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Laboratory Study On Sequenced Permeable Reactive Barrier Remediation For Landfill Leachate-contaminated Groundwater

机译:垃圾渗滤液污染地下水的顺序渗透性反应屏障修复的室内研究

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Permeable reactive barrier (PRB) was a promising technology for groundwater remediation. Landfill leachate-polluted groundwater riches in various hazardous contaminants. Two lab-scale reactors (reactors A and B) were designed for studying the feasibility of PRB to remedy the landfill leachate-polluted groundwater. Zero valent iron (ZVI) and the mixture of ZVI and zeolites constitute the first section of the reactors A and B, respectively; the second section of two reactors consists of oxygen releasing compounds (ORCs). Experimental results indicated that BOD5/COD increased from initial 0.32 up to average 0.61 and 0.6 through reactors A and B, respectively. Removal efficiency of mixed media for pollutants was higher than that of single media (ZVI only). Zeolites exhibited selective removal of Zn, Mn, Mg, Cd, Sr, and NH_(4~+), and removal efficiency was 97.2%, 99.6%, 95.9%, 90.5% and 97.4%, respectively. The maximum DO concentration of reactors A and B were 7.64 and 6.78 mg/L, respectively, while the water flowed through the ORC Therefore, sequenced PRB system was effective and was proposed as an alternative method to remedy polluted groundwater by landfill leachate.
机译:渗透反应屏障(PRB)是用于地下水修复的有前途的技术。垃圾填埋场渗滤液污染的地下水富含各种有害污染物。设计了两个实验室规模的反应器(反应器A和B)来研究PRB修复垃圾渗滤液污染的地下水的可行性。零价铁(ZVI)和ZVI与沸石的混合物分别构成反应器A和B的第一部分;两个反应器的第二部分由释氧化合物(ORC)组成。实验结果表明,通过反应器A和B,BOD5 / COD从最初的0.32分别增加到平均0.61和0.6。混合介质对污染物的去除效率高于单一介质(仅ZVI)。沸石具有选择性去除Zn,Mn,Mg,Cd,Sr和NH_(4〜+)的能力,去除效率分别为97.2%,99.6%,95.9%,90.5%和97.4%。当水流经ORC时,反应器A和B的最大溶解氧浓度分别为7.64和6.78 mg / L。因此,顺序PRB系统是有效的,并被提议作为一种替代方法来解决垃圾渗滤液对地下水的污染。

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