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Effect of alkali and silane treatments on the surface energy and mechanical performances of Raphia vinifera fibres

This study aimed to evaluate the influence of chemical treatment on the surface modification of Raphia vinifera Fibres (RVF). The fiber were treated with different concentrations of alkaline solution (1%, 5% and 10%) for (30 min, 60 min and 90 min) and silane (1% and 5%) at (30 min and 60 min). Ther...

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Published in:Industrial crops and products 2022-12, Vol.190, p.115854, Article 115854
Main Authors: Youbi, Syrille Brice Tchinwoussi, Tagne, Nicodème Rodrigue Sikame, Harzallah, Omar, Huisken, Paul William Mejouyo, Stanislas, Tido Tiwa, Njeugna, Ebenezer, Drean, Jean-Yves, Bistac-Brogly, Sophie
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cited_by cdi_FETCH-LOGICAL-c239t-d10a153ba91d3c0ea63051f8112752c530103066e52815168ae703ceb10180613
cites cdi_FETCH-LOGICAL-c239t-d10a153ba91d3c0ea63051f8112752c530103066e52815168ae703ceb10180613
container_end_page
container_issue
container_start_page 115854
container_title Industrial crops and products
container_volume 190
creator Youbi, Syrille Brice Tchinwoussi
Tagne, Nicodème Rodrigue Sikame
Harzallah, Omar
Huisken, Paul William Mejouyo
Stanislas, Tido Tiwa
Njeugna, Ebenezer
Drean, Jean-Yves
Bistac-Brogly, Sophie
description This study aimed to evaluate the influence of chemical treatment on the surface modification of Raphia vinifera Fibres (RVF). The fiber were treated with different concentrations of alkaline solution (1%, 5% and 10%) for (30 min, 60 min and 90 min) and silane (1% and 5%) at (30 min and 60 min). Thermal degradation analysis was performed by thermogravimetric analysis (TGA/TDG) and chemical functional group was assessed by Fourier transform infrared spectrometry (FTIR). The microstructure of Raphia vinifera fibers was observed by scanning electron microscopy (SEM) and cross-sectional area measurement was performed by a projection microscope (Projectina). The surface energy of treated and untreated fibers was calculated from a standard tensiometer and their mechanical properties were evaluated by tensile tests. The results reveal a modification of the chemical structure as well as the thermal degradation of the fibres after treatment with NaOH and silane. SEM shows that alkali treatment of raffia fibers induces a significant reduction (confidence level 90%) in fiber cross-section compared to untreated fiber, resulting in a change in surface roughness and the appearance of cracks. Furthermore, the use of silane and 1% NaOH treatments significantly improves the surface energy of the fibers over time, while 5% and 10% NaOH concentrations decrease the surface energy over time. Statistical analysis (MANOVA and Tukey test) of the mechanical performance results reveals a significant increase in the Young's modulus of the fibers with the treatment time and the concentration of the treated solutions (NaOH and silane). Its fibres may therefore have good potential for the production of composites. [Display omitted] •NaOH and silane treatment slightly improves fiber degradation temperature.•Shrinkage of Raphia vinifera fibre after chemical treatment is highlighted.•Silane and NaOH treatment improve the surface energy of Raphia Viniferra fibre.•Silane and NaOH treatment improve mechanical properties of Raphia Viniferra fibre.
doi_str_mv 10.1016/j.indcrop.2022.115854
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SEM shows that alkali treatment of raffia fibers induces a significant reduction (confidence level 90%) in fiber cross-section compared to untreated fiber, resulting in a change in surface roughness and the appearance of cracks. Furthermore, the use of silane and 1% NaOH treatments significantly improves the surface energy of the fibers over time, while 5% and 10% NaOH concentrations decrease the surface energy over time. Statistical analysis (MANOVA and Tukey test) of the mechanical performance results reveals a significant increase in the Young's modulus of the fibers with the treatment time and the concentration of the treated solutions (NaOH and silane). Its fibres may therefore have good potential for the production of composites. [Display omitted] •NaOH and silane treatment slightly improves fiber degradation temperature.•Shrinkage of Raphia vinifera fibre after chemical treatment is highlighted.•Silane and NaOH treatment improve the surface energy of Raphia Viniferra fibre.•Silane and NaOH treatment improve mechanical properties of Raphia Viniferra fibre.</description><subject>MANOVA analysis</subject><subject>Raphia vinifera fibres</subject><subject>Surface energy</subject><subject>Young's modulus</subject><issn>0926-6690</issn><issn>1872-633X</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><recordid>eNqF0M9KAzEQBvAgCtbqIwh5ga0zicluTyLFfyAIouAtTLMTm7rNlmQVfHu31runucz3MfMT4hxhhoD2Yj2LqfW5384UKDVDNI25PBATbGpVWa3fDsUE5spW1s7hWJyUsgbAGlQ9EfkmBPaD7IOk7oO6KCm1ssSOEsshMw0bTkORfZLDimX5zIE8S06c379_dzfsV5Sip05uOYc-byh5LrvGZ9quIsmvmGLgTDLEZeZyKo4CdYXP_uZUvN7evCzuq8enu4fF9WPllZ4PVYtAaPSS5thqD0xWg8HQIKraKG80IGiwlo1q0KBtiGvQnpejSQMW9VSYfe9IU0rm4LY5bih_OwS3g3Nr9wfndnBuDzfmrvY5Ho_7ipxd8ZHHn9qYRyrX9vGfhh-Lcnnv</recordid><startdate>20221215</startdate><enddate>20221215</enddate><creator>Youbi, Syrille Brice Tchinwoussi</creator><creator>Tagne, Nicodème Rodrigue Sikame</creator><creator>Harzallah, Omar</creator><creator>Huisken, Paul William Mejouyo</creator><creator>Stanislas, Tido Tiwa</creator><creator>Njeugna, Ebenezer</creator><creator>Drean, Jean-Yves</creator><creator>Bistac-Brogly, Sophie</creator><general>Elsevier B.V</general><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>20221215</creationdate><title>Effect of alkali and silane treatments on the surface energy and mechanical performances of Raphia vinifera fibres</title><author>Youbi, Syrille Brice Tchinwoussi ; Tagne, Nicodème Rodrigue Sikame ; Harzallah, Omar ; Huisken, Paul William Mejouyo ; Stanislas, Tido Tiwa ; Njeugna, Ebenezer ; Drean, Jean-Yves ; Bistac-Brogly, Sophie</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c239t-d10a153ba91d3c0ea63051f8112752c530103066e52815168ae703ceb10180613</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2022</creationdate><topic>MANOVA analysis</topic><topic>Raphia vinifera fibres</topic><topic>Surface energy</topic><topic>Young's modulus</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Youbi, Syrille Brice Tchinwoussi</creatorcontrib><creatorcontrib>Tagne, Nicodème Rodrigue Sikame</creatorcontrib><creatorcontrib>Harzallah, Omar</creatorcontrib><creatorcontrib>Huisken, Paul William Mejouyo</creatorcontrib><creatorcontrib>Stanislas, Tido Tiwa</creatorcontrib><creatorcontrib>Njeugna, Ebenezer</creatorcontrib><creatorcontrib>Drean, Jean-Yves</creatorcontrib><creatorcontrib>Bistac-Brogly, Sophie</creatorcontrib><collection>CrossRef</collection><jtitle>Industrial crops and products</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Youbi, Syrille Brice Tchinwoussi</au><au>Tagne, Nicodème Rodrigue Sikame</au><au>Harzallah, Omar</au><au>Huisken, Paul William Mejouyo</au><au>Stanislas, Tido Tiwa</au><au>Njeugna, Ebenezer</au><au>Drean, Jean-Yves</au><au>Bistac-Brogly, Sophie</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Effect of alkali and silane treatments on the surface energy and mechanical performances of Raphia vinifera fibres</atitle><jtitle>Industrial crops and products</jtitle><date>2022-12-15</date><risdate>2022</risdate><volume>190</volume><spage>115854</spage><pages>115854-</pages><artnum>115854</artnum><issn>0926-6690</issn><eissn>1872-633X</eissn><abstract>This study aimed to evaluate the influence of chemical treatment on the surface modification of Raphia vinifera Fibres (RVF). The fiber were treated with different concentrations of alkaline solution (1%, 5% and 10%) for (30 min, 60 min and 90 min) and silane (1% and 5%) at (30 min and 60 min). Thermal degradation analysis was performed by thermogravimetric analysis (TGA/TDG) and chemical functional group was assessed by Fourier transform infrared spectrometry (FTIR). The microstructure of Raphia vinifera fibers was observed by scanning electron microscopy (SEM) and cross-sectional area measurement was performed by a projection microscope (Projectina). The surface energy of treated and untreated fibers was calculated from a standard tensiometer and their mechanical properties were evaluated by tensile tests. The results reveal a modification of the chemical structure as well as the thermal degradation of the fibres after treatment with NaOH and silane. SEM shows that alkali treatment of raffia fibers induces a significant reduction (confidence level 90%) in fiber cross-section compared to untreated fiber, resulting in a change in surface roughness and the appearance of cracks. Furthermore, the use of silane and 1% NaOH treatments significantly improves the surface energy of the fibers over time, while 5% and 10% NaOH concentrations decrease the surface energy over time. Statistical analysis (MANOVA and Tukey test) of the mechanical performance results reveals a significant increase in the Young's modulus of the fibers with the treatment time and the concentration of the treated solutions (NaOH and silane). Its fibres may therefore have good potential for the production of composites. [Display omitted] •NaOH and silane treatment slightly improves fiber degradation temperature.•Shrinkage of Raphia vinifera fibre after chemical treatment is highlighted.•Silane and NaOH treatment improve the surface energy of Raphia Viniferra fibre.•Silane and NaOH treatment improve mechanical properties of Raphia Viniferra fibre.</abstract><pub>Elsevier B.V</pub><doi>10.1016/j.indcrop.2022.115854</doi></addata></record>
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subjects MANOVA analysis
Raphia vinifera fibres
Surface energy
Young's modulus
title Effect of alkali and silane treatments on the surface energy and mechanical performances of Raphia vinifera fibres
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