CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION
In this study, decomposition of methane hydrate using an argon plasma jet was investigated in the pressure range of 0.1MPa to 2.0MPa. The plasma was successfully generated under high-pressure conditions, which is difficult to achieve when using the conventional radio frequency plasma in-liquid metho...
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ftunivnmakassar:oai:eprints.unm.ac.id:21559 2023-05-15T17:11:10+02:00 CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION Shinfuku, Nomura Ismail, Rahim Shinobu, Mukasa Hozutaka, Tanaka Jumpei, Tokuda 2018-08 text http://eprints.unm.ac.id/21559/ http://eprints.unm.ac.id/21559/2/CHARACTERISTIC%20OF%20ARGON%20PLASMA%20JET%20FROM%20METHANE%20HYDRATE%20DECOMPOSITION%20FOR%20HYDROGEN%20PRODUCTION.pdf http://eprints.unm.ac.id/21559/1/Prosiding%20Internasional-Characteristic%20of%20Argon%20Plasma.pdf http://eprints.unm.ac.id/21559/3/%28Turnitin%29-IHTC-16.pdf https://ihtcdigitallibrary.com/conferences/ihtc16,778081cd6c681e03,12b86154135e0814.html en eng Begell House Inc. http://eprints.unm.ac.id/21559/2/CHARACTERISTIC%20OF%20ARGON%20PLASMA%20JET%20FROM%20METHANE%20HYDRATE%20DECOMPOSITION%20FOR%20HYDROGEN%20PRODUCTION.pdf http://eprints.unm.ac.id/21559/1/Prosiding%20Internasional-Characteristic%20of%20Argon%20Plasma.pdf http://eprints.unm.ac.id/21559/3/%28Turnitin%29-IHTC-16.pdf Shinfuku, Nomura and Ismail, Rahim and Shinobu, Mukasa and Hozutaka, Tanaka and Jumpei, Tokuda (2018) CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION. Proceedings of the 16th International Heat Transfer Conference, IHTC-16. ISSN 2377-424X FAKULTAS TEKNIK Pendidikan Teknik Otomotif KARYA ILMIAH DOSEN Article PeerReviewed 2018 ftunivnmakassar 2022-07-09T06:13:37Z In this study, decomposition of methane hydrate using an argon plasma jet was investigated in the pressure range of 0.1MPa to 2.0MPa. The plasma was successfully generated under high-pressure conditions, which is difficult to achieve when using the conventional radio frequency plasma in-liquid method. From the emission spectrometer analysis, excitation temperature of the argon plasma jet was found to decreases as the pressure increases, while conversely, the rotational temperature of OH increases. During the plasma irradiation process, the required basic reactions for methane hydrate decomposition, that is, methane hydrate dissociation, steam methane reforming, and methane cracking reaction were not fully satisfied due to an insignificant amount of methane that did not react. The gas chromatography analysis confirmed that only the methane cracking reaction has occurred to generate hydrogen and carbon, due to the absence of acetylene and ethylene as byproducts. In comparison with the other basic reactions of methane hydrate decomposition, the steam methane reforming reaction became dominant in converting methane into hydrogen. Article in Journal/Newspaper Methane hydrate Eprints Universitas Negeri Makassar |
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Open Polar |
collection |
Eprints Universitas Negeri Makassar |
op_collection_id |
ftunivnmakassar |
language |
English |
topic |
FAKULTAS TEKNIK Pendidikan Teknik Otomotif KARYA ILMIAH DOSEN |
spellingShingle |
FAKULTAS TEKNIK Pendidikan Teknik Otomotif KARYA ILMIAH DOSEN Shinfuku, Nomura Ismail, Rahim Shinobu, Mukasa Hozutaka, Tanaka Jumpei, Tokuda CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION |
topic_facet |
FAKULTAS TEKNIK Pendidikan Teknik Otomotif KARYA ILMIAH DOSEN |
description |
In this study, decomposition of methane hydrate using an argon plasma jet was investigated in the pressure range of 0.1MPa to 2.0MPa. The plasma was successfully generated under high-pressure conditions, which is difficult to achieve when using the conventional radio frequency plasma in-liquid method. From the emission spectrometer analysis, excitation temperature of the argon plasma jet was found to decreases as the pressure increases, while conversely, the rotational temperature of OH increases. During the plasma irradiation process, the required basic reactions for methane hydrate decomposition, that is, methane hydrate dissociation, steam methane reforming, and methane cracking reaction were not fully satisfied due to an insignificant amount of methane that did not react. The gas chromatography analysis confirmed that only the methane cracking reaction has occurred to generate hydrogen and carbon, due to the absence of acetylene and ethylene as byproducts. In comparison with the other basic reactions of methane hydrate decomposition, the steam methane reforming reaction became dominant in converting methane into hydrogen. |
format |
Article in Journal/Newspaper |
author |
Shinfuku, Nomura Ismail, Rahim Shinobu, Mukasa Hozutaka, Tanaka Jumpei, Tokuda |
author_facet |
Shinfuku, Nomura Ismail, Rahim Shinobu, Mukasa Hozutaka, Tanaka Jumpei, Tokuda |
author_sort |
Shinfuku, Nomura |
title |
CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION |
title_short |
CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION |
title_full |
CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION |
title_fullStr |
CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION |
title_full_unstemmed |
CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION |
title_sort |
characteristic of argon plasma jet from methane hydrate decomposition for hydrogen production |
publisher |
Begell House Inc. |
publishDate |
2018 |
url |
http://eprints.unm.ac.id/21559/ http://eprints.unm.ac.id/21559/2/CHARACTERISTIC%20OF%20ARGON%20PLASMA%20JET%20FROM%20METHANE%20HYDRATE%20DECOMPOSITION%20FOR%20HYDROGEN%20PRODUCTION.pdf http://eprints.unm.ac.id/21559/1/Prosiding%20Internasional-Characteristic%20of%20Argon%20Plasma.pdf http://eprints.unm.ac.id/21559/3/%28Turnitin%29-IHTC-16.pdf https://ihtcdigitallibrary.com/conferences/ihtc16,778081cd6c681e03,12b86154135e0814.html |
genre |
Methane hydrate |
genre_facet |
Methane hydrate |
op_relation |
http://eprints.unm.ac.id/21559/2/CHARACTERISTIC%20OF%20ARGON%20PLASMA%20JET%20FROM%20METHANE%20HYDRATE%20DECOMPOSITION%20FOR%20HYDROGEN%20PRODUCTION.pdf http://eprints.unm.ac.id/21559/1/Prosiding%20Internasional-Characteristic%20of%20Argon%20Plasma.pdf http://eprints.unm.ac.id/21559/3/%28Turnitin%29-IHTC-16.pdf Shinfuku, Nomura and Ismail, Rahim and Shinobu, Mukasa and Hozutaka, Tanaka and Jumpei, Tokuda (2018) CHARACTERISTIC OF ARGON PLASMA JET FROM METHANE HYDRATE DECOMPOSITION FOR HYDROGEN PRODUCTION. Proceedings of the 16th International Heat Transfer Conference, IHTC-16. ISSN 2377-424X |
_version_ |
1766068009740271616 |