed tillage and amount of irrigation and nitrogen fertilizer on spring wheat yield.

机译:覆膜耕作深度与灌溉量和氮肥用量对春小麦产量的耦合效应。

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摘要

The crop cultivation with film-bottomed tillage may benefit more, but little is known about the coupling effects of depth of film-bottomed tillage (DFBT) and amount of irrigation and nitrogen (N) fertilizer on spring wheat yield. A field quadratic regression orthogonal design experiment was conducted to determine the effects of DFBT, irrigation and N fertilization on seed yield of spring wheat (Triticum aestivum L.) in the Hexi Corridor, China from 2002 to 2005. Five levels of irrigation (143, 165, 225, 285, and 306 mm), five levels of N (45, 70, 140, 210, and 235 kg N ha-1) and five DFBT (46, 60, 70, 80, and 94 cm) were investigated. Irrigation (44 mm <= irrigation <= 300 mm), DFBT (46 cm <= DFBT <= 80 cm), and N (<=160 kg N ha-1) significantly increased wheat yield. DFBT, N and irrigation had a positive effect on wheat yield, in the order: irrigation > N > DFBT. The coupling between DFBT x N and, between N x irrigation had a synergistic effect on spring wheat yield. The coefficient of DFBT x irrigation was negative showing the coupling of DFBT x irrigation had a reciprocal inhibition or substitution effect. The findings suggest that spring wheat should be irrigated with 300 mm of water, with an application of 160 kg N ha-1 and a 70 cm DFBT in the arid climate and sandy soil areas of China, to obtain the highest wheat yield with maximum economic benefit. The assessment with respect to N fertilizer use efficiency, environmental pollution need further research..
机译:覆膜耕作的农作物种植可能会受益更多,但对覆膜耕作深度(DFBT)与灌溉量和氮肥(N)对春小麦产量的耦合影响知之甚少。进行了一次二次回归正交设计试验,确定了DFBT,灌溉和氮肥对2002-2005年河西走廊春小麦(Triticum aestivum L.)种子产量的影响。五个灌溉水平(143,研究了165、225、285和306毫米),五个水平的N(45、70、140、210和235 kg N ha-1)和五个DFBT(46、60、70、80和94厘米) 。灌溉(44 mm <=灌溉<= 300 mm),DFBT(46 cm <= DFBT <= 80 cm)和N(<= 160 kg N ha-1)显着提高了小麦产量。 DFBT,N和灌溉对小麦产量有积极影响,其顺序为:灌溉> N> DFBT。 DFBT x N和N x灌溉之间的耦合对春小麦的产量产生协同作用。 DFBT x灌溉的系数为负,表明DFBT x灌溉的耦合具有相反的抑制或取代作用。研究结果表明,在中国干旱气候和沙质土壤地区,应向春小麦灌溉300毫米水,施用160千克N ha-1和70厘米DFBT,以获得最高的小麦产量和最大的经济效益。效益。关于氮肥使用效率,环境污染的评估尚需进一步研究。

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