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One-pot solvothermal synthesis of magnetic biochar from waste biomass: Formation mechanism and efficient adsorption of Cr(VI) in an aqueous solution

生物炭 吸附 水溶液 化学 溶剂热合成 纳米颗粒 碳纤维 一锅法合成 无机化学 粒径 化学工程 核化学 热解 材料科学 复合数 有机化学 纳米技术 催化作用 物理化学 工程类 复合材料
作者
Sha Liang,Shunquan Shi,Haohao Zhang,Jingjing Qiu,Wenhao Yu,Mingyang Li,Quan Gan,Wenbo Yu,Keke Xiao,Bing Liu,Jingping Hu,Huijie Hou,Jiakuan Yang
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:695: 133886-133886 被引量:117
标识
DOI:10.1016/j.scitotenv.2019.133886
摘要

A facile one-pot solvothermal method was applied to synthesize a magnetic biochar composite (MB) using phoenix tree leaves-derived biochar as the carbon matrix. The structure of MB was optimized by varying the load ratio and particle size of Fe3O4 nanoparticles on biochar. Time-dependent structure and composition evolution of solid and liquid phases during heterogeneous solvothermal process were investigated to understand the formation mechanism of MB. Firstly, Fe2+/Fe3+ ions were coordinated by oxygen-containing groups on biochar and part of them were hydrolyzed to form iron hydroxides. Then, those iron-containing precursors were thermally decomposed and reduced to iron oxides; and finally Fe3O4 nanoparticles were generated. The MB had an adsorption capacity for Cr(VI) of 55.0 mg/g in an aqueous solution, which exceeds those of biochar (39.8 mg/g) and Fe3O4 nanoparticles (26.5 mg/g). The adsorption mechanism study reveals that biochar as a carbon skeleton mainly provided binding sites for Cr(VI) and electron-donor groups for reduction of Cr(VI), while Fe3O4 nanoparticles mainly involved in the immobilization of newly formed Cr(III) through formation of Fe(III)-Cr(III) hydroxide. MB exhibited a stable structure with a lower Fe leakage at pH 2.0 than that of a comparable magnetic biochar sample prepared by conventional co-precipitation method. Recycling experiments suggested that MB could keep 84% of its initial removal capability for Cr(VI) even after seven cycles. The results indicate that solvothermal method is a promising alternative to prepare magnetic biochar for adsorption of heavy metal-containing wastewater.

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