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RAFT thermoplastics from glycerol: a biopolymer for development of sustainable wood adhesives

机译:来自甘油的筏热塑性塑料:用于开发可持续木材粘合剂的生物聚合物

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摘要

The increasing demand for bioderived plastics and rubbers and the large supply of glycerol makes it an excellent starting chemical for the production of biopolymers. Little success in commercially viable glycerol polymers has yet to be realized. In particular, high molecular weight thermoplastics have been especially elusive due to the multifunctional nature of glycerol. This work details the production of glycerol-acrylic biopolymers. By esterifying glycerol with acrylic acid, and subsequent RAFT polymerization to suppress the gelation, we were able to achieve glycerol thermoplastics with high molecular weights (1 MDa). After studying the thermal/mechanical properties of the polymer, it was found that these glycerol polymers had a high degree of tack. When added to wood as an adhesive, it was found that performance was comparable or exceeded standard wood adhesives such as Poly (Methylene diphenyl diisocyanate) (PMDI) and formaldehyde based adhesives. This yields wood adhesives that have less toxicity, lower environmental impact, and higher renewability.
机译:对生物化塑料和橡胶的需求增加以及大量的甘油供应使其成为生物聚合物生产的优异的起始化学品。在商业上可行的甘油聚合物中的成功尚不熟悉。特别地,由于甘油的多功能性质,高分子量热塑性塑料特别难以难以捉摸。这项工作细节甘油 - 丙烯酸生物聚合物的生产。通过用丙烯酸酯化甘油,随后的筏聚合抑制凝胶化,我们能够通过高分子量(1MDA)来实现甘油热塑性塑料。在研究聚合物的热/力学性质之后,发现这些甘油聚合物具有高度的粘性。当添加到木材作为粘合剂时,发现性能是可比的或超过标准木材粘合剂,例如聚(亚甲基二苯基二异氰酸酯)(PMDI)和甲醛基粘合剂。这产生了具有较少毒性,环境影响和更高的可再生性的木材粘合剂。

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