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首页> 外文期刊>Journal of environmental sciences >Interaction between Cu2+ and different types of surface-modified nanoscale zero-valent iron during their transport in porous media
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Interaction between Cu2+ and different types of surface-modified nanoscale zero-valent iron during their transport in porous media

机译:Cu2 +与不同类型的表面修饰的纳米零价铁在多孔介质中运输过程中的相互作用

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This study investigated the interaction between Cu2+ and nano zero-valent iron (NZVI) coated with three types of stabilizers (i.e., polyacrylic acid [PAA], Tween-20 and starch) by examining the Cu2+ uptake, colloidal stability and mobility of surface-modified NZVI (SM-NZVI) in the presence of Cu2+. The uptake of Cu2+ by SM-NZVI and the colloidal stability of the Cu-bearing SM-NZVI were examined in batch tests. The results showed that NZVI coated with different modifiers exhibited different affinities for Cu2+, which resulted in varying colloidal stability of different SM-NZVI in the presence of Cu2+. The presence of Cu2+ exerted a slight influence on the aggregation and settling of NZVI modified with PAA or Tween-20. However, the presence of Cu2+ caused significant aggregation and sedimentation of starch-modified NZVI, which is due to Cu2+ complexation with the starch molecules coated on the surface of the particles. Column experiments were conducted to investigate the co-transport of Cu2+ in association with SM-NZVI in water-saturated quartz sand. It was presumed that a physical straining mechanism accounted for the retention of Cu-bearing SM-NZVI in the porous media. Moreover, the enhanced aggregation of SM-NZVI in the presence of Cu2+ may be contributing to this straining effect. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:这项研究通过研究Cu2 +的吸收,胶体稳定性和表面活性剂的迁移性,研究了Cu2 +与涂有三种类型的稳定剂(即聚丙烯酸[PAA],Tween-20和淀粉)的纳米零价铁(NZVI)之间的相互作用。 Cu2 +存在下修饰的NZVI(SM-NZVI)。分批测试了SM-NZVI对Cu 2+的吸收和含Cu SM-NZVI的胶体稳定性。结果表明,涂​​有不同改性剂的NZVI对Cu2 +表现出不同的亲和力,这导致存在Cu2 +时不同SM-NZVI的胶体稳定性有所不同。 Cu 2+的存在对用PAA或Tween-20改性的NZVI的聚集和沉降影响很小。然而,Cu 2+的存在导致淀粉改性的NZVI显着聚集和沉降,这是由于Cu 2+与包覆在颗粒表面的淀粉分子络合所致。进行了柱实验,以研究Cu- +与SM-NZVI在水饱和石英砂中的共迁移。据推测,物理应变机制解释了含Cu的SM-NZVI在多孔介质中的保留。此外,在Cu 2+存在下SM-NZVI聚集的增强可能有助于这种应变作用。 (C)2015年中国科学院生态环境研究中心。由Elsevier B.V.发布

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