升级回收废物:完全生物质衍生和后院可堆肥亚胺热固性材料

Ashwani Kumar, Brett Leslie Pollard and Luke A. Connal*, 
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引用次数: 0

摘要

日益严重的环境问题和日益减少的全球石油供应刺激了人们对生物质热固性塑料的兴趣。在不使用昂贵的原材料和有毒溶剂的情况下,开发绿色和可持续的热固性材料是一项艰巨的挑战。可利用的虾类和纤维素废料是开发性能优良材料的廉价原料。在此,我们报道了完全由生物质衍生的动态亚胺热固性物质,它很容易通过壳聚糖与一种新型左旋葡萄糖酮二酮反应生成。制备的亚胺热固性材料具有增强的模量(3.7 ~ 7.9 GPa)、高玻璃化转变温度(Tg)(171 ~ 176.1℃)和可调的力学性能(抗拉强度,12.5±3.5 ~ 21.1±3.1 MPa)。由于希夫碱键的动态性质,所制备的聚合物表现出快速的应力松弛行为和可再加工性。在“产品寿命结束”时,它可以在4-5天内在家庭堆肥中分解。这种材料有可能取代目前主导市场的传统和对环境有害的热固性塑料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Upcycling Waste: Fully Biomass-Derived and Backyard Compostable Imine Thermosets

Upcycling Waste: Fully Biomass-Derived and Backyard Compostable Imine Thermosets

Growing environmental issues and dwindling global petroleum supplies have stimulated interest in biomass thermosets. The development of green and sustainable thermosets without the use of expensive raw materials and toxic solvents is a non-trivial challenge. Widely available shrimp and cellulose waste materials are cheap raw ingredients for the development of materials with excellent properties. Herein, we report fully biomass-derived dynamic imine thermosets, readily generated by reacting chitosan with a novel levoglucosenone diketone. The prepared imine thermosets exhibit enhanced modulus (3.7–7.9 GPa), high glass transition temperature (Tg) (171–176.1 °C) and tunable mechanical properties (tensile strength, 12.5 ± 3.5 to 21.1 ± 3.1 MPa). The as-prepared polymer demonstrated fast stress relaxation behavior and reprocessability owing to the dynamic nature of Schiff base bonds. At the “end of product life”, it can be decomposed in a home compost within 4–5 days. The material has the potential to replace conventional and environmentally destructive thermoset plastics, which currently dominate the market.

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