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A Zn-Based Metal-Organic Framework Modified by CuCl2 Under Ambient Conditions for Simultaneous Ultrasonic-Assisted Removal of Pb and Cd Ions with Fast Kinetics from Aqueous Solution

机译:A Zn-Based Metal-Organic Framework Modified by CuCl2 Under Ambient Conditions for Simultaneous Ultrasonic-Assisted Removal of Pb and Cd Ions with Fast Kinetics from Aqueous Solution

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摘要

Water pollution has become one of the most severe issues due to the growth of various industries and increased urbanization. Heavy metals are a contaminant that has sparked widespread concern in recent decades. Both natural and human activities cause heavy metal accumulation in the environment. They have a wide range of adverse impacts on the environment and the health of living organisms. Because of its simplicity, high speed, and cost-effectiveness, adsorption is the most widely used heavy metal removal method. In this study, a metal-organic framework MOF-5 modified by CuCl2 was used as an adsorbent to simultaneously remove lead and cadmium heavy metal ions. The structure was identified using scanning electron microscopy (SEM), an X-ray diffraction pattern (XRD), Fourier transforms infrared spectroscopy (FT-IR), thermogravimetric analysis (TGA), and nitrogen adsorption and desorption analysis (BET). The central composite design was applied to achieve the optimum adsorption conditions. The optimum conditions were pH = 7, the adsorbent dosage of 8 mg, a three-minute lead concentration of 79 mg/L, and a cadmium concentration of 19mg/L in the experimental design software. Lead and Cadmium RSDwas 1.42% and 2.3%, respectively.
机译:水污染已经成为最严重的国家之一由于不同产业的发展问题城市化和增加。污染物,已经引起了广泛的关注在最近的几十年。活动导致的重金属积累环境。对环境和健康的影响生物体。速度,和成本效益,吸附最广泛使用的重金属去除方法。这项研究中,MOF-5有机框架修改CuCl2被用作吸附剂同时去除铅和镉沉重金属离子。扫描电子显微镜(SEM), x射线衍射模式(XRD)、傅里叶变换红外光谱(ir)、热重分析(TGA)和氮吸附和解吸分析(赌注)。设计应用达到最优吸附条件。pH = 7, 8毫克,吸附剂用量的三分钟的铅浓度79 mg / L、a镉的浓度19 mg / L实验设计软件。RSDwas分别为1.42%和2.3%。

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