Steam separation enhanced reactions: Review and outlook

作者: Jasper van Kampen , Jurriaan Boon , Frans van Berkel , Jaap Vente , Martin van Sint Annaland

DOI: 10.1016/J.CEJ.2019.06.031

关键词:

摘要: Enhancement by steam separation is a promising process intensification for many types of reactions in which water formed as byproduct. For this, two main technologies are reactive vapor permeation (membrane technology) and adsorption. Both can achieve significant conversion enhancement equilibrium limited situ removal the by-product steam, while additionally it may help protecting catalysts from steam-induced deactivation. In general, or adsorption would be preferable distinctly different conditions requirements. However, although some advantages readily apparent theoretical, thermodynamic point view, developments several research lines make clear that feasibility should addressed case specifically not only theoretical view. This includes hydrothermal stability membranes their permselectivity permeation, whereas high-temperature working capacities heat management crucial aspects Together, these accelerate further discovery, innovation rollout enhanced reaction processes.

参考文章(111)
S Fokeer, S Kingman, I Lowndes, A Reynolds, Characterisation of the cross sectional particle concentration distribution in horizontal dilute flow conveying—a review Chemical Engineering and Processing. ,vol. 43, pp. 677- 691 ,(2004) , 10.1016/S0255-2701(03)00096-5
M.P. Rohde, G. Schaub, S. Khajavi, J.C. Jansen, F. Kapteijn, Fischer–Tropsch synthesis with in situ H2O removal – Directions of membrane development Microporous and Mesoporous Materials. ,vol. 115, pp. 123- 136 ,(2008) , 10.1016/J.MICROMESO.2007.10.052
Seyed Alireza Sadat Rezai, Jonas Lindmark, Charlotte Andersson, Fredrik Jareman, Klaus Möller, Jonas Hedlund, Water/hydrogen/hexane multicomponent selectivity of thin MFI membranes with different Si/Al ratios Microporous and Mesoporous Materials. ,vol. 108, pp. 136- 142 ,(2008) , 10.1016/J.MICROMESO.2007.04.002
W. Zhu, L. Gora, A.W.C. van den Berg, F. Kapteijn, J.C. Jansen, J.A. Moulijn, Water vapour separation from permanent gases by a zeolite-4A membrane Journal of Membrane Science. ,vol. 253, pp. 57- 66 ,(2005) , 10.1016/J.MEMSCI.2004.12.039
Garo G. Vaporciyan, Robert H. Kadlec, Periodic separating reactors: Experiments and theory Aiche Journal. ,vol. 35, pp. 831- 844 ,(1989) , 10.1002/AIC.690350514
Kanna Aoki, Katsuki Kusakabe, Shigeharu Morooka, Separation of Gases with an A-Type Zeolite Membrane Industrial & Engineering Chemistry Research. ,vol. 39, pp. 2245- 2251 ,(2000) , 10.1021/IE990902C
Hylke Sijbesma, Kitty Nymeijer, Rob van Marwijk, Rob Heijboer, Jens Potreck, Matthias Wessling, Flue gas dehydration using polymer membranes Journal of Membrane Science. ,vol. 313, pp. 263- 276 ,(2008) , 10.1016/J.MEMSCI.2008.01.024
Suhas G. Jadhav, Prakash D. Vaidya, Bhalchandra M. Bhanage, Jyeshtharaj B. Joshi, Catalytic carbon dioxide hydrogenation to methanol: A review of recent studies Chemical Engineering Research & Design. ,vol. 92, pp. 2557- 2567 ,(2014) , 10.1016/J.CHERD.2014.03.005
Hak-Ju Kim, Heon Jung, Kwan-Young Lee, Effect of Water on Liquid Phase DME Synthesis from Syngas over Hybrid Catalysts Composed of Cu/ZnO/Al2O3 and γ-Al2O3 Korean Journal of Chemical Engineering. ,vol. 18, pp. 838- 841 ,(2001) , 10.1007/BF02705605
L.A. Bernstein, C.R.F. Lund, Membrane reactors for catalytic series and series-parallel reactions Journal of Membrane Science. ,vol. 77, pp. 155- 164 ,(1993) , 10.1016/0376-7388(93)85066-6