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Evaluation of caffeine adsorption by MgAl-LDH/biochar composite

机译:MGAL-LDH / Biochar复合材料评价咖啡因吸附

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摘要

In the present work, the composite MgAl-LDH/biochar using activated carbon from bovine bone as support for the layered double hydroxide particles was successfully synthesised and used as an alternative adsorbent for caffeine removal from water. Kinetic studies showed that the equilibrium was achieved in only 20 min of contact between the adsorbent and the adsorbate. The pseudo-first-order model represented the experimental data more satisfactorily (R-2 = 0.95), suggesting a physical adsorption process. The isotherms were performed at three temperatures, in which it was observed the decrease in the adsorption in higher temperatures. It was obtained a maximum adsorption capacity of 26.219 mg/g at 40 degrees C, and the experimental data were better adjusted by Redlich-Peterson, R-2 > 0.9942. In short, the study demonstrated that the composite was satisfactorily synthesised and its use in the caffeine removal was quite attractive, being a potential adsorbent for water treatment applications.
机译:在本作工作中,成功合成了来自牛骨中的活性炭作为牛骨作为载体的复合MgAl -LDH /生物炭被成功地合成并用作从水中除去咖啡因的替代吸附剂。动力学研究表明,在吸附剂和吸附物之间仅在20分钟内实现平衡。伪第一阶模型更令人满意地表示实验数据(R-2 = 0.95),表明物理吸附过程。等温物在三个温度下进行,其中观察到在较高温度下吸附的降低。获得40摄氏度的最大吸附容量为26.219mg / g,通过雷尔里希 - Peterson,R-2> 0.9942更好地调整实验数据。简而言之,该研究表明,复合材料是令人满意的合成,其在咖啡因去除中的使用非常有吸引力,是水处理应用的潜在吸附剂。

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