Kinetics of long chain n-paraffin dehydrogenation over a commercial Pt-Sn-K-Mg/γ-Al2O3 catalyst: Model studies using n-dodecane

被引:14
|
作者
He, Songbo [1 ,2 ]
Castello, Daniele [2 ,3 ]
Krishnamurthy, K. R. [4 ]
Al-Fatesh, Ahmed S. [5 ]
Winkelman, J. G. M. [1 ]
Seshan, K. [2 ]
Fakeeha, Anis H. [5 ]
Kersten, S. R. A. [2 ]
Heeres, H. J. [1 ]
机构
[1] Univ Groningen, Engn & Technol Inst Groningen, Green Chem React Engn, NL-9747 AG Groningen, Netherlands
[2] Univ Twente, Fac Sci & Technol, NL-7500 AE Enschede, Netherlands
[3] Aalborg Univ, Dept Energy Technol, DK-9220 Aalborg, Denmark
[4] Indian Inst Technol Madras, Natl Ctr Catalysis Res, Chennai 600036, Tamil Nadu, India
[5] King Saud Univ, Coll Engn, Chem Engn Dept, Riyadh 11421, Saudi Arabia
关键词
Dehydrogenation; Long chain paraffins; n-dodecane; Kinetic studies; Pt-Sn/Al2O3; Olefins; PROMOTED PLATINUM CATALYSTS; HEAVY PARAFFINS; COKE DEPOSITS; DECANE; DEACTIVATION; PERFORMANCE; MECHANISM; ALKANES; AREA;
D O I
10.1016/j.apcata.2019.04.026
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A kinetic modeling study on long chain n-paraffin dehydrogenation using a commercial Pt-Sn-K-Mg/gamma-Al2O3 catalyst was carried out in a continuous flow set-up using n-dodecane as a model component at various temperatures (450-470 degrees C), pressures (0.17-0.30 MPa), H-2/paraffin mole ratios (3:1-6:1) and space times (0.22-1.57 g h mol(-1)). The commercial catalyst was characterized by XRD, BET, MIP, SEM and CO chemisorption. An empirical exponential equation was found to predict the mono- and di-olefin yields very well. In addition, 6 mechanistic models based on the LHMW mechanism were derived and tested by non-linear least squares fitting of the experimental data. The model which assumes that surface reactions and particularly the dehydrogenation of the metal-alkyl chain to the adsorbed mono-olefin and di-olefin as the rate determining steps was found to give the best fit with the experimental data. In addition, activation energies and adsorption enthalpies for each elementary reaction were obtained. The kinetic testing and modeling have shown that the high mono-olefins selectivity for long chain paraffin dehydrogenation can be obtained by operating at low space time (when P, T and m are same), high pressure (when tau, T and m are same) and high H-2/paraffin ratio (when tau, P and T are same), as well as low reaction temperature (when tau, P and m are same) but with little effect.
引用
收藏
页码:130 / 140
页数:11
相关论文
共 42 条
  • [1] Effect of Sn promoter on the performance of Pt-Sn/γ-Al2O3 catalysts for n-dodecane dehydrogenation
    He S.-B.
    Bi W.-J.
    Lai Y.-L.
    Rong X.
    Yang X.
    Sun C.-L.
    Ranliao Huaxue Xuebao/Journal of Fuel Chemistry and Technology, 2010, 38 (04): : 452 - 457
  • [2] Dehydrogenation of n-dodecane over Pt-Sn/Mg-Al-O catalysts: Investigating the catalyst performance while monitoring the products
    Lai, Yulong
    He, Songbo
    Li, Xianru
    Sun, Chenglin
    Seshan, K.
    APPLIED CATALYSIS A-GENERAL, 2014, 469 : 74 - 80
  • [3] Kinetics of propane dehydrogenation over Pt-Sn/Al2O3 catalyst
    Li, Qing
    Sui, Zhijun
    Zhou, Xinggui
    Chen, De
    APPLIED CATALYSIS A-GENERAL, 2011, 398 (1-2) : 18 - 26
  • [4] Effect of Ce Addition on the Surface Properties and n-Dodecane Dehydrogenation Performance of Pt-Sn/Ce-Al2O3 Catalyst
    Li, Xianru
    He, Songbo
    Wei, Huangzhao
    Luo, Sha
    Gu, Bin
    Sun, Chenglin
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY A, 2015, 89 (08) : 1368 - 1373
  • [5] Kinetics for dehydrogenation of propane on Pt-Sn-K/γ-Al2O3 catalyst
    Assabumrungrat, S
    Jhoraleecharnchai, W
    Praserthdam, P
    Goto, S
    JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2000, 33 (03) : 529 - 532
  • [6] Effect of carbon addition on the Pt-Sn/γ-Al2O3 catalyst for long chain paraffin dehydrogenation to olefin
    He, Songbo
    Sun, Chenglin
    Du, Hongzhang
    Dai, Xihai
    Wang, Bin
    CHEMICAL ENGINEERING JOURNAL, 2008, 141 (1-3) : 284 - 289
  • [7] Propane Dehydrogenation over a Commercial Pt-Sn/Al2O3 Catalyst for Isobutane Dehydrogenation: Optimization of Reaction Conditions
    Zangeneh, Farnaz Tahriri
    Sahebdelfar, Saeed
    Bahmani, Mohsen
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2013, 21 (07) : 730 - 735
  • [8] Effect of Ce addition on the surface properties and n-dodecane dehydrogenation performance of Pt-Sn/Ce-Al2O3 catalyst
    Xianru Li
    Songbo He
    Huangzhao Wei
    Sha Luo
    Bin Gu
    Chenglin Sun
    Russian Journal of Physical Chemistry A, 2015, 89 : 1368 - 1373
  • [9] Dehydrogenation of long chain paraffins over supported Pt-Sn-K/Al2O3 catalysts: A study of the alumina support effect
    He, Songbo
    Sun, Chenglin
    Bai, Ziwu
    Dai, Xihai
    Wang, Bin
    APPLIED CATALYSIS A-GENERAL, 2009, 356 (01) : 88 - 98
  • [10] TAP studies of Pt-Sn-K/γ-Al2O3 catalyst for propane dehydrogenation
    Lobera, M. P.
    Tellez, C.
    Herguido, J.
    Schuurman, Y.
    Menendez, M.
    CHEMICAL ENGINEERING JOURNAL, 2011, 171 (03) : 1317 - 1323