Kiss Gabriel, Rusu Gerlinde, Peter Francisc, Tănase Ionuț, Bandur Geza
University Politehnica Timișoara, Faculty of Industrial Chemistry and Environmental Engineering, C. Telbisz 6, 300001 Timișoara, Romania.
Momentive Performances Materials, Carl-Duisberg-Strasse 101, 51373 Leverkusen, Germany.
Polymers (Basel). 2020 Jul 10;12(7):1533. doi: 10.3390/polym12071533.
Ester polyurethane (PU) foam waste was reacted at atmospheric pressure in an autoclave and using microwaves with diethylene glycol (DEG) at different PU/DEG ratios in the presence of diethanolamine as a catalyst to find the glycolysis conditions that allow for the improved recovery of the PU foam waste and enable the recycling of the whole glycolysis product in foam formulations suitable for industrial application. The recycled polyol was characterized by dynamic viscosity, hydroxyl number, water content, and density, while thermal stability was assessed using thermogravimetric analysis. In the PU foam formulation, 1% and 5% of the glycolyzed material was reused. The relationship between the reuse level of the recycled polyol and the physical properties of the foam was thoroughly investigated. It was observed that both hardness and air flow decreased with increasing recycled polyol content, particularly for the polyester type foam, while tensile strength and compression strength increased. Depending on the amount of recycled polyol and catalyst used, polyether-based foams could be obtained with a low air permeability, needed in special applications as sealed foams, or with higher air permeability desirable for comfort PU foams. The results open the way for further optimization studies of industrial polyurethane foam formulations using a glycolysis process without any separation stage.
酯型聚氨酯(PU)泡沫废料在高压釜中于常压下、在二乙醇胺作为催化剂存在的条件下,与二甘醇(DEG)以不同的PU/DEG比例进行微波反应,以寻找能提高PU泡沫废料回收率并使整个醇解产物可在适用于工业应用的泡沫配方中循环利用的醇解条件。对回收的多元醇进行了动态粘度、羟值、含水量和密度表征,同时使用热重分析评估了热稳定性。在PU泡沫配方中,重复使用了1%和5%的醇解材料。深入研究了回收多元醇的重复使用水平与泡沫物理性能之间的关系。观察到,随着回收多元醇含量的增加,硬度和气流均降低,尤其是对于聚酯型泡沫而言,而拉伸强度和压缩强度则增加。根据所使用的回收多元醇和催化剂的量,可以获得具有低透气性的聚醚基泡沫(特殊应用如密封泡沫所需),或者具有较高透气性的舒适性PU泡沫所需的聚醚基泡沫。这些结果为在不进行任何分离步骤的情况下使用醇解工艺对工业聚氨酯泡沫配方进行进一步优化研究开辟了道路。