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Synthesis, characterization and properties of biomass and carbon dioxide derived polyurethane reactive hot-melt adhesives

机译:生物质和二氧化碳衍生的聚氨酯反应性热熔胶的合成,表征和性能

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摘要

Polyurethane reactive hot-melt adhesives (PURHs) are frequently employed in industries; however, there is still a need to develop more sustainable and versatile methodologies to expand the functions and fabrication of these important materials. Renewable feedstock can give PURHs with new functions, and reduce environmental impact. This study focuses on synthesizing PURHs using polyols derived from biomass (plants) and greenhouse gas (COsub2/sub) resources. These PURHs were characterized by multiple techniques, including solid-state sup13/supC nuclear magnetic resonance (NMR), a dynamic mechanical analysis (DMA), single-lap adhesive joints strength of stainless steel, and hydrolytic ageing. The PURH film based on biomass poly(tetramethylene ether) glycol (bio-PTMEG) exhibited better water vapor permeability, tensile strength, and adhesive joints properties than PURHs based on cashew nutshell liquid (CNSL) polyester diol and poly(propylene carbonate)-poly(propylene glycol) (PPC-PPG) copolymer diol. The polyols blend of bio-PTMEG with biomass and COsub2/sub based polycarbonate diols respectively provided PURHs films excellent hydrolysis resistance and adhesive strength on single-lap adhesively bonded stainless steel specimens. The work herein demonstrates that various renewable polyols can be employed in a sustainable fashion to optimize the structures and properties of PURHs for important applications.
机译:聚氨酯反应性热熔胶(PURH)经常用于工业中。然而,仍然需要开发更可持续和通用的方法,以扩展这些重要材料的功能和制造。可再生原料可使PURH具有新功能,并减少对环境的影响。这项研究的重点是使用衍生自生物质(植物)和温室气体(CO 2 )资源的多元醇合成PURH。这些PURH具有多种技术特征,包括固态 13 核磁共振(NMR),动态力学分析(DMA),不锈钢的单圈粘合接头强度和水解老化。与基于腰果壳壳液(CNSL)聚酯二醇和聚碳酸亚丙酯-聚丙烯酸酯的PURHs相比,基于生物质聚四亚甲基醚二醇(bio-PTMEG)的PURH膜具有更好的水蒸气渗透性,拉伸强度和粘合接头性能。 (丙二醇)(PPC-PPG)共聚物二醇。 bio-PTMEG与生物质和基于CO 2 的聚碳酸酯二醇的多元醇共混物分别为PURHs膜提供了优异的耐水解性和在单圈粘合不锈钢样品上的粘合强度。本文的工作表明,可以以可持续的方式使用各种可再生多元醇,以针对重要应用优化PURH的结构和性能。

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