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A 3D Stable Metal–Organic Framework for Highly Efficient Adsorption and Removal of Drug Contaminants from Water

机译:3D稳定的金属有机框架可高效吸附和去除水中的药物污染物

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摘要

We herein selected a 3D metal–organic framework decorated with carboxylate groups as an adsorbent to remove the pharmaceutical molecules of diclofenac sodium and chlorpromazine hydrochloride from water. The experiment aimed at exploring the effect factors of initial concentration, equilibrium time, temperature, pH and adsorbent dosage on the adsorption process. The adsorption uptake rate of the diclofenac sodium is much higher than that of the chlorpromazine hydrochloride. This paper presents the high adsorption capacity of diclofenac sodium, in which porous MOFs are used for the removal of drug contaminants from water. According to linear fitting with adsorption isotherm equation and kinetic equations, diclofenac sodium conforms to the Langmuir model and pseudo-first-order kinetic equation, while chlorpromazine hydrochloride accords with the Temkin model and pseudo-second-order kinetic equation. The results of the study indicate that the title compound could be a promising hybrid material for removing diclofenac sodium and chlorpromazine hydrochloride from wastewater.
机译:我们在这里选择了一个装饰有羧酸盐基团的3D金属有机骨架作为吸附剂,以从水中去除双氯芬酸钠和盐酸氯丙嗪的药物分子。该实验旨在探讨初始浓度,平衡时间,温度,pH和吸附剂用量对吸附过程的影响。双氯芬酸钠的吸附吸收率远高于盐酸氯丙嗪。本文介绍了双氯芬酸钠的高吸附能力,其中多孔MOF用于去除水中的药物污染物。根据吸附等温线方程和动力学方程的线性拟合,双氯芬酸钠符合Langmuir模型和拟一级动力学方程,而盐酸氯丙嗪盐酸盐则符合Temkin模型和拟二级动力学方程。研究结果表明,该标题化合物可能是一种有望从废水中去除双氯芬酸钠和盐酸氯丙嗪的杂化材料。

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