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利用新型可渗透反应格栅技术对垃圾渗滤液污染地下水过程作用研究
引用本文:崔海炜,孙继朝*,张英,温吉利,吕晓立,王金翠,张玉玺.利用新型可渗透反应格栅技术对垃圾渗滤液污染地下水过程作用研究[J].生态环境,2012(8):1457-1461.
作者姓名:崔海炜  孙继朝*  张英  温吉利  吕晓立  王金翠  张玉玺
作者单位:中国地质科学院水文地质环境地质研究所,河北 石家庄 050061
基金项目:中国地质科学院水文地质环境地质研究所基本科研业务费专项经费资助(SK200902); 中国地质调查局西北地区主要城市地下水污染调查评价(G201106)
摘    要:以垃圾渗滤液污染地下水为研究对象,选择沸石、无烟煤、陶粒、活性炭、炉渣、粉煤灰、零价铁、石英砂作为填充材料,设计7种地下可渗透反应格栅(PRB),分别为反应器1、2、3、4、5、6和7。通过连续实验模拟,对PRB技术治理污染地下水的可行性和有效性进行研究,监测反应器处理效果,分别7种反应器内流速、EC、Cl-的变化及对污染物去除效果及其影响进行分析,探索污染物去除机理。结果显示,反应器水渗流速度在80-150 cm.d-1情况下,对COD去除率为82.22%-88.88%,对Cl-去除率为-0.20%-1.68%,对色度去除率为36.38%-71.86%,表明利用新型PRB技术防控渗滤液污染地下水是可行的,但仍有些技术问题有待深入研究。

关 键 词:可渗透反应墙(PRB)  垃圾渗滤液  地下水  填充材料  原位处理

The remediation of leachate-polluted groundwater with permeable reactive barrier technology
CUI Haiwei,SUN Jichao,ZHANG Ying,WEN JIli,LV Xiaoli,WANG Jincui,ZHANG Yuxi.The remediation of leachate-polluted groundwater with permeable reactive barrier technology[J].Ecology and Environmnet,2012(8):1457-1461.
Authors:CUI Haiwei  SUN Jichao  ZHANG Ying  WEN JIli  LV Xiaoli  WANG Jincui  ZHANG Yuxi
Institution:Institute of Hydrogeology and Environmental Geology, CAGS, Shijiazhuang 050061, China
Abstract:In this paper seven reaction media zero valent iron (ZVI), activated carbon, zeolites, ceramsite, slag, anthracite, flyash were used to design seven kinds of permeable reactive barrier (PRB), viz. reactors 1, 2, 3, 4, 5, 6 and 7. The feasibility and the efficiency of the PRB technology in the remediation of leachate-polluted groundwater were studied by successive experimental simulation. The removal effects to the pollutant of the reactors along with the variation of flow velocity,EC and C1- were analysed to explore the removal mechanism. The results indicated that the COD, CI and chroma removal ratios were from 82.22%-88.11%, 89.31%-93.65%, and 36.38%-71.86% respectively in case that the seepage velocity were from 80-150 cm.d-1. It can be indicated that PRB technology is an efficient method for the treatment of leachate-contaminated groundwater, though it is expected to do further research.
Keywords:permeable reactive barrier (PRB)  leachate  ground water  filling materials  in-situ remediation
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