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Transport of titanium dioxide nanoparticles in saturated porous media under various solution chemistry conditions

机译:在各种溶液化学条件下,二氧化钛纳米粒子在饱和多孔介质中的迁移

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摘要

Because of its wide applications, nanosized titanium dioxide may become a potential environmental risk to soil and groundwater system. It is therefore important to improve current understanding of the environmental fate and transport of titanium oxides nanoparticles (TONPs). In this work, the effect of solution chemistry (i.e., pH, ionic strength, and natural organic matter (NOM) concentration) on the deposition and transport of TONPs in saturated porous media was examined in detail. Laboratory columns packed with acid-cleaned quartz sand were used in the experiment as porous media. Transport experiments were conducted with various chemistry combinations, including four ionic strengths, three pH levels, and two NOM concentrations. The results showed that TONP mobility increased with increasing solution pH, but decreased with increasing solution ionic strength. It is also found that the presence of NOM in the system enhanced the mobility of TONPs in the saturated porous media. The Derjaguin-Landau-Verwey-Overbeek (DLVO) theory was used to justify the mobility trends observed in the experimental data. Predictions from the theory agreed excellently with the experimental data.
机译:由于其广泛的用途,纳米级的二氧化钛可能成为土壤和地下水系统的潜在环境风险。因此,重要的是提高当前对钛氧化物纳米颗粒(TONPs)的环境命运和运输的理解。在这项工作中,详细研究了溶液化学性质(即pH值,离子强度和天然有机物(NOM)浓度)对TONP在饱和多孔介质中的沉积和运输的影响。实验中使用装有酸洗石英砂的实验室色谱柱作为多孔介质。使用各种化学组合进行运输实验,包括四种离子强度,三种pH值和两种NOM浓度。结果表明,TONP迁移率随溶液pH值的增加而增加,但随溶液离子强度的增加而降低。还发现系统中NOM的存在增强了TONP在饱和多孔介质中的迁移率。 Derjaguin-Landau-Verwey-Overbeek(DLVO)理论用于证明实验数据中观察到的迁移率趋势合理。该理论的预测与实验数据非常吻合。

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