首页> 外文期刊>Nordic Pulp & Paper Research Journal >The influence of bio-fibers from different pulping processes on the pulp-polylactic acid composites (PPCs) properties from sugarcane bagasse
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The influence of bio-fibers from different pulping processes on the pulp-polylactic acid composites (PPCs) properties from sugarcane bagasse

机译:不同制浆工艺中的生物纤维对甘蔗渣制浆-聚乳酸复合材料(PPC)性能的影响

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Pulp-polylactic acid composites (PPCs) with monoethanolamine, alkaline sulfite-anthraquinone, unbleached and bleached soda bagasse pulps and polylactic acid (PLA) were successfully fabricated using twin-screw extrusion. The results were compared with bagasse flour-PLA composites (WPCs) as reference. The results indicated that the mechanical strengths of produced composites with pulp fibers were increased compared to the neat PLA and bagasse flour-PLA composites. Monoethanolamine and alkaline sulfite-anthraquinone fibers due to their surface chemical structure had a superior compatibility with PLA compared with other used bio-fibers which has been confirmed by SEM micrographs too. FTIR was used to investigate the effect of different chemical treatments on the bio-fibers. The results of XRD analysis showed that the crystallinity of PPCs was substantially improved by incorporation with pulp fibers compared to WPCs composites. The water absorption of the PPCs is different due to using the diverse bio-fibers. According to DMA analysis, the tan delta was substantially decreased when PLA was reinforced by different bio-fibers. The biodegradation of green composites were characterized and the results showed that the biodegradability of the PLA was increased due to addition of bagasse pulp biofibers.
机译:使用双螺杆挤出技术成功地制造了由单乙醇胺,碱性亚硫酸盐-蒽醌,未漂白和漂白苏打蔗渣纸浆和聚乳酸(PLA)制成的纸浆-聚乳酸复合材料(PPC)。将结果与蔗渣粉-PLA复合材料(WPC)进行比较。结果表明,与纯PLA和蔗渣粉-PLA复合材料相比,纸浆纤维复合材料的机械强度有所提高。单乙醇胺和碱性亚硫酸盐-蒽醌纤维由于其表面化学结构,与其他使用过的生物纤维相比,具有与PLA优异的相容性,这也已通过SEM显微照片得到证实。 FTIR用于研究不同化学处理对生物纤维的影响。 XRD分析的结果表明,与WPCs复合材料相比,通过掺入纸浆纤维可以显着提高PPCs的结晶度。由于使用了多种生物纤维,因此PPC的吸水率有所不同。根据DMA分析,当PLA通过不同的生物纤维增强时,tanδ显着降低。对绿色复合材料的生物降解进行了表征,结果表明,由于添加了蔗渣纸浆生物纤维,PLA的生物降解性得以提高。

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