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Evaluation of water use for bioenergy at different scales

机译:不同尺度生物能量的评价

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This perspective reviews water metrics for accounting total water demand to produce bioenergy at various spatial scales. Volumes of water abstracted, consumed, and altered are estimated to assess water requirements of a bioenergy product, providing useful tools for water resource management and planning at local, regional, and global scale. Blue-water use accounting, integrated over time and space, provides the most direct measurements of the effects of bioenergy production on freshwater allocation among various end-users, and on human and ecosystem health and well-being. Measurement of total water demand for crop evapotranspiration, which includes both blue and green water, communicates vital information of how land and water productivity supports/constrains bioenergy expansion, and helps identify potential areas to increase the productivity of agriculture through improved soil and water conservation, changes in crop choice, and improved crop management. Life-cycle water use accounting provides a useful comparison of water required for production and conversion of feedstock to various forms of energy, and opportunities to improve water use efficiency throughout the supply chain. In addition, life-cycle water use may be used to account for water use avoided as a result of displacement of products by coproducts of biofuel production; though these applications must be interpreted with caution. Local or regional conditions and the objective of the analysis at hand determine which water accounting metrics are most relevant and the relative importance of water use impact compared to other impacts, such as impacts to soil quality and biodiversity. (C) 2011 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:此透视评论用于在各种空间秤中生产总水需求的水指标。估计抽象,消耗和改变的水量估计,评估生物能源产品的水需求,为地方,区域和全球规模提供有用的水资源管理和规划工具。蓝水使用会计,集成时间和空间,提供了生物能源生产对各种最终用户淡水分配的影响最大的测量,以及人类和生态系统健康和福祉。散热量的总水需求的测量,包括蓝色和绿色水,传达了陆地和水生产率支持/限制生物能源扩张的重要信息,并有助于通过改善水土保持,识别潜在地区以提高农业的生产率,作物选择的变化,改进作物管理。生命周期用水量算法提供了对各种形式的能量生产和转换原料所需的水的有用比较,以及在整个供应链中改善水使用效率的机会。此外,由于生物燃料生产的副本,可以使用终身用水来解释用水量避免用水避免的用途;虽然这些应用程序必须谨慎解释。当地或区域条件以及手头的分析的目的决定了哪些水会计指标最相关,与其他影响相比,水使用的相对重要性,例如对土壤质量和生物多样性的影响。 (c)2011年化学工业协会和约翰瓦利&Sons,Ltd

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