4.7 Article

Environmental impact of desalination processes: Mitigation and control strategies

Journal

SCIENCE OF THE TOTAL ENVIRONMENT
Volume 740, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.scitotenv.2020.140125

Keywords

Environmental impact; Desalination; Mitigation and control; Membrane desalination; Thermal desalination; Emerging desalination

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Freshwater supplies are in shortage relative to the high demand for different human activities, making desalination of saline water a must. Desalination to extract water from saline water has been well established as a reliable non-conventional water supply. However, desalination as any human-based process has resulted in many impacts on the environment. Brine loaded with chemicals being discharged back to the environment, along with greenhouse gases (GHGs) emissions being released to the atmosphere, are the most significant impacts, which has been extensively studied, with some efforts given to its mitigation and control. The current work discusses the mitigation and control strategies (M&CS) to the different environmental impacts (Els) of desalination processes. The article compiles the M&CS in one work, instead of the distributed and separate treatment of the Els of each desalination step and its respective M&CS as currently present in literature. The article tracks the water flow in an intake-to-outfall approach exploring how to minimize the impacts at each step and as a whole process. This starts from intake, pretreatment processes, desalination technology, and finally, brine discharge. The Els associated with each desalination process element is thoroughly discussed with proposed M&CS. The work shows clearly that many Els can be eliminated or minimized by incorporating specific design criteria and process improvements. The feedwater source has shown to have a great effect on Els. Similarly, desalination technology has shown a considerable effect on the Els related to brine characteristics and energy consumption. Hybrid and emerging desalination systems have shown reduced Els relative to conventional thermal and membrane desalination technologies, while the utilization of renewable and waste energy sources has shown a significant reduction in Els related to energy consumption. (C) 2020 Elsevier B.V. All rights reserved.

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