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[71]Guo Feiqiang,Zhao, Xingmin,Peng, Kuangye,Liang, Shuang,Jia, Xiaopeng,qianlin.Catalytic reforming of biomass primary tar from pyrolysis over waste steel slag based catalysts,2019,v 44,n 31,p16224-16233
[72]Guo Feiqiang,Jiang, Xiaochen,Li, Xiaolei,Peng, Kuangye,Guo chenglong,Zhonghao Rao.Carbon electrode material from peanut shell by one-step synthesis for high performance supercapacitor,2019,v 30,n 1,p914-925
[73]Guo Feiqiang,Jia, Xiaopeng,Liang, Shuang,Jiang, Xiaochen,Peng, Kuangye,qianlin.Design and synthesis of highly porous activated carbons from Sargassum as advanced electrode materials for supercapacitors,2019,v 166,n 14,pA3109-A3118
[74]Guo Feiqiang,彭旷野,赵兴民,蒋孝晨,qianlin,Guo chenglong,Zhonghao Rao.Influence of impregnated copper and zinc on the pyrolysis of rice husk in a micro-fluidized bed reactor: Characterization and kinetics,2018,43;46;21256-21268
[75]Guo Feiqiang,彭旷野,李天涛,赵兴民,董玉平,Zhonghao Rao.Catalytic Cracking of Primary Tar Vapor from Biomass over High Ash-Containing Paper Sludge Ash,2018,32;12;12514-12522
[76]Guo Feiqiang,李晓蕾,蒋孝晨,赵兴民,Guo chenglong,Zhonghao Rao.Characteristics and toxic dye adsorption of magnetic activated carbon prepared from biomass waste by modified one-step synthesis,2018,555;10;43-54
[77]李晓蕾,Guo Feiqiang,蒋孝晨,赵兴民,彭旷野,郭成龙.Study of low-cost and high-performance biomass activated carbon for phenol removal from wastewater: Kinetics, isotherms, and thermodynamics,2018,13;5;
[78]李晓蕾,Guo Feiqiang,蒋孝晨,赵兴民,彭旷野,Guo chenglong.Study of low-cost and high-performance biomass activated carbon for phenol removal from wastewater: Kinetics, isotherms, and thermodynamics,2018,13;5;
[79]Guo Feiqiang,李晓蕾,刘元,彭旷野,Guo chenglong,Zhonghao Rao.Catalytic cracking of biomass pyrolysis tar over char-supported catalysts,2018,167;7;81-90
[80]李天涛,Guo Feiqiang,李晓蕾,刘元,彭旷野,蒋孝晨,郭成龙.Characterization of herb residue and high ash-containing paper sludge blends from fixed bed pyrolysis,2018,76;6;544-554
total97 8/10
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