Zou Haowen, Zhao Jiawei, He Feng, Zhong Zhong, Huang Jinsheng, Zheng Yulin, Zhang Yue, Yang Yicheng, Yu Fang, Bashir M Asaad, Gao Bin
College of Environment, Zhejiang University of Technology, Hangzhou 310014, China.
College of Environment, Zhejiang University of Technology, Hangzhou 310014, China.
J Hazard Mater. 2021 Jul 5;413:125252. doi: 10.1016/j.jhazmat.2021.125252. Epub 2021 Jan 28.
As the first of its kind, a novel biochar/iron oxide composite (BM-Fe-HC) was successfully prepared by simply ball milling iron-laden biochar (Fe-HC). The performance and mechanisms of Cr(VI) removal by BM-Fe-HC were investigated. Ball milling effectively reduced particle size, increased specific surface area, more importantly, enhanced the distribution and increased the exposure of iron oxides on biochar surface. As a result, Cr(VI) removal by BM-Fe-HC showed fast kinetics and large adsorption capacity with the Langmuir maximum capacity of 48.1 mg/g, higher than that of other biochar/iron composites reported in the literature. Acidic pH promoted Cr(VI) removal while competition ions (Cl, SO and PO) inhibited Cr(VI) removal by BM-Fe-HC. Comparison of pre- and post-adsorption samples revealed that iron oxides of the BM-Fe-HC played the dominant role in the adsorption and reduction of Cr(VI) during the removal. After adsorption, part of adsorbed Cr(VI) was reduced by Fe(II) and then stabilized by Fe(III) in the form of amorphous CrFe(OH) on the composite surface. All the results demonstrate that novel ball-milled biochar/iron oxide composites can be used as an effective adsorbent to remove Cr(VI) from water.
作为同类中的首个,通过简单地对负载铁的生物炭(Fe-HC)进行球磨,成功制备了一种新型生物炭/氧化铁复合材料(BM-Fe-HC)。研究了BM-Fe-HC去除Cr(VI)的性能和机制。球磨有效地减小了粒径,增加了比表面积,更重要的是,增强了氧化铁在生物炭表面的分布并增加了其暴露程度。结果,BM-Fe-HC对Cr(VI)的去除表现出快速动力学和大吸附容量,Langmuir最大容量为48.1 mg/g,高于文献中报道的其他生物炭/铁复合材料。酸性pH促进了Cr(VI)的去除,而竞争离子(Cl、SO和PO)抑制了BM-Fe-HC对Cr(VI)的去除。吸附前后样品的比较表明,BM-Fe-HC中的氧化铁在去除过程中对Cr(VI)的吸附和还原起主导作用。吸附后,部分吸附的Cr(VI)被Fe(II)还原,然后以无定形CrFe(OH)的形式被Fe(III)稳定在复合材料表面。所有结果表明,新型球磨生物炭/氧化铁复合材料可作为一种有效的吸附剂用于从水中去除Cr(VI)。