金属有机骨架Cu(TAC)衍生空棕榈油果串活性炭复合材料吸附Zn(II)的平衡性能

Amar Lohot Tanjung, M. Zubir, R. Selly, Jasmidi Jasmidi, Siti Rahmah, P. Faradilla
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摘要

本研究旨在确定空棕榈油果串活性炭和KA-Cu(TAC)对Zn(II)的吸附平衡。以油棕空果束为生物吸附剂,在5000℃的温度下制碳,所得碳用H3PO4活化,改性成金属有机骨架铜金属和对苯二甲酸的复合材料。采用回流法制备了MOFs和KA-Cu(TAC)复合材料。采用XRD对活性炭、MOFS和KA-Cu(TAC)进行了表征。采用原子吸收光谱法分析了锌(II)金属的吸附过程,确定了不同浓度下吸附平衡的最佳条件。XRD表征结果表明,活性炭具有非晶结构,而mof Cu(TAC)和KA-Cu(TAC)具有结晶结构。活性炭和KA-Cu(TAC)在180ppm浓度下的最佳吸附条件为Langmuir等温线模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adsorption Equilibrium Properties of Zn(II) on Activated Carbon Composite of Derived Empty Palm Oil Fruit Bunches with Metal Organic Frameworks Cu(TAC)
This study aims to determine the adsorption equilibrium of the activated carbon of empty palm oil fruit bunches and KA-Cu(TAC) on Zn(II). Oil palm empty fruit bunches are used as a biosorbent in making carbon at a temperature of 5000 C, the resulting carbon is activated using H3PO4 and modified into a composite with metal organic frameworks of Cu metal and terephthalic acid. MOFs and KA-Cu(TAC) composites were produced by reflux method. Activated carbon, MOFS and KA-Cu(TAC) were characterized using XRD. The adsorption process of Zn(II) metal was analyzed using AAS and determined the optimum conditions with various concentrations to determine the adsorption equilibrium. XRD characterization results show that activated carbon has an amorphous structure, while MOFs Cu(TAC) and KA-Cu(TAC) have a crystalline structure. The optimum condition of activated carbon and KA-Cu(TAC) at a concentration of 180 ppm with the appropriate adsorption isotherm model is the Langmuir isotherm.
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