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Retention of silver nano-particles and silver ions in calcareous soils: Influence of soil properties

机译:钙质土壤中纳米银和银离子的保留:土壤性质的影响

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摘要

The rapid production and application of silver nanoparticles (AgNPs) have led to significant release of AgNPs into the terrestrial environments. Once released into the soil, AgNPs could enter into different interactions with soil particles which play key roles in controlling the fate and transport of these nanoparticles. In spite of that, experimental studies on the retention of AgNPs in soils are very scarce. Hence, the key objective of this research was to find out the retention behavior of AgNPs and Ag(Ⅰ) ions in a range of calcareous soils. A second objective was to determine the extent to which the physico-chemical properties of the soils influence the Ag retention parameters. To this end, isothermal batch experiments were used to determine the retention of Poly(vinylpyrrolidinone)-capped AgNPs (PVP-AgNPs) and Ag(Ⅰ) ions by nine calcareous soils with a diversity of physico-chemical properties. The results revealed that the retention data for both PVP-AgNPs and Ag(Ⅰ) ions were well described by the classical Freundlich and Langmuir isothermal equations. The retention of PVP-AgNPs and Ag(Ⅰ) ions was positively correlated to clay and organic carbon (OC) contents as well as electrical conductivity (EC), pH, and cation exchange capacity (CEC) of the soils. Due to multicolinearity among the soil properties, principal component analysis (PCA) was used to group the soil properties which affect the retention of PVP-AgNPs and Ag(Ⅰ) ions. Accordingly, we identified two groups of soil properties controlling retention of PVP-AgNPs and Ag(Ⅰ) ions in the calcareous soils. The first group comprised soil solid phase parameters like day, OC, and CEC, which generally control hetero-aggregation and adsorption reactions and the second group included soil solution variables such as EC and pH as well as Cl~- and Ca~(2+) concentrations, which are supposed to mainly affect homo-aggregation and precipitation reactions.
机译:银纳米颗粒(AgNPs)的快速生产和应用已导致AgNPs大量释放到陆地环境中。一旦被释放到土壤中,AgNPs可能会与土壤颗粒发生不同的相互作用,这在控制这些纳米颗粒的命运和运输中起着关键作用。尽管如此,关于土壤中AgNPs保留的实验研究却很少。因此,本研究的主要目的是找出AgNPs和Ag(Ⅰ)离子在一系列石灰性土壤中的保留行为。第二个目标是确定土壤的物理化学性质在多大程度上影响Ag保留参数。为此,采用等温分批实验测定了九种不同理化性质的石灰质土壤对聚乙烯吡咯烷酮封端的AgNPs(PVP-AgNPs)和Ag(Ⅰ)离子的保留。结果表明,经典的Freundlich和Langmuir等温方程很好地描述了PVP-AgNPs和Ag(Ⅰ)离子的保留数据。 PVP-AgNPs和Ag(Ⅰ)离子的保留与土壤中粘土和有机碳(OC)含量以及电导率(EC),pH和阳离子交换容量(CEC)呈正相关。由于土壤特性之间存在多重共线性,因此使用主成分分析(PCA)对影响PVP-AgNPs和Ag(Ⅰ)离子保留的土壤特性进行分组。因此,我们确定了两类控制钙质土壤中PVP-AgNPs和Ag(Ⅰ)离子保留的土壤特性。第一组包括土壤固相参数,如day,OC和CEC,通常控制杂聚和吸附反应;第二组包括土壤溶液变量,例如EC和pH以及Cl〜-和Ca〜(2+ )浓度,该浓度应该主要影响均相聚集和沉淀反应。

著录项

  • 来源
    《Journal of Environmental Management》 |2017年第may15期|136-145|共10页
  • 作者单位

    Department of Soil Science, College of Agriculture, Isfahan University of Technology, Isfahan, 84156-83111, Iran;

    Department of Soil Science, College of Agriculture, Isfahan University of Technology, Isfahan, 84156-83111, Iran;

    Department of Soil Science, College of Agriculture, Isfahan University of Technology, Isfahan, 84156-83111, Iran;

    Research Institute for Nanotechnology and Advanced Materials, Isfahan University of Technology, Isfahan, 84156-8311, Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Silver nanoparticle; AgNO_3; Sorption; Freundlich isotherm; Langmuir isotherm;

    机译:银纳米粒子;AgNO_3;吸附;Freundlich等温线;朗缪尔等温线;

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