Gasification Conversion and Char Reactivity of Rubber Seed Shell and High Density Polyethylene Mixtures using Steam Co-Gasification Process

Due to the recent surge of global energy demand and the fear of climate change, an extensive attention from worldwide in seeking for cleaner alternative means of renewable energy and this has been a topic of interest widely. With the abundance supply of biomass and plastic waste generated annually a...

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Main Authors: B.L.F. Chin, S. Yusup, A. Al Shoaibi, P. Kannan, C. Srinivasakannan, S.A. Sulaiman
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2014-08-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/5415
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spelling doaj-18a48b390c1c43f9addbbaf599b71e8b2021-02-20T21:28:48ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162014-08-013910.3303/CET1439114Gasification Conversion and Char Reactivity of Rubber Seed Shell and High Density Polyethylene Mixtures using Steam Co-Gasification ProcessB.L.F. ChinS. YusupA. Al ShoaibiP. KannanC. SrinivasakannanS.A. SulaimanDue to the recent surge of global energy demand and the fear of climate change, an extensive attention from worldwide in seeking for cleaner alternative means of renewable energy and this has been a topic of interest widely. With the abundance supply of biomass and plastic waste generated annually and finding an effective method in utilizing these wastes, leads to a notion of using these wastes in the co-gasification process. Although there are studies on co-gasification of biomass and waste mixtures, limited studies focused on the understanding of the char reactivity and gasification conversion of this mixture. Hence, an experimental study on steam co-gasification of rubber seed shell and high density polyethylene mixtures in argon atmosphere is carried out using thermogravimetric (TGA) approach under non-isothermal condition. This work presents the surface physical morphology of rubber seed shell (RSS), high density polyethylene (HDPE), and its mixtures. Furthermore, the char conversion and char reactivity of RSS, HDPE, and their mixtures at different proportions are investigated in both pyrolysis and gasification process. The argon gasis supplied at a flowrate of 100 mL min-1 and the steam is generated from superheater at 383 K whilst injected at flowrate of 3000 µL h-1 into the TGA system.https://www.cetjournal.it/index.php/cet/article/view/5415
collection DOAJ
language English
format Article
sources DOAJ
author B.L.F. Chin
S. Yusup
A. Al Shoaibi
P. Kannan
C. Srinivasakannan
S.A. Sulaiman
spellingShingle B.L.F. Chin
S. Yusup
A. Al Shoaibi
P. Kannan
C. Srinivasakannan
S.A. Sulaiman
Gasification Conversion and Char Reactivity of Rubber Seed Shell and High Density Polyethylene Mixtures using Steam Co-Gasification Process
Chemical Engineering Transactions
author_facet B.L.F. Chin
S. Yusup
A. Al Shoaibi
P. Kannan
C. Srinivasakannan
S.A. Sulaiman
author_sort B.L.F. Chin
title Gasification Conversion and Char Reactivity of Rubber Seed Shell and High Density Polyethylene Mixtures using Steam Co-Gasification Process
title_short Gasification Conversion and Char Reactivity of Rubber Seed Shell and High Density Polyethylene Mixtures using Steam Co-Gasification Process
title_full Gasification Conversion and Char Reactivity of Rubber Seed Shell and High Density Polyethylene Mixtures using Steam Co-Gasification Process
title_fullStr Gasification Conversion and Char Reactivity of Rubber Seed Shell and High Density Polyethylene Mixtures using Steam Co-Gasification Process
title_full_unstemmed Gasification Conversion and Char Reactivity of Rubber Seed Shell and High Density Polyethylene Mixtures using Steam Co-Gasification Process
title_sort gasification conversion and char reactivity of rubber seed shell and high density polyethylene mixtures using steam co-gasification process
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2014-08-01
description Due to the recent surge of global energy demand and the fear of climate change, an extensive attention from worldwide in seeking for cleaner alternative means of renewable energy and this has been a topic of interest widely. With the abundance supply of biomass and plastic waste generated annually and finding an effective method in utilizing these wastes, leads to a notion of using these wastes in the co-gasification process. Although there are studies on co-gasification of biomass and waste mixtures, limited studies focused on the understanding of the char reactivity and gasification conversion of this mixture. Hence, an experimental study on steam co-gasification of rubber seed shell and high density polyethylene mixtures in argon atmosphere is carried out using thermogravimetric (TGA) approach under non-isothermal condition. This work presents the surface physical morphology of rubber seed shell (RSS), high density polyethylene (HDPE), and its mixtures. Furthermore, the char conversion and char reactivity of RSS, HDPE, and their mixtures at different proportions are investigated in both pyrolysis and gasification process. The argon gasis supplied at a flowrate of 100 mL min-1 and the steam is generated from superheater at 383 K whilst injected at flowrate of 3000 µL h-1 into the TGA system.
url https://www.cetjournal.it/index.php/cet/article/view/5415
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