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Water-energy nexus in Central Asia's lift irrigation schemes: Multi-level linkages

机译:中亚电梯灌溉计划中的水能Nexus:多层次联系

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Separating downstream agriculture from upstream hydropower in transboundary river basins complicates water management at the national level. The shift from hydropower to thermal power supply increases the competition for water between agriculture and energy generation, accelerates depletion of fossil energy resources, and increases greenhouse gas emissions. Because of the competition for scarce water between agriculture and energy generation, brackish groundwater irrigation has been explored as an option to cover the water deficit in Central Asia's lift irrigation zones. This study examines the combination of aquifer storage and recovery with drip irrigation to improve brackish groundwater quality in the Karshi Main Canal zone. In this zone, a cascade of sequential pump stations is used to lift water from the transboundary Amudarya River. The method used to evaluate the technology is a pilot-scale field study. The results show that wide-scale adoption of the technology can produce significant water (24%) and energy savings (19%), as well as reduced saline flows and emissions of greenhouse gases.
机译:将下游农业从跨界河流河盆地上游水电分离为国家一级的水管理。从水电转移到热电供应增加了农业和能源之间的水竞争,加速了化石能源的消耗,增加了温室气体排放。由于农业和能源生成之间的稀缺水竞争,德满的地下水灌溉被探索为涵盖中亚电梯灌溉区的水赤字的选择。本研究审查了含水层储存和回收与滴灌灌溉的结合,以提高卡西主运河区的咸水地下水质量。在该区域中,使用级联的顺序泵站用于从横向amudarya河中提取水。用于评估技术的方法是一项导频规模的现场研究。结果表明,该技术的广泛采用可产生显着的水(24%)和节能(19%),以及减少的盐水流量和温室气体排放。

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