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牛俊天
职称:讲师学历:工学博士
学科:能源与动力工程
研究领域或方向:1. CO2能源资源化利用; 2. 碳基能源(CH4)高效转化
邮箱:juntianniu@163.com
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    《煤的清洁利用与污染防治》
    《可再生能源的利用》
    Fuel, Energy, International Journal of Hydrogen Energy, Environmental Science & Technology 等学术期刊审稿人
    (1) Unraveling enhanced activity, selectivity, and coke-resistance of Pt-Ni bimetallic clusters in dry reforming, ACS Catalysis, 2021, 11: 2398-2411. (第一作者,SCI,一区TOP,入选ESI高被引 )
    (2) New mechanism insights into methane steam reforming on Pt/Ni from DFT and experimental kinetic study, Fuel, 2020, 266: 117143. (第一作者,SCI,一区TOP,入选ESI高被引 )
    (3) Effect of oxide additives on the hydrotalcite derived Ni catalysts for CO2 reforming of methane, Chemical Engineering Journal, 2019, 377: 119763. (第一作者,SCI,一区TOP,入选ESI高被引 )
    (4) Understanding the mechanism of CO2 reforming of methane to syngas on Ni@Pt surface compared with Ni(111) and Pt(111), Applied Surface Science, 2020, 513: 145840. (第一作者,SCI,一区TOP)
    (5) Dry (CO2) reforming of methane over Pt catalysts studied by DFT and kinetic modeling, Applied Surface Science, 2016, 376: 79−90. (第一作者,SCI,一区TOP)
    (6) Comprehensive review of Cu-based CO2 hydrogenation to CH3OH: Insights from experimental work and theoretical analysis, International Journal of Hydrogen Energy, 2022, Accept. (第一作者,SCI,二区TOP)
    (7) Methane dry (CO2) reforming to syngas (H2/CO) in catalytic process: From experimental study and DFT calculations, International Journal of Hydrogen Energy, 2020, 45: 30267–30287. (第一作者,SCI,二区TOP)
    (8) Identification of active sites in CO2 activation on MgO supported Ni cluster, International Journal of Hydrogen Energy, 2020, 45: 11108–11115. (第一作者,SCI,二区TOP)
    (9)Effects of trapezoidal bluff bodies on blow out limit of methane/air combustion in a micro-channel, Applied Thermal Engineering, 2016, 95: 454−461. (第一作者,SCI,二区TOP)
    (10) Mechanisms of oxygen reduction reaction on B doped FeN4–G and FeN4–CNT catalysts for proton exchange membrane fuel cells, International Journal of Energy Research, 2021, 45: 8524–8535. (第一作者,SCI,二区TOP)
    (11)Effect of Pt addition on resistance to carbon formation of Ni catalysts in methane dehydrogenation over Ni-Pt bimetallic surfaces: A density functional theory study, Molecular Catalysis, 2017, 434: 206−218. (第一作者,SCI,二区)
    (12)CO2 dissociation over PtxNi4-x bimetallic clusters with and without hydrogen sources: A density functional theory study, Journal of CO2 Utilization, 2016, 16: 431−441. (第一作者,SCI,二区)
    (13)Insight into the effect of facet-dependent surface and oxygen vacancies of CeO2 for Hg removal: From theoretical and experimental studies, Journal of Hazardous Materials, 2020, 397: 122646.(共同通讯,SCI,一区TOP)
    (14)The role of S in the Co-N-S-C catalysis system towards the ORR for proton exchange membrane fuel cells, Applied Surface Science, 2021, 540: 148325. (共同通讯,SCI,一区TOP)
    (15)Mechanisms insight into oxygen reduction reaction on sulfur-doped Fe–N2 graphene electrocatalysts, International Journal of Hydrogen Energy, 2020, 45: 521−530. (共同通讯,SCI,二区TOP,入选ESI高被引 )
    (16)Understanding active sites and mechanism of oxygen reduction reaction on FeN4–doped graphene from DFT study, International Journal of Hydrogen Energy, 2020, 45: 15465–15475. (共同通讯,SCI,二区TOP)
    (17)Effect of active site and charge transfer on methane dehydrogenation over different Co doped Ni surfaces by density functional theory, International Journal of Hydrogen Energy, 2020, 45: 31849–31862. (共同通讯,SCI,二区TOP)
    (18)Comparative DFT study of carbon formation and removal mechanism on Rh modified Ni-based catalyst in the CH4/CO2 reforming, International Journal of Energy Research, 2021, 45: 10100–10111.(共同通讯,SCI,二区TOP)
    (19)Effect of different doping ratios of Cu on the carbon formation and the elimination on Ni(111) surface: A DFT study, Molecular Catalysis, 2021,502: 111360. (共同通讯,SCI,二区)
    (1)国家自然科学基金青年项目:表界面调控优化CH4/CO2催化重整反应性能及作用机制研究,2022.01-2024.12,30万,在研;
    (2) 山西省自然科学基金青年项目:Cu-Ni/ZrO2催化CH4-CO2重整中合金效应及载体作用协同调控反应性能研究,2022.01-2024.12,5万,在研;
    (3) 重庆市自然科学基金面上项目:Ni基催化CH4-CO2重整反应中Rh改性对C–H与C=O活化机制及抗积碳能力调控,2020.09-2023.08,10万,在研;
    (4) 中国博士后科学基金面上项目:基于金属颗粒尺寸效应对CH4/CO2催化重整反应性能调控研究,2020.09-2021.04,8万,结题;
    (5) 重庆市博士后科研项目特别资助:Cu/Co修饰Ni基催化CH4/CO2重整反应机理解析,2019.09-2021.03,10万,结题。
    (1)工程热物理年会燃烧学术会议, 2021, 11.11–11.14, 中国, 大连, 中国工程热物理学会, 第二金属M对CH4在Ni/MgO上活化的作用机制研究, 墙报交流;
    (2)工程热物理年会燃烧学术会议, 2020, 11.12–11.15, 中国, 厦门, 中国工程热物理学会, Pt加入Ni颗粒表面对CH4-CO2重整反应的影响, 墙报交流;
    (3)25th International Conference on Chemical Reaction Engineering, 2018, 5.20–5.23, Italy, Florence, Towards highly active and stable Ni based dry reforming catalysts through decoupling of methane activation and carbon formation by introducing single Pt atoms to surfaces, Poster.

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