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Transport of TiO_2 nanoparticles and their effects on the mobility of Cu in soil media

机译:TiO_2纳米颗粒的迁移及其对土壤介质中铜迁移率的影响

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The transport behavior of TiO2 nanoparticles (TNPs) through different soil columns as well as their effects on the mobility of Cu was systematically examined. Results showed that a constant concentration plateau (C-f/C-o%) was achieved at experimental breakthrough curves, ranging from 89%, 53%, and 60% for soils Golbasi (Go), Hacettepe (Ha), and Batikent (Ba) respectively. While Brownian diffusion was the predominant mechanism for TNPs removal in all three soils media, gravitational sedimentation also played a significant role, accounting for 10.58%, 35.52% and 28.84% of the overall single-collector contact efficiency for the soils Go, Ha and Ba respectively. The estimated travel distances of TNPs in soils ranged from 100 to 593 cm, indicating potential risks of TNPs to the environment and public health. Desorption of Cu from TNPs ranging from 87.57 to 99.08%, demonstrates that TiO2 nanoparticles-associated Cu may not be stable when released to soil media.
机译:系统地研究了TiO2纳米颗粒(TNPs)通过不同土壤柱的迁移行为以及它们对Cu迁移率的影响。结果表明,在实验突破曲线上达到了恒定的浓度平台(C-f / C-o%),土壤中的Golbasi(Go),Hacettepe(Ha)和Batikent(Ba)分别为89%,53%和60%。虽然布朗扩散是所有三种土壤介质中TNP去除的主要机制,但重力沉降也起着重要作用,分别占土壤Go,Ha和Ba的单收集器总体接触效率的10.58%,35.52%和28.84%。分别。 TNP在土壤中的估计传播距离为100到593 cm,这表明TNP对环境和公共健康的潜在风险。铜从TNP的解吸范围为87.57至99.08%,这表明与TiO2纳米粒子相关的Cu释放到土壤介质中时可能不稳定。

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