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电化学离子交换再生和流化床结晶用于零液排放水软化。

Electrochemical Ion-Exchange Regeneration and Fluidized Bed Crystallization for Zero-Liquid-Discharge Water Softening.

机构信息

Department of Chemical and Environmental Engineering University of Arizona , Tucson, Arizona 85721, United States.

出版信息

Environ Sci Technol. 2016 Jun 7;50(11):5900-7. doi: 10.1021/acs.est.5b05606. Epub 2016 May 17.

Abstract

This research investigated the use of an electrochemical system for regenerating ion-exchange media and for promoting the crystallization of hardness minerals in a fluidized bed crystallization reactor (FBCR). The closed-loop process eliminates the creation of waste brine solutions that are normally produced when regenerating ion-exchange media. A bipolar membrane electrodialysis stack was used to generate acids and bases from 100 mM salt solutions. The acid was used to regenerate weak acid cation (WAC) ion-exchange media used for water softening. The base solutions were used to absorb CO2 gas and to provide a source of alkalinity for removing noncarbonate hardness by WAC media operated in H(+) form. The base solutions were also used to promote the crystallization of CaCO3 and Mg(OH)2 in a FBCR. The overall process removes hardness ions from the water being softened and replaces them with H(+) ions, slightly decreasing the pH value of the softened water. The current utilization efficiency for acid and base production was ∼75% over the operational range of interest, and the energy costs for producing acids and bases were an order of magnitude lower than the costs for purchasing acid and base in bulk quantities. Ion balances indicate that the closed-loop system will accumulate SO4(2-), Cl(-), and alkali metal ions. Acid and base balances indicate that for a typical water, small amounts of base will be accumulated.

摘要

本研究调查了电化学系统在流化床结晶反应器 (FBCR) 中再生离子交换介质和促进硬度矿物结晶的应用。该闭环过程消除了在再生离子交换介质时通常产生的废盐水溶液的产生。使用双极膜电渗析堆栈从 100mM 盐溶液中生成酸和碱。酸用于再生用于水软化的弱酸阳离子 (WAC) 离子交换介质。碱溶液用于吸收 CO2 气体,并通过 WAC 介质在 H+形式下提供去除非碳酸盐硬度的碱度来源。碱溶液还用于促进 FBCR 中 CaCO3 和 Mg(OH)2 的结晶。该过程从被软化的水中去除硬度离子,并用 H+离子代替它们,使软化水的 pH 值略有降低。在感兴趣的操作范围内,酸和碱的电流利用率约为 75%,并且生产酸和碱的能源成本比大量购买酸和碱的成本低一个数量级。离子平衡表明,闭环系统将积累 SO4(2-)、Cl(-)和碱金属离子。酸碱平衡表明,对于典型的水,将积累少量的碱。

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