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Renewable and sustainable approaches for desalination

机译:可再生和可持续的海水淡化方法

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Freshwater and energy are essential commodities for well being of mankind. Due to increasing population growth on the one hand, and rapid industrialization on the other, today's world is facing unprecedented challenge of meeting the current needs for these two commodities as well as ensuring the needs of future generations. One approach to this global crisis of water and energy supply is to utilize renewable energy sources to produce freshwater from impaired water sources by desalination. Sustainable practices and innovative desalination technologies for water reuse and energy recovery (staging, waste heat utilization, hybridization) have the potential to reduce the stress on the existing water and energy sources with a minimal impact to the environment. This paper discusses existing and emerging desalination technologies and possible combinations of renewable energy sources to drive them and associated desalination costs. It is suggested that a holistic approach of coupling renewable energy sources with technologies for recovery, reuse, and recycle of both energy and water can be a sustainable and environment friendly approach to meet the world's energy and water needs. High capital costs for renewable energy sources for small-scale applications suggest that a hybrid energy source comprising both grid-powered energy and renewable energy will reduce the desalination costs considering present economics of energy.
机译:淡水和能源是人类福祉必不可少的商品。由于一方面人口增长,另一方面工业化迅速发展,当今世界在满足当前对这两种商品的需求以及确保子孙后代的需求方面面临着前所未有的挑战。解决全球水和能源供应危机的一种方法是利用可再生能源通过脱盐从受损的水源中生产淡水。用于水的再利用和能量回收(分段,余热利用,混合)的可持续实践和创新的脱盐技术有可能减少对现有水和能源的压力,而对环境的影响最小。本文讨论了现有和新兴的海水淡化技术以及可再生能源的可能组合,以驱动它们以及相关的海水淡化成本。有人建议,将可再生能源与能源和水的回收,再利用和再循环技术结合起来的整体方法可以是满足世界能源和水需求的可持续和环境友好方法。用于小规模应用的可再生能源的高资本成本表明,考虑到目前的能源经济性,同时包含电网供电的能源和可再生能源的混合能源将降低海水淡化成本。

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