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Natural Polymers from Biomass Resources as Feedstocks for Thermoplastic Materials

机译:从生物质资源的天然聚合物原料为热塑性材料

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摘要

Abstract With the objective of a more sustainable circular economy, one long‐term goal is the utilization of renewable resources as feedstock for the production of polymer‐based materials. In order to successfully process such materials using existing industrial‐scale technologies or even recycling processes, the natural polymers must have thermoplastic properties. With only a few exceptions, natural polymers are not thermoplastic. However, chemical and physical modification techniques are able to induce thermoplasticity in natural polymers from biomass resources such as cellulose, lignin, and chitin. Modification techniques focus on masking the hydroxyl groups to disrupt dense hydrogen bonding and so enable polymer chain mobility upon heating. The introduction of long alkyl chains into the polymer backbone effectively improves the thermoplastic processing of natural polymers. With regard to polymer blending, chemical grafting and graft copolymerization are powerful tools for enhancing compatibility. For both chemical and physical modification, solvents such as ionic liquids and deep eutectic solvents are currently being explored for biomass and fiber processing and show promise for the future development of thermoplastic biopolymers. This review describes possible modifications, potential processing difficulties, and gives a summary of relevant studies described in the scientific literature.
机译:<标题更可持续循环经济的目的,一个长期目标是利用可再生资源为原料的生产的聚合物的基础材料。成功处理这些材料使用现有工业规模技术甚至回收过程中,天然聚合物必须的热塑性塑料的属性。例外,天然聚合物热塑性塑料。修改技术能够诱导从生物质热塑性天然聚合物资源(如纤维素、木质素和甲壳素。修改技术关注掩蔽羟基破坏氢键密度所以使高分子链流动供暖。到有效地改善聚合物骨干热塑性加工的天然聚合物。关于聚合物共混、化学嫁接和接枝共聚是强大的工具提高兼容性。化学和物理改性、溶剂等深离子液体和低共熔溶剂目前正在研究的生物量和纤维处理和显示未来的承诺热塑性生物聚合物的发展。复习描述可能的修改,潜在的处理困难,和了总结相关研究中所描述的科学文献。

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