Dinamika Reaktor Katalitik Aliran Bolak-Balik untuk Oksidasi Emisi Gas Metana
The performance of a reverse flow reactor (RFR) is strongly influenced by the switching time used to alternate the flow direction. This research aimed to study the effect of the switching time on reactor dynamics including the heat propagation along the bed and reaction rate in the oxidation methane...
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Format: | Article |
Language: | English |
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Department of Chemistry, Pattimura University
2020-09-01
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Series: | Indonesian Journal of Chemical Research |
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Online Access: | https://ojs3.unpatti.ac.id/index.php/ijcr/article/view/2199 |
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author | Yogi Wibisono Budhi Hans Gunawan Rimbuala Andhika Feri Wibisono |
author_facet | Yogi Wibisono Budhi Hans Gunawan Rimbuala Andhika Feri Wibisono |
author_sort | Yogi Wibisono Budhi |
collection | DOAJ |
description | The performance of a reverse flow reactor (RFR) is strongly influenced by the switching time used to alternate the flow direction. This research aimed to study the effect of the switching time on reactor dynamics including the heat propagation along the bed and reaction rate in the oxidation methane for low concentration using catalytic reverse flow reactor. The experimental results show that the reverse flow operating mode can influence heat propagation along the reactor and reaction conversion. Based on the three switching times was tested, the temperature dynamics formed were in the sliding regime. The effect of switching time on RFR on conversion is very significant. When compared to steady operation, RFR operation provides the highest conversion at smaller switching times. At large switching times, the effect of reversal of flow direction becomes less dominant and reactor behavior approaches steady state. |
first_indexed | 2024-12-20T16:54:20Z |
format | Article |
id | doaj.art-d17c87680a644026adf00fc2f5f6e51d |
institution | Directory Open Access Journal |
issn | 2338-5359 2614-2627 |
language | English |
last_indexed | 2024-12-20T16:54:20Z |
publishDate | 2020-09-01 |
publisher | Department of Chemistry, Pattimura University |
record_format | Article |
series | Indonesian Journal of Chemical Research |
spelling | doaj.art-d17c87680a644026adf00fc2f5f6e51d2022-12-21T19:32:46ZengDepartment of Chemistry, Pattimura UniversityIndonesian Journal of Chemical Research2338-53592614-26272020-09-0182Dinamika Reaktor Katalitik Aliran Bolak-Balik untuk Oksidasi Emisi Gas MetanaYogi Wibisono Budhi0Hans Gunawan Rimbuala1Andhika Feri Wibisono2Department of Chemical Engineering – Institut Teknologi Bandung Jl. Ganesha 10 Bandung 40132 IndonesiaDepartment of Chemical Engineering – Institut Teknologi Bandung Jl. Ganesha 10 Bandung 40132 IndonesiaDepartment of Chemical Engineering – Institut Teknologi Bandung Jl. Ganesha 10 Bandung 40132 IndonesiaThe performance of a reverse flow reactor (RFR) is strongly influenced by the switching time used to alternate the flow direction. This research aimed to study the effect of the switching time on reactor dynamics including the heat propagation along the bed and reaction rate in the oxidation methane for low concentration using catalytic reverse flow reactor. The experimental results show that the reverse flow operating mode can influence heat propagation along the reactor and reaction conversion. Based on the three switching times was tested, the temperature dynamics formed were in the sliding regime. The effect of switching time on RFR on conversion is very significant. When compared to steady operation, RFR operation provides the highest conversion at smaller switching times. At large switching times, the effect of reversal of flow direction becomes less dominant and reactor behavior approaches steady state.https://ojs3.unpatti.ac.id/index.php/ijcr/article/view/2199Reverse flow reactor, oxidation methane,heat propagation, reactor. |
spellingShingle | Yogi Wibisono Budhi Hans Gunawan Rimbuala Andhika Feri Wibisono Dinamika Reaktor Katalitik Aliran Bolak-Balik untuk Oksidasi Emisi Gas Metana Indonesian Journal of Chemical Research Reverse flow reactor, oxidation methane,heat propagation, reactor. |
title | Dinamika Reaktor Katalitik Aliran Bolak-Balik untuk Oksidasi Emisi Gas Metana |
title_full | Dinamika Reaktor Katalitik Aliran Bolak-Balik untuk Oksidasi Emisi Gas Metana |
title_fullStr | Dinamika Reaktor Katalitik Aliran Bolak-Balik untuk Oksidasi Emisi Gas Metana |
title_full_unstemmed | Dinamika Reaktor Katalitik Aliran Bolak-Balik untuk Oksidasi Emisi Gas Metana |
title_short | Dinamika Reaktor Katalitik Aliran Bolak-Balik untuk Oksidasi Emisi Gas Metana |
title_sort | dinamika reaktor katalitik aliran bolak balik untuk oksidasi emisi gas metana |
topic | Reverse flow reactor, oxidation methane,heat propagation, reactor. |
url | https://ojs3.unpatti.ac.id/index.php/ijcr/article/view/2199 |
work_keys_str_mv | AT yogiwibisonobudhi dinamikareaktorkatalitikaliranbolakbalikuntukoksidasiemisigasmetana AT hansgunawanrimbuala dinamikareaktorkatalitikaliranbolakbalikuntukoksidasiemisigasmetana AT andhikaferiwibisono dinamikareaktorkatalitikaliranbolakbalikuntukoksidasiemisigasmetana |