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利用废水盐度梯度和反向电渗析堆开发无能源输入处理合成废水的工艺。

Development of a process for the treatment of synthetic wastewater without energy inputs using the salinity gradient of wastewaters and a reverse electrodialysis stack.

机构信息

Dipartimento di Ingegneria, Università̀; Degli Studi di Palermo, Palermo, 90128, Italy; Department of Chemical Engineering, Taiyuan University of Technology, Taiyuan, 030024, China.

Department of Chemical Engineering, Taiyuan University of Technology, Taiyuan, 030024, China.

出版信息

Chemosphere. 2020 Jun;248:125994. doi: 10.1016/j.chemosphere.2020.125994. Epub 2020 Jan 24.

Abstract

Electrochemical processes are considered very effective methods for the treatment of wastewater contaminated by organics resistant to conventional biological processes and various inorganic pollutants. Large sites that treat wastewaters usually deal with a large number of waters often characterized by different salinity contents, that could be potentially used to provide the energy necessary for the electrochemical remediation. Hence, in this work a reverse electrodialysis (RED) process for the treatment of synthetic wastewaters contaminated by organics, without energy inputs, using the salinity gradient of different wastewaters, was studied, for the first time. It was found that two synthetic wastewaters with different NaCl content can be effectively used in a RED system to drive anodic and cathodic processes for the removal of their organic contents without external energy supplies. The effects of salinity gradient, external resistance and set-up of the process was evaluated. Under optimized operating conditions, a fast and high removal of TOC (about 70% every hour) in the anodic compartment and a good stability of operating conditions for all the monitored time (10 h) were achieved. In addition, about 67% of the solution with high salinity used in the stack to provide the salinity gradient was effectively treated in the anodic compartment of the stack.

摘要

电化学过程被认为是处理有机物的废水的有效方法,这些有机物对传统的生物处理过程和各种无机污染物具有抗性。大型处理废水的场所通常会处理大量的水,这些水通常具有不同的盐度含量,这些水可以潜在地用于提供电化学修复所需的能量。因此,在这项工作中,首次研究了使用不同废水的盐度梯度,无需能量输入,通过反向电渗析(RED)过程处理受有机物污染的合成废水。结果发现,两种具有不同 NaCl 含量的合成废水可以有效地用于 RED 系统中,以驱动阳极和阴极过程,从而在没有外部能源供应的情况下去除其有机物含量。评估了盐度梯度、外部电阻和过程设置的影响。在优化的操作条件下,在阳极室中快速且高效地去除 TOC(每小时约 70%),并且在所有监测时间(10 小时)内都保持良好的操作条件稳定性。此外,在提供盐度梯度的堆栈中使用的高盐度溶液约有 67%有效地在堆栈的阳极室中得到处理。

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