Preparation of an Anodic Alumina-Supported Ni Catalyst and Development of a Catalytic Plate Reformer for the Steam Reforming of Methane

被引:0
|
作者
Dong, Shan [1 ]
Lin, Yi [1 ]
Hu, Jiajun [1 ]
Gu, Chenglin [1 ]
Ding, Leilin [1 ]
Zhang, Xinjian [1 ]
Jiang, Shi [1 ]
Guo, Yu [1 ]
机构
[1] Nanjing Tech Univ, Coll Chem Engn, State Key Lab Mat Oriented Chem Engn, 30 Puzhunan Rd, Nanjing 211816, Peoples R China
基金
中国国家自然科学基金;
关键词
anodic alumina; steam reforming of methane; simulation; 3D model; backmixing; HYDROGEN-PRODUCTION; PERFORMANCE; SIMULATION; KINETICS; REACTOR; NICKEL;
D O I
10.3390/en16083426
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
A plate-type Al/Fe-Cr alloy/Al-clad substrate was used to prepare a sandwich-structured plate-type anodic alumina catalyst by anodization, post-modification treatment, and metal loading. The as-prepared plate-type catalyst was utilized in the design of a catalytic plate reactor for a methane steam reforming reaction, and a 3D model was developed to simulate the performance of tube-type and box-type reformers. The experimental results of the preparation of the clad materials showed that the hydrothermal treatment and subsequent high-temperature calcination transformed the amorphous skeletal alumina in the conventional anodic alumina layer into gamma-alumina, and significantly increased its specific surface area. Simulation results showed that the temperature difference between the channel wall and the center of the gas phase of the thin-walled catalyst was only 30% of that of the particulate catalyst, indicating the potential advantages of the catalytic plate reactor in terms of heat transfer and energy saving. When the length-to-diameter ratio (or length-to-width ratio) of the reaction channel is small and the channel height is large, insufficient transverse mass transfer and backmixing are two major factors affecting reformer performance. For the tube-type channels, a length-to-diameter ratio of 10 similar to 35, and a diameter of 5 similar to 20 represent favorable choices. In contrast, for the box-type channel, the length-to-width ratio and the height should be set to 2 similar to 4 and 2 similar to 5 mm, respectively. Additionally, for box-type channels, the number of gas inlet ports has a significant effect on the reformer performance, and the distribution state provided by two inlet ports is close to the ideal distribution state.
引用
收藏
页数:25
相关论文
共 50 条
  • [1] A plate-type anodic alumina supported nickel catalyst for methane steam reforming
    Zhou, Lu
    Guo, Yu
    Zhang, Qi
    Tran, Thanh Phong
    Sakurai, Makoto
    Kameyama, Hideo
    JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2008, 41 (02) : 90 - 99
  • [2] Plate Anodic Alumina-supported Nickel Catalysts in Steam Reforming of Methane: Effects of Hydrogen Addition, Electrical Heating, and Pt Doping
    Zhou, Lu
    Guo, Yu
    Chen, Jian
    Zhao, Wen
    Sakurai, Makoto
    Kameyama, Hideo
    CHEMISTRY LETTERS, 2010, 39 (08) : 858 - 860
  • [3] Steam reforming reactions over a metal-monolithic anodic alumina-supported Ni catalyst with trace amounts of noble metal
    Guo, Yu
    Thou, Lu
    Kameyama, Hideo
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2011, 36 (09) : 5321 - 5333
  • [4] Oxidative CO2 Reforming of Methane on Alumina-Supported Co-Ni Catalyst
    Foo, Say Yei
    Cheng, Chin Kui
    Nguyen, Tuan-Huy
    Adesina, Adesoji A.
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2010, 49 (21) : 10450 - 10458
  • [5] Fe-Promoted Alumina-Supported Ni Catalyst Stabilized by Zirconia for Methane Dry Reforming
    Fakeeha, Anis H. H.
    Al-Baqmaa, Yousef A. A.
    Ibrahim, Ahmed A. A.
    Almubaddel, Fahad S. S.
    Alotibi, Mohammed F. F.
    Bentalib, Abdulaziz
    Abasaeed, Ahmed E. E.
    Al-Zahrani, Ateyah A. A.
    Mohammed, Yahya Ahmed
    Al-Fatesh, Ahmed S. S.
    CATALYSTS, 2023, 13 (05)
  • [6] The application of inelastic neutron scattering to investigate the steam reforming of methane over an alumina-supported nickel catalyst
    McFarlane, Andrew R.
    Silverwood, Ian P.
    Norris, Elizabeth L.
    Ormerod, R. Mark
    Frost, Christopher D.
    Parker, Stewart F.
    Lennon, David
    CHEMICAL PHYSICS, 2013, 427 : 54 - 60
  • [7] PROMOTED ALUMINA SUPPORTED NI CATALYST FOR ETHANOL STEAM REFORMING
    Dan, Monica
    Mihet, Maria
    Lazar, Mihaela Diana
    Muresan, Liana Maria
    STUDIA UNIVERSITATIS BABES-BOLYAI CHEMIA, 2016, 61 (02): : 137 - 154
  • [8] Novel Metal Monolithic Anodic Alumina Catalyst for Methane Catalytic Combustion, the External Heat Source for Methane Steam Reforming
    Li, Huabo
    Guo, Yu
    Iqbal, Ahmad
    Zhou, Lu
    Chen, Jian
    Yao, Yi
    Sakurai, Makoto
    Kameyama, Hideo
    JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2009, 42 (12) : 902 - 909
  • [9] Steam Methane Reforming Using an Anodic Alumina Supported Nickel Catalyst (Ni/Al2O3/Alloy): Analysis of Catalyst Deactivation
    Guo, Yu
    Thanh Phong Tran
    Zhou, Lu
    Zhang, Qi
    Kameyama, Hideo
    JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2007, 40 (13) : 1221 - 1228
  • [10] Alumina-supported Ni catalysts modified with silver for the steam reforming of methane: Effect of Ag on the control of coke formation
    Parizotto, N. V.
    Rocha, K. O.
    Damyanova, S.
    Passos, F. B.
    Zanchet, D.
    Marques, C. M. P.
    Bueno, J. M. C.
    APPLIED CATALYSIS A-GENERAL, 2007, 330 : 12 - 22