Del Amo Jesús, Iswar Subramaniam, Vanbergen Thomas, Borreguero Ana Maria, De Vos Simon Dirk E, Verlent Isabel, Willems Jan, Rodriguez Romero Juan Francisco
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.
Recticel Engineered Foams Belgium BV, Damstraat 2, 9230 Wetteren, Belgium.
Materials (Basel). 2024 Jun 11;17(12):2844. doi: 10.3390/ma17122844.
The glycolysis process of flexible polyurethane foams containing styrene-acrylonitrile and calcium carbonate as fillers was explored in detail. The use of DABCO as a catalyst allowed us to reduce the catalyst concentration and the polyurethane-to-glycol mass ratio to 0.1% and 1:1, respectively. The glycolysis process allowed us to obtain a high-purity polyol (99%), which can totally replace raw polyols in the synthesis of new flexible polyurethane foams, maintaining the standard mechanical properties of the original one and modifying the ratio of isocyanates employed to correct the closed cell structure caused by the impurities present in the recovered polyol. This isocyanate mixture was also optimized, resulting in a ratio of 30 and 70% of the isocyanates TDI80 and TDI65, respectively. Additionally, the fillers incorporated in the glycolyzed foams were recovered. Both recovered fillers, styrene-acrylonitrile and calcium carbonate, were fully characterized, showing a quality very similar to that of commercial compounds. Finally, the replacement of commercial fillers by the recovered ones in the synthesis of new polyurethane foams was studied, demonstrating the feasibility of using them in the synthesis of new foams without significantly altering their properties.
详细探究了含有苯乙烯 - 丙烯腈和碳酸钙作为填料的软质聚氨酯泡沫的糖酵解过程。使用二氮杂双环辛烷作为催化剂使我们能够将催化剂浓度和聚氨酯与二醇的质量比分别降低至0.1%和1:1。糖酵解过程使我们获得了高纯度的多元醇(99%),其可在合成新型软质聚氨酯泡沫时完全替代原料多元醇,保持原始泡沫的标准机械性能,并调整所用异氰酸酯的比例以校正回收多元醇中杂质导致的闭孔结构。这种异氰酸酯混合物也进行了优化,结果是异氰酸酯TDI80和TDI65的比例分别为30%和70%。此外,回收了糖酵解泡沫中所含的填料。对回收的两种填料苯乙烯 - 丙烯腈和碳酸钙都进行了全面表征,结果表明其质量与市售化合物非常相似。最后,研究了在合成新型聚氨酯泡沫时用回收填料替代市售填料的情况,证明了在合成新型泡沫时使用它们而不显著改变其性能的可行性。