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An overview of brine management: Emerging desalination technologies, life cycle assessment, and metal recovery methodologies

机译:盐水管理概述:新兴脱盐技术,生命周期评估和金属恢复方法

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摘要

This study examines which management methods are the most recent and advanced in managing rejected brine generated from desalination plants. It also provides up-to-date information regarding the most adequate technologies that generate a minimum quantity of rejected brine via the use of minimization techniques and analyzes the method of direct disposal that has lately received noticeable improvements. It further discusses the reuse of discarded brine to recover valuable goods and sequestration of carbon dioxide. Sustainability is an important parameter that needs consideration to achieve uninterrupted operation of the discarded brine management to achieve the least environmental, social, and economic aftermath. To properly deal with any environmental issues related to brine disposal, different methods are implemented so that, in the end, higher water recovery is achievable from the desalination processes, namely brine minimization and rejection technologies (pressure retarded osmosis, microbial desalination cell technology), membrane-based technologies (vibratory shear enhanced processing, forward osmosis, electrodialysis, electrodialysis reverse, and electrodialysis metathesis, pervaporation method, thermal-based technologies (wind-aided intensified evaporation, brine concentrators, ohmic evaporator, membrane distillation, multi-stage flash distillation. This review also critically examined the two conventional approaches commonly used in life cycle assessment (LCA), when evaluating the ecotoxic effect of discarded brine. It intends to discuss the currently available methods and propose an improved method for evaluating the toxicity potential of brine on the aquatic ecosystem originated from seawater desalination plants. The Group-by-Group method takes into consideration the demerits of the two methods of the traditional method of LCA or chemical-specific approach as it provides a more holistic coverage for complicated brine to be disposed of. Recently, attention has been focused on recovering valuable metals from the discharged concentrated brine waste. Certainly, attaining marketable products from the discharged concentrated brine would offer an economic benefit and reducing the whole desalination costs. Ion imprinting polymers have potential applications in metal recovery from brine. Finding selective, more efficient, and less expensive imprinted polymers for extraction/pre-concentration of valuable ions is a vital and challenging task. Lastly, the brine should be seen as a resource and not as a waste to attain sustainability in its management approaches. Hybrid processes would be highly recommended to get the absolute transformation of the discarded brine from desalination processes to more valuable constituents.
机译:本研究审查了哪些管理方法是管理从海水淡化厂产生的被拒绝的盐水中最新的管理方法。它还提供有关最新技术的最新信息,这些技术通过使用最小化技术产生最低数量的被拒绝的盐水,并分析了最近接受明显改进的直接处理方法。进一步讨论了废弃盐水的再利用,以回收有价值的商品和二氧化碳的封存。可持续性是一个重要的参数,需要考虑丢弃的盐水管理的不间断运作,以实现最不重要的环境,社会和经济的因素。为了妥善处理与盐水处理相关的任何环境问题,实施了不同的方法,以至于,从脱盐过程中可以实现更高的水质恢复,即盐水最小化和排斥技术(压力迟钝的渗透,微生物脱盐细胞技术),基于膜的技术(振动剪切增强加工,前渗透,电渗析,电渗析逆转,电渗透方法,热基技术(风辅助强化蒸发,盐水浓缩器,欧姆蒸发器,膜蒸馏,多级闪蒸蒸馏,多级闪蒸蒸馏。该综述还严重检查了在评估废弃盐水的生态毒性效果时常用于生命周期评估(LCA)的两种常规方法。它打算讨论目前可用的方法,并提出一种评估盐水毒性潜力的改进方法水生生态系统起源于海水淡化植物。逐个组方法考虑了传统的LCA或化学方法方法的两种方法的缺点,因为它为复杂的盐水提供了更全面的覆盖率。最近,注意力一直专注于从排放的浓缩盐水废物中恢复有价值的金属。当然,达到排放的集中盐水的可销售产品将提供经济效益并降低整个海水淡化成本。离子印迹聚合物具有从盐水中金属回收的潜在应用。寻找选择性,更高效,更便宜的压印聚合物用于提取/预浓度的有价值离子是一种重要和具有挑战性的任务。最后,盐水应该被视为资源,而不是浪费,以实现其管理方法的可持续性。将强烈建议将废弃盐水从脱盐过程中的绝对变换产生混合过程,以更有价值的成分。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第15期|112358.1-112358.21|共21页
  • 作者单位

    Department of Biological and Environmental Sciences College of Arts and Sciences Qatar University State of Qatar Doha 2713 Qatar;

    Department of Biological and Environmental Sciences College of Arts and Sciences Qatar University State of Qatar Doha 2713 Qatar;

    Department of Biological and Environmental Sciences College of Arts and Sciences Qatar University State of Qatar Doha 2713 Qatar;

    Waste Management Program Center for Sustainable Development College of Arts and Sciences Qatar University State of Qatar Doha 2713 Qatar;

    Department of Biological and Environmental Sciences College of Arts and Sciences Qatar University State of Qatar Doha 2713 Qatar;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reverse osmosis; Disposal; Sustainability; Environmental impacts; Water resources;

    机译:反渗透;处理;可持续性;环境影响;水资源;

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