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Thermodynamic Adsorption States of TNT and DNAN on Corundum and Hematite

机译:TNT和DNAN对刚玉和赤铁矿的热力学吸附态

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Adsorption isotherms are a critical tool in determining the transport of environmental contaminants through a particular media. Owing to the inherent heterogeneity of soils, the determination of which soil components are responsible for the adsorption and retention of a particular contaminant remains a challenge. In the current study, we consider several thermodynamic adsorption states in order to predict whether or not 2,4,6-trinitrotoluene (TNT) or 2,4-dinitroanisole (DNAN) would be either a ground-water contaminant or a soil contaminant. In order to reduce the complexity, we only consider two metal oxides (hematite and corundum) that are commonly found in arid regions. We have shown that TNT and DNAN bind favorably across all concentrations, temperatures, and surface hydration considered for alpha-Al2O3; however, only TNT was found to be bound for alpha-Fe2O3. Our results indicate that for soils rich in iron oxides, DNAN would be a ground-water contaminant.
机译:吸附等温线是通过特定媒体确定环境污染物的运输的关键工具。 由于土壤的固有异质性,测定土壤成分对特定污染物的吸附和保留仍有挑战。 在目前的研究中,我们考虑了几种热力学吸附状态,以预测2,4,6-三硝基甲苯(TNT)或2,4-二硝基吲哚(DNAN)是磨水污染物或土壤污染物。 为了降低复杂性,我们只考虑在干旱地区中常见的两个金属氧化物(赤铁矿和刚玉)。 我们已经表明,TNT和DNAN在α-Al2O3考虑的所有浓度,温度和表面水合中均有良好的结合; 然而,仅发现TNT被α-Fe2O3的约束。 我们的结果表明,对于富含铁氧化物的土壤,DNAN将是一个地下水污染物。

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