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评估沸石岩阻隔层去除水中锌的性能影响因素。

Evaluation of factors affecting performance of a zeolitic rock barrier to remove zinc from water.

机构信息

Department of Earth and Environmental Sciences, Korea University, Anam-dong, Seongbuk-gu, Seoul 136-713, Republic of Korea.

出版信息

J Hazard Mater. 2010 Mar 15;175(1-3):224-34. doi: 10.1016/j.jhazmat.2009.09.153. Epub 2009 Oct 6.

Abstract

This study examined the factors affecting the performance of zeolitic rocks as reactive media in a permeable reactive barrier (PRB) used to remediate groundwater contaminated with Zn. Serial batch kinetic and sorption tests were conducted on zeolitic rock samples under a variety of conditions (i.e., reaction time, pH, initial Zn concentration, and particle size) using Zn(NO(3))(2).6H(2)O solutions. Serial column tests were also conducted on zeolitic rock samples at various flow rates. The removal of Zn increased approximately from 20-60 to 70-100% with increasing pH from 2 to 4 and decreasing initial Zn concentration from 434 to 5mg/L. Zn removal was not affected by the particle size, regardless of the zeolitic rock samples used in this study. The Zn removal increased approximately from 20-70 to 60-100% with increasing the cation exchange capacity (CEC) from 124.9 to 178.5meq/100g and increasing zeolite (i.e., clinoptilonite and mordenite) and montmorillonite contents from 53.7 to 73.2%. The results from the column and batch tests were comparable. Increasing the flow rate caused the earlier breakthrough of Zn (sorbing cation) and a rapid decrease in the concentration of Na, Ca, and Mg (desorbing cations). The hydraulic conductivities of the samples were unaffected by the particle size and mineral components.

摘要

本研究考察了沸石岩作为可渗透反应屏障(PRB)中反应介质的性能的影响因素,该 PRB 用于修复受 Zn 污染的地下水。采用 Zn(NO(3))(2).6H(2)O 溶液,在各种条件(反应时间、pH 值、初始 Zn 浓度和粒径)下对沸石岩样品进行了连续批式动力学和吸附试验。还在不同流速下对沸石岩样品进行了连续柱试验。随着 pH 值从 2 增加到 4,初始 Zn 浓度从 434 减少到 5mg/L,Zn 的去除率从 20-60%增加到 70-100%。无论使用哪种沸石岩样品,粒径都不会影响 Zn 的去除。随着阳离子交换容量(CEC)从 124.9 增加到 178.5meq/100g,沸石(斜发沸石和丝光沸石)和蒙脱石含量从 53.7 增加到 73.2%,Zn 的去除率从 20-70%增加到 60-100%。柱试验和批试验的结果相当。增加流速会导致 Zn(吸附阳离子)的较早穿透和 Na、Ca 和 Mg(解吸阳离子)浓度的快速下降。颗粒大小和矿物成分对样品的水力传导率没有影响。

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