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Role of Virtual Water in Optimizing Water Resources Management in Jordan

机译:虚拟水在优化约旦水资源管理中的作用

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摘要

Role of virtual water (VW) in optimizing water resources management in Jordan, a far water-short country, was explored by calculating VW content of imported commodities and their costs. Feasibility of farming and water required to produce all crops growing in Jordan were evaluated using net return per unit volume of water and VW embedded in unit mass of production. The results of these analyses showed that there were regional differences in crop profitability and thus net return from unit volume of irrigation water. This was attributed to variations in agro-climatic zones punctuated by production and irrigation technologies and access to water resources. In this regard, opportunity cost of water should be considered when allocating water to different consumption sectors. Agricultural systems generating net profits less than an arbitrary limit of $1.0 m~(-3) of irrigation water and producing yield at water use efficiency of 50-60 m~3 ton~(-1) or more were viewed not feasible. The key challenge facing decision makers would be to ensure that the opportunity cost of water was incorporated into the analysis process when determining future cropping pattern. Such a cost of water should be combined with crop-embedded VW analysis and expected net return from unit volume of irrigation water. Therefore, water allocation mechanism (e.g. water market) need to be developed for more efficient water use than the commonly practiced farm quota. Optimization of the usage of the limited water resources can be envisaged by continuous imports of VW, especially that embedded in cereal, oil, meat, live animals and sugar. Appropriate amendment of water legislations and concerned institutions are encouraged to provide better guidelines to policy makers, water managers, extension and advisory services, water use associations and farmers. Optimization of water resources management could be based on contract farming to ensure that water allocation and cropping pattern respond to water scarcity. Furthermore, Jordan should concentrate on production and export of crops having low VW contents and high return per m~3.
机译:通过计算进口商品的大众含量及其成本,探讨了虚拟水在优化水资源管理中在约旦这个遥远缺水国家中的作用。使用每单位体积的净水收益和单位产量中所含的大众来评估生产约旦所有作物所需的农业和水的可行性。这些分析的结果表明,作物获利能力存在区域差异,因此灌溉水的单位体积净收益存在差异。这归因于农业气候区的变化,这些变化是由于生产和灌溉技术以及水资源的获取而造成的。在这方面,在将水分配给不同的消费部门时应考虑水的机会成本。认为农业系统产生的净利润低于灌溉水的任意限额$ 1.0 m〜(-3),并且在用水效率为50-60 m〜3 ton〜(-1)或更高时产生产量。决策者面临的主要挑战将是确保在确定未来的种植方式时将水的机会成本纳入分析过程。这样的水成本应与农作物嵌入的大众分析以及单位灌溉水量的预期净收益结合起来。因此,需要建立水资源分配机制(例如水市场),以比通常的农场配额更有效地利用水资源。可以通过不断进口大众,特别是嵌入谷物,油,肉,活动物和糖中的大众来设想对有限水资源的使用进行优化。鼓励对水法规和有关机构进行适当的修改,以便为决策者,水管理者,推广和咨询服务,用水协会和农民提供更好的指南。水资源管理的优化可以基于合同农业,以确保水资源分配和种植方式对缺水做出反应。此外,约旦应集中精力生产大众含量低,每m〜3的收益高的农作物。

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