School of Chemical Engineering, National Technical University of Athens, 9 Iroon Polytechniou St., Zografou, 15780 Athens, Greece.
School of Chemical Engineering, National Technical University of Athens, 9 Iroon Polytechniou St., Zografou, 15780 Athens, Greece.
Mar Pollut Bull. 2020 Dec;161(Pt B):111773. doi: 10.1016/j.marpolbul.2020.111773. Epub 2020 Oct 28.
Desalination is perceived as an effective and reliable process for obtaining freshwater from aqueous saline solutions such as brackish water, seawater and brine. This can be clarified by the fact that >300 million people worldwide rely on desalinated water for their daily needs. Although the desalination process offers many advantages, there are rising concerns about possible adverse environmental impacts. Generally, environmental impacts can be generated both in the construction and operation of desalination plants. A major issue of desalination is the co-produced waste called 'brine' or 'reject' which has a high salinity along with chemical residuals and is discharged into the marine environment. In addition to brine, other main issues are the high energy consumption of the desalination and brine treatment technologies as well as the air pollution due to emissions of greenhouse gasses (GHGs) and air pollutants. Other issues include entrainment and entrapment of marine species, and heavy use of chemicals. The purpose of this review is to analyze the potential impacts of desalination and brine treatment on the environment and suggest mitigation measures.
海水淡化被认为是从咸水如海水、咸水和盐水等水溶液中获取淡水的有效且可靠的方法。这可以通过以下事实得到澄清:全世界有超过 3 亿人依赖淡化水来满足他们的日常需求。尽管海水淡化过程有许多优点,但人们越来越担心可能对环境造成不利影响。一般来说,海水淡化厂的建设和运行都会产生环境影响。海水淡化的一个主要问题是副产的高盐度“盐水”或“废物”,其中含有化学残留物,并排放到海洋环境中。除了盐水,其他主要问题还有海水淡化和盐水处理技术的高能耗,以及温室气体(GHG)和空气污染物排放造成的空气污染。其他问题包括海洋物种的夹带和捕获,以及大量使用化学品。本综述的目的是分析海水淡化和盐水处理对环境的潜在影响,并提出缓解措施。