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[12]
Sulfur doped-graphene for enhanced acetaminophen degradation via electro-catalytic activation: Efficiency and mechanism.[J].Qian Zhang;Bing Xin Wang;Yong Bo Yu;Bor-Yann Chen;Jun-ming Hong.Science of the Total Environment.2020, C
[13]
Pollutant degradation behaviors in a heterogeneous Fenton system through Fe/S-doped aerogel.[J].Xuechun Wang;Yuan Zhuang;Jia Zhang;Laizhou Song;Baoyou Shi.Science of the Total Environment.2020, C
[14]
Nitrogen-doping positively whilst sulfur-doping negatively affect the catalytic activity of biochar for the degradation of organic contaminant.[J].Dahu Ding;Shengjiong Yang;Xiaoyong Qian;Liwei Chen;Tianming Cai.Applied Catalysis B: Environmental.2020,
[16]
Hierarchical porous biochar from shrimp shell for persulfate activation: A two-electron transfer path and key impact factors.[J].Jiangfang Yu;Lin Tang;Ya Pang;Guangming Zeng;Haopeng Feng;Jiajing Zou;Jingjing Wang;Chengyang Feng;Xu Zhu;Xilian Ouyang;Jisui Tan.Applied Catalysis B: Environmental.2020,
[17]
N-doped FeOOH/RGO hydrogels with a dual-reaction-center for enhanced catalytic removal of organic pollutants.[J].Yuan Zhuang;Xuechun Wang;Qiaozhi Liu;Baoyou Shi.Chemical Engineering Journal.2020,
[19]
In-situ pyrolysis of Enteromorpha as carbocatalyst for catalytic removal of organic contaminants: Considering the intrinsic N/Fe in Enteromorpha and non-radical reaction.[J].Cheng Chen;Tengfei Ma;Yanan Shang;Baoyu Gao;Bo Jin;Hongbing Dan;Qian Li;Qinyan Yue;Yanwei Li;Yu Wang;Xing Xu.Applied Catalysis B: Environmental.2019,
[20]
Insights into the oxidation of organic contaminants by iron nanoparticles encapsulated within boron and nitrogen co-doped carbon nanoshell: Catalyzed Fenton-like reaction at natural pH.[J].Hao Zhou;Shikang Wu;Yaoyu Zhou;Yuan Yang;Jiachao Zhang;Lin Luo;Xiaoguang Duan;Shaobin Wang;Lei Wang;Daniel C.W. Tsang.Environment International.2019,