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碳球修饰的-Fe₂O₃对水溶液中Cr(VI)的吸附性能改善

Improved Adsorption Performance of -Fe₂O₃ Modified with Carbon Spheres for Cr(VI) Removal from Aqueous Solution.

作者信息

Gao Hongtao, Kong Miaomiao, Song Hui, Fu Tian, Dai Dongmei, Li Fenghua, Si Chongdian

机构信息

State Key Laboratory Base of Eco-Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, P. R. China.

Department of Chemistry and Chemical Engineering, Jining University, Qufu 273155, P. R. China.

出版信息

J Nanosci Nanotechnol. 2018 Feb 1;18(2):1034-1042. doi: 10.1166/jnn.2018.13972.

Abstract

Carbons spheres, easily fabricated by glucose hydrolysis, were integrated with α-Fe2O3 for removing heavy metal from contaminated water. The α-Fe2O3 particles were anchored on the surface of carbon spheres and the combination of two components provided more rough surface area, enhancing the adsorption performance of α-Fe2O3. The removal efficiency of Cr(VI) on α-Fe2O3/carbon spheres was 88% in 240 min, which was 1.93 times higher than that of pristine α-Fe2O3. The investigation on adsorption kinetics and isotherm showed that the pseudo-first-order kinetic and Langmuir isotherm models could well fit the experimental data. The adsorption rate was mainly controlled by both exterior and interior surface diffusion steps. Adsorption thermodynamics investigation proved that the Cr(VI) adsorption on α-Fe2O3/carbon spheres was an endothermic (93.32 kJ · mol-1) and spontaneous (-3.96 kJ · mol-1) physical process. The adsorption capacity was 18.7 mg · g-1 and after recycling five times, the decline of adsorption capacity of α-Fe2O3/carbon spheres was 7.8%, which indicated that the adsorbents could be recycled in the removal of Cr(VI). It indicated that the hybridization with carbon spheres could enhance the adsorption performance of α-Fe2O3, which might be used as convenient adsorbent to remove heavy metal in industry.

摘要

通过葡萄糖水解易于制备的碳球与α-Fe2O3结合,用于去除受污染水中的重金属。α-Fe2O3颗粒锚定在碳球表面,两种组分的结合提供了更大的粗糙表面积,提高了α-Fe2O3的吸附性能。α-Fe2O3/碳球对Cr(VI)的去除效率在240分钟内为88%,是原始α-Fe2O3的1.93倍。吸附动力学和等温线研究表明,准一级动力学和朗缪尔等温线模型能很好地拟合实验数据。吸附速率主要受外表面和内表面扩散步骤控制。吸附热力学研究证明,α-Fe2O3/碳球对Cr(VI)的吸附是一个吸热(93.32 kJ·mol-1)且自发(-3.96 kJ·mol-1)的物理过程。吸附容量为18.7 mg·g-1,循环使用五次后,α-Fe2O3/碳球的吸附容量下降了7.8%,这表明吸附剂在去除Cr(VI)时可以循环使用。这表明与碳球杂交可以提高α-Fe2O3的吸附性能,其可作为工业上去除重金属的便捷吸附剂。

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