Thermally conductive honeycombs for chemical reactors with enhanced chemical conversion behavior
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Thermally conductive honeycombs for chemical reactors with enhanced chemical conversion behavior
Junjie Chen
Department of Energy and Power Engineering, School of Mechanical and Power Engineering, Henan Polytechnic University, 2000 Century Avenue, Jiaozuo, Henan, 454000, P.R. China
Contributor: Junjie Chen, ORCID: 0000-0001-5055-4309, E-mail address: komcjj@gmail.com
It has been taught a method to produce a thermally conductive honeycombs for chemical reactors. It has been taught a technique to produce an extruded metal monolith and highlights how copper or copper alloys are particularly suitable for this application. It has been taught how catalysts may be attached to walls to produce an active catalyst matrix. It is claimed that thermally conductive monoliths reduce the likelihood of hot spot formation, as any hotter area conducts the energy via conduction through the monolith body to an area which is less hot. However, the method does not teach of the possibility of having different chemical reactions simultaneously occurring on opposing sides of the monolith substrate. Therefore, it is necessary to provide an improved chemical processor which is suitable for efficiently carrying out chemical reactions. Therefore, it is also necessary to provide a reactor which can be ready produced by suitable modification of a regular monolithic structure such that two reactions of different energetic nature can be catalytically performed on opposing sides of walls which divide the two sets of discrete flow channels.
Streamwise distance (meter), Heterogeneous reaction rate along the length of the reactor (mole per square meter per second)
0 13.075
0.00025 13.1037
0.0005 13.1253
0.00075 13.0811
0.001 12.9897
0.00125 12.8713
0.0015 12.7362
0.00175 12.5895
0.002 12.4345
0.00225 12.2741
0.0025 12.1101
0.00275 11.9443
0.003 11.7782
0.00325 11.6128
0.0035 11.4491
0.00375 11.2879
0.004 11.1299
0.00425 10.9755
0.0045 10.8253
0.00475 10.6793
0.005 10.5378
0.00525 10.4009
0.0055 10.2684
0.00575 10.1406
0.006 10.0173
0.00625 9.89855
0.0065 9.78406
0.00675 9.6739
0.007 9.56804
0.00725 9.46615
0.0075 9.36809
0.00775 9.27394
0.008 9.18373
0.00825 9.09715
0.0085 9.01421
0.00875 8.9348
0.009 8.85876
0.00925 8.78593
0.0095 8.71625
0.00975 8.64929
0.01 8.58508
0.01025 8.52384
0.0105 8.46504
0.01075 8.4084
0.011 8.35384
0.01125 8.30147
0.0115 8.25092
0.01175 8.20203
0.012 8.15488
0.01225 8.10937
0.0125 8.06514
0.01275 8.02226
0.013 7.98085
0.01325 7.9406
0.0135 7.90137
0.01375 7.86316
0.014 7.82602
0.01425 7.78976
0.0145 7.75459
0.01475 7.72034
0.015 7.68674
0.01525 7.65366
0.0155 7.6212
0.01575 7.58953
0.016 7.55833
0.01625 7.52745
0.0165 7.49677
0.01675 7.46607
0.017 7.43551
0.01725 7.40508
0.0175 7.37459
0.01775 7.34397
0.018 7.31357
0.01825 7.28303
0.0185 7.25215
0.01875 7.22111
0.019 7.19005
0.01925 7.15883
0.0195 7.12722
0.01975 7.09539
0.02 7.06334
0.02025 7.03095
0.0205 6.99814
0.02075 6.96499
0.021 6.93157
0.02125 6.89773
0.0215 6.86322
0.02175 6.8282
0.022 6.79267
0.02225 6.7565
0.0225 6.71985
0.02275 6.6827
0.023 6.64477
0.02325 6.60607
0.0235 6.56675
0.02375 6.52675
0.024 6.48581
0.02425 6.4439
0.0245 6.40125
0.02475 6.35774
0.025 6.31309
0.02525 6.26742
0.0255 6.22078
0.02575 6.17321
0.026 6.12453
0.02625 6.07467
0.0265 6.02388
0.02675 5.97193
0.027 5.91868
0.02725 5.86423
0.0275 5.80859
0.02775 5.75169
0.028 5.69341
0.02825 5.63397
0.0285 5.57294
0.02875 5.51116
0.029 5.45709
0.02925 5.39358
0.0295 5.3349
0.02975 5.27843
0.03 5.21054
Contributor: Junjie Chen, ORCID: 0000-0001-5055-4309, E-mail address: komcjj@gmail.com, Department of Energy and Power Engineering, School of Mechanical and Power Engineering, Henan Polytechnic University, 2000 Century Avenue, Jiaozuo, Henan, 454000, P.R. China
创建时间:
2024-07-15



