Recent development on heterogeneous catalysts for syngas production via co2 utilization

In the past decade, the excessive use of fossil fuels by rapid industrial development has brought several environmental problems such as the rising of global warming gases concentration, including carbon dioxide (CO2), in atmosphere. CO2 has become the focus of attention because of the position of C...

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Main Authors: M. A., A. Aziz, Herma Dina, Setiabudi, L. P., Teh, N. H., R. Annuar, S., Triwahyono, A., A. Jalil
Format: Conference or Workshop Item
Language:English
Published: Universiti Malaysia Pahang 2018
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/23705/
http://umpir.ump.edu.my/id/eprint/23705/1/16.%20Recent%20development%20on%20heterogeneous%20catalysts%20for%20syngas.pdf
id ump-23705
recordtype eprints
spelling ump-237052019-01-09T08:41:05Z http://umpir.ump.edu.my/id/eprint/23705/ Recent development on heterogeneous catalysts for syngas production via co2 utilization M. A., A. Aziz Herma Dina, Setiabudi L. P., Teh N. H., R. Annuar S., Triwahyono A., A. Jalil TP Chemical technology In the past decade, the excessive use of fossil fuels by rapid industrial development has brought several environmental problems such as the rising of global warming gases concentration, including carbon dioxide (CO2), in atmosphere. CO2 has become the focus of attention because of the position of CO2 as the primary greenhouse gas and the implication of its emissions on the problem of climate change. Recently, the concept the CO2 utilization to chemicals and energy products is promising due to the high potential market and promising benefits. One of the significant process in CO2 utilization is dry reforming, where CO2 is used for the catalytic reforming of hydrocarbons for the production of synthesis gases (syngas - hydrogen and carbon monoxide). Current research is focused on the dry reforming of alkane (methane, ethane, butane) [1,2] and alcohol (ethanol, methanol and glycerol) [3–5]. In recent years, syngas production from dry reforming of hydrocarbon via heterogeneous catalysts has recently attracted a considerable amount of attention, as demonstrated by the burgeoning number of publications (see Figure 1). Universiti Malaysia Pahang 2018 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/23705/1/16.%20Recent%20development%20on%20heterogeneous%20catalysts%20for%20syngas.pdf M. A., A. Aziz and Herma Dina, Setiabudi and L. P., Teh and N. H., R. Annuar and S., Triwahyono and A., A. Jalil (2018) Recent development on heterogeneous catalysts for syngas production via co2 utilization. In: 4th International Conference Of Chemical Engineering And Industrial Biotechnology (ICCEIB 2018), 1-2 August 2018 , Seri Pacific Hotel, Kuala Lumpur. pp. 180-182..
repository_type Digital Repository
institution_category Local University
institution Universiti Malaysia Pahang
building UMP Institutional Repository
collection Online Access
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
M. A., A. Aziz
Herma Dina, Setiabudi
L. P., Teh
N. H., R. Annuar
S., Triwahyono
A., A. Jalil
Recent development on heterogeneous catalysts for syngas production via co2 utilization
description In the past decade, the excessive use of fossil fuels by rapid industrial development has brought several environmental problems such as the rising of global warming gases concentration, including carbon dioxide (CO2), in atmosphere. CO2 has become the focus of attention because of the position of CO2 as the primary greenhouse gas and the implication of its emissions on the problem of climate change. Recently, the concept the CO2 utilization to chemicals and energy products is promising due to the high potential market and promising benefits. One of the significant process in CO2 utilization is dry reforming, where CO2 is used for the catalytic reforming of hydrocarbons for the production of synthesis gases (syngas - hydrogen and carbon monoxide). Current research is focused on the dry reforming of alkane (methane, ethane, butane) [1,2] and alcohol (ethanol, methanol and glycerol) [3–5]. In recent years, syngas production from dry reforming of hydrocarbon via heterogeneous catalysts has recently attracted a considerable amount of attention, as demonstrated by the burgeoning number of publications (see Figure 1).
format Conference or Workshop Item
author M. A., A. Aziz
Herma Dina, Setiabudi
L. P., Teh
N. H., R. Annuar
S., Triwahyono
A., A. Jalil
author_facet M. A., A. Aziz
Herma Dina, Setiabudi
L. P., Teh
N. H., R. Annuar
S., Triwahyono
A., A. Jalil
author_sort M. A., A. Aziz
title Recent development on heterogeneous catalysts for syngas production via co2 utilization
title_short Recent development on heterogeneous catalysts for syngas production via co2 utilization
title_full Recent development on heterogeneous catalysts for syngas production via co2 utilization
title_fullStr Recent development on heterogeneous catalysts for syngas production via co2 utilization
title_full_unstemmed Recent development on heterogeneous catalysts for syngas production via co2 utilization
title_sort recent development on heterogeneous catalysts for syngas production via co2 utilization
publisher Universiti Malaysia Pahang
publishDate 2018
url http://umpir.ump.edu.my/id/eprint/23705/
http://umpir.ump.edu.my/id/eprint/23705/1/16.%20Recent%20development%20on%20heterogeneous%20catalysts%20for%20syngas.pdf
first_indexed 2023-09-18T22:35:38Z
last_indexed 2023-09-18T22:35:38Z
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