Improved Kinetics of n-Butane Oxidation to Maleic Anhydride: The Role of Byproducts

被引:0
|
作者
Müller, Mauritio [1 ]
Kutscherauer, Martin [1 ,2 ]
Böcklein, Sebastian [2 ]
Mestl, Gerhard [2 ]
Turek, Thomas [1 ]
机构
[1] Institute of Chemical and Electrochemical Process Engineering, Clausthal University of Technology, Clausthal-Zellerfeld,38678, Germany
[2] Clariant AG, Bruckmühl,83052, Germany
来源
关键词
Butane - Maleic anhydride;
D O I
暂无
中图分类号
学科分类号
摘要
Detailed modeling of the oxidation of n-butane to maleic anhydride can help improve the process knowledge and facilitate the development of optimization strategies. Unfortunately, none of the kinetics published in the literature can satisfactorily describe the formation of the most important byproducts: CO and CO2. Based on qualitative findings, we derived different kinetic approaches (Eley-Rideal, Langmuir-Hinshelwood, and Mars and van Krevelen). With a mathematical model of the used millistructured fixed-bed laboratory reactor, these were adapted to the experimental results over a wide range of industrially relevant operating conditions. A comparison of the results suggests that the kinetics can be best described with a redox approach, according to Mars and van Krevelen, derived under the assumption of three different active sites. In this context, the aforementioned description of CO/CO2 formation can be significantly improved, even with a simplified reaction network. The key is to include information on the role of the usually neglected byproducts acetic and acrylic acid. © 2020 American Chemical Society.
引用
收藏
页码:218 / 229
相关论文
共 50 条
  • [21] SEPARATION OF CATALYST OXIDATION AND REDUCTION - AN ALTERNATIVE TO THE CONVENTIONAL OXIDATION OF N-BUTANE TO MALEIC-ANHYDRIDE
    EMIG, G
    UIHLEIN, K
    HACKER, CJ
    NEW DEVELOPMENTS IN SELECTIVE OXIDATION II, 1994, 82 : 243 - 251
  • [22] The use of membrane reactors for catalytic n-butane oxidation to maleic anhydride with a butane-rich feed
    Xue, EZ
    Ross, J
    CATALYSIS TODAY, 2000, 61 (1-4) : 3 - 8
  • [23] Maleic anhydride from mixtures of n-butenes and n-butane:: Effective reaction kinetics
    Brandstädter, WM
    Kraushaar-Czarnetzki, B
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2005, 44 (15) : 5550 - 5559
  • [24] TRANSIENT RESPONSE STUDIES IN n-BUTANE SELECTIVE OXIDATION TO MALEIC ANHYDRIDE ON A VPO CATALYST
    黄晓峰
    陈标华
    赵邦蓉
    李成岳
    化工学报, 2000, (03) : 293 - 294
  • [25] Cluster-based modeling of fluidized catalytic oxidation of n-Butane to maleic anhydride
    Hakimelahi, Hamid Reza
    Sotudeh-Gharebagh, Rahmat
    Mostoufi, Navid
    International Journal of Chemical Reactor Engineering, 2006, 4 : 1 - 16
  • [26] Cluster-based modeling of fluidized catalytic oxidation of n-butane to maleic anhydride
    Hakimelahi, Hamid Reza
    Sotudeh-Gharebagh, Rahmat
    Mostoufi, Navid
    INTERNATIONAL JOURNAL OF CHEMICAL REACTOR ENGINEERING, 2006, 4
  • [27] Towards Physical Descriptors of Active and Selective Catalysts for the Oxidation of n-Butane to Maleic Anhydride
    Eichelbaum, Maik
    Glaum, Robert
    Haevecker, Michael
    Wittich, Knut
    Heine, Christian
    Schwarz, Heiner
    Dobner, Cornelia-Katharina
    Welker-Nieuwoudt, Cathrin
    Trunschke, Annette
    Schloegl, Robert
    CHEMCATCHEM, 2013, 5 (08) : 2318 - 2329
  • [28] The Dynamic Nature of Vanadyl Pyrophosphate, Catalyst for the Selective Oxidation of n-Butane to Maleic Anhydride
    Ballarini, Nicola
    Cavani, Fabrizio
    Esposti, Elisa Degli
    De Santi, Davide
    Luciani, Silvia
    Trifiro, Ferruccio
    Cortelli, Carlotta
    Leanza, Roberto
    Mazzoli, Gianluca
    Brueckner, Angelika
    Bordes-Richard, Elisabeth
    CATALYSIS OF ORGANIC REACTIONS, 2009, 123 : 485 - 490
  • [29] Selective synthesis of maleic anhydride by spatial separation of n-butane oxidation and catalyst reoxidation
    Golbig, KG
    Werther, J
    CHEMICAL ENGINEERING SCIENCE, 1997, 52 (04) : 583 - 595
  • [30] Effect of compositions of promoted VPO catalysts on the selective oxidation of n-butane to maleic anhydride
    Cheng, WH
    APPLIED CATALYSIS A-GENERAL, 1996, 147 (01) : 55 - 67