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Adsorption of benzene vapor on natural silicate clay minerals under different moisture contents and binary mineral mixtures

机译:不同水分含量下天然硅酸盐粘土矿物质的苯蒸气和二元矿物混合物的吸附

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摘要

Benzene, as the representative compound in volatile organic chemicals (VOCs), widely exists in contaminated sites. Adsorption performance of clay minerals can retard the transport of VOCs gas phase to some extent. Static adsorption experiments were conducted to investigate the adsorption capacity of benzene vapor on natural silicate clay minerals (smectite, illite, chlorite and kaolinite) under different temperatures, moisture contents and mineral mixtures. The results of adsorption isotherms for oven-dried clay minerals implied that the distinct adsorption capacity for benzene was mainly attributed to the specific surface areas and pore volume of clay minerals. The amount of adsorption benzene reduced to the minimum, and then gradually increased as the moisture content raised. The existences of water molecule competed the adsorption sites with benzene on the surface of clay minerals at the low moisture content, whereas the dissolutions of benzene molecule in the adsorbed water and the gravitational water could facilitate the adsorption process of clay minerals its adsorption with a saturated water content. Except for the mixture of smectite-kaolinite samples which showed obstruction of pores and declined the adsorption amount of benzene vapor, the experimentally observed adsorption values of benzene on binary mineral mixtures were equal to the theoretically linear sum of the contributions of each individual minerals.
机译:苯,作为挥发性有机化学品(VOC)的代表性化合物,广泛存在于污染的地方。粘土矿物的吸附性能可以在一定程度上延迟VOCS气相的运输。进行了静态吸附实验,以研究不同温度,水分含量和矿物混合物的天然硅酸盐粘土矿物(蒙脱石,霉菌,亚氯酸盐和高岭土的吸附能力。用于烘箱干粘土矿物的吸附等温线的结果暗示,苯的不同吸附能力主要归因于粘土矿物的比表面积和孔体积。随着升高的水分含量,吸附苯的量减少至最小值,然后逐渐增加。水分子的存在在低水分含量的粘土矿物表面上与苯的吸附位点竞争,而在吸附的水中的苯分子和引力水的溶解可以促进粘土矿物的吸附过程与饱和的吸附含水量。除了显示孔隙梗阻的蒙脱石 - 高岭石样品的混合物,并下苯蒸气的吸附量,实验观察到二元矿物混合物对苯的吸附值等于每个矿物质的贡献的理论线性总和。

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