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Tracking the Transport of Silver Nanoparticles in Soil: a Saturated Column Experiment

机译:跟踪银纳米颗粒在土壤中的迁移:饱和柱实验

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摘要

Silver nanoparticles (AgNPs) can enter the environment when released from products containing them. As AgNPs enter soil, they are often retained in the soil profile and/or leached to the groundwater. This research assessed the transport of AgNPs in their “particle form” through the soil profile using a series of columns. Three soil types were put into soil columns: LSH (loam with high organic matter (OM)), LSL (loam with low OM), and Sand (no OM). The results showed that AgNP transport and retention in soil as well as particle size changes are affected by soil organic matter (OM) and the cation exchange capacity (CEC) of soil. OM affected the transport and retention of AgNPs. This was evident in the LSH columns where the OM concentration was the highest and the AgNP content the lowest in the soil layers and in the effluent water. The highest transported AgNP content was detected in the Sand columns where OM was the lowest. CEC had an impact on the particle size of the AgNPs that were retained in the soil layers. This was clear in columns packed with high CEC-containing soils (LSL and LSH) where AgNP particle size decreased more substantially than in the columns packed with sand. However, the decrease in AgNP sizes in the effluent water was less than the decrease in particle size of AgNPs transported through but retained in the soil. This means that the AgNPs that reached the effluent were transported directly from the first layer through the soil macropores. This work highlights the ability to track AgNPs at low concentrations (50 μg kg−1) and monitor the changes in particle size potential as the particles leach through soil all of which increases our knowledge about AgNP transport mechanisms in porous media.
机译:从含有纳米银的产品中释放出来时,纳米银(AgNPs)可以进入环境。当AgNPs进入土壤时,它们通常保留在土壤中和/或浸出到地下水中。这项研究使用一系列色谱柱评估了“ NPNP”以其“颗粒形式”在土壤剖面中的运输。将三种土壤类型放入土壤列:LSH(有机质含量高的壤土),LSL(有机质含量低的壤土)和砂土(无OM)。结果表明,AgNP在土壤中的迁移和保留以及粒径的变化受土壤有机质(OM)和土壤阳离子交换能力(CEC)的影响。 OM影响了AgNP的转运和保留。这在LSH色谱柱中很明显,在土壤层和污水中,OM浓度最高,AgNP含量最低。在OM最低的Sand柱中检测到最高的运输AgNP含量。 CEC对保留在土壤层中的AgNPs的粒径有影响。在装有高含CEC的土壤(LSL和LSH)的色谱柱中,与在装有沙子的色谱柱中相比,AgNP粒径下降幅度更大,这一点很明显。然而,废水中AgNP尺寸的减小小于通过土壤但保留在土壤中的AgNPs尺寸的减小。这意味着到达废水的AgNPs直接从第一层通过土壤大孔运输。这项工作强调了在低浓度(50μgkg −1 )下跟踪AgNPs的能力,并监控了颗粒通过土壤浸出时粒径潜在变化的能力,这些都增加了我们对AgNP在土壤中的迁移机理的了解。多孔介质。

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