Modelling of unsteady-state, heterogeneous catalytic combustion
ABSTRACT: This paper describes a set of mathematical models of a unique reactor for the total oxidation of combustible vapors in the several-percent range without supplemental fuel or expensive heat exchange. The reactor operates at slightly above atmospheric pressure with Platinum on gamma alumina...
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[Yogyakarta] : Universitas Gadjah Mada
1997
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id-ugm-repo.185082014-06-18T00:37:58Z https://repository.ugm.ac.id/18508/ Modelling of unsteady-state, heterogeneous catalytic combustion Perpustakaan UGM, i-lib Jurnal i-lib UGM ABSTRACT: This paper describes a set of mathematical models of a unique reactor for the total oxidation of combustible vapors in the several-percent range without supplemental fuel or expensive heat exchange. The reactor operates at slightly above atmospheric pressure with Platinum on gamma alumina catalyst at about 200 °C. The reactor operates in an unsteady-state mode with feed gas flow direction periodically reversed. The simulation results for the variation of concentration, feed flow rate and cycle time show the experimentally observed behaviour. Further simulations show that runaway can occur when the concentration is high. [Yogyakarta] : Universitas Gadjah Mada 1997 Article NonPeerReviewed Perpustakaan UGM, i-lib (1997) Modelling of unsteady-state, heterogeneous catalytic combustion. Jurnal i-lib UGM. http://i-lib.ugm.ac.id/jurnal/download.php?dataId=1299 |
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Jurnal i-lib UGM Perpustakaan UGM, i-lib Modelling of unsteady-state, heterogeneous catalytic combustion |
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ABSTRACT:
This paper describes a set of mathematical models of a unique reactor for the total oxidation of combustible vapors in the several-percent range without supplemental fuel or expensive heat exchange. The reactor operates at slightly above atmospheric pressure with Platinum on gamma alumina catalyst at about 200 °C. The reactor operates in an unsteady-state mode with feed gas flow direction periodically reversed. The simulation results for the variation of concentration, feed flow rate and cycle time show the experimentally observed behaviour. Further simulations show that runaway can occur when the concentration is high. |
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Article NonPeerReviewed |
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Perpustakaan UGM, i-lib |
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Perpustakaan UGM, i-lib |
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Perpustakaan UGM, i-lib |
title |
Modelling of unsteady-state, heterogeneous catalytic combustion |
title_short |
Modelling of unsteady-state, heterogeneous catalytic combustion |
title_full |
Modelling of unsteady-state, heterogeneous catalytic combustion |
title_fullStr |
Modelling of unsteady-state, heterogeneous catalytic combustion |
title_full_unstemmed |
Modelling of unsteady-state, heterogeneous catalytic combustion |
title_sort |
modelling of unsteady-state, heterogeneous catalytic combustion |
publisher |
[Yogyakarta] : Universitas Gadjah Mada |
publishDate |
1997 |
url |
https://repository.ugm.ac.id/18508/ http://i-lib.ugm.ac.id/jurnal/download.php?dataId=1299 |
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1681217283240755200 |