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Multi-metal equilibrium sorption and transport modeling for copper, chromium, and arsenic in an iron oxide-coated sand, synthetic groundwater system.

机译:氧化铁涂层砂,合成地下水系统中铜,铬和砷的多金属平衡吸附和迁移模型。

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摘要

The mixed metal compound, Chromated Copper Arsenate, or CCA, has been widely used as a wood preservative. The metal ions in CCA, CrO2− 4, Cu2+, and AsO3− 4, have been found in contaminated surface and subsurface soils and groundwater nearby some wood preservative facilities and nearby wood structures. Iron oxides are a ubiquitous soil-coating constituent and are believed to be a main factor in controlling the transport and fate of many metals in the soil solution. In this research, iron-oxide-coated sand (IOCS) is used as a surrogate soil to investigate the adsorption and transport behavior of the mixed metals solution, copper, chromate, and arsenate, in the subsurface environment.; Copper adsorption increases with increasing pH. The presence of arsenate in the solution slightly increases, while chromate has minimal effect, on the amount of copper adsorbed. Chromate adsorption decreases with increasing pH. With arsenate present in solution, chromate adsorption is significantly suppressed over the pH range studied. In contrast, the presence of copper slightly increases chromate adsorption. Similar to chromate, arsenate adsorption decreases with increasing pH. The presence of chromate or copper does not affect the amount of arsenate adsorbed over the range of concentrations studied.; Two surface complexation models, the triple layer model (TLM) and the electrostatic implicit model (EIM), were used to simulate equilibrium adsorption in both single-metal and multi-metal systems. Simulations using the specific surface complexation equilibrium constants derived from either the single-metal or the multi-metal systems with both the TLM and the EIM were successful in fitting the adsorption data in that respective single or multi-metal system.; The local equilibrium assumption using batch-derived sorption isotherm parameters from the EIM failed to predict the copper and arsenate transport, while it adequately described chromate transport. The breakthrough curves of all three metals were asymmetrical and showed long-tailing behavior. This nonideal behavior is caused by nonlinear sorption and/or non-equilibrium conditions during transport. The two-site chemical non-equilibrium model, which accounts for the kinetically controlled adsorption sites, was able to fit the observed breakthrough curves for all three metals in single-metal systems. However, the model was partially successful in predicting transport in multi-metal systems.
机译:混合金属化合物铬酸砷酸铜(CCA)已广泛用作木材防腐剂。 CCA,CrO 2− 4 ,Cu 2 + 和AsO 3 − 中的金属离子在一些木材防腐设施和附近的木结构附近的受污染的表层和地下土壤和地下水中发现了4 。铁氧化物是普遍存在的土壤覆盖物成分,并且被认为是控制土壤溶液中许多金属的运输和命运的主要因素。在这项研究中,用氧化铁皮砂(IOCS)作为替代土壤来研究地下环境中混合金属溶液,铜,铬酸盐和砷酸盐的吸附和迁移行为。铜吸附量随pH值的增加而增加。溶液中砷酸盐的存在对吸附的铜量的影响略有增加,而铬酸盐的影响最小。铬酸盐的吸附随着pH值的增加而降低。在溶液中存在砷酸盐的情况下,在研究的pH范围内铬酸盐的吸附被显着抑制。相反,铜的存在会稍微增加铬酸盐的吸附。与铬酸盐相似,砷酸盐的吸附随着pH的升高而降低。在所研究的浓度范围内,铬酸盐或铜的存在不会影响砷酸盐的吸附量。两种表面络合模型,三层模型(TLM)和静电隐式模型(EIM),用于模拟单金属和多金属系统中的平衡吸附。使用由具有TLM和EIM的单金属或多金属系统得到的比表面络合平衡常数进行的模拟成功地拟合了相应的单金属或多金属系统中的吸附数据。使用来自EIM的批次衍生的吸附等温线参数进行的局部平衡假设无法预测铜和砷的迁移,但充分描述了铬的迁移。所有三种金属的穿透曲线都是不对称的,并表现出长尾行为。这种非理想行为是由运输过程中的非线性吸附和/或非平衡条件引起的。动力学控制吸附位的两点化学非平衡模型能够拟合单金属系统中所有三种金属的观察到的突破曲线。但是,该模型在预测多金属系统中的运输方面取得了部分成功。

著录项

  • 作者

    Osathaphan, Khemarath.;

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Engineering Environmental.; Geochemistry.; Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;地质学;土壤学;
  • 关键词

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