Activated Bledug Kuwu’s Clay as Adsorbent Potential for Synthetic Dye Adsorption: Kinetic and Thermodynamic Studies
IF 1.3
Q3 ENGINEERING, CHEMICAL
S. Lestari, M. Muflihah, R. Kusumawardani, M. Nurhadi, Yuniati Mangesa, Fathur Insani Ridho, Robbiatul Adawiyah, Pristiningtyas Ambarwati, Siti Rahma, S. Y. Lai, Hadi Nur
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引用次数: 2
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Abstract
Bledug Kuwu is one of the geological phenomena as a mud volcano that occurs in Kuwu, Purwodadi, Grobogan, Central Java, Indonesia. The evaluation of Bledug Kuwu’s clay as one of the adsorbents for synthetic dyes has been carried out. The preparation of the adsorbent started with washing the clay with distilled water, followed by activation with a solution of hydrochloric acid (1 M) under mechanistic stirring for overnight. The C−H and O−H groups found on the clay adsorbent could attract methylene blue by dispersion forces and hydrogen bonding. Hydrocloric acid activation process for clay can increase surface area from 49 to 70 m2.g−1, meanwhile, reducing the average crystal size from 48.3 to 43.4 nm. The dye removal capacity increased from 34 to 40 mg.g−1 in corresponding to the increase of the temperature from 30 to 50 °C. The results showed that the equilibrium adsorption capacity of activated Bledug Kuwu’s clay reached 99% in an adsorption time of 20 min. The kinetic models of methylene blue adsorption onto BKC and ABKC adsorbents follow the pseudo-second order and the adsorption process is spontaneous with free energy (ΔG) as −23.519 kJ.mol−1. Copyright © 2021 by Authors, Published by BCREC Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0).
活化Bledug Kuwu粘土作为合成染料吸附的吸附潜力:动力学和热力学研究
Bledug Kuwu是发生在印度尼西亚中爪哇,Grobogan, Purwodadi, Kuwu的泥火山地质现象之一。对Bledug Kuwu粘土作为合成染料吸附剂之一进行了评价。吸附剂的制备首先用蒸馏水洗涤粘土,然后用盐酸溶液(1m)在机械搅拌下活化过夜。粘土吸附剂上的C−H和O−H基团可以通过分散力和氢键作用吸引亚甲基蓝。氢氯酸活化法可使粘土的表面积从49 m2增加到70 m2。同时,G−1使平均晶粒尺寸从48.3 nm减小到43.4 nm。染料去除率由34毫克提高到40毫克。温度从30℃升高到50℃,对应g−1。结果表明,在20 min的吸附时间内,活化的Bledug Kuwu粘土的平衡吸附量达到99%。BKC和ABKC吸附剂对亚甲基蓝的吸附动力学模型符合准二级,吸附过程是自发的,自由能(ΔG)为−23.519 kJ.mol−1。版权所有©2021作者,BCREC集团出版。这是一篇基于CC BY-SA许可(https://creativecommons.org/licenses/by-sa/4.0)的开放获取文章。
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期刊介绍:
Bulletin of Chemical Reaction Engineering & Catalysis, a reputable international journal, provides a forum for publishing the novel technologies related to the catalyst, catalysis, chemical reactor, kinetics, and chemical reaction engineering. Scientific articles dealing with the following topics in chemical reaction engineering, catalysis science and engineering, catalyst preparation method and characterization, novel innovation of chemical reactor, kinetic studies, etc. are particularly welcome. However, articles concerned on general chemical engineering process are not covered and out of scope of this journal