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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Hybrid RED/ED system: Simultaneous osmotic energy recovery and desalination of high-salinity wastewater
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Hybrid RED/ED system: Simultaneous osmotic energy recovery and desalination of high-salinity wastewater

机译:混合红/德系统:同时渗透能量回收和高盐度废水的脱盐

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Reverse electro-dialysis (RED) is a potentially available technology to harvest salinity gradient power, which can be extracted from high-salinity wastewater in industrial processes. This study proposes a hybrid RED/ED system to simultaneous osmotic energy recovery and complete desalination in the phenol-containing wastewater treatment process. Experimental investigation on standalone ED system reveals that the high stack resistance, resulting from the salinity difference between both feed streams, accounts for the inefficient desalination performance in early stages, which implies potential implication of RED as a pre-desalination process with natural driving force to reduce the salinity difference. Pre-desalination rate is related to power generation in RED stage and energy saving in ED stage under optimal operation conditions. Compared with artificial seawater, greater power generation is produced by using phenol-containing wastewater as the high-salinity stream. Economic analysis suggests that average power generation and limiting wastewater treatment capacity can provide insightful guidelines for the design and improvement of the hybrid system. Control conditions are listed as a fundamental criterion to search for potentially applicable wastewater systems in the hybrid system. Therefore, hybrid RED/ED system can realize triplex advantages of salinity energy usage, high-valued resource reclamation, and low-energy desalination in high-salinity wastewater treatment processes. (C) 2016 Elsevier B.V. All rights reserved.
机译:反向电透析(红色)是一种潜在的用于收获盐度梯度功率的技术,可从工业过程中的高盐度废水中提取。本研究提出了一种杂种红/ ED系统,在含酚废水处理过程中同时渗透能量回收和完全脱盐。独立ED系统的实验研究表明,由于两种馈电物流之间的盐度差异,占早期阶段的低次脱盐性能所产生的高堆垛性,这意味着红色作为具有自然驱动力的预脱盐过程的潜在含义。降低盐度差异。在最佳运行条件下,预脱盐率与红色阶段的发电和节能阶段。与人造海水相比,通过使用含酚废水作为高盐度流来产生更大的发电。经济学分析表明,平均发电和限制废水处理能力可以为混合动力系统的设计和改进提供富有洞察力的准则。控制条件被列为基本标准,用于搜索混合动力系统中的潜在适用的污水系统。因此,混合红/ ED系统可以实现盐度能量使用,高价值资源回收和高盐度废水处理过程中的低能量脱盐的三重优势。 (c)2016 Elsevier B.v.保留所有权利。

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