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首页> 外文期刊>Polymer Degradation and Stability >Compatibilization of co-plasticized cellulose acetate/water soluble polymers blends by reactive extrusion
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Compatibilization of co-plasticized cellulose acetate/water soluble polymers blends by reactive extrusion

机译:通过反应挤出共增塑醋酸纤维素/水溶性聚合物共混物的相容性

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摘要

The present work reports the preparation of biodegradable blends of cellulose acetate (CA) with two water soluble polymers; polyvinyl alcohol (PVOH) and the bio-sourced hydroxyethyl cellulose (HEC). Like CA, HEC is advantageously both biodegradable and bio-sourced. For that purpose, plasticization of CA and PVOH was conducted by melt extrusion using triacetin and glycerol, respectively, while a two-step method consisting in a premixing step of HEC with plasticizer in presence of water, followed by the melt processing of the swollen premix was used and led to the successful plasticization of this biopolymer. Plasticized PVOH-based blends proved to exhibit better processability and properties. The prepared blends were characterized in terms of morphology and thermo-mechanical properties. The quality of blend interface was enhanced by reactive compatibilization using maleic anhydride grafted-polylactide (MAgPLA). An original procedure was conducted using two extruders connected in a T-conftguration to prepare various plasticized CA-PVOH blends compositions. This advantageous set up allowed for in situ plasticization of CA which significantly reduces its thermo-oxidative degradation. The water-response of these blends was evaluated to settle on their potential as new water-dispersive biodegradable materials.
机译:本工作报告了醋酸纤维素(CA)与两种水溶性聚合物的可生物降解共混物的制备。聚乙烯醇(PVOH)和生物来源的羟乙基纤维素(HEC)。像CA一样,HEC有利地是可生物降解的和生物来源的。为此,分别通过使用甘油三乙酸酯和甘油的熔融挤出进行CA和PVOH的增塑,而两步法包括在水存在下将HEC与增塑剂进行预混合,然后对溶胀的预混物进行熔融加工。被使用并导致这种生物聚合物的成功塑化。增塑的PVOH基共混物被证明具有更好的加工性能和性能。制备的共混物通过形态和热机械性能进行表征。通过使用马来酸酐接枝聚丙交酯(MAgPLA)进行反应性相容化,可提高共混物界面的质量。使用两个以T字形连接的挤出机进行原始程序,以制备各种增塑的CA-PVOH共混物组合物。这种有利的设置允许CA的原位塑化,这大大降低了CA的热氧化降解。对这些混合物的水响应进行了评估,以确定其作为新型水分散性可生物降解材料的潜力。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2016年第4期|31-38|共8页
  • 作者单位

    Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A~*STAR), Research Link 3, 117602, Singapore;

    Laboratory of Polymeric and Composite Materials (LPCM), Center of Innovation and Research in Materials and Polymers (CIRMAP), Materia Nova Research Center & University of Mons (UMONS), Academie Universitaire Wallonie-Bruxelles, Place du Parc 20, 7000 Mons, Belgium;

    Group R&D, British American Tobacco, Regents Park Road, Millbrook, Southampton SO15 8TL, UK;

    Laboratory of Polymeric and Composite Materials (LPCM), Center of Innovation and Research in Materials and Polymers (CIRMAP), Materia Nova Research Center & University of Mons (UMONS), Academie Universitaire Wallonie-Bruxelles, Place du Parc 20, 7000 Mons, Belgium;

    Laboratory of Polymeric and Composite Materials (LPCM), Center of Innovation and Research in Materials and Polymers (CIRMAP), Materia Nova Research Center & University of Mons (UMONS), Academie Universitaire Wallonie-Bruxelles, Place du Parc 20, 7000 Mons, Belgium,Materia Nova asbl, Parc Initialis, Avenue N. Copernic 1, 7000 Mons, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cellulose acetate; Polyvinyl alcohol; Hydroxyethyl cellulose; Plasticization; Biodegradation; Biopolymer; Reactive compatibilization;

    机译:醋酸纤维素;聚乙烯醇;羟乙基纤维素;增塑生物降解;生物聚合物反应性相容;

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