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[利用可渗透反应墙介质修复铬污染地下水的实验研究]

[Experimental study on the remediation of chromium contaminated groundwater with PRB media].

作者信息

Zhu Wen-Hui, Dong Liang-Fei, Wang Xing-Run, Zhai Ya-Li

机构信息

School of Environmental & Safety Engineering, Changzhou University, Changzhou 213164, China.

出版信息

Huan Jing Ke Xue. 2013 Jul;34(7):2711-7.

Abstract

Due to the surface reaction between zero-valent iron and Cr(VI), iron cannot be fully utilized in the Fe(0)-Permeable Reactive Barrier(PRB), and the PRB is prone to compaction and blockage. In order to resolve these problems, iron powder coated with different polymer was tested in the treatment of chromium-polluted groundwater. Experimental results demonstrated that sodium alginate (SA) was the best package materials. According to analysis with FEI and EDX, pore structures were created by cross-linking of SA with Ca2+, in which a lot of attaching points exist, and through which Cr(VI) could react with interior iron powder. SA coating cast iron (SAC) and reduced iron (SAR) were tested in the treatment of chromium-polluted groundwater individually; the results showed that the removal efficiency of Cr( VI) by SAC was double that by SAR. After optimization of technology parameters of SAC, the Cr(VI) removal process follows the pseudo first-order kinetics. Based on dynamic experiments with SAC, Cr(VI)/Fe(0) was up to 32.25 mg x g(-1) and the PRB maintained high permeability coefficient (2.38 cm x s(-1)) after complete reaction. Compared with cast iron media is feasible in the remediation of chromium contaminated groundwater.

摘要

由于零价铁与Cr(VI)之间的表面反应,在零价铁渗透反应墙(PRB)中,铁不能得到充分利用,且该渗透反应墙容易压实和堵塞。为了解决这些问题,对涂覆不同聚合物的铁粉处理铬污染地下水进行了试验。实验结果表明,海藻酸钠(SA)是最佳的包裹材料。通过FEI和EDX分析可知,SA与Ca2+交联形成了孔隙结构,其中存在许多附着点,Cr(VI)可通过这些孔隙与内部铁粉发生反应。分别对海藻酸钠涂层铸铁(SAC)和还原铁粉(SAR)处理铬污染地下水进行了试验;结果表明,SAC对Cr(VI)的去除效率是SAR的两倍。对SAC的工艺参数进行优化后,Cr(VI)的去除过程符合准一级动力学。基于SAC的动态实验,Cr(VI)/Fe(0)高达32.25 mg x g(-1),完全反应后渗透反应墙保持较高的渗透系数(2.38 cm x s(-1))。与铸铁介质相比,其在修复铬污染地下水方面是可行的。

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