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首页> 外文期刊>Journal of Colloid and Interface Science >Adsorption of BTX (benzene, toluene, o-xylene, and p-xylene) from aqueous solutions by modified periodic mesoporous organosilica
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Adsorption of BTX (benzene, toluene, o-xylene, and p-xylene) from aqueous solutions by modified periodic mesoporous organosilica

机译:改性的周期性介孔有机硅从水溶液中吸附BTX(苯,甲苯,邻二甲苯和对二甲苯)

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摘要

The capacity of a periodic mesoporous organosilica (PMO) to adsorb the aromatic compounds benzene, toluene, o-, and p-xylenes (BTX), which are usually present in produced waters, was investigated under both column and batch processes. The PMO was synthesized by condensation of 1,4 bis(triethoxisilyl)benzene (BTEB) under acidic conditions by using structure-directing agent (SDA) Pluronic P123 in the presence of KCl. Thermogravimetric analysis showed that the presence of the surfactant decreases the thermal stability of the PMO. The small-angle X-ray diffraction pattern, as well as the nitrogen adsorption/desorption isotherm measurements, revealed that the synthesized material has a crystalline structure, with hexagonally-ordered cylindrical mesopores. The adsorption kinetics study indicated an adsorption equilibrium time of 50. min and also showed that the data best fitted the pseudo-first order kinetic model. The intraparticle diffusion model was also tested and pointed to the occurrence of such process in all cases. Both Langmuir and Temkin models best represented the adsorption isotherms of toluene; Langmuir and Redlich-Peterson models best represented the data obtained for the other compounds Adsorption capacity decreases in the order benzene > o-xylene > p-xylene > toluene. Satisfactory results were observed in the application of the synthesized PMO for the removal of BTX from aqueous solution.
机译:在塔和间歇过程中,都研究了周期性介孔有机硅(PMO)吸附通常存在于采出水中的芳族化合物苯,甲苯,邻二甲苯和对二甲苯(BTX)的能力。通过在酸性条件下使用结构导向剂(SDA)Pluronic P123在KCl的存在下1,4双(三乙氧基硅基)苯(BTEB)缩合来合成PMO。热重分析表明表面活性剂的存在降低了PMO的热稳定性。小角X射线衍射图以及氮吸附/解吸等温线测量表明,合成材料具有晶体结构,具有六角形排列的圆柱形中孔。吸附动力学研究表明吸附平衡时间为50分钟,并且还表明该数据最适合拟一级动力学模型。还测试了粒子内扩散模型,并指出了在所有情况下此类过程的发生。 Langmuir和Temkin模型均能最好地代表甲苯的吸附等温线。 Langmuir和Redlich-Peterson模型最能代表从其他化合物获得的数据。吸附能力按苯>邻二甲苯>对二甲苯>甲苯的顺序降低。在将合成的PMO用于从水溶液中去除BTX的应用中观察到令人满意的结果。

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