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Distillation vs. membrane filtration: overview of process evolutions in seawater desalination

机译:蒸馏与膜过滤:海水淡化过程演变概述

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The worldwide need for fresh water requires more and more plants for the treatment of non-conventional water sources. During the last decades, seawater has become an important source of fresh water in many arid regions. The traditional desalination processes [reverse osmosis (RO), multi stage flash (MSF), multi effect distillation (MED), electrodialysis (ED)] have evoluated to reliable and established processes; current research focuses on process improvements in view of a lower cost and a more environmentally friendly operation.This paper provides an overview of recent process improvements in seawater desalination using RO, MSF, MED and ED.Important topics that are discussed include the use of alternative energy sources (wind energy, solar energy, nuclear energy) for RO or distillation processes, and the impact of the different desalination process on the environment; the implementation of hybrid processes in seawater desalination; pretreatment of desalination plants by pressure driven membrane processes (microfiltration, ultrafiltration and nanofiltration) compared to chemical pretreatment; new materials to prevent corrosion in distillation processes; and the prevention of fouling in reverse osmosis units. These improvements contribute to the cost effectiveness of the desalination process, and ensure a sustainable production of drinking water on long terms in regions with limited reserves of fresh water.
机译:全球对淡水的需求需要越来越多的植物来处理非常规水源。在过去的几十年中,海水已成为许多干旱地区的重要淡水来源。传统的脱盐工艺[反渗透(RO),多级闪蒸(MSF),多效蒸馏(MED),电渗析(ED)]已发展为可靠的既定工艺;当前的研究着眼于降低成本和更环保的操作的过程改进。本文概述了使用RO,MSF,MED和ED进行海水淡化的最新过程改进,讨论的重要主题包括替代方法的使用。用于反渗透或蒸馏过程的能源(风能,太阳能,核能),以及不同的淡化过程对环境的影响;在海水淡化中实施混合工艺;与化学预处理相比,通过压力驱动的膜工艺(微滤,超滤和纳滤)对海水淡化厂进行预处理;防止蒸馏过程中腐蚀的新材料;并防止反渗透装置结垢。这些改进有助于淡化工艺的成本效益,并确保在淡水储量有限的地区长期可持续地生产饮用水。

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