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**批判性评论**:未知水域?电力-水关系的未来。

Critical review: Uncharted waters? The future of the electricity-water nexus.

机构信息

Sonny Astani Department of Civil and Environmental Engineering, University of Southern California , 3620 S. Vermont Avenue, Los Angeles, California 90089-2531, United States.

出版信息

Environ Sci Technol. 2015 Jan 6;49(1):51-66. doi: 10.1021/es504293b. Epub 2014 Dec 22.

Abstract

Electricity generation often requires large amounts of water, most notably for cooling thermoelectric power generators and moving hydroelectric turbines. This so-called "electricity-water nexus" has received increasing attention in recent years by governments, nongovernmental organizations, industry, and academics, especially in light of increasing water stress in many regions around the world. Although many analyses have attempted to project the future water requirements of electricity generation, projections vary considerably due to differences in temporal and spatial boundaries, modeling frameworks, and scenario definitions. This manuscript is intended to provide a critical review of recent publications that address the future water requirements of electricity production and define the factors that will moderate the water requirements of the electric grid moving forward to inform future research. The five variables identified include changes in (1) fuel consumption patterns, (2) cooling technology preferences, (3) environmental regulations, (4) ambient climate conditions, and (5) electric grid characteristics. These five factors are analyzed to provide guidance for future research related to the electricity-water nexus.

摘要

发电通常需要大量的水,尤其是用于冷却热电发电机和移动水力涡轮机。近年来,政府、非政府组织、工业界和学术界越来越关注所谓的“电力-水纽带”,特别是考虑到世界上许多地区的水资源压力不断增加。尽管许多分析试图预测未来发电的用水需求,但由于时间和空间边界、建模框架和情景定义的差异,预测结果差异很大。本文旨在对近期有关电力生产未来用水需求的出版物进行批判性回顾,并确定将影响未来电网用水需求的因素,以为未来研究提供信息。确定的五个变量包括:(1)燃料消耗模式的变化;(2)冷却技术偏好;(3)环境法规;(4)环境气候条件;以及(5)电网特征。这五个因素的分析为未来与电力-水纽带相关的研究提供了指导。

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