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Modeling the transport of TiO2 nanoparticle aggregates in saturated and unsaturated granular media: Effects of ionic strength and pH

机译:模拟TiO2纳米颗粒聚集体在饱和和不饱和颗粒介质中的传输:离子强度和pH的影响

摘要

This study aims to explore the mechanisms governing the transport and retention kinetics of TiO2 nanoparticle aggregates (NPAs) in flow-through columns of packed sand, particularly under unsaturated conditions. The study was carried out at different pHs (2.6, 7.1, and 9.6) and ionic strengths (ISs) (1.0, 10, and 50 mM). A two-site kinetic attachment model was used to describe transport behaviors of TiO2 NPAs. At low ISs (i.e., 1.0 and 10 mM) and in neutral/alkaline conditions, high mobility of TiO2 NPAs was observed in both saturated and unsaturated conditions. However, the retention of TiO2 NPAs was substantially enhanced at the high IS (50 mM) and in extremely acidity condition (pH = 2.6), because of increased aggregation and straining of TiO2 NPAs during their transport course. The breakthrough curves (BTCs) of TiO2 NPAs under unsaturated and saturated conditions almost overlapped, suggesting that decreasing the water saturation did not enhance the retention of TiO2 NPAs in sand columns. This was probably due to the repulsive interactions existed between negatively charged air water and TiO2 NPAs systems that resulted in unfavorable attachment conditions. The two-site kinetic attachment model provided a good description for the BTCs of TiO2 NPAs both in saturated and unsaturated conditions. The fitted parameters could successfully explain the transport behaviors of TiO2 NPAs under various solution chemistries. (C) 2012 Elsevier Ltd. All rights reserved.
机译:这项研究旨在探索控制填充砂流过柱中TiO2纳米颗粒聚集体(NPA)的运输和保留动力学的机制,特别是在不饱和条件下。该研究是在不同的pH值(2.6、7.1和9.6)和离子强度(ISs)(1.0、10和50 mM)下进行的。使用两点动力学吸附模型描述了TiO2 NPA的传输行为。在低IS(即1.0和10 mM)下以及在中性/碱性条件下,在饱和和不饱和条件下均观察到TiO2 NPA的高迁移率。但是,由于TiO2 NPA在运输过程中增加的聚集和拉紧作用,因此在高IS(50 mM)和极端酸性条件下(pH = 2.6),其TiO2 NPA的保留率得到了显着提高。 TiO2 NPA在不饱和和饱和条件下的穿透曲线(BTC)几乎重合,这表明降低水饱和度并不能提高TiO2 NPA在砂柱中的保留。这可能是由于带负电荷的空气水与TiO2 NPAs系统之间存在排斥相互作用,导致了不利的附着条件。在饱和和不饱和条件下,两点动力学吸附模型为TiO2 NPA的BTC提供了很好的描述。拟合的参数可以成功地解释TiO2 NPA在各种溶液化学条件下的传输行为。 (C)2012 Elsevier Ltd.保留所有权利。

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