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Evaluation of Physical and Economic Water-Saving Efficiency for Virtual Water Flows Related to Inter-Regional Crop Trade in China

机译:与区域间作物贸易有关的虚拟水流的物理和经济节水效率评估

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If products were traded from regions with relatively high water productivity to regions with relatively low water productivity, water saving could be achieved. In this study, two indices—physical water-saving efficiency (volume of water savings per cubic meter of virtual water flows) and economic water-saving efficiency (value of water savings per cubic meter of virtual water flows considering water right trading)—were proposed to analyze the efficiency of inter-regional virtual water flows related to crop trade in China. Results indicated that the volume of inter-regional virtual water flows was 1.61 × 10 9 m 3 , more than 90% of which was occupied by oil-bearing crops, cereals, and beans. In terms of physical efficiency, only cereals and vegetables presented negative values. All kinds of crop trades were economically efficient, while most crops’ economic water-saving efficiency was less than 10 × 10 3 Yuan/m 3 . The application of advanced water-saving technologies, the cultivation of new crop varieties, the adjustment of regional cropping patterns, or consumption and trade patterns, could contribute to more water savings and higher physical water-saving efficiency, while the possible social, economic, and environmental tradeoffs should be considered simultaneously. Water right trading and virtual water compensation could contribute to sustainable water consumption, and full-cost pricing should be adapted in the future.
机译:如果将产品从水生产率相对较高的区域交易到水生产率相对较低的区域,则可以实现节水。在这项研究中,两个指标分别是:物理节水效率(每立方米虚拟水流量的节水量)和经济节水效率(考虑水权交易的每立方米虚拟水流量的节水值)提出分析与中国作物贸易有关的区域间虚拟水流的效率。结果表明,区域间虚拟水流量为1.61×10 9 m 3,其中90%以上由含油作物,谷物和豆类占据。在物理效率方面,仅谷类和蔬菜呈现负值。各种农作物贸易都具有经济效益,而大多数农作物的经济节水效率不到10×10 3元/ m 3。先进节水技术的应用,新作物品种的种植,区域种植方式或消费和贸易方式的调整,可能有助于节水更多,节水效率更高,同时可能产生社会,经济,与环境之间的权衡应同时考虑。水权交易和虚拟水补偿可能有助于可持续的用水,未来应调整全价定价。

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