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[SCI] Feng D, Guo D, Zhang Y*, Sun S, Zhao Y, Shang Q, Sun H, Wu J, Tan H. Functionalized construction of biochar with hierarchical pore structures and surface O-/N-containing groups for phenol adsorption. Chemical Engineering Journal 2021, 410:127707.(高被引论文,中科院一区TOP/JCR Q1, IF=16.744, 2021年04月15日, DOI: 10.1016/j.cej.2020.127707)
[SCI] Feng D, Zhao Y*, Zhang Y, Xu H, Zhang L, Sun S. Catalytic mechanism of ion-exchanging alkali and alkaline earth metallic species on biochar reactivity during CO2/H2O gasification. Fuel 2018, 212(Supplement C):523-532.(高被引论文,中科院一区TOP/JCR Q1, IF=8.035, 2018年01月15日, DOI: 10.1016/j.fuel.2017.10.045)
[SCI] Feng D, Zhang Y*, Zhao Y, Sun S, Wu J, Tan H. Mechanism of in-situ dynamic catalysis and selective deactivation of H2O-activated biochar for biomass tar reforming. Fuel 2020, 279:118450.(高被引论文,中科院一区TOP/JCR Q1, IF=8.035, 2020年11月01日,DOI: 10.1016/j.fuel.2020.118450)
[SCI] Zhang Y, Wang S, Feng D*, Gao J, Dong L, Zhao Y, Sun S, Huang Y, Qin Y. Functional biochar synergistic solid/liquid-phase CO2 capture: a review. Energy & Fuels 2022, 36(6): 2945-2970.(高被引论文,中科院二区TOP/JCR Q2,被选作期刊封面, 被中国科学网、光明科普、分析测试百科网、潇湘晨报、生物质前沿公众号等报道,IF=4.654, 2022年02月23日, DOI: 10.1021/acs.energyfuels.1c04372)
[SCI] Feng D, Zhao Y*, Zhang Y, Sun S, Meng S, Guo Y, Huang Y. Effects of K and Ca on reforming of model tar compounds with pyrolysis biochar under H2O or CO2. Chemical Engineering Journal 2016, 306:422-432.(中科院一区TOP/JCR Q1, IF=16.744, 2016年12月15日,DOI: 10.1016/j.cej.2016.07.065)
[SCI] Feng D, Guo D, Zhang Y*, Sun S, Zhao Y, Chang G, Guo Q, Qin Y. Adsorption-enrichment characterization of CO2 and dynamic retention of free NH3 in functionalized biochar with H2O/NH3·H2O activation for promotion of new ammonia-based carbon capture. Chemical Engineering Journal 2021, 409:128193.(中科院一区TOP/JCR Q1, IF=16.744, 2021年04月01日, DOI: 10.1016/j.cej.2020.128193)
[SCI] Feng D, Yan P, Li Y, Zhang Y*, Wang Y, Zhao Y, Wei G, Gao J, Sun S. Mechanism of functionalized biochar/K2CO3 cross-linking capture of multi-concentration CO2. Fuel Processing Technology 2023, 241:107614.(中科院一区TOP/JCR Q1, IF=8.129, 2022年12月26日, DOI: 10.1016/j.fuproc.2022.107614)
[SCI] Sun H, Feng D*, Zhao Y, Sun S. Optimization of operating parameters for tar reforming/hydrogen upgrading in corn straw pyrolysis polygeneration. Renewable Energy 2023, 241:1-10.(中科院一区TOP/JCR Q1, IF=8.634, 2023年06月10日, DOI: 10.1016/j.renene.2023.06.010)
[SCI] Feng D, Li Y, Yan P, Zhang Y*, Wu C, Zhang Y, Gao J, Sun S. Functionalized cross-linking mechanism of biochar “adsorption-reaction microunit” on the promotion of new ammonia-based CO2 capture. Separation and Purification Technology 2023, 317:123865.(中科院一区TOP/JCR Q1, IF=9.136, 2023年04月15日, DOI: 10.1016/j.seppur.2023.123865)
[SCI] Feng D, Zhang Z, Zhu X, Zhang Y*, Luo Z, Luo L, Zhang W*, Wu C, Gao J. Mechanism of CO2 capture by ethanol-biochar functionalized cross-linking enhanced ammonia. Fuel Processing Technology 2023, 247: 107796.(中科院一区TOP/JCR Q1, IF=8.129, 2023年04月28日, DOI: 10.1016/j.fuproc.2023.107796)
[SCI] Feng D*, Wang J, Wang S, Sun S, Shang Q, Zhao Y. Effect of biochar support on the catalytic performance of Fe-based catalysts for CH4 cracking. Fuel Processing Technology 2023, 247: 107794.(中科院一区TOP/JCR Q1, 被科学温故社等报道,IF=8.129, 2023年04月28日, DOI: 10.1016/j.fuproc.2023.107794)
[SCI] Zhang Y, Shang Q, Feng D*, Sun H, Wang F, Hu Z, Cheng Z, Zhou Z, Zhao Y, Sun S. Interaction mechanism of in-situ catalytic coal H2O-gasification over biochar catalysts for H2O-H2-tar reforming and active sites conversion. Fuel Processing Technology 2022, 233:107307.(中科院一区TOP/JCR Q1, IF=8.129, 2022年05月09日, DOI: 10.1016/j.fuproc.2022.107307)
[SCI] Li Y, Feng D*, Sun S, Zhao Y, Zhang W, Bai C. Mechanism of CO2 and H2O action on char in oxy-fuel combustion with wet flue gas recirculation. Energy & Fuels 2023, 37(14):10721-10725.(中科院二区TOP/JCR Q2,被选作期刊封面, IF=4.654, 2023年05月25日, DOI: 10.1021/acs.energyfuels.3c01080)
[SCI] Sun H, Feng D*, Zhao Y, Sun S. Regulation of partial oxidation in biochar-catalyzed tar reforming for hydrogen upgrading in syngas: the effect of oxygen concentration. Fuel 2023, 341:127671.(中科院一区TOP/JCR Q1, IF=8.035,, 2023年02月04日, DOI: 10.1016/j.fuel.2023.127671)
[SCI] Wang S, Dong L, Feng D*, Zhang Y, Zhang Z, Guo D, Zhang W, Wu K, Zhao Y, Sun S. Self-template mechanism of "selective silicon dissolution" for the construction of functional rice husk biochar. Fuel Processing Technology 2022, 238:107511.(中科院一区TOP/JCR Q1, IF=8.129,2022年09月24日, DOI: 10.1016/j.fuproc.2022.107511)
[SCI] Guo D, Wu J, Feng D*, Zhang Y, Zhu X, Luo Z, Kang Y, Zhao Y, Sun S. Mechanism of efficient magnetic biochar for typical aqueous organic contaminant combined-adsorption removal. Fuel Processing Technology 2023, 247: 107795.(中科院一区TOP/JCR Q1, IF=8.129, 2023年04月28日, DOI: 10.1016/j.fuproc.2023.107795)
[SCI] Li Y, Feng D*, Sun S, Zhao Y, Shang Q, Chen K, Li B, Wu J. Biomass-coal reburning: Competitive mechanism of gas-solid product activation coal char. Energy 2022, 261:125225.(中科院一区TOP/JCR Q1, IF=9, 2022年08月27日, DOI: 10.1016/j.energy.2022.125225)
[SCI] Sun H, Feng D*, Zhang Y, Sun S, Zhao Y, Zhang F. Regeneration of deactivated biochar for catalytic tar reforming by partial oxidation: Effect of oxygen concentration and regeneration time. Fuel 2022, 330:125572.(中科院一区TOP/JCR Q1, IF=8.035, 2022年08月12日, DOI: 10.1016/j.fuel.2022.125572)
[SCI] Guo D, Feng D*, Zhang Y, Zhang Z, Wu J, Zhao Y, Sun S. Synergistic mechanism of biochar-nano TiO2 adsorption-photocatalytic oxidation of tuluene. Fuel Processing Technology 2022, 229:107200.(中科院一区TOP/JCR Q1, IF=8.129, 2022年05月15日, DOI: 10.1016/j.fuproc.2022.107200)
[SCI] Feng D, Shang Q, Dong H*, Zhang Y, Wang Z, Li D, Xie M, Wei Q, Zhao Y, Sun S. Catalytic mechanism of Na on coal pyrolysis-derived carbon black formation: Experiment and DFT simulation. Fuel Processing Technology 2021, 224:107011.(中科院一区TOP/JCR Q1, IF=8.129, 2021年12月15日, DOI: 10.1016/j.fuproc.2021.107011)
[SCI] Sun H, Feng D*, Sun S, Wei Q, Zhao Y, Zhang Y, Xie M, Qin Y. Effect of steam on coke deposition during the tar reforming from corn straw pyrolysis over biochar. Fuel Processing Technology 2021, 224:107007.(中科院一区TOP/JCR Q1, IF=8.129, 2021年12月15日, DOI: 10.1016/j.fuproc.2021.107007)
[SCI] Sun H, Sun S, Feng D*, Zhao Y, Zhang Y, Zhang L, Wu J, Qin Y. Mechanism of coke formation and corresponding gas fraction characteristics in biochar-catalyzed tar reforming during corn straw pyrolysis. Fuel Processing Technology 2021, 221:106903.(中科院一区TOP/JCR Q1, IF=8.129, 2021年10月01日, 2021年10月15日, DOI: 10.1016/j.fuproc.2021.106903)
[SCI] Feng D, Guo D, Shang Q, Zhao Y*, Zhang L, Guo X, Cheng J, Chang G, Guo Q, Sun S. Mechanism of biochar-gas-tar-soot formation during pyrolysis of different biomass feedstocks: Effect of inherent metal species. Fuel 2021, 293:120409.(中科院一区TOP/JCR Q1, IF=8.035, 2021年06月01日, DOI:10.1016/j.fuel.2021.120409)
[SCI] Sun H, Feng D*, Zhao Y, Sun S, Wu J, Wang P, Chang G, Lai X, Tan H, Qin Y. Mechanism of catalytic tar reforming over biochar: Description of volatile-H2O-char interaction. Fuel 2020, 275:117954.(中科院一区TOP/JCR Q1, IF=8.035, 2020年09月01日, DOI: 10.1016/j.fuel.2020.117954)
[SCI] Feng D, Wang S, Zhang Y, Zhao Y, Sun S*, Chang G, Lai X, Tan H, Qin Y. Review of Carbon Fixation Evaluation and Emission Reduction Effectiveness for Biochar in China. Energy & Fuels 2020, 34(9):10583-10606.(中科院二区TOP/JCR Q1, IF=4.654, 2020年09月17日, DOI: 10.1021/acs.energyfuels.0c02396)
[SCI] Zhao Y, Feng D*, Li B, Sun S, Zhang S. Combustion characteristics of char from pyrolysis of Zhundong sub-bituminous coal under O2/steam atmosphere: Effects of mineral matter. International Journal of Greenhouse Gas Control 2019, 80:54-60.(中科院二区/JCR Q1, IF=4.400, 2019年01月15日, DOI: 10.1016/j.ijggc.2018.12.001)
[SCI] Sun H, Feng D*, Zhao Y, Guo D, Ma Y, Tan H, Sun S. Characteristics of Gas–Liquid–Solid Products in Corn Straw Gasification: Effect of the Char–Tar–H2O Interaction. Energy & Fuels 2019, 33(10):9974-9984.(Top 25 most cited articles in 2019.中科院二区TOP/JCR Q1, IF=4.654, 2019年10月15日, DOI: 10.1021/acs.energyfuels.9b02682)
[SCI] Feng D, Gao J*, Zhang Y*, Li H, Du Q, Wu S. Mass transfer in ammonia-based CO2 absorption in bubbling reactor under static magnetic field. Chemical Engineering Journal 2018;338:450-456.(中科院一区TOP/JCR Q1, IF=16.744, 2018年04月15日, DOI: 10.1016/j.cej.2018.01.061)
[SCI] Zhao Y, Feng D*, Zhang Z, Sun S, Zhou X, Luan J, Wu J. Experimental study of cyclone pyrolysis–Suspended combustion air gasification of biomass. Bioresource Technology 2017, 243:1241-1246.(中科院一区TOP/JCR Q1, IF=11.889, 2017年11月15日, DOI: 10.1016/j.biortech.2017.07.065)
[SCI] Feng D, Zhao Y*, Zhang Y, Sun S. Effects of H2O and CO2 on the homogeneous conversion and heterogeneous reforming of biomass tar over biochar. International Journal of Hydrogen Energy 2017, 42(18):13070-13084.(中科院二区TOP/JCR Q1, IF=7.139, 2017年05月04日, DOI: 10.1016/j.ijhydene.2017.04.018)
[SCI] Zhao Y, Feng D, Zhang Y, Huang Y, Sun S*. Effect of pyrolysis temperature on char structure and chemical speciation of alkali and alkaline earth metallic species in biochar. Fuel Processing Technology 2016, 141:54-60.(高被引论文,中科院一区TOP/JCR Q1, IF=8.129, 2016年01月15日, DOI: 10.1016/j.fuproc.2015.06.029)