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Adsorption of Some Aromatic Compounds by a Synthetic Mesoporous Silicate

机译:合成介孔硅酸盐对某些芳香族化合物的吸附

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摘要

Water pollution by toxic organic compounds is of concern and demands for effective adsorbents for removal of the toxic compounds are increasing. Here we synthesized a mesoporous material, FSM-16, and investigated its ability to take up model compounds (benzene, toluene, phenol, and benzoic acid) from aqueous solutions by batch experiments. The adsorption isotherms were linear and adsorption capacities were small. Benzene and toluene have very similar adsorption isotherms, suggesting the side chain of toluene, i.e., alkyl chain, did not have significant effect on its adsorption. The amount of adsorption and isotherm slope were in the order of toluene ≈ benzene > benzoic acid > phenol. The occupation ratios of those organic compounds on the surfaces of FSM-16 were estimated less than 1%. Solubility of the compounds seems the major factor determining their adsorption by FSM-16. Phenol has the highest solubility and thus was least adsorbed by FSM-16. In contrast, toluene and benzene have very low solubilities and are the most adsorbed ones.
机译:令人关注的是,有毒有机化合物对水的污染,并且对于去除有毒化合物的有效吸附剂的需求正在增加。在这里,我们合成了介孔材料FSM-16,并通过分批实验研究了其从水溶液中吸收模型化合物(苯,甲苯,苯酚和苯甲酸)的能力。吸附等温线是线性的,吸附容量小。苯和甲苯具有非常相似的吸附等温线,表明甲苯的侧链(即烷基链)对其吸附没有显着影响。吸附量和等温线斜率的顺序为:甲苯≈苯>苯甲酸>苯酚。估计这些有机化合物在FSM-16表面上的占有率小于1%。化合物的溶解度似乎是决定其被FSM-16吸附的主要因素。苯酚具有最高的溶解度,因此被FSM-16吸附最少。相反,甲苯和苯的溶解度非常低,并且是最易吸附的。

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