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通过合成聚脲和聚酰胺实现聚氨酯醇解中异氰酸酯衍生馏分的增值利用。

Valorization of the Isocyanate-Derived Fraction from Polyurethane Glycolysis by Synthesizing Polyureas and Polyamides.

作者信息

Del Amo Jesus, Bravo Paula, Alashry Mennatallah M, Tejeda Juan, Rodríguez Juan F, Borreguero Ana M

机构信息

Chemical Engineering Department, University of Castilla-La Mancha, Institute of Chemical and Environmental Technology, ITQUIMA, Avda. Camilo José Cela s/n, 13004 Ciudad Real, Spain.

Chemistry Department, Faculty of Science, Mansoura University, 35516 Mansoura, Egypt.

出版信息

ACS Sustain Chem Eng. 2024 Nov 20;12(48):17479-17487. doi: 10.1021/acssuschemeng.4c05482. eCollection 2024 Dec 2.

Abstract

The isocyanate-derived fraction resulting as the bottom phase from the split-phase glycolysis of conventional polyurethane flexible foams has been given a new life based on the formation of amine-based polymers (polyureas and polyamides). For that purpose, the bottom phase was first hydrolyzed, producing toluenediamine and diethylene glycol, and further subjected to controlled vacuum distillation in order to recover both products separately. The hydrolysis reaction and the separation process conditions were determined and optimized, obtaining products with a purity comparable to that of commercial ones. Then, the recovered diethylene glycol was used in a new glycolysis process, obtaining a split-phase product with properties similar to those obtained using commercial diethylene glycol. Finally, the recovered toluenediamine was used in the synthesis of polyureas and polyamides. Both syntheses were modified with respect to the state of the art, replacing benzene with limonene in the synthesis of polyamides, which implies environmental improvements.

摘要

传统聚氨酯软质泡沫材料分相糖酵解产生的异氰酸酯衍生馏分作为下层相,基于胺基聚合物(聚脲和聚酰胺)的形成获得了新的用途。为此,首先将下层相水解,生成甲苯二胺和二甘醇,然后进行减压蒸馏以分别回收这两种产物。确定并优化了水解反应和分离工艺条件,得到了纯度与市售产品相当的产物。然后,将回收的二甘醇用于新的糖酵解过程,得到了与使用市售二甘醇所得产物性能相似的分相产物。最后,将回收的甲苯二胺用于聚脲和聚酰胺的合成。这两种合成方法均对现有技术进行了改进,在聚酰胺合成中用柠檬烯替代了苯,这意味着环境得到了改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9e9/11615949/728d38482df2/sc4c05482_0007.jpg

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