Millisecond methane steam reforming via process and catalyst intensification

被引:50
|
作者
Stefanidis, Georgios D.
Vlachos, Dionisios G. [1 ]
机构
[1] Univ Delaware, Dept Chem Engn, Newark, DE 19716 USA
关键词
catalytic combustion; hydrogen; methane; microreactors; process intensification; Pt; Rh; steam reforming; syngas;
D O I
10.1002/ceat.200800237
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The steam reforming of methane on a rhodium/alumina based multifunctional microreactor is simulated using fundamental chemical kinetics in a pseudo-two-dimensional microreactor model. The microreactor consists of parallel catalytic plates, whereby catalytic combustion and reforming take place oil opposite sides of a wall. Heat exchange happens through the wall. It is shown that reforming can happen in millisecond or lower contact times and proper balancing of flow, rates can give high conversions, reasonably high temperatures, and high yield to syngas. It is found that tuning catalyst surface area and internal and external mass and heat transfer through reactor sizing can lead to further process intensification.
引用
收藏
页码:1201 / 1209
页数:9
相关论文
共 50 条
  • [31] THERMODYNAMIC ANALYSIS OF CARBON FORMATION CONDITIONS IN A STEAM METHANE REFORMING PROCESS
    Pashchenko, Dmitry
    Gnutikova, Maria
    THERMAL SCIENCE, 2021, 25 (05): : 3643 - 3654
  • [32] Steam reforming of methane over Ni/SiO2 catalyst with enhanced coke resistance at low steam to methane ratio
    Zhang, Yao
    Wang, Wei
    Wang, Zongyuan
    Zhou, Xintong
    Wang, Zhao
    Liu, Chang-Jun
    CATALYSIS TODAY, 2015, 256 : 130 - 136
  • [33] Modeling and analysis of hydrogen production in steam methane reforming (SMR) process
    Bahadori, Alireza
    Kashiwao, Tomoaki
    PETROLEUM SCIENCE AND TECHNOLOGY, 2019, 37 (12) : 1425 - 1435
  • [34] Steam reforming of methane, ethane, propane, butane, and natural gas over a rhodium-based catalyst
    Schaedel, Benjamin T.
    Duisberg, Matthias
    Deutschmann, Olaf
    CATALYSIS TODAY, 2009, 142 (1-2) : 42 - 51
  • [35] Preparation and evaluation of a metallic foam catalyst for steam-CO2 reforming of methane in GTL-FPSO process
    Park, Daeil
    Moon, Dong Ju
    Kim, Taegyu
    FUEL PROCESSING TECHNOLOGY, 2014, 124 : 97 - 103
  • [36] Methane steam reforming and ethanol steam reforming using a Ni(II)-Al(III) catalyst prepared from lamellar double hydroxides
    Comas, J
    Dieuzeide, ML
    Baronetti, G
    Laborde, M
    Amadeo, N
    CHEMICAL ENGINEERING JOURNAL, 2006, 118 (1-2) : 11 - 15
  • [37] Thermodynamic analysis of steam reforming of methane with statistical approaches
    Tabrizi, Farshad Farshchi
    Mousavi, Seyed Amir Hossein Seyed
    Atashi, Hossein
    ENERGY CONVERSION AND MANAGEMENT, 2015, 103 : 1065 - 1077
  • [38] Steam reforming of methane over nickel-aluminum spinel-derived catalyst
    Ding, Xi
    Li, Bing
    Yang, Yunfeng
    Liu, Xiaohui
    Guo, Yong
    Wang, Yanqin
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 51 : 1256 - 1266
  • [39] Process intensification of dry reforming of methane by structured catalytic wall-plate microreactor
    Hamzah, Anthony Basuni
    Fukuda, Takashi
    Ookawara, Shinichi
    Yoshikawa, Shiro
    Matsumoto, Hideyuki
    CHEMICAL ENGINEERING JOURNAL, 2021, 412
  • [40] Kinetic behaviour of commercial catalysts for methane reforming in ethanol steam reforming process
    Jorge Vicente
    Javier Erea
    Martin Olazar
    Pedro L.Benito
    Javier Bilbao
    Ana G.Gayubo
    Journal of Energy Chemistry, 2014, (05) : 639 - 644