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碱处理对不同组成的天然沸石特性的影响。

Effect of alkali-treatment on the characteristics of natural zeolites with different compositions.

机构信息

Department of Chemical Engineering, Engineering Faculty, Cumhuriyet University, 58140 Sivas, Turkey.

出版信息

J Colloid Interface Sci. 2018 Aug 1;523:266-281. doi: 10.1016/j.jcis.2018.03.115. Epub 2018 Mar 31.

Abstract

A series of natural zeolites with different compositions were modified by post-synthesis modification with sodium hydroxide (NaOH) solution. Natural and modified zeolites were characterized by XRD, SEM, nitrogen adsorption, FTIR, zeta potential and temperature programmed desorption of ammonia (NH-TPD). The adsorption capacities of these samples were evaluated by the adsorption of manganese from aqueous solution. The treatment with NaOH led to a decrease in the surface area and microporosity of all natural zeolites as well as partly damage of the zeolite structure depending on zeolite composition. In addition, the amount of weak, medium and strong acid sites in the zeolites was changed significantly by NaOH treatment depending on zeolite composition. The NaOH treatment resulted in a four-fold improvement in adsorption capacity of natural zeolite originated from Bigadic and a twofold decrease in that of the natural zeolite originated from Manisa-Gordes. Although the improved adsorption capacity might be mainly due to modification of porosity in the zeolites and formation of hydroxysodalite, the reduced adsorption capacity of the zeolite might be mainly due to a significant deformation of the zeolite structure. The pseudo-second-order kinetic model for the adsorption of manganese on all natural and modified zeolites fits well.

摘要

一系列具有不同组成的天然沸石通过后合成用氢氧化钠(NaOH)溶液进行改性。天然沸石和改性沸石通过 XRD、SEM、氮气吸附、FTIR、Zeta 电位和氨程序升温脱附(NH-TPD)进行了表征。通过从水溶液中吸附锰来评估这些样品的吸附能力。NaOH 的处理导致所有天然沸石的表面积和微孔体积减少,并且取决于沸石组成部分破坏沸石结构。此外,NaOH 处理根据沸石组成显著改变了沸石中弱酸、中强酸和强酸位的数量。NaOH 处理使源于 Bigadic 的天然沸石的吸附能力提高了四倍,而源于 Manisa-Gordes 的天然沸石的吸附能力降低了两倍。尽管吸附能力的提高可能主要归因于沸石中孔隙率的改性和水合方钠石的形成,但沸石吸附能力的降低可能主要归因于沸石结构的显著变形。锰在所有天然沸石和改性沸石上的吸附的拟二级动力学模型拟合良好。

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