Betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixture

Hydrogen recovery from off gas of hydrocracking and hydrotreating unit is one of the crucial processes in an oil and gas refinery unit as this process helps in lowering the expenses for operations. This study aims to obtain activated carbon that is made from Betung bamboo which can be used as the ad...

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Main Authors: Sudibandriyo Mahmud, Oratmangun Melody
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20186702039
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spelling doaj-05e57b65edfb4574872e06b6c4090cf22021-03-02T09:38:50ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01670203910.1051/e3sconf/20186702039e3sconf_i-trec2018_02039Betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixtureSudibandriyo MahmudOratmangun MelodyHydrogen recovery from off gas of hydrocracking and hydrotreating unit is one of the crucial processes in an oil and gas refinery unit as this process helps in lowering the expenses for operations. This study aims to obtain activated carbon that is made from Betung bamboo which can be used as the adsorbent in this process. The activated agents used are H3PO4 and K2CO3, respectively. Each activation lasts for 30 minutes. The results of the characterization test shows that the Iodine number of the activated carbon produced reaches 916.4 mg/g with BET surface area of 465.2 m2/g. SEM-EDX analysis shows that the carbon content is 74.83%. The activated carbon obtained is used to separate Hydrogen and Methane from its mixture at 10, 20 and 30oC with pressure variations of 1 - 6 bar. The results indicate that the maximum number of moles adsorbed from CH4(21.5%)/H2 gas mixture is 0.247 mmol/g, that has been carried out at 6 bar with temperature of 10oC. Methane has 2.2 times higher adsorption capacity than hydrogen, therefore, the Betung bamboo based activated carbon produced from this research can be applied as the adsorbent in the separation process of CH4/H2 mixture and it fits the Langmuir model.https://doi.org/10.1051/e3sconf/20186702039
collection DOAJ
language English
format Article
sources DOAJ
author Sudibandriyo Mahmud
Oratmangun Melody
spellingShingle Sudibandriyo Mahmud
Oratmangun Melody
Betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixture
E3S Web of Conferences
author_facet Sudibandriyo Mahmud
Oratmangun Melody
author_sort Sudibandriyo Mahmud
title Betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixture
title_short Betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixture
title_full Betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixture
title_fullStr Betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixture
title_full_unstemmed Betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixture
title_sort betung bamboo-based activated carbon bioadsorbent for the separation of hydrogen-methane gas mixture
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2018-01-01
description Hydrogen recovery from off gas of hydrocracking and hydrotreating unit is one of the crucial processes in an oil and gas refinery unit as this process helps in lowering the expenses for operations. This study aims to obtain activated carbon that is made from Betung bamboo which can be used as the adsorbent in this process. The activated agents used are H3PO4 and K2CO3, respectively. Each activation lasts for 30 minutes. The results of the characterization test shows that the Iodine number of the activated carbon produced reaches 916.4 mg/g with BET surface area of 465.2 m2/g. SEM-EDX analysis shows that the carbon content is 74.83%. The activated carbon obtained is used to separate Hydrogen and Methane from its mixture at 10, 20 and 30oC with pressure variations of 1 - 6 bar. The results indicate that the maximum number of moles adsorbed from CH4(21.5%)/H2 gas mixture is 0.247 mmol/g, that has been carried out at 6 bar with temperature of 10oC. Methane has 2.2 times higher adsorption capacity than hydrogen, therefore, the Betung bamboo based activated carbon produced from this research can be applied as the adsorbent in the separation process of CH4/H2 mixture and it fits the Langmuir model.
url https://doi.org/10.1051/e3sconf/20186702039
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AT oratmangunmelody betungbamboobasedactivatedcarbonbioadsorbentfortheseparationofhydrogenmethanegasmixture
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