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Effect of Torrefaction on the Physiochemical Characteristics and Pyrolysis of the Corn Stalk

Torrefaction of biomass is one of the most promising pretreatment methods for deriving biofuels from biomass via thermochemical conversion processes. In this work, the changes in physicochemical properties and morphology features of the torrefied corn stalk, the changes in physicochemical properties...

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Autores principales: Chen, Lei, Chen, Xiangqian, Zhao, Yuxiao, Xie, Xinping, Yang, Shuangxia, Hua, Dongliang, Wang, Chuanlei, Li, Tianjin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609922/
https://www.ncbi.nlm.nih.gov/pubmed/37896313
http://dx.doi.org/10.3390/polym15204069
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author Chen, Lei
Chen, Xiangqian
Zhao, Yuxiao
Xie, Xinping
Yang, Shuangxia
Hua, Dongliang
Wang, Chuanlei
Li, Tianjin
author_facet Chen, Lei
Chen, Xiangqian
Zhao, Yuxiao
Xie, Xinping
Yang, Shuangxia
Hua, Dongliang
Wang, Chuanlei
Li, Tianjin
author_sort Chen, Lei
collection PubMed
description Torrefaction of biomass is one of the most promising pretreatment methods for deriving biofuels from biomass via thermochemical conversion processes. In this work, the changes in physicochemical properties and morphology features of the torrefied corn stalk, the changes in physicochemical properties and morphology features of the torrefied corn stalk were investigated. The results of this study showed that the elemental content and proximate analysis of the torrefied corn stalk significantly changed compared with those of the raw corn stalk. In particular, at 300 °C, the volatile content decreased to 41.79%, while the fixed carbon content and higher heating value increased to 42.22% and 21.31 MJ/kg, respectively. The H/C and O/C molar ratios of torrefied corn stalk at the 300 °C were drastically reduced to 0.99 and 0.27, respectively, which are similar to those of conventional coals in China. Numerous cracks and pores were observed in the sample surface of torrefied corn stalk at the torrefaction temperature range of 275 °C–300 °C, which could facilitate the potential application of the sample in the adsorption process and promote the release of gas products in pyrolysis. In the pyrolysis phase, the liquid products of the torrefied corn stalk decreased, but the H(2)/CO ratio and the lower heating value of the torrefied corn stalk increased compared with those of the raw corn stalk. This work paves a new strategy for the investigation of the effect of torrefaction on the physiochemical characteristics and pyrolysis of the corn stalk, highlighting the application potential in the conversion of biomass.
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spelling pubmed-106099222023-10-28 Effect of Torrefaction on the Physiochemical Characteristics and Pyrolysis of the Corn Stalk Chen, Lei Chen, Xiangqian Zhao, Yuxiao Xie, Xinping Yang, Shuangxia Hua, Dongliang Wang, Chuanlei Li, Tianjin Polymers (Basel) Article Torrefaction of biomass is one of the most promising pretreatment methods for deriving biofuels from biomass via thermochemical conversion processes. In this work, the changes in physicochemical properties and morphology features of the torrefied corn stalk, the changes in physicochemical properties and morphology features of the torrefied corn stalk were investigated. The results of this study showed that the elemental content and proximate analysis of the torrefied corn stalk significantly changed compared with those of the raw corn stalk. In particular, at 300 °C, the volatile content decreased to 41.79%, while the fixed carbon content and higher heating value increased to 42.22% and 21.31 MJ/kg, respectively. The H/C and O/C molar ratios of torrefied corn stalk at the 300 °C were drastically reduced to 0.99 and 0.27, respectively, which are similar to those of conventional coals in China. Numerous cracks and pores were observed in the sample surface of torrefied corn stalk at the torrefaction temperature range of 275 °C–300 °C, which could facilitate the potential application of the sample in the adsorption process and promote the release of gas products in pyrolysis. In the pyrolysis phase, the liquid products of the torrefied corn stalk decreased, but the H(2)/CO ratio and the lower heating value of the torrefied corn stalk increased compared with those of the raw corn stalk. This work paves a new strategy for the investigation of the effect of torrefaction on the physiochemical characteristics and pyrolysis of the corn stalk, highlighting the application potential in the conversion of biomass. MDPI 2023-10-12 /pmc/articles/PMC10609922/ /pubmed/37896313 http://dx.doi.org/10.3390/polym15204069 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Lei
Chen, Xiangqian
Zhao, Yuxiao
Xie, Xinping
Yang, Shuangxia
Hua, Dongliang
Wang, Chuanlei
Li, Tianjin
Effect of Torrefaction on the Physiochemical Characteristics and Pyrolysis of the Corn Stalk
title Effect of Torrefaction on the Physiochemical Characteristics and Pyrolysis of the Corn Stalk
title_full Effect of Torrefaction on the Physiochemical Characteristics and Pyrolysis of the Corn Stalk
title_fullStr Effect of Torrefaction on the Physiochemical Characteristics and Pyrolysis of the Corn Stalk
title_full_unstemmed Effect of Torrefaction on the Physiochemical Characteristics and Pyrolysis of the Corn Stalk
title_short Effect of Torrefaction on the Physiochemical Characteristics and Pyrolysis of the Corn Stalk
title_sort effect of torrefaction on the physiochemical characteristics and pyrolysis of the corn stalk
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609922/
https://www.ncbi.nlm.nih.gov/pubmed/37896313
http://dx.doi.org/10.3390/polym15204069
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