Wenyao PengShanshan WangJunjian AnChenyang HuJian ZhangPeng Wang
Abstract Graphene oxide (GO)‐Cu 2 (OH) 3 NO 3 composite was prepared by a thermal calcination process and evaluated as an effective heterogeneous catalytic material. The composite displayed prominent activated performance to persulfate, which was influenced by preparation condition and the reaction parameters in catalytic system. Under optimal reactive conditions, the GO‐Cu 2 (OH) 3 NO 3 composite yielded rapid degradation of ferulic acid, which the corresponding apparent rate constant was 1.12×10 −1 min −1 . Catalytic mechanism analysis showed that the main oxygen species were ⋅SO 4 − and ⋅OH. Among them, ⋅OH made the main contribution in the catalytic system. The analysis of degradation intermediates of ferulic acid showed that the compound could be mineralized to small molecules. The remarkable enhanced heterogeneous catalytic performance of GO‐Cu 2 (OH) 3 NO 3 was due to a larger specific surface area, high adsorption capacity and a high mass transfer efficiency of oxidizing radicals in the reactive system.
Jie‐Guang SongLianmeng ZhangJunguo LiJianrong Song
W. BuchmeierB. EngelenH. D. Lutz
Jie‐Guang SongLianmeng ZhangJunguo LiJianrong SongJian-Rong SongJian-Rong Song
N. K. SrinivasanM.‐C. SuJ. V. Michael
Kazuaki TokuhashiHidekazu NagaiAkifumi TakahashiMasahiro KaiseShigeo KondôAkira SekiyaMitsuru TakahashiYoshihiko GotohAtsuo Suga