Comparison of microchannel and fixed bed reactors for selective oxidation reactions - Isoprene to citraconic anhydride

被引:16
作者
Walter, S [1 ]
Malmberg, S [1 ]
Schmidt, B [1 ]
Liauw, MA [1 ]
机构
[1] Rhein Westfal TH Aachen, ITMC, D-52074 Aachen, Germany
关键词
microreaction engineering; microreactors; multiscale design; reactor comparison; kinetic experiment; process intensification;
D O I
10.1205/cherd.04066
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The selective oxidation of isoprene to citraconic anhydride over variadia-supported catalysts is used as a test reaction for the comparison of different reactors. A metal microchannel reactor reveals a behaviour that indicates a better isothermicity than a laboratory-scale tubular reactor. However, the blank activity of the stainless steel microchannels with their high surface-to-volume ratio seems to decrease the catalytic performance. A ceramic microchannel reactor has an intermediate isothermicity and less blank activity. From the experiments, additional features like pressure drop or mass transfer can be evaluated. The generic differences between microchannel reactors and conventional laboratory-scale reactors are discussed in the framework of recent literature. It becomes obvious that microchannel reactors may currently still suffer from problems like high blank activity or intricate catalyst application, but do have intrinsic advantages like the high isothermicity. On a general note, the different scaling of length, surface area and volume makes a straightforward comparison between microchannel reactors and conventional reactors far from trivial.
引用
收藏
页码:1019 / 1029
页数:11
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[1]   Microreactors for measuring catalyst activity and determining reaction kinetics [J].
Ajmera, SK ;
Delattre, C ;
Schmidt, MA ;
Jensen, KF .
SCIENCE AND TECHNOLOGY IN CATALYSIS 2002, 2003, 145 :97-102
[2]   Flow distribution in different microreactor scale-out geometries and the effect of manufacturing tolerances and channel blockage [J].
Amador, C ;
Gavriilidis, A ;
Angeli, P .
CHEMICAL ENGINEERING JOURNAL, 2004, 101 (1-3) :379-390
[3]   Catalyst performance testing -: Radial and axial dispersion related to dilution in fixed-bed laboratory reactors [J].
Berger, RJ ;
Pérez-Ramírez, J ;
Kapteijn, F ;
Moulijn, JA .
APPLIED CATALYSIS A-GENERAL, 2002, 227 (1-2) :321-333
[4]   Shape normalization for catalytic monoliths [J].
Bhattacharya, M ;
Harold, MP ;
Balakotaiah, V .
CHEMICAL ENGINEERING SCIENCE, 2004, 59 (18) :3737-3766
[5]   GAS TO GAS HEAT-TRANSFER IN MICRO HEAT-EXCHANGERS [J].
BIER, W ;
KELLER, W ;
LINDER, G ;
SEIDEL, D ;
SCHUBERT, K ;
MARTIN, H .
CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 1993, 32 (01) :33-43
[6]   Oxidation of isoprene to methylmaleic anhydride (citraconic anhydride) over vanadium oxide-based catalysts [J].
Cabello, CI ;
Castiglioni, GL ;
Cavani, F ;
Fumagalli, C ;
Grasso, L ;
Ligi, S ;
Trifiro, F .
SCIENCE AND TECHNOLOGY IN CATALYSIS 1998, 1999, 121 :359-362
[7]  
CASTIGLIONI GL, 2001, CHEM IND, V82, P371
[8]   Optimal design for flow uniformity in microchannel reactors [J].
Commenge, JM ;
Falk, L ;
Corriou, JP ;
Matlosz, M .
AICHE JOURNAL, 2002, 48 (02) :345-358
[9]   Analysis of microstructured reactor characteristics for process miniaturization and intensification [J].
Commenge, JM ;
Falk, L ;
Corriou, JP ;
Matlosz, M .
CHEMICAL ENGINEERING & TECHNOLOGY, 2005, 28 (04) :446-458
[10]   Process intensification by microstructuration. [J].
Commenge, JM ;
Falk, L ;
Corriou, JP ;
Matlosz, M .
COMPTES RENDUS PHYSIQUE, 2004, 5 (05) :597-608