Kinetics characteristics and thermodynamics analysis of soybean pods sterols extraction process

In order to make full use of biomass resources and extract sterols from the waste soybean pods, the mass transfer characteristic of the extraction process with ethanol aqueous solution was explored. The relationships between sterols mass concentration in extracting solution and extraction temperatur...

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Autores principales: Yuchen Liao, Feiyan Fan, Aishi Zhu, Junzi Zhao, Yong Peng
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Lenguaje:EN
Publicado: Elsevier 2021
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spelling oai:doaj.org-article:eae6b2117ec64604a9647039a5c231362021-11-14T04:36:07ZKinetics characteristics and thermodynamics analysis of soybean pods sterols extraction process2667-010010.1016/j.envc.2021.100357https://doaj.org/article/eae6b2117ec64604a9647039a5c231362021-12-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2667010021003310https://doaj.org/toc/2667-0100In order to make full use of biomass resources and extract sterols from the waste soybean pods, the mass transfer characteristic of the extraction process with ethanol aqueous solution was explored. The relationships between sterols mass concentration in extracting solution and extraction temperature and extraction time were studied under appropriate ethanol concentration and liquid-solid ratio. The kinetics model fitting, the mass transfer characteristic parameters research and thermodynamic analysis of extraction process were carried out. The result showed that the extraction process could be described by a second order kinetic model. Within the research scope, with the increase of extraction temperature, the mass transfer rate constant increased from 0.286 9 mL min−1 mg−1 to 0.848 5 mL min−1 mg−1, the half life was reduced from 20.9 min to 6.5 min, the activation energy of extraction process was 27.73 kJ mol−1. The Gibbs free energies were all less than zero, indicating that the sterols extraction process was spontaneous. The enthalpy change was 33.18 kJ mol−1 and entropy change was 122.2 J mol−1 K−1 in the extraction process, the extraction process was an endothermic and entropy increases process. The research results could provide reference for the large-scale extraction of sterols from soybean pods.Yuchen LiaoFeiyan FanAishi ZhuJunzi ZhaoYong PengElsevierarticleSoybean podsSterolsExtractionModelMass transfer characteristic parametersEnvironmental sciencesGE1-350ENEnvironmental Challenges, Vol 5, Iss , Pp 100357- (2021)
institution DOAJ
collection DOAJ
language EN
topic Soybean pods
Sterols
Extraction
Model
Mass transfer characteristic parameters
Environmental sciences
GE1-350
spellingShingle Soybean pods
Sterols
Extraction
Model
Mass transfer characteristic parameters
Environmental sciences
GE1-350
Yuchen Liao
Feiyan Fan
Aishi Zhu
Junzi Zhao
Yong Peng
Kinetics characteristics and thermodynamics analysis of soybean pods sterols extraction process
description In order to make full use of biomass resources and extract sterols from the waste soybean pods, the mass transfer characteristic of the extraction process with ethanol aqueous solution was explored. The relationships between sterols mass concentration in extracting solution and extraction temperature and extraction time were studied under appropriate ethanol concentration and liquid-solid ratio. The kinetics model fitting, the mass transfer characteristic parameters research and thermodynamic analysis of extraction process were carried out. The result showed that the extraction process could be described by a second order kinetic model. Within the research scope, with the increase of extraction temperature, the mass transfer rate constant increased from 0.286 9 mL min−1 mg−1 to 0.848 5 mL min−1 mg−1, the half life was reduced from 20.9 min to 6.5 min, the activation energy of extraction process was 27.73 kJ mol−1. The Gibbs free energies were all less than zero, indicating that the sterols extraction process was spontaneous. The enthalpy change was 33.18 kJ mol−1 and entropy change was 122.2 J mol−1 K−1 in the extraction process, the extraction process was an endothermic and entropy increases process. The research results could provide reference for the large-scale extraction of sterols from soybean pods.
format article
author Yuchen Liao
Feiyan Fan
Aishi Zhu
Junzi Zhao
Yong Peng
author_facet Yuchen Liao
Feiyan Fan
Aishi Zhu
Junzi Zhao
Yong Peng
author_sort Yuchen Liao
title Kinetics characteristics and thermodynamics analysis of soybean pods sterols extraction process
title_short Kinetics characteristics and thermodynamics analysis of soybean pods sterols extraction process
title_full Kinetics characteristics and thermodynamics analysis of soybean pods sterols extraction process
title_fullStr Kinetics characteristics and thermodynamics analysis of soybean pods sterols extraction process
title_full_unstemmed Kinetics characteristics and thermodynamics analysis of soybean pods sterols extraction process
title_sort kinetics characteristics and thermodynamics analysis of soybean pods sterols extraction process
publisher Elsevier
publishDate 2021
url https://doaj.org/article/eae6b2117ec64604a9647039a5c23136
work_keys_str_mv AT yuchenliao kineticscharacteristicsandthermodynamicsanalysisofsoybeanpodssterolsextractionprocess
AT feiyanfan kineticscharacteristicsandthermodynamicsanalysisofsoybeanpodssterolsextractionprocess
AT aishizhu kineticscharacteristicsandthermodynamicsanalysisofsoybeanpodssterolsextractionprocess
AT junzizhao kineticscharacteristicsandthermodynamicsanalysisofsoybeanpodssterolsextractionprocess
AT yongpeng kineticscharacteristicsandthermodynamicsanalysisofsoybeanpodssterolsextractionprocess
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