生物炭
磷酸盐
吸附
磷酸铁
化学
赤铁矿
活性污泥
无定形固体
废水
热解
无机化学
核化学
化学工程
废物管理
矿物学
有机化学
工程类
作者
Qi Yang,Xiaolin Wang,Wei Luo,Jian Sun,Qiuxiang Xu,Fei Chen,Jianwei Zhao,Shana Wang,Fubing Yao,Dongbo Wang,Xiaoming Li,Guangming Zeng
标识
DOI:10.1016/j.biortech.2017.09.136
摘要
Excessive discharge of phosphate (P) into the surface water is the key factor to cause the eutrophication, so its removal has aroused much attention in recent years. In this study, different iron modification (chemical co-precipitation of Fe3+/Fe2+ or FeCl3 impregnation) was used to improve the phosphate adsorption capacity of waste activated sludge (WAS)-based biochar. Comparative tests demonstrated that the FeCl3-impregnated WAS-based biochar exhibited much superior phosphate adsorption capacity (111.0mg/g) in all as-prepared samples and performed well even under the interferences with pH and coexisting ions. X-ray diffraction (XRD) analyzes indicated that the iron in FeCl3-impregnated WAS-based biochar existed mainly in amorphous phase, as hematite and amorphous hydroxides forms, which was of great benefit to the phosphate adsorption. Besides, ligand exchange plays important role in the adsorption of phosphate. The WAS-based biochar kept over 60% phosphate removal efficiency after five recycles.
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