Cargando…

Syngas Production from Biomass Gasification: Influences of Feedstock Properties, Reactor Type, and Reaction Parameters

[Image: see text] Syngas from biomass gasification can be used in downstream process industries such as city gas, hydrogen production, etc. In this review, the effects of biomass feedstock properties, and gasification reaction conditions (temperature, gasifier type, etc.) on syngas properties are sy...

Descripción completa

Detalles Bibliográficos
Autores principales: Gao, Yali, Wang, Miao, Raheem, Abdul, Wang, Fuchen, Wei, Juntao, Xu, Deliang, Song, Xudong, Bao, Weina, Huang, Ankui, Zhang, Shu, Zhang, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10483670/
https://www.ncbi.nlm.nih.gov/pubmed/37692248
http://dx.doi.org/10.1021/acsomega.3c03050
_version_ 1785102430733598720
author Gao, Yali
Wang, Miao
Raheem, Abdul
Wang, Fuchen
Wei, Juntao
Xu, Deliang
Song, Xudong
Bao, Weina
Huang, Ankui
Zhang, Shu
Zhang, Hong
author_facet Gao, Yali
Wang, Miao
Raheem, Abdul
Wang, Fuchen
Wei, Juntao
Xu, Deliang
Song, Xudong
Bao, Weina
Huang, Ankui
Zhang, Shu
Zhang, Hong
author_sort Gao, Yali
collection PubMed
description [Image: see text] Syngas from biomass gasification can be used in downstream process industries such as city gas, hydrogen production, etc. In this review, the effects of biomass feedstock properties, and gasification reaction conditions (temperature, gasifier type, etc.) on syngas properties are systematically reviewed. In summary, the cracking and reforming of volatile fractions in the gasification process and the catalytic effect of alkali and alkaline earth metals in the ash on the gasification have a direct impact on the syngas yield. And biomass pretreatment (i.e., terrifying/hydrothermal carbonization) can reduce the moisture content, which can effectively reduce the energy required for gasification and enhance the calorific value and syngas yield further. The fixed-bed gasifiers produce lower amounts of syngas. The concentration of H(2) is significantly increased by adding steam as a gasification agent. Additionally higher gasification temperatures produce more syngas, and an equivalence ratio of about 0.2–0.3 is considered suitable for gasification. For the influence of feedstock on syngas, this paper not only reviews the feedstock properties (volatile, ash, moisture) but also compares the influence of two pretreatments on syngas yield and proposes that the combination of torrefaction/hydrothermal carbonization and a multistage air bed gasifier is an important research direction to improve the combustible components of syngas. In addition to the summary of commonly used single gasification agents, two or more gasification agents on the concentration of syngas components are also discussed in the gasification parameters, and it is suggested that further research into the use of more than one gasification agent is also important for future syngas production.
format Online
Article
Text
id pubmed-10483670
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-104836702023-09-08 Syngas Production from Biomass Gasification: Influences of Feedstock Properties, Reactor Type, and Reaction Parameters Gao, Yali Wang, Miao Raheem, Abdul Wang, Fuchen Wei, Juntao Xu, Deliang Song, Xudong Bao, Weina Huang, Ankui Zhang, Shu Zhang, Hong ACS Omega [Image: see text] Syngas from biomass gasification can be used in downstream process industries such as city gas, hydrogen production, etc. In this review, the effects of biomass feedstock properties, and gasification reaction conditions (temperature, gasifier type, etc.) on syngas properties are systematically reviewed. In summary, the cracking and reforming of volatile fractions in the gasification process and the catalytic effect of alkali and alkaline earth metals in the ash on the gasification have a direct impact on the syngas yield. And biomass pretreatment (i.e., terrifying/hydrothermal carbonization) can reduce the moisture content, which can effectively reduce the energy required for gasification and enhance the calorific value and syngas yield further. The fixed-bed gasifiers produce lower amounts of syngas. The concentration of H(2) is significantly increased by adding steam as a gasification agent. Additionally higher gasification temperatures produce more syngas, and an equivalence ratio of about 0.2–0.3 is considered suitable for gasification. For the influence of feedstock on syngas, this paper not only reviews the feedstock properties (volatile, ash, moisture) but also compares the influence of two pretreatments on syngas yield and proposes that the combination of torrefaction/hydrothermal carbonization and a multistage air bed gasifier is an important research direction to improve the combustible components of syngas. In addition to the summary of commonly used single gasification agents, two or more gasification agents on the concentration of syngas components are also discussed in the gasification parameters, and it is suggested that further research into the use of more than one gasification agent is also important for future syngas production. American Chemical Society 2023-08-21 /pmc/articles/PMC10483670/ /pubmed/37692248 http://dx.doi.org/10.1021/acsomega.3c03050 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Gao, Yali
Wang, Miao
Raheem, Abdul
Wang, Fuchen
Wei, Juntao
Xu, Deliang
Song, Xudong
Bao, Weina
Huang, Ankui
Zhang, Shu
Zhang, Hong
Syngas Production from Biomass Gasification: Influences of Feedstock Properties, Reactor Type, and Reaction Parameters
title Syngas Production from Biomass Gasification: Influences of Feedstock Properties, Reactor Type, and Reaction Parameters
title_full Syngas Production from Biomass Gasification: Influences of Feedstock Properties, Reactor Type, and Reaction Parameters
title_fullStr Syngas Production from Biomass Gasification: Influences of Feedstock Properties, Reactor Type, and Reaction Parameters
title_full_unstemmed Syngas Production from Biomass Gasification: Influences of Feedstock Properties, Reactor Type, and Reaction Parameters
title_short Syngas Production from Biomass Gasification: Influences of Feedstock Properties, Reactor Type, and Reaction Parameters
title_sort syngas production from biomass gasification: influences of feedstock properties, reactor type, and reaction parameters
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10483670/
https://www.ncbi.nlm.nih.gov/pubmed/37692248
http://dx.doi.org/10.1021/acsomega.3c03050
work_keys_str_mv AT gaoyali syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT wangmiao syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT raheemabdul syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT wangfuchen syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT weijuntao syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT xudeliang syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT songxudong syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT baoweina syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT huangankui syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT zhangshu syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters
AT zhanghong syngasproductionfrombiomassgasificationinfluencesoffeedstockpropertiesreactortypeandreactionparameters