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Transport of carbon colloid supported nanoscale zero-valent iron in saturated porous media

机译:碳胶体负载的纳米零价铁在饱和多孔介质中的迁移

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Injection of nanoscale zero-valent iron (nZVI) has recently gained great interest as emerging technology for in-situ remediation of chlorinated organic compounds from groundwater systems. Zero-valent iron (ZVI) is able to reduce organic compounds and to render it to less harmful substances. The use of nanoscale particles instead of granular or microscale particles can increase dechlorination rates by orders of magnitude due to its high surface area. However, classical nZVI appears to be hampered in its environmental application by its limited mobility. One approach is colloid supported transport of nZVI, where the nZVI gets transported by a mobile colloid. In this study transport properties of activated carbon colloid supported nZVI (c-nZVI; d_(50) = 2.4 μm) are investigated in column tests using columns of 40 cm length, which were filled with porous media. A suspension was pumped through the column under different physicochemical conditions (addition of a polyanionic stabilizer and changes in pH and ionic strength). Highest observed breakthrough was 62% of the injected concentration in glass beads with addition of stabilizer. Addition of mono- and bivalent salt, e.g. more than 0.5 mM/L CaCl_2, can decrease mobility and changes in pH to values below six can inhibit mobility at all. Measurements of colloid sizes and zeta potentials show changes in the mean particle size by a factor of ten and an increase of zeta potential from - 62 mV to - 80 mV during the transport experiment. However, results suggest potential applicability of c-nZVI under field conditions.
机译:纳米级零价铁(nZVI)的注入最近引起了人们的极大兴趣,这是一种新兴技术,可从地下水系统中现场修复氯化有机物。零价铁(ZVI)能够还原有机化合物并使之成为危害较小的物质。由于其高表面积,使用纳米级颗粒代替颗粒或微米级颗粒可以将脱氯速率提高几个数量级。但是,经典的nZVI似乎由于其有限的移动性而在其环境应用中受到阻碍。一种方法是胶体支持的nZVI转运,其中nZVI通过移动胶体转运。在这项研究中,活性炭胶体负载的nZVI(c-nZVI; d_(50)= 2.4μm)的传输特性在使用40 cm长的填充有多孔介质的色谱柱的柱试验中进行了研究。在不同的物理化学条件下(通过添加聚阴离子稳定剂以及改变pH和离子强度)将悬浮液泵送通过色谱柱。观察到的最高突破是添加稳定剂的玻璃珠注入浓度的62%。添加一价盐和二价盐,例如大于0.5 mM / L的CaCl_2,会降低迁移率,而将pH值更改为小于6的值完全可以抑制迁移率。胶体大小和zeta电位的测量结果表明,在运输实验过程中,平均粒径的变化幅度为十倍,并且zeta电位从-62 mV增加到-80 mV。但是,结果表明c-nZVI在野外条件下的潜在适用性。

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