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Transport of engineered nanoparticles in soils and aquifers

机译:土壤和含水层中工程纳米粒子的运输

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Transport and deposition behaviour of engineered nanoparticles (ENPs) in natural aquifers and soil systems is a key determinant of the fate of these materials in environmental systems. A growing number of experimental studies are being conducted worldwide to address transport and deposition of ENPs in porous media (PM). Here we comprehensively review the main mechanisms and factors affecting the mobility of the environmentally important ENPs in natural PM. A variety of different processes including those that promote mobility and result in elution from the PM and those that hinder their mobility and promote ENP retention can influence ENP's mobility through soil and aquifer media. The most important contributing factors regarding ENP transport in PM include: the physicochemical properties of the ENP, the media, the hydrodynamics of the system, and the background solution characteristics. Results from several studies conducted on the most common and environmentally important ENPs have shown that under natural environmental conditions, different types of ENPs show different transport behaviour in soil and aquifer systems. Additionally, the importance of media matrix and mobile solution factors in governing mobility of ENPs varies from one type of ENP to another.
机译:天然含水层和土壤系统中工程纳米粒子(ENP)的运输和沉积行为是环境系统中这些材料的命运的关键决定因素。在全球范围内进行越来越多的实验研究,以解决多孔介质(PM)中enps的运输和沉积。在这里,我们全面审查了影响自然PM环境重要恩斯的流动性的主要机制和因素。各种不同的过程包括促进流动性的不同过程,并导致PM的洗脱和妨碍其流动性的人以及促进ENP保留的人可以影响enp通过土壤和含水层媒体的流动性。关于PM的ENP运输的最重要贡献因素包括:ENP,介质,系统流体动力学的物理化学特性以及背景溶液特征。在最常见和环境重要的恩皂组上进行的几项研究表明,在自然环境条件下,不同类型的恩氏症在土壤和含水层系统中显示出不同的运输行为。此外,媒体矩阵和移动解决方案因素在恩拓的移动性中的重要性从一种类型的encp变化到另一个类型。

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