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首页> 外文期刊>Environmental Science and Pollution Research >Investigations on mobility of carbon colloid supported nanoscale zero-valent iron (nZVI) in a column experiment and a laboratory 2D-aquifer test system
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Investigations on mobility of carbon colloid supported nanoscale zero-valent iron (nZVI) in a column experiment and a laboratory 2D-aquifer test system

机译:在柱实验和实验室二维含水层测试系统中研究碳胶体负载的纳米零价铁(nZVI)的迁移率

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Nanoscale zero-valent iron (nZVI) has recently gained great interest in the scientific community as in situ reagent for installation of permeable reactive barriers in aquifer systems, since nZVI is highly reactive with chlorinated compounds and may render them to harmless substances. However, nZVI has a high tendency to agglomerate and sediment; therefore it shows very limited transport ranges. One new approach to overcome the limited transport of nZVI in porous media is using a suited carrier colloid. In this study we tested mobility of a carbon colloid supported nZVI particle "Carbo-Iron Colloids" (CIC) with a mean size of 0.63 xm in a column experiment of 40 cm length and an experiment in a two-dimensional (2D) aquifer test system with dimensions of 110x40x5 cm. Results show a breakthrough maximum of 82 % of the input concentration in the column experiment and 58 % in the 2D-aquifer test system. Detected residuals in porous media suggest a strong particle deposition in the first centimeters and few depositions in the porous media in the further travel path. Overall, this suggests a high mobility in porous media which might be a significant enhancement compared to bare or polyanionic stabilized nZVI.
机译:纳米级零价铁(nZVI)作为在含水层系统中安装可渗透反应性屏障的原位试剂,最近在科学界引起了极大兴趣,因为nZVI与氯化物具有很高的反应性,并且可能使它们变成无害物质。但是,nZVI有很高的凝聚和沉淀趋势。因此,它的运输范围非常有限。克服nZVI在多孔介质中有限运输的一种新方法是使用合适的载体胶体。在这项研究中,我们在40 cm长的柱实验和二维(2D)含水层实验中测试了碳胶负载的nZVI颗粒“ Carbo-Iron Colloids”(CIC)的迁移率,平均粒径为0.63 xm尺寸为110x40x5厘米的测试系统。结果显示,在柱实验中,最大突破浓度为输入浓度的82%,在2D含水层测试系统中为58%。在多孔介质中检测到的残留物表明,在第一厘米处有很强的颗粒沉积,而在进一步的行进路径中,在多孔介质中几乎没有沉积。总的来说,这表明在多孔介质中的高迁移率与裸或聚阴离子稳定的nZVI相比可能是显着的增强。

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