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Feasibility of polyethylene composites reinforced by distillers dried fibers with solubles (DDFS) after different generations of ethanol fermentation

In order to effectively evaluate the distillers dried fibers with solubles (DDFS) obtained from biorefinery processes, sorghum distiller (SD), cassava distiller (CD) and corn cob distiller (CCD) residuals from different generation bioethanol plants were used as the reinforcing phase for polyethylene...

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Autores principales: Chen, Bo, Shen, Xiaotong, Luo, Zhangfeng, Chen, Huidong, Cai, Di, Chen, Changjing, Zhang, Changwei, Qin, Peiyong, Cao, Hui, Tan, Tianwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9082614/
https://www.ncbi.nlm.nih.gov/pubmed/35539782
http://dx.doi.org/10.1039/c8ra03906b
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author Chen, Bo
Shen, Xiaotong
Luo, Zhangfeng
Chen, Huidong
Cai, Di
Chen, Changjing
Zhang, Changwei
Qin, Peiyong
Cao, Hui
Tan, Tianwei
author_facet Chen, Bo
Shen, Xiaotong
Luo, Zhangfeng
Chen, Huidong
Cai, Di
Chen, Changjing
Zhang, Changwei
Qin, Peiyong
Cao, Hui
Tan, Tianwei
author_sort Chen, Bo
collection PubMed
description In order to effectively evaluate the distillers dried fibers with solubles (DDFS) obtained from biorefinery processes, sorghum distiller (SD), cassava distiller (CD) and corn cob distiller (CCD) residuals from different generation bioethanol plants were used as the reinforcing phase for polyethylene composites. The mechanical performances and the physical properties of the polyethylene/DDFS composites were evaluated. The results showed that the CCD reinforced specimen offered the best mechanical performances, with a flexural strength of 21.8 ± 2.2 MPa and a tensile strength of 39.7 ± 3.2 MPa. After multigelation, the retention ratios of the rupture modulus and the elasticity modulus of the CCD reinforced specimen reached 88.7 ± 6.7% and 84.1 ± 2.7%, while after 2000 h of xenon lamp weathering they reached 96.2 ± 4.7% and 82 ± 1.8%, respectively. Hybridizing the biorefinery process with the process of composites production was feasible.
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spelling pubmed-90826142022-05-09 Feasibility of polyethylene composites reinforced by distillers dried fibers with solubles (DDFS) after different generations of ethanol fermentation Chen, Bo Shen, Xiaotong Luo, Zhangfeng Chen, Huidong Cai, Di Chen, Changjing Zhang, Changwei Qin, Peiyong Cao, Hui Tan, Tianwei RSC Adv Chemistry In order to effectively evaluate the distillers dried fibers with solubles (DDFS) obtained from biorefinery processes, sorghum distiller (SD), cassava distiller (CD) and corn cob distiller (CCD) residuals from different generation bioethanol plants were used as the reinforcing phase for polyethylene composites. The mechanical performances and the physical properties of the polyethylene/DDFS composites were evaluated. The results showed that the CCD reinforced specimen offered the best mechanical performances, with a flexural strength of 21.8 ± 2.2 MPa and a tensile strength of 39.7 ± 3.2 MPa. After multigelation, the retention ratios of the rupture modulus and the elasticity modulus of the CCD reinforced specimen reached 88.7 ± 6.7% and 84.1 ± 2.7%, while after 2000 h of xenon lamp weathering they reached 96.2 ± 4.7% and 82 ± 1.8%, respectively. Hybridizing the biorefinery process with the process of composites production was feasible. The Royal Society of Chemistry 2018-07-18 /pmc/articles/PMC9082614/ /pubmed/35539782 http://dx.doi.org/10.1039/c8ra03906b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chen, Bo
Shen, Xiaotong
Luo, Zhangfeng
Chen, Huidong
Cai, Di
Chen, Changjing
Zhang, Changwei
Qin, Peiyong
Cao, Hui
Tan, Tianwei
Feasibility of polyethylene composites reinforced by distillers dried fibers with solubles (DDFS) after different generations of ethanol fermentation
title Feasibility of polyethylene composites reinforced by distillers dried fibers with solubles (DDFS) after different generations of ethanol fermentation
title_full Feasibility of polyethylene composites reinforced by distillers dried fibers with solubles (DDFS) after different generations of ethanol fermentation
title_fullStr Feasibility of polyethylene composites reinforced by distillers dried fibers with solubles (DDFS) after different generations of ethanol fermentation
title_full_unstemmed Feasibility of polyethylene composites reinforced by distillers dried fibers with solubles (DDFS) after different generations of ethanol fermentation
title_short Feasibility of polyethylene composites reinforced by distillers dried fibers with solubles (DDFS) after different generations of ethanol fermentation
title_sort feasibility of polyethylene composites reinforced by distillers dried fibers with solubles (ddfs) after different generations of ethanol fermentation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9082614/
https://www.ncbi.nlm.nih.gov/pubmed/35539782
http://dx.doi.org/10.1039/c8ra03906b
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