Enhancing adsorption performance of alkali activated kaolinite in the removal of antibiotic rifampicin from aqueous solution

吸附 高岭石 水溶液 朗缪尔吸附模型 碱金属 动力学 化学工程 化学 废水 比表面积 三水铝石 无机化学 有机化学 矿物学 催化作用 废物管理 物理 量子力学 工程类
作者
Aisyah Farhanah Abdul Majid,Rosmaya Dewi,Nurulizzatul Ningsheh M. Shahri,Ensan Waatriah E. S. Shahrin,Eny Kusrini,Norazanita Shamsuddin,Jun Wei Lim,Sutarat Thongratkaew,Kajornsak Faungnawakij,Anwar Usman
出处
期刊:Colloids and Surfaces A: Physicochemical and Engineering Aspects [Elsevier]
卷期号:676: 132209-132209 被引量:10
标识
DOI:10.1016/j.colsurfa.2023.132209
摘要

In this study, raw kaolin clay was activated with a strong base solution in order to improve its surface characteristics and adsorption performance. The alkali activation evidently caused etching process and ion exchanges of both Al3+ and Si4+ with Na+ on the silica and gibbsite basal surfaces, enhancing the surface area of the kaolinite particles. Adsorption of RIF was well described by the Langmuir isotherm and the pseudo-second-order kinetics models. The maximum adsorption capacity of rifampicin (RIF) on the alkali-activated kaolin was 8.295 mg g−1, enhanced compared with the raw kaolin (5.931 mg g−1). The adsorption was due to weak electrostatic and hydrogen bonding interactions between RIF and the kaolinite surfaces. Adsorption mechanism, kinetics, rate limiting-step, and thermodynamics were described in detail by fitting mathematical functions of the established semiempirical models to the experimental data. The recyclability of the kaolin-based adsorbents was demonstrated by their effective regeneration. Overall, the alkali activation improves the adsorption performance of kaolin to be practically applicable as environmentally friendly and sustainable absorbents for the removal of RIF and probably other pharmaceutical compounds from hospital wastewater. No data was used for the research described in the article.
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