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Individual and Co Transport Study of Titanium Dioxide NPs and Zinc Oxide NPs in Porous Media

机译:多孔介质中二氧化钛纳米粒子和氧化锌纳米粒子的个体和共迁移研究

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摘要

The impact of pH and ionic strength on the mobility (individual and co-transport) and deposition kinetics of TiO2 and ZnO NPs in porous media was systematically investigated in this study. Packed column experiments were performed over a series of environmentally relevant ionic strengths with both NaCl (0.1−10 mM) and CaCl2 (0.01–0.1mM) solutions and at pH 5, 7, and 9. The transport of TiO2 NPs at pH 5 was not significantly affected by ZnO NPs in solution. At pH 7, a decrease in TiO2 NP transport was noted with co-existence of ZnO NPs, while at pH 9 an increase in the transport was observed. At pH 5 and 7, the transport of ZnO NPs was decreased when TiO2 NPs was present in the solution, and at pH 9, an increase was noted. The breakthrough curves (BTC) were noted to be sensitive to the solution chemistries; the decrease in the breakthrough plateau with increasing ionic strength was observed under all examined pH (5, 7, and 9). The retention profiles were the inverse of the plateaus of BTCs, as expected from mass balance considerations. Overall, the results from this study suggest that solution chemistries (ionic strength and pH) are likely the key factors that govern the individual and co-transport behavior of TiO2 and ZnO NPs in sand.
机译:本研究系统地研究了pH和离子强度对TiO2和ZnO NPs在多孔介质中的迁移率(单个和共迁移)和沉积动力学的影响。使用NaCl(0.1-10 mM)和CaCl2(0.01-0.1mM)溶液以及pH 5、7和9在一系列与环境相关的离子强度下进行填充柱实验。不受溶液中ZnO NP的明显影响。在pH值为7时,发现ZnO NPs共存时TiO2 NP的传输减少,而在pH值为9时,观察到传输的增加。当溶液中存在TiO2 NPs时,在pH 5和7时ZnO NPs的运输减少,而在pH 9时,ZnO NPs的运输增加。穿透曲线(BTC)被认为对溶液化学性质敏感。在所有测试的pH(5、7和9)下,观察到随着离子强度的增加,突破平台的减少。从质量平衡考虑,保留曲线是BTC平稳期的倒数。总体而言,这项研究的结果表明,溶液的化学性质(离子强度和pH值)可能是控制砂中TiO2和ZnO NP的个体和共迁移行为的关键因素。

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