Microwave-induced cracking of pyrolytic tars coupled to microwave pyrolysis for syngas production
Herein a new process is proposed to produce a syngas-rich gas fraction (>80 vol% H2 + CO) from biowaste based on microwave heating within two differentiated steps in order to avoid tars production. The first step consists of the microwave pyrolysis of biowaste induced by a char-based susceptor at 400–800 °C; tars, char and syngas-rich gas fractions being produced. The tars are then fed into the second step where a portion of the char from the first step is used as a bed material in a 0.3:1 wt% ratio. This bed is heated up by microwaves up to 800 °C, allowing thermal cracking of tars and additional syngas (>90 vol% H2 + CO) being then produced. This new concept arises as an alternative technology to the gasification of biowastes for producing syngas with no need for catalysts or gasifying reagents to minimise tars production.
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Format: | artículo biblioteca |
Language: | English |
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Elsevier
2016-07-07
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Subjects: | Microwave pyrolysis, Syngas production, Tar reduction, Emerging technologies, Energy consumption, |
Online Access: | http://hdl.handle.net/10261/136953 http://dx.doi.org/10.13039/501100000780 |
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dig-incar-es-10261-1369532018-11-15T12:18:08Z Microwave-induced cracking of pyrolytic tars coupled to microwave pyrolysis for syngas production Beneroso Vallejo, Daniel Bermúdez Menéndez, José Miguel Montes Morán, Miguel Ángel Arenillas de la Puente, Ana Menéndez Díaz, José Ángel European Commission Microwave pyrolysis Syngas production Tar reduction Emerging technologies Energy consumption Herein a new process is proposed to produce a syngas-rich gas fraction (>80 vol% H2 + CO) from biowaste based on microwave heating within two differentiated steps in order to avoid tars production. The first step consists of the microwave pyrolysis of biowaste induced by a char-based susceptor at 400–800 °C; tars, char and syngas-rich gas fractions being produced. The tars are then fed into the second step where a portion of the char from the first step is used as a bed material in a 0.3:1 wt% ratio. This bed is heated up by microwaves up to 800 °C, allowing thermal cracking of tars and additional syngas (>90 vol% H2 + CO) being then produced. This new concept arises as an alternative technology to the gasification of biowastes for producing syngas with no need for catalysts or gasifying reagents to minimise tars production. The research leading to these results has received funding from the European Union Seventh Framework Programme (FP7/2007-2013) under Grant Agreement No. 311815 (SYNPOL project). D. Beneroso also acknowledges the financial received from the PCTI and FICYT of the Government of the Principado de Asturias (Spain). Peer reviewed 2016-09-19T10:41:31Z 2016-09-19T10:41:31Z 2016-07-07 artículo http://purl.org/coar/resource_type/c_6501 Bioresource Technology 218: 687-691 (2016) 0960-8524 http://hdl.handle.net/10261/136953 10.1016/j.biortech.2016.07.019 1873-2976 http://dx.doi.org/10.13039/501100000780 en #PLACEHOLDER_PARENT_METADATA_VALUE# info:eu-repo/grantAgreement/EC/FP7/311815 Postprint http://dx.doi.org/10.1016/j.biortech.2016.07.019 Sí open Elsevier |
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Microwave pyrolysis Syngas production Tar reduction Emerging technologies Energy consumption Microwave pyrolysis Syngas production Tar reduction Emerging technologies Energy consumption |
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Microwave pyrolysis Syngas production Tar reduction Emerging technologies Energy consumption Microwave pyrolysis Syngas production Tar reduction Emerging technologies Energy consumption Beneroso Vallejo, Daniel Bermúdez Menéndez, José Miguel Montes Morán, Miguel Ángel Arenillas de la Puente, Ana Menéndez Díaz, José Ángel Microwave-induced cracking of pyrolytic tars coupled to microwave pyrolysis for syngas production |
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Herein a new process is proposed to produce a syngas-rich gas fraction (>80 vol% H2 + CO) from biowaste based on microwave heating within two differentiated steps in order to avoid tars production. The first step consists of the microwave pyrolysis of biowaste induced by a char-based susceptor at 400–800 °C; tars, char and syngas-rich gas fractions being produced. The tars are then fed into the second step where a portion of the char from the first step is used as a bed material in a 0.3:1 wt% ratio. This bed is heated up by microwaves up to 800 °C, allowing thermal cracking of tars and additional syngas (>90 vol% H2 + CO) being then produced. This new concept arises as an alternative technology to the gasification of biowastes for producing syngas with no need for catalysts or gasifying reagents to minimise tars production. |
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European Commission |
author_facet |
European Commission Beneroso Vallejo, Daniel Bermúdez Menéndez, José Miguel Montes Morán, Miguel Ángel Arenillas de la Puente, Ana Menéndez Díaz, José Ángel |
format |
artículo |
topic_facet |
Microwave pyrolysis Syngas production Tar reduction Emerging technologies Energy consumption |
author |
Beneroso Vallejo, Daniel Bermúdez Menéndez, José Miguel Montes Morán, Miguel Ángel Arenillas de la Puente, Ana Menéndez Díaz, José Ángel |
author_sort |
Beneroso Vallejo, Daniel |
title |
Microwave-induced cracking of pyrolytic tars coupled to microwave pyrolysis for syngas production |
title_short |
Microwave-induced cracking of pyrolytic tars coupled to microwave pyrolysis for syngas production |
title_full |
Microwave-induced cracking of pyrolytic tars coupled to microwave pyrolysis for syngas production |
title_fullStr |
Microwave-induced cracking of pyrolytic tars coupled to microwave pyrolysis for syngas production |
title_full_unstemmed |
Microwave-induced cracking of pyrolytic tars coupled to microwave pyrolysis for syngas production |
title_sort |
microwave-induced cracking of pyrolytic tars coupled to microwave pyrolysis for syngas production |
publisher |
Elsevier |
publishDate |
2016-07-07 |
url |
http://hdl.handle.net/10261/136953 http://dx.doi.org/10.13039/501100000780 |
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