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聚氨酯糖酵解过程中多元醇的脱氨作用。

Deamination of Polyols from the Glycolysis of Polyurethane.

作者信息

Donadini Riccardo, Boaretti Carlo, Scopel Luca, Lorenzetti Alessandra, Modesti Michele

机构信息

Department of Industrial Engineering, University of Padova, via Marzolo 9, Padova, 35131, Italy.

出版信息

Chemistry. 2024 Jan 11;30(3):e202301919. doi: 10.1002/chem.202301919. Epub 2023 Nov 20.

Abstract

Methylenedianiline (MDA) is a secondary, undesired, product of the glycolysis process of polyurethane (PU) scraps due to hydrolysis and pyrolysis side reactions. As an aromatic and carcinogen amine, MDA poses different problems in handling, transporting, and labelling recycled polyols derived from glycolysis, hindering the closure of PU recycling loop. Aiming to provide a solution to this issue, in this work different deaminating agents (DAs) were investigated with the purpose of analyzing their reactivity with MDA. A first part of the study was devoted to the analysis of MDA formation as a function of reaction time and catalyst concentration (potassium acetate) during glycolysis. It was observed that the amount of MDA increases almost linearly with the extent of PU depolymerization and catalyst content. Among the DAs analyzed 2-ethylhexyl glycidyl ether (2-EHGE), and acetic anhydride (Ac O) showed interesting performance, which allowed MDA content to be diminished below the limit for labelling prescription in 30 minutes. PU rigid foams were, therefore, synthesized from the corresponding recycled products and characterized in terms of thermal and mechanical performance. Ac O-deaminated polyols led to structurally unstable foams with poor compressive strength, while 2-EHGE-deaminated products allowed the production of foams with improved mechanical performance and unaltered thermal conductivity.

摘要

亚甲基二苯胺(MDA)是聚氨酯(PU)废料糖酵解过程中由于水解和热解副反应产生的一种次要的、不需要的产物。作为一种芳香族致癌胺,MDA在处理、运输和标记源自糖酵解的回收多元醇时带来了不同的问题,阻碍了PU回收循环的闭合。为了解决这个问题,在这项工作中研究了不同的脱胺剂(DAs),目的是分析它们与MDA的反应活性。研究的第一部分致力于分析糖酵解过程中MDA的形成与反应时间和催化剂浓度(醋酸钾)的关系。观察到MDA的量几乎随PU解聚程度和催化剂含量呈线性增加。在所分析的脱胺剂中,2-乙基己基缩水甘油醚(2-EHGE)和乙酸酐(Ac₂O)表现出有趣的性能,能使MDA含量在30分钟内降至低于标记规定的限度。因此,由相应的回收产物合成了PU硬质泡沫,并对其热性能和机械性能进行了表征。用Ac₂O脱胺的多元醇导致结构不稳定的泡沫,抗压强度差,而用2-EHGE脱胺的产物能生产出机械性能改善且热导率不变的泡沫。

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