Preparation of Polymer-Derived Microporous Carbon as Storage Media for Methane

<p>In this research, high surface area microporous carbon for methane storage application was prepared by controlled pyrolysis of specially synthesized polymeric resin at relatively low temperature. The polymeric resins were synthesized through polymerization reaction of phenolic compounds (ph...

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Main Author: , Imam Prasetyo, Rochmadi, Rakhmat Yunanto, Teguh Ariyanto, Wiratn
Format: Article
Published: [Yogyakarta] : Chemical Engineering Department, Gadjah Mada Unive 2010
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author , Imam Prasetyo, Rochmadi, Rakhmat Yunanto, Teguh Ariyanto, Wiratn
author_facet , Imam Prasetyo, Rochmadi, Rakhmat Yunanto, Teguh Ariyanto, Wiratn
author_sort , Imam Prasetyo, Rochmadi, Rakhmat Yunanto, Teguh Ariyanto, Wiratn
collection UGM
description <p>In this research, high surface area microporous carbon for methane storage application was prepared by controlled pyrolysis of specially synthesized polymeric resin at relatively low temperature. The polymeric resins were synthesized through polymerization reaction of phenolic compounds (phenol, para-tert-butyl phenol, and resorcinol) with formaldehyde under acidic catalyst. This research was particularly focused on the development of precursor which can be carbonized at relatively low temperature without any additional activation process to produce high surface area microporous carbon for methane storage application. The use of phenolic compounds combination in the polymerization reaction was aimed to modify polymer network structures of the precursor which lead to microporosity alteration of the carbonized precursor. The precursors were carbonized by thermal decomposition at 450- 750&#8304
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institution Universiti Gadjah Mada
last_indexed 2024-03-13T22:25:53Z
publishDate 2010
publisher [Yogyakarta] : Chemical Engineering Department, Gadjah Mada Unive
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spelling oai:generic.eprints.org:954722014-11-28T07:34:56Z https://repository.ugm.ac.id/95472/ Preparation of Polymer-Derived Microporous Carbon as Storage Media for Methane , Imam Prasetyo, Rochmadi, Rakhmat Yunanto, Teguh Ariyanto, Wiratn <p>In this research, high surface area microporous carbon for methane storage application was prepared by controlled pyrolysis of specially synthesized polymeric resin at relatively low temperature. The polymeric resins were synthesized through polymerization reaction of phenolic compounds (phenol, para-tert-butyl phenol, and resorcinol) with formaldehyde under acidic catalyst. This research was particularly focused on the development of precursor which can be carbonized at relatively low temperature without any additional activation process to produce high surface area microporous carbon for methane storage application. The use of phenolic compounds combination in the polymerization reaction was aimed to modify polymer network structures of the precursor which lead to microporosity alteration of the carbonized precursor. The precursors were carbonized by thermal decomposition at 450- 750&#8304 [Yogyakarta] : Chemical Engineering Department, Gadjah Mada Unive 2010 Article NonPeerReviewed , Imam Prasetyo, Rochmadi, Rakhmat Yunanto, Teguh Ariyanto, Wiratn (2010) Preparation of Polymer-Derived Microporous Carbon as Storage Media for Methane. text. http://repository.ugm.ac.id/digitasi/index.php?module=cari_hasil_full&idbuku=3290
spellingShingle , Imam Prasetyo, Rochmadi, Rakhmat Yunanto, Teguh Ariyanto, Wiratn
Preparation of Polymer-Derived Microporous Carbon as Storage Media for Methane
title Preparation of Polymer-Derived Microporous Carbon as Storage Media for Methane
title_full Preparation of Polymer-Derived Microporous Carbon as Storage Media for Methane
title_fullStr Preparation of Polymer-Derived Microporous Carbon as Storage Media for Methane
title_full_unstemmed Preparation of Polymer-Derived Microporous Carbon as Storage Media for Methane
title_short Preparation of Polymer-Derived Microporous Carbon as Storage Media for Methane
title_sort preparation of polymer derived microporous carbon as storage media for methane
work_keys_str_mv AT imamprasetyorochmadirakhmatyunantoteguhariyantowiratn preparationofpolymerderivedmicroporouscarbonasstoragemediaformethane