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A facile and sustainable approach for simultaneously flame retarded, UV protective and reinforced poly(lactic acid) composites using fully bio-based complexing couples

机译:一种适用于完全生物基络合耦合的同时阻燃紫外保护和增强聚(乳酸)复合材料的容易和可持续的方法

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摘要

The integration of bio-based functional agents with biopolymers is welcomed as a way of meeting the growing demand for healthy, safety, and sustainability. This study presents a facile and solvent-free fabrication of flame retardant (FR), UV protective, and reinforced poly(lactic acid) (PLA) composite using two bio-based complexing couples: tannin acid/ferric salt (TAFe) and chitosan/phytic acid (CTSPA). The thermal and burning properties of PLA composites were evaluated by thermogravimetric analysis (TGA), limited oxygen index (LOI), UL-94 test, and cone calorimetry. The UV protective and tensile properties were also evaluated. PLA/TAFe and PLA/CTSPA showed earlier mass loss and higher char residue than pristine PLA. CTSPA (3 wt%) enhanced the LOI value of PLA from 19.6% to 30.5%. PLA/CTSPA and PLA/TAFe/CTSPA achieved V-0 ratings in UL-94 test with slight melt dripping. Cone calorimetry demonstrated that 2.5 wt% apiece of TAFe and CTSPA led to obvious reductions in peak heat release rate and total heat release. Interestingly, the combination of TAFe and CTSPA was effective in suppressing CO production. PLA/TAFe had a higher UPF value (50+) and tensile strength than pristine PLA. In conclusion, the sustainable strategy developed in this study represents the concept of fabricating fully bio-based polymer composites via a solvent-free process, which can also be generalized into the eco-design for other multifunctional polymer systems.
机译:生物基功能药物与生物聚合物的整合是满足对健康,安全和可持续性不断增长的方式。本研究介绍了使用两种生物基络合耦合的阻燃剂(FR),UV保护和增强聚(PLA)复合材料的容易和无溶剂制造:单宁酸/铁盐(TAFE)和壳聚糖/植酸(CTSPA)。通过热重分析(TGA),有限的氧指数(LOI),UL-94测试和锥形量热法评估PLA复合材料的热和燃烧性质。还评估了UV保护性和拉伸性质。 PLA / TAFE和PLA / CTSPA显示出早期的质量损失和比原始PLA更高的炭化残留物。 CTSPA(3wt%)从19.6%到30.5%的PLA增强了LOI值。 PLA / CTSPA和PLA / TAFE / CTSPA在UL-94测试中实现了V-0额定值,具有轻微的熔体滴水。锥形量热法证明了2.5wt%的TAFE和CTSPA导致峰值热释放速率和总热释放的明显降低。有趣的是,TAFE和CTSPA的组合在抑制CO生产方面是有效的。 PLA / TAFE具有比原始PLA更高的UPF值(50+)和拉伸强度。总之,本研究中开发的可持续策略代表了通过无溶剂过程制造完全生物基聚合物复合材料的概念,其也可以广泛地推广到其他多官能聚合物系统的生态设计中。

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  • 来源
    《Composites. B, Engineering》 |2021年第15期|108833.1-108833.11|共11页
  • 作者单位

    Hong Kong Polytech Univ Inst Text & Clothing Hong Kong Peoples R China|Univ Coll Dublin Ctr Micro Nano Mfg Technol MNMT Dublin Sch Mech & Mat Engn Dublin Ireland;

    Hong Kong Polytech Univ Inst Text & Clothing Hong Kong Peoples R China|Kwame Nkrumah Univ Sci & Technol Dept Ind Art Text Kumasi Ghana;

    Hong Kong Polytech Univ Inst Text & Clothing Hong Kong Peoples R China;

    City Univ Hong Kong Dept Civil & Architectural Engn Hong Kong Peoples R China;

    Beijing Univ Chem Technol Dept Mat Sci Beijing Key Lab Adv Funct Polymer Composites Beijing Peoples R China;

    City Univ Hong Kong Dept Civil & Architectural Engn Hong Kong Peoples R China;

    Hong Kong Polytech Univ Inst Text & Clothing Hong Kong Peoples R China;

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

    Sustainable composite; PLA; Bio-based complexing couples; Flame retardant; UV protection; Reinforcement;

    机译:可持续复合材料;PLA;基于生物的络合伴侣;阻燃剂;UV保护;加强;

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