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The noteworthy chloride ions in reclaimed water: Harmful effects, concentration levels and control strategies. | LitMetric

The noteworthy chloride ions in reclaimed water: Harmful effects, concentration levels and control strategies.

Water Res

Environmental Simulation and Pollution Control State Key Joint Laboratory, State Environmental Protection Key Laboratory of Microorganism Application and Risk Control (SMARC), School of Environment, Tsinghua University, Beijing 100084, PR China; Beijing Laboratory for Environmental Frontier Technologies, Beijing 100084, PR China; Research Institute for Environmental Innovation (Suzhou), Tsinghua, Jiangsu, Suzhou, 215163, PR China.

Published: May 2022

AI Article Synopsis

  • Chloride ions in reclaimed water can create issues in water reuse systems, particularly during transmission and usage.
  • Although reverse osmosis is effective at reducing chloride levels, its high costs and maintenance challenges limit its widespread adoption in water reclamation plants.
  • The review explores various chloride removal technologies, including both non-selective and selective methods, highlighting promising options like Friedel's salt precipitation and capacitive deionization, while suggesting a comprehensive approach to improve chloride management in water reuse efforts.

Article Abstract

Chloride ions (Cl), which are omnipresent in reclaimed water, can cause various problems in water reuse systems, especially during water transmission and at end use sites. Although reverse osmosis (RO) is considered as an effective technology to reduce chloride, its high investment and complex maintenance requirements hinder its application in many water reclamation plants (WRPs). Recently, several technologies bringing new options to better deal with chloride have gained increased attention. This review provides detailed information on the harmful effects, concentration levels, and sources of chloride in reclaimed water and summarizes and discusses various chloride removal technologies, including non-selective methods (e.g., membrane filtration, adsorption and ion exchange, oxidation, and electrochemical methods) and selective methods (e.g. precipitation and specially designed electrochemical methods). Among these, Friedel's salt precipitation and capacitive deionization showed attractive development potential. This review also proposes a holistic framework for chloride control from aspects of "Fit-for-Purpose" planning, technical system development, and whole process optimization, which could facilitate the planning and operation of long-term sustainable water reuse practices.

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Source
http://dx.doi.org/10.1016/j.watres.2022.118271DOI Listing

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