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Partial rootzone irrigation increases water use efficiency, maintains yield and enhances economic profit of cotton in arid area

机译:局部根区灌溉提高了干旱地区棉花的水分利用效率,保持了产量并提高了其经济效益

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Partial rootzone irrigation (PRI) can substantially reduce irrigation amount and has been demonstrated as a promising irrigation method for crops in arid or semiarid areas. Many earlier researches have shown that PRI reduces leaf transpiration by narrowing stomatal opening. In this study we verified the hypothesis that PRI can also save irrigation water by substantially reducing soil evaporation. Field experiment was conducted in an arid area where cotton production almost completely relies on irrigation. Water was applied to furrows in the cotton field either alternatively (AFI, alternative furrow irrigation), or evenly to all the furrows (CFI, conventional furrow irrigation), or to one fixed furrow in every two (FFI, fixed furrow irrigation). Our results show that surface evaporation constitutes a large fraction of the irrigation water loss from cropped field (more than 20%), and with the two PRI treatments nearly 40% of the evaporative water loss is saved. Transpiration accounted for 48%, 58% and 57% of the total amount of irrigation respectively for the CFI, AFI and FFI treatments. This result suggests that PRI increases the proportion of applied water that is transpired, and therefore leads to a higher water use efficiency than regular irrigation. Overall, when irrigation was reduced by 30%, the average final yield loss of AFI was only 4.44%, a non-significant reduction statistically. The FFI had a significant reduction in yield of 12.01% in comparison to CFI. Moreover, PRI brings in earlier flowering and a higher economical return due to early harvested cotton. This indicates that the final economical output could compensate for the loss of cotton yield due to water-saving. With very little extra cost to implementation. PRI proves a very promising method in cotton production in arid zone
机译:根系局部灌溉(PRI)可以大大减少灌溉量,并且已被证明是一种在干旱或半干旱地区作物的有前途的灌溉方法。许多早期研究表明,PRI通过缩小气孔开口来减少叶片的蒸腾作用。在这项研究中,我们验证了PRI还可以通过大大减少土壤蒸发来节省灌溉用水的假设。在干旱地区进行田间试验,该地区的棉花生产几乎完全依赖灌溉。在棉花田中,可替代地(AFI,替代性垄沟灌溉)或全部灌溉(CFI,常规垄沟灌溉)或每两个固定垄沟(FFI,固定性垄沟灌溉)中的水被灌溉。我们的结果表明,地表蒸发构成了农田灌溉水损失的很大一部分(超过20%),并且通过两种PRI处理,可以节省近40%的蒸发水损失。 CFI,AFI和FFI处理的蒸腾量分别占灌溉总量的48%,58%和57%。该结果表明,PRI增加了所施用的水的比例,因此比常规灌溉具有更高的用水效率。总体而言,当灌溉量减少30%时,AFI的平均最终产量损失仅为4.44%,在统计学上无明显下降。与CFI相比,FFI的产量大幅降低了12.01%。此外,由于棉花早期收获,PRI带来了更早的开花和更高的经济回报。这表明最终的经济产出可以弥补因节水造成的棉花产量损失。几乎没有额外的实施成本。 PRI被证明是干旱地区棉花生产中非常有前途的方法

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