SYNTHESIS Of CARBON NANOFIBER SUPPORTED IRON CATALYST FOR AMMONIA PRODUCTION
To date, non-stop improvement work on optimization of NH, synthesis is owed to high NH3 production demand hom market (as fertilizer) with the reduction of environment pollution and energy consumption trom fabrication. The heart of NH1 synthesis is a supported catalyst in order to decrease energy...
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oai:utpedia.utp.edu.my:215242024-07-25T04:39:33Z http://utpedia.utp.edu.my/id/eprint/21524/ SYNTHESIS Of CARBON NANOFIBER SUPPORTED IRON CATALYST FOR AMMONIA PRODUCTION THIEN, DUC NGUYEN VAN TP Chemical technology To date, non-stop improvement work on optimization of NH, synthesis is owed to high NH3 production demand hom market (as fertilizer) with the reduction of environment pollution and energy consumption trom fabrication. The heart of NH1 synthesis is a supported catalyst in order to decrease energy used and provide the reaction rate and favorable reaction pathway. The catalyst support as carbon nanofiber (CNF) is considered because its advantages present graphite, various morphologies, mesopore and large amount of grafting sites compared to carbon nanotube. Its integration with magnetic iron catalyst has been confined t(Jr NH3 synthesis using magnetic induction (MI). 2017-08 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/id/eprint/21524/1/2015%20-CHEMICAL%20-%20SYNTHESIS%20OF%20CARBON%20NANOFIBER%20SUPPORTED%20IRIN%20CATALYST%20FOR%20AMMONIA%20PRODUCTION%20-%20THIEN%20DUC%20NGUYEN%20VAN.pdf THIEN, DUC NGUYEN VAN (2017) SYNTHESIS Of CARBON NANOFIBER SUPPORTED IRON CATALYST FOR AMMONIA PRODUCTION. Doctoral thesis, Universiti Teknologi PETRONAS. |
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TP Chemical technology THIEN, DUC NGUYEN VAN SYNTHESIS Of CARBON NANOFIBER SUPPORTED IRON CATALYST FOR AMMONIA PRODUCTION |
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To date, non-stop improvement work on optimization of NH, synthesis is owed to
high NH3 production demand hom market (as fertilizer) with the reduction of
environment pollution and energy consumption trom fabrication. The heart of NH1
synthesis is a supported catalyst in order to decrease energy used and provide the
reaction rate and favorable reaction pathway. The catalyst support as carbon nanofiber
(CNF) is considered because its advantages present graphite, various morphologies,
mesopore and large amount of grafting sites compared to carbon nanotube. Its
integration with magnetic iron catalyst has been confined t(Jr NH3 synthesis using magnetic induction (MI). |
format |
Thesis |
author |
THIEN, DUC NGUYEN VAN |
author_facet |
THIEN, DUC NGUYEN VAN |
author_sort |
THIEN, DUC NGUYEN VAN |
title |
SYNTHESIS Of CARBON NANOFIBER SUPPORTED IRON CATALYST FOR
AMMONIA PRODUCTION |
title_short |
SYNTHESIS Of CARBON NANOFIBER SUPPORTED IRON CATALYST FOR
AMMONIA PRODUCTION |
title_full |
SYNTHESIS Of CARBON NANOFIBER SUPPORTED IRON CATALYST FOR
AMMONIA PRODUCTION |
title_fullStr |
SYNTHESIS Of CARBON NANOFIBER SUPPORTED IRON CATALYST FOR
AMMONIA PRODUCTION |
title_full_unstemmed |
SYNTHESIS Of CARBON NANOFIBER SUPPORTED IRON CATALYST FOR
AMMONIA PRODUCTION |
title_sort |
synthesis of carbon nanofiber supported iron catalyst for
ammonia production |
publishDate |
2017 |
url |
http://utpedia.utp.edu.my/id/eprint/21524/1/2015%20-CHEMICAL%20-%20SYNTHESIS%20OF%20CARBON%20NANOFIBER%20SUPPORTED%20IRIN%20CATALYST%20FOR%20AMMONIA%20PRODUCTION%20-%20THIEN%20DUC%20NGUYEN%20VAN.pdf http://utpedia.utp.edu.my/id/eprint/21524/ |
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1805891038931320832 |
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13.211869 |