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首页> 外文期刊>Scientific reports. >Innovation in alternate mulch with straw and plastic management bolsters yield and water use efficiency in wheat-maize intercropping in arid conditions
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Innovation in alternate mulch with straw and plastic management bolsters yield and water use efficiency in wheat-maize intercropping in arid conditions

机译:在干旱条件下秸秆和塑料管理螺母秸秆和塑料管理螺栓造成的橡胶造成的创新和水分利用效率

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摘要

In arid regions, higher irrigation quota for conventional farming causes substantial conflict between water supply and demand for crop production. Innovations in cropping systems are needed to alleviate this issue. A field experiment was conducted in northwestern China to assess whether straw and plastic managements in wheat/maize intercropping could alleviate these issues. Integrating no tillage with two-year plastic and straw mulching (NTMI2) improved grain yields by 13.8-17.1%, compared to conventional tillage without straw residue and annual new plastic mulching (CTI). The NTMI2 treatment reduced soil evaporation by 9.0-17.3% and the proportion of evaporation to evapotranspiration (E/ET) by 8.6-17.5%, compared to CTI. The NTMI2 treatment weakened wheat competition of soil moisture from maize strip during wheat growth period, and enhanced wheat compensation of soil moisture for maize growth after wheat harvest, compared with CTI. Thus, soil water movement potential of NTMI2 was lowest during wheat growth period, but it was highest during maize-independent growth stage after wheat harvest. The NTMI2 treatment increased evapotranspiration before maize silking, decreased from maize silking to early-filling stage, and increased after the early-filling stage of maize, this effectively coordinated water demand contradiction of intercrops at early and late stages. The NTMI2 treatment improved WUE by 12.4-17.2%, compared with CTI. The improved crop yields and WUE was attributed to the coordinated water competition and compensation, and the decreased soil evaporation and E/ET.
机译:在干旱地区,常规农业的较高灌溉配额导致供水与作物生产需求之间的重大冲突。需要在裁剪系统中的创新来缓解这个问题。在中国西北部进行了一个田间实验,以评估小麦/玉米银行中的稻草和塑料管理是否可以缓解这些问题。与两年塑料和秸秆覆盖(NTMI2)相比,整合耕种(NTMI2),与常规耕作的无秸秆还渣和年度新的塑料覆盖(CTI)相比,将谷物产量提高13.8-17.1%。与CTI相比,NTMI2处理减少了9.0-17.3%的土壤蒸发量,蒸发成蒸发(E / ET)的比例为8.6-17.5%。 NTMI2治疗在小麦生长期间从玉米带来土壤水分的土壤水分培养的弱化弱化,并与CTI相比,小麦收获后的玉米生长的土壤水分的小麦补偿。因此,在小麦生长期间,NTMI2的土壤水运动潜力最低,但在小麦收获后玉米的生长阶段期间是最高的。 NTMI2治疗在玉米丝绸之前增加了蒸散,从玉米丝释放到早期填充阶段,并在玉米早期灌装阶段增加,这种有效协调了早期和晚期阶段的跨性间的水需求矛盾。与CTI相比,NTMI2治疗改善了12.4-17.2%的WUE。改善的作物产量和WUE归因于协调的水竞争和补偿,土壤蒸发和E / ET降低。

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