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从水溶液中吸附酸和碱到二氧化硅颗粒上。

Adsorption of acids and bases from aqueous solutions onto silicon dioxide particles.

机构信息

Department of Chemistry, Faculty of Science and Literature, Kahramanmaras Sutcu Imam University, Kahramanmaras 46100, Turkey.

出版信息

J Hazard Mater. 2009 Dec 30;172(2-3):978-85. doi: 10.1016/j.jhazmat.2009.07.088. Epub 2009 Jul 29.

Abstract

The adsorption of acids and bases onto the surface of silicon dioxide (SiO(2)) particles was systematically studied as a function of several variables, including activation conditions, contact time, specific surface area, particle size, concentration and temperature. The physical properties of SiO(2) particles were investigated, where characterizations were carried out by FT-IR spectroscopy, and morphology was examined by scanning electron microscopy (SEM). The SEM of samples showed good dispersion and uniform SiO(2) particles with an average diameter of about 1-1.5 microm. The adsorption results revealed that SiO(2) surfaces possessed effective interactions with acids and bases, and greatest adsorption capacity was achieved with NaOH, where the best fit isotherm model was the Freundlich adsorption model. The adsorption properties of raw SiO(2) particles were further improved by ultrasonication. Langmuir monolayer adsorption capacity of NaOH adsorbate at 25 degrees C on sonicated SiO(2) (182.6 mg/g) was found to be greater than that of the unsonicated SiO(2) (154.3mg/g). The spontaneity of the adsorption process was established by decreases in DeltaG(ads)(0), which varied from -10.5 to -13.6 kJ mol(-1), in the temperature range 283-338K.

摘要

系统研究了二氧化硅 (SiO(2)) 颗粒表面吸附酸和碱的情况,考察了多种变量的影响,包括活化条件、接触时间、比表面积、粒径、浓度和温度。研究了 SiO(2) 颗粒的物理性质,通过傅里叶变换红外光谱 (FT-IR) 进行了表征,并通过扫描电子显微镜 (SEM) 观察了形貌。样品的 SEM 显示出良好的分散性和均匀的 SiO(2) 颗粒,平均粒径约为 1-1.5 微米。吸附结果表明,SiO(2) 表面与酸和碱具有有效相互作用,NaOH 的吸附容量最大,最佳拟合等温模型是 Freundlich 吸附模型。通过超声处理进一步改善了原始 SiO(2) 颗粒的吸附性能。在 25°C 下,超声处理的 SiO(2)(182.6mg/g)上 NaOH 吸附剂的 Langmuir 单层吸附容量大于未超声处理的 SiO(2)(154.3mg/g)。吸附过程的自发性通过在 283-338K 温度范围内,DeltaG(ads)(0) 从-10.5 到-13.6 kJ mol(-1) 的降低来确定。

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