金属有机骨架Cu-TAC空棕榈油簇活性炭复合材料对铁(II)的吸附性能

Nadia Agnes Cantika Nadeak, M. Zubir, R. Selly, H. Nasution, Jasmidi Jasmidi, Siti Rahmah, P. Faradilla
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引用次数: 0

摘要

本研究旨在确定活性炭/AC和复合碳/AC- cu (TAC)在吸附铁金属过程中的吸附能力,研究其吸附动力学和吸附平衡。以油棕空果束(EFB)为活性炭,用MOFs - Cu(TAC)复合材料进行改性。采用原子吸收光谱法分析了吸附过程中吸附的铁离子浓度。确定Fe(II)离子吸附最佳条件的变量是吸附剂的质量变化、吸附质浓度变化和吸附剂与吸附质的接触时间变化。通过浓度变化确定了吸附等温线特征,通过接触时间变化确定了吸附动力学模型。AC表征结果表明,在OH、CH和CO基团存在的情况下,活性炭有明显的吸收,表明纤维素的存在。AC为无定形,AC- cu (TAC)为结晶,孔径为介孔。最佳条件为:质量变化1 g,吸收容量为0.1816 mg/g;浓度变化60 ppm,吸收容量为3.49 mg/g;接触时间为75 min,吸收容量为3.82 mg/g。ACCu(TAC)的最佳条件为:质量变化1 g,吸收容量为0.7275 mg/g;浓度变化180 ppm,吸收容量为10.52 mg/g;接触时间为15 min,吸收容量为10.85 mg/g。AC-Cu(TAC)对Fe(II)离子具有较好的吸附能力。对于AC和AC- cu (TAC),适宜的吸附等温线为Freundlich等温线,适宜的吸附动力学模型为拟二级
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Adsorption Properties of Fe (II) from Activated Carbon Composite of Empty Palm Oil Bunches with Metal Organic Frameworks Cu-TAC
This study aims to determine the adsorption capacity, study the kinetics and adsorption equilibrium of activated carbon/AC and composite carbon/AC-Cu(TAC) in the adsorption process of Fe metal. Oil palm empty fruit bunches (EFB) were used as activated carbon and modified with MOFs Cu(TAC) composite. The concentration of Fe(II) ions adsorbed during the adsorption process was analyzed using AAS. The variations used to determine the optimum conditions for absorption of Fe(II) ions are the mass variation of the adsorbent, the variation of the adsorbate concentration and the contact time between the adsorbent and the adsorbate. Through variations in concentration, the adsorption isotherm characteristics were determined and through variations in contact time, the adsorption kinetics model was determined. The results of AC characterization showed a sharp absorption in the presence of OH, CH and CO groups which indicated the presence of cellulose. AC is amorphous and AC-Cu(TAC) is crystalline and the pore size is mesoporous. The optimum condition for AC is the mass variation of 1 g with an absorption capacity of 0.1816 mg/g, a variation of the concentration of 60 ppm with an absorption capacity of 3.49 mg/g and a contact time of 75 minutes with an absorption capacity of 3.82 mg/g. The optimum condition for ACCu(TAC) was the mass variation of 1 g with an absorption capacity of 0.7275 mg/g, a variation of the concentration of 180 ppm with an absorption capacity of 10.52 mg/g and a contact time of 15 minutes with an absorption capacity of 10.85 mg/g. AC-Cu(TAC) has a better adsorption ability in adsorbing Fe(II) ions. For AC and AC-Cu(TAC) the suitable adsorption isotherm is Freundlich isotherm and the suitable adsorption kinetics model is pseudo second order
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