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A review of the management and treatment of brine solutions

机译:盐溶液的管理和处理回顾

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There has been a considerable expansion in the use of desalination plants for supplying potable water to many communities in the world. However, the production of brine, which is known to be a concentrated solution, is an integral part of the operation of the desalination plant, which faces critical environmental challenges because of its high salinity. Therefore, a cost-effective and environmentally benign brine management system is required prior to its proper disposal. Currently, several disposal options including surface water discharge, deep well injection, and evaporation ponds have been used. However, these processes are unsustainable and their use is limited by a high capital cost and limited applications. Various conventional treatments including physicochemical, oxidation and biological processes with varying extents of organics removal have been reported. Nowadays, membrane-based technologies appear to be cost-effective methods for managing brine concentrate as they can recover valuable resources and produce clean water with high recovery. This paper critically reviews current technologies for concentrate management, including disposal practices and treatment processes. The characteristics of the brine in terms of water quality and its impact on open water bodies are discussed. This paper examines emerging membrane processes such as forward osmosis, membrane distillation, and electrodialysis that show promise for minimizing brine volume, in recovering valuable resources and improvement of water recovery. This paper also discusses the fact that integrated membrane processes are better for brine management for resource recovery together with water purification in wastewater treatment facilities and can achieve a zero liquid discharge.
机译:海水淡化厂为世界上许多社区提供饮用水的用途已大大扩展。但是,盐水的生产(被称为浓缩溶液)是海水淡化厂运行不可或缺的一部分,由于其高盐度,海水淡化厂面临着严峻的环境挑战。因此,在正确处置之前,需要一种经济高效且对环境无害的盐水管理系统。当前,已经使用了多种处理方式,包括地表水排放,深井注入和蒸发池。然而,这些方法是不可持续的,并且其使用受到高昂的资金成本和有限的应用的限制。已经报道了各种常规处理,包括物理化学,氧化和生物过程,其去除有机物的程度不同。如今,基于膜的技术似乎是管理盐水浓缩物的经济有效的方法,因为它们可以回收宝贵的资源并以高回收率生产清洁水。本文严格审查了当前的精矿管理技术,包括处置方法和处理过程。讨论了盐水在水质方面的特性及其对开放水域的影响。本文研究了新兴的膜工艺,例如正渗透,膜蒸馏和电渗析,这些工艺显示出有望最大程度地减少盐水量,回收宝贵资源并改善水回收率。本文还讨论了以下事实:集成膜工艺更适合盐水管理,以实现资源回收以及废水处理设施中的水净化,并且可以实现零液体排放。

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