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铁比盖河流域煤矿区沉积物和土壤中镉的迁移性:环境风险评估。

Cadmium mobility in sediments and soils from a coal mining area on Tibagi River watershed: environmental risk assessment.

机构信息

Departamento de Química, Universidade Estadual de Londrina, Rod. Celso Garcia Cid - PR 445, 86051-990 Londrina, Brazil.

Departamento de Engenharia Elétrica, Universidade Estadual de Londrina, Rod. Celso Garcia Cid - PR 445, 86051-990 Londrina, Brazil.

出版信息

J Hazard Mater. 2014 Jan 30;265:280-7. doi: 10.1016/j.jhazmat.2013.11.010. Epub 2013 Nov 13.

Abstract

The risk of cadmium contamination in the Tibagi River watershed (Parana State, Brazil) affected by past coal mining activities was assessed through sorption-desorption modeling for sediment and soil samples. The acidic character of the samples resulted in more competition between the cadmium ions and protons, thereby influencing the cadmium sorption-desorption. The sorption isotherms were fitted to the Langmuir and Freundlich single models and to the dual-site Langmuir-Freundlich (or Sips) model. The single-site models indicated a low-energy character of sorption sites on the sample sorption sites, whereas the dual-site model explained the availability of higher-affinity and lower-affinity non-specific sites. The correlation of the sorption and desorption constants with the physicochemical and mineralogical characteristics of the samples showed that the cadmium sorption behavior was significantly affected by the pH, point of zero charge, and also by the magnesium, aluminum, calcium and manganese amounts. Besides, the desorption rate and hysteresis index suggested a high risk of cadmium mobilization along the Tibagi River basin.

摘要

通过对过去煤炭开采活动影响下的巴西巴拉那州 Tibagi 河流域的沉积物和土壤样本进行吸附-解吸模型评估,发现了其中的镉污染风险。样本的酸性特征导致镉离子和质子之间的竞争更加激烈,从而影响了镉的吸附-解吸。吸附等温线拟合到朗缪尔单模型和弗伦德利希单模型以及双位点朗缪尔-弗伦德利希(或 Sips)模型。单位点模型表明样品吸附位上的吸附位具有低能量特征,而双位点模型则解释了高亲和力和低亲和力非特异性位的可用性。吸附和解吸常数与样品物理化学和矿物学特征的相关性表明,镉的吸附行为受到 pH 值、零电荷点以及镁、铝、钙和锰含量的显著影响。此外,解吸速率和滞后指数表明,在 Tibagi 河流域,镉的迁移风险很高。

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