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DFT and Kinetic Evaluation of Chloromethane Removal Using Cost-Effective Activated Carbon

机译:使用经济高效的活性炭去除氯甲烷的DFT和动力学评价

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Activated carbon (AC) was first produced from waste rubber tires via pyrolysis and then tested for its ability to adsorb chloromethanes from aqueous solutions. The adsorption activity of the AC was facilitated by the existence of carboxyl and hydroxyl functionalities on its surface. Under optimal conditions (AC dosage of 5 g/L and contact time of 60 min), 86.9% dichloromethane, 98.1% chloroform, and 99.8% carbon tetrachloride (CCl_4) were removed from the contaminated water. The adsorption experimental data were fitted to the kinetics and the adsorption isotherms models. The density functional theory approach was adopted to assess the various possibilities of interaction between CCl_4 and the functionalized AC. Theoretical modeling predicted the adsorption activity to be predominantly controlled by a hydrogen-bonding-assisted Cl…O=C type of interaction. In addition, the adsorption was found to be facilitated by various types of π…Cl interactions, with the development of an appreciable charge transfer during the process. This theoretical modeling of the interaction between AC and the organic contaminants is an improvement of our previous studies on the adsorption of contaminants using cost-effective AC.
机译:最初通过热解产生活性炭(AC),然后通过热解,然后测试其吸附来自水溶液的氯甲烷的能力。通过在其表面上存在羧基和羟基官能团,促进了AC的吸附活性。在最佳条件下(AC剂量为5g / L的5g / L和60分钟的接触时间),从污染的水中除去86.9%二氯甲烷,98.1%氯仿和99.8%的四氯化碳(CCL_4)。吸附实验数据适用于动力学和吸附等温线模型。采用密度泛函理论方法来评估CCL_4与官能化AC之间的各种相互作用的可能性。理论建模预测了通过氢键辅助Cl ... O = C型相互作用的吸附活性。此外,发现吸附是通过各种类型的π...... Cl相互作用促进,随着过程中的明显电荷转移而促进。对AC和有机污染物之间的相互作用的理论建模是我们对使用成本效益AC进行污染物吸附的先前研究的改善。

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