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Supplemental irrigation strategy for improving grain filling, economic return, and production in winter wheat under the ridge and furrow rainwater harvesting system

机译:在山脊和沟壑雨水收集系统下改善粮食灌装,经济回报和生产的补充灌溉策略

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The plastic-covered ridge and furrow rainwater harvesting (RFRH) system has been used widely to enhance crop productivity in the semiarid regions of China. We conducted a field study during 2015-2017 where the RFRH method was combined with deficit irrigation to decrease the irrigation water usage and improve the crop water productivity (CWP) and irrigation water productivity (IWP). Under the RFRH system, the amount of irrigation was reduced by half compared with that under traditional flat planting (TF) with border irrigation due to the effects of precipitation harvesting. Half of the deficit irrigation was supplied before wintering and the remaining half at the jointing stage. The following eight treatments were tested: RFRH system with 75 mm deficit irrigation (R-75 ), 37 mm irrigation (R-37), 18 mm irrigation (R-18 ), and 0 mm irrigation (R-0); TF cultivation with 150 mm irrigation (F-150 ), 75 mm irrigation (F-75), 37 mm irrigation (F-37), and 0 mm irrigation (F-0). The results showed that the irrigation volume doubled under conventional border irrigation but the soil water storage was greater under RFRH with deficit irrigation. The R-75 treatment resulted in significantly greater soil water storage, reduced evapotranspiration (44.2%), and a higher grain yield (14.6%), thereby increasing CWP (64.8%), ICWP (irrigation crop water productivity) (44.2%), and IWP (57.0%) compared with F-150. R-75 improved the biomass per plant, leaf area index, and net income for farmers (by 17.5%) compared with F-150. Thus, we recommend R-75 for decreasing the irrigation water usage and increasing the effective consumption of precipitation in semiarid regions.
机译:塑料覆盖的山脊和沟槽雨水收获(RFRH)系统已广泛用于增强中国半干旱地区的作物生产力。我们在2015 - 2017年进行了一个田间研究,其中RFRH方法与缺陷灌溉相结合,以降低灌溉用水量,提高作物水生产率(CWP)和灌溉水生产率(IWP)。在RFRH系统下,与传统平坦种植(TF)相比,灌溉量减少了一半,由于沉淀收获的影响,具有边框灌溉。在越冬之前提供一半的赤字灌溉,并在联合阶段的剩余一半。测试以下八种治疗方法:RFRH系统具有75毫米缺口灌溉(R-75),37 mm灌溉(R-37),18 mm灌溉(R-18)和0 mm灌溉(R-0);具有150 mm灌溉(F-150),75毫米灌溉(F-75),37 mm灌溉(F-37)和0 mm灌溉(F-0)的TF培养。结果表明,灌溉体积在常规边界灌溉下翻了一番,但土壤储水在带有缺陷灌溉的RFRH下更大。 R-75治疗导致土壤储水量明显更大,降低蒸散蒸腾(44.2%),籽粒产率更高(14.6%),从而增加CWP(64.8%),ICWP(灌溉作物水生产率)(44.2%),与F-150相比,IWP(57.0%)。 R-75与F-150相比,每株植物,叶面积指数和农民净收入(17.5%)改善生物质。因此,我们建议R-75降低灌溉用水量,并增加半干旱地区降水的有效消耗。

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