Citation
Tsutsui Toshio, . and Mitsuyoshi Shuji, . and Endo Isamu, . and Mizuta Kei, . Conversion of ethylmethylketone and levulinic acid into petrochemicals over ZSM-5 as a biorefinery technology. pp. 21-26. ISSN 2289-1692
Abstract
In order to utilize biomass as new resources of petrochemicals catalytic conversion of oxygen-containing intermediates which can be derived from biomass was investigated. By using ZSM-5 as the catalyst ethylmethylketone was converted to aromatic and aliphatic hydrocarbons at high yields. Selectivity for aromatics was found 70 “ 80 and the major components were xylene and toluene. Selectivity for aliphatics was about 25 and the major components were olefins such as propylene butene and ethylene. The formation of CO2 and CO was only 2 “3 . When acetone acetaldehyde propionaldehyde levulinic acid were used as the feed materials similar results were obtained.
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Abstract
In order to utilize biomass as new resources of petrochemicals catalytic conversion of oxygen-containing intermediates which can be derived from biomass was investigated. By using ZSM-5 as the catalyst ethylmethylketone was converted to aromatic and aliphatic hydrocarbons at high yields. Selectivity for aromatics was found 70 “ 80 and the major components were xylene and toluene. Selectivity for aliphatics was about 25 and the major components were olefins such as propylene butene and ethylene. The formation of CO2 and CO was only 2 “3 . When acetone acetaldehyde propionaldehyde levulinic acid were used as the feed materials similar results were obtained.
Additional Metadata
Item Type: | Article |
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AGROVOC Term: | Biomass |
AGROVOC Term: | Catalysts |
AGROVOC Term: | Catalytic activity |
AGROVOC Term: | Hydrocarbons |
AGROVOC Term: | Hydrogen |
AGROVOC Term: | Oxygen |
AGROVOC Term: | Gas chromatography |
AGROVOC Term: | Ketones |
AGROVOC Term: | Aldehydes |
AGROVOC Term: | Acetone |
Depositing User: | Ms. Suzila Mohamad Kasim |
Last Modified: | 24 Apr 2025 06:28 |
URI: | http://webagris.upm.edu.my/id/eprint/24071 |
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