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Chemical Recycling of Mixed Polyurethane Foam Stream Recovered From Shredder Residue Into Polyurethane Polyols

机译:将混合聚氨酯泡沫流的化学回收从粉碎机残基回收到聚氨酯多元醇中

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Tons of shredder residue (SR), a complex mixture of plastics, foams, rubber, metals, and glass, are generated each year as a by-product from the recycling of obsolete vehicles. The Vehicle Recycling Partnership (VRP), along with our CRADA partners, is investigating ways to enable the optimum recovery and recycling of these materials. This study investigates the feasibility of recycling (PU) foam using a new chemical process by glycolysing two types of polyurethane (PU) foams, "dirty" and "clean," which were recovered from SR via an industrial scale process specifically designed to separate PU foams from SR. In stage one of this process, the polyurethane foam is subjected to glycolysis, followed by filtration of the liquid glycolyzed product. In stage two, the glycolyzed products are used as initiators in reaction with propylene oxide to prepare novel polyurethane polyols. A number of successful laboratory glycolyses were carried out utilizing the two different types of PU foams recovered from shredder residue: (1) the best case scenario - hand-picked PU foams from shredder residue with >80% conversion into liquid initiator and (2) the worst case scenario - mixed PU materials separated by an automated separation process from shredder residue with ~50% conversion into a liquid initiator. Both toluene diisocyanate (TDI) and polymeric diphenylmethane diisocyanate (PMDI)-based flexible foams were prepared from the novel recycled polyols by propoxylation of the glycolyzed products (initiators) obtained from the mixed PU materials.
机译:每年作为副产品的副产品,每年产生粉碎机残留量(SR),塑料,泡沫,橡胶,金属和玻璃的复杂混合物,从过时的车辆的再循环产生。车辆回收伙伴关系(VRP)以及我们的CRADA合作伙伴正在调查能够实现这些材料的最佳回收和回收的方法。本研究通过通过专门设计为分离PU的工业规模过程从SR溶解两种类型的聚氨酯(PU)泡沫,“脏”和“清洁”来研究使用新的化学过程的再循环(PU)泡沫的可行性来自SR的泡沫。在该方法的阶段,对聚氨酯泡沫进行糖溶解,然后过滤液态甘油化产物。在第二阶段,糖酵解产物用作与环氧丙烷反应的引发剂以制备新型聚氨酯多元醇。利用从粉碎机残留物中回收的两种不同类型的PU泡沫进行了许多成功的实验室糖粉:(1)来自粉碎机残基的最佳案例场景 - 从粉碎机残留物,转化为液体引发剂和(2)最坏情况的情况 - 混合PU材料通过从粉碎机残基的自动分离过程分开,将〜50%转化为液体引发剂。通过从混合PU材料获得的丙醇锌产物(引发剂)的丙氧基化,从新的再循环多元醇制备甲苯二异氰酸酯(TDI)和聚合物二苯基甲烷二异氰酸酯(PMDI)的柔性泡沫。

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