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红壤柱中 Pb2+、Ni2+、Mn2+和 Zn2+的竞争吸附和迁移。

Competitive sorption and transport of Pb2+, Ni2+, Mn2+, and Zn2+ in lateritic soil columns.

机构信息

National Center of Excellence for Environmental and Hazardous Waste Management (NCE-EHWM), Chulalongkorn University, Bangkok 10330, Thailand.

出版信息

J Hazard Mater. 2011 Jun 15;190(1-3):391-6. doi: 10.1016/j.jhazmat.2011.03.058. Epub 2011 Mar 23.

Abstract

Knowledge of sorption and transport of heavy metals in soils in the presence of other metals is crucial for assessing the environmental risk of these metals. Competitive sorption and transport of four metals, Pb(2+), Ni(2+), Zn(2+), and Mn(2+), were investigated using multi-metal column experiments with lateritic soils obtained from a gold mine impacted by acid mine drainage. Based on Pb(2+) breakthrough time for single-metal system at a pH of approximately 5, the sorption capacity of Pb(2+) was estimated to be higher in lateritic soil than the other metals. For multi-metal systems, the estimated retardation factors for the metals from highest to lowest were: Pb(2+)>Zn(2+)∼ Ni(2+)>Mn(2+), suggesting the mobility of metals through lateritic soil for a multi-metal system would be in the order of Mn(2+)>Ni(2+)∼ Zn(2+)>Pb(2+). For binary and multi-metal systems, the estimated sorption capacities of individual metals were found to be lower than the sorption capacities in single metal system - indicating possible competition for sorption sites. Mass recoveries estimates showed that the sorption of metals was more reversible under competitive multi-metal systems than in single metal systems.

摘要

了解重金属在其他金属存在下的土壤吸附和迁移对于评估这些金属的环境风险至关重要。采用多金属柱实验,利用受酸性矿山排水影响的金矿获得的红土,研究了四种金属(Pb(2+)、Ni(2+)、Zn(2+)和 Mn(2+))的竞争吸附和迁移。基于单金属体系在 pH 值约为 5 时 Pb(2+)的穿透时间,估计 Pb(2+)在红土中的吸附容量高于其他金属。对于多金属体系,从最高到最低估计的金属迟滞因子分别为:Pb(2+)>Zn(2+)∼ Ni(2+)>Mn(2+),表明多金属体系中金属通过红土的迁移能力顺序为 Mn(2+)>Ni(2+)∼ Zn(2+)>Pb(2+)。对于二元和多金属体系,估计单个金属的吸附容量低于单金属体系中的吸附容量-表明可能存在吸附位点的竞争。质量回收率估计表明,在竞争多金属体系中,金属的吸附比单金属体系更具可逆性。

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