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Effects of particle size and surface chemistry on plastic nanoparticle transport in saturated natural porous media

机译:粒径和表面化学对饱和天然多孔介质塑料纳米粒子输送的影响

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摘要

Plastic nanoparticles (PNPs) are considered contaminants of emerging concern, but little information is available on their transport behavior in the soil-water environment, as well as their behavior relative to metal and other carbon-based nanoparticles. Here we show that size and surface functional groups affect the transport of polystyrene nanoparticles (PS-NPs) through saturated soil. Unmodified 110 nm and 50 nm PS-NPs demonstrated similar transport patterns in soil. However, a maximum elution value of 90% from the soil was found for the 50 nm PS-NPs, compared to a maximum value of similar to 45% for 110 nm PS-NPs. The breakthrough curve for 190 nm PS-NPs demonstrated a maximum elution value of 60% from the soil. PS-NPs with surface functional groups display different mobility profiles: carboxylated PS-NPs demonstrated a plateau of 40% elution from the soil, while aminated PS-NPs were eluted only in small amounts and showed a spike pattern of elution from the column. These findings are attributed to the effects of common soil constituents such as calcium cations and humic acids on the size and charge of the PS-NPs with surface functional groups. Overall, PS-NP mobility in soil can vary widely, depending on PNP properties such as size and surface chemistry, and on matrix properties, such as the type of porous medium and its composition. These findings suggest that knowledge of inherent characteristics (size, surface charge, surface functional groups) of PNPs are required to elucidate the behavior of such particles in soil-water environments, and predict the extent of contaminant spreading. (C) 2020 Elsevier Ltd. All rights reserved.
机译:塑料纳米粒子(PNPS)被认为是出现的污染物的污染物,但在土壤水环境中的运输行为很少,以及它们相对于金属和其他碳基纳米颗粒的行为。在这里,我们表明尺寸和表面官能团通过饱和土壤影响聚苯乙烯纳米颗粒(PS-NPS)的转运。未修改的110nm和50nm ps-nps在土壤中显示出类似的运输模式。然而,对于50nm ps-nps,发现了从土壤中获得90%的最大洗脱值,而最大值与110nm ps-nps相似的最大值相比。 190nm PS-NPS的突破曲线证明了从土壤中的最大洗脱值60%。具有表面官能团的PS-NPS显示不同的迁移率:羧化PS-NPS显示出从土壤中洗脱的40%的高原,而胺化PS-NPS仅以少量洗脱并显示出从柱子中洗脱的尖峰图案。这些发现归因于常见的土壤成分(如钙阳离子和腐殖酸)对具有表面官能团的PS-NP的尺寸和电荷的效果。总体而言,土壤中的PS-NP迁移率可以广泛变化,这取决于尺寸和表面化学等PNP性质,以及基质性质,例如多孔介质的类型及其组合物。这些发现表明,需要了解PNP的固有特性(尺寸,表面电荷,表面官能团),以阐明这种颗粒在土壤水环境中的这种颗粒的行为,并预测污染物扩散的程度。 (c)2020 elestvier有限公司保留所有权利。

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