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Reduce blue water scarcity and increase nutritional and economic water productivity through changing the cropping pattern in a catchment

机译:通过在集水区内改变种植模式来减少蓝水资源稀缺,提高营养和经济水生产率

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摘要

Water-stressed countries need to plan their food security and reduce the pressure on their limited water resources. Agriculture, the largest water-using sector, has a major role in addressing water scarcity and food security challenges. While there has been quite some attention to water management solutions like soil mulching and improved irrigation, less attention has been paid to adapting the cropping pattern to save water. Here, we investigate how a change in which crops are grown where and when can influence the green and blue water footprint (WF) of crop production, save blue water, reduce blue water scarcity and increase both food and cash crop production, using FAO's AquaCrop model. The performance of two potential solutions, first a strategy of mulching plus drip irrigation, and second a strategy with changing the cropping pattern in addition to mulching and drip irrigation, were compared in one of the most water-stressed catchments in the world, the Upper Litani Basin in Lebanon. Our results show a substantial potential for more efficient use of green water resources for food production while saving scarce blue water resources. Whereas mulching and drip irrigation together decrease the blue WF in the basin by 4.5%, changing the cropping pattern as well can decrease it by 20.3%. Food and cash production could increase by 3% and 50% by changing the cropping pattern, compared to 1.5% and 2.1% by mulching and drip irrigation. Changing the cropping pattern could thus significantly reduce water scarcity and enlarge food and cash production in the basin.
机译:水强调国家需要规划他们的粮食安全,减少其有限的水资源的压力。农业是最大的水分部门,在解决水资源稀缺和粮食安全挑战方面具有重要作用。虽然有很重要的水管理解决方案,如土壤覆盖和改善的灌溉,但仍有较少的关注来调整种植模式以节省水。在这里,我们调查如何在粮农组织的水上生产,节省蓝色水中的绿色和蓝色水占地面积(WF),减少大量水资源稀缺,增加粮农组织的水资源稀少,减少蓝水资源稀缺,增加粮农组织的水资源稀缺模型。两种潜在解决方案的性能,首先是覆盖加滴灌的策略,以及除了覆盖和滴灌的过程之外,在世界上最省油的集水区之一比较了除了覆盖和滴灌灌溉之外的第二种策略。 Litani盆地在黎巴嫩。我们的结果表明,更有效地利用绿色水资源进行食品生产的潜力,同时节省了稀缺的蓝水资源。虽然覆盖和滴灌灌溉在一起将盆中的蓝色WF减少4.5%,但也可以将其降低20.3%。通过改变种植模式,食品和现金产量可能会增加3%和50%,通过覆盖和滴灌灌溉量为1.5%和2.1%。因此,改变种植模式可以显着降低水资源稀缺和放大盆地的食物和现金生产。

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