Adsorption of Cr(VI) from Industrial Wastewater Using a Novel Zeolite-A/Fe3O4/Biochar/MOF-5 Composite

生物炭 沸石 吸附 废水 复合数 化学工程 材料科学 核化学 化学 废物管理 催化作用 复合材料 热解 有机化学 工程类
作者
Tessema Derbe,Lijalem Ayele,Teketel Girma Gindose,Gebrehiwot Gebreslassie,Taju Sani,Enyew Amare Zereffa
出处
期刊:Industrial & Engineering Chemistry Research [American Chemical Society]
卷期号:64 (9): 4694-4708 被引量:8
标识
DOI:10.1021/acs.iecr.4c04282
摘要

Disposal of Cr(VI) into environments without adequate pretreatment from various industrial wastes has detrimental effects on human health that range from skin irritation to cancer depending on the dose and the exposure level. Taking this into consideration, a novel Zeolite-A/Fe3O4/Biochar/MOF-5 (Z-A/Fe3O4/BC/MOF-5) composite was synthesized through the solvothermal method for the adsorption of Cr(VI) from industrial wastewater. The phase structure, surface area, functional group, surface morphology, and elemental composition of the as-synthesized adsorbent were characterized by using XRD, BET, FT-IR, and SEM-EDX, respectively. The batch adsorption was studied by optimizing the adsorption parameters. The maximum adsorption efficiency (95.12%) and adsorption capacity (47.57 mg/g) were obtained at 15 mg/L of initial concentration, 0.3 g/L of adsorbent dose, 120 min of contact time, and pH = 5, respectively. The adsorption isotherm and kinetic of Z-A/Fe3O4/BC/MOF-5 composite were well fitted with the Freundlich and pseudo-second-order models, which suggests that the adsorption occurred through chemosorption on the heterogeneous adsorbent’s surface. Furthermore, the recyclability of the Z-A/Fe3O4/BC/MOF-5 adsorbent was conducted for five successive runs and resulted in 95.07, 89.59, 85.69, 71.74, and 64.83% for the first, second, third, fourth, and fifth runs, respectively. The synthesized quaternary adsorbent was finally tested on industrial wastewater with a Cr(VI) initial concentration of 36.27 mg/L collected from Batu Tannery Industry PLC, Ethiopia. Interestingly, the Z-A/Fe3O4/BC/MOF-5 composite shows higher adsorption performance, 92.85% Cr(VI) removal efficiency, much higher than its pristine MOF-5 (90.57%), binary Z-A/MOF-5 (83.05%), and ternary Z-A/Fe3O4/BC (82.83%) composites. This could be due to the synergic effect of the individual materials in the Z-A/Fe3O4/BC/MOF-5 composite. Consequently, the quaternary Z-A/Fe3O4/BC/MOF-5 composite is promising for the removal of Cr(VI) from industrial wastewater.
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