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Methods for polyurethane and polyurethane composites, recycling and recovery: A review

机译:聚氨酯和聚氨酯复合材料的回收利用方法

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Recent progress in the recycling and recovery of polyurethane and polyurethane composites is reviewed. The various types of polyurethane waste products, consisting of either old recycled parts or production waste, are generally reduced to a more usable form, such as flakes, powder or pellets, depending on the particular type of polyurethane that is being recycled. The various recycling technologies for material and chemical recycling of PU materials have greatly contributed to improve the overall image regarding the recyclability of polyurethanes in recent years, by far the most important being regrinding and glycolysis. These technologies open an emerging, effective and economic route for recycling polyurethane rigid foams and composite. Polyurethane foam in automotive seating has been successfully recycled using regrind technology. Glycolysis of polyurethanes can be economically acceptable, but still requires more development in order to tolerate more contamination in the post-consumer material. Current technologies can recover the inherent energy value of polyurethanes and reduce fossil fuel consumption. Energy recovery is considered the only suitable disposal method for recovered material for which no markets exist or can be created. Increasing waste-to-energy and other thermal processing activities involving gasification, pyrolysis and two-stage combustion has contributed for the disposal of significant amounts of scrap PU without many difficulties. It is concluded that many of the plastic feedstock recycling processes appear to be technically feasible and robust enough to warrant further development in the future.
机译:综述了聚氨酯和聚氨酯复合材料在回收利用方面的最新进展。通常,将各种类型的聚氨酯废品(包括旧的回收零件或生产废料)减少为更易使用的形式,例如薄片,粉末或颗粒,这取决于要回收的聚氨酯的特定类型。近年来,用于PU材料的材料和化学回收的各种回收技术极大地改善了有关聚氨酯可回收性的整体形象,到目前为止,最重要的是再研磨和糖酵解。这些技术为回收聚氨酯硬质泡沫塑料和复合材料开辟了一条新兴,有效且经济的途径。汽车座椅中的聚氨酯泡沫已使用再生技术成功回收。聚氨酯的糖酵解在经济上是可以接受的,但仍需要更多的发展才能耐受消费后材料中的更多污染。当前的技术可以恢复聚氨酯的固有能量值并减少化石燃料的消耗。对于没有市场存在或无法建立市场的回收材料,能源回收被认为是唯一合适的处置方法。涉及气化,热解和两阶段燃烧的废物转化为能源以及其他热处理活动的增加,为处理大量废PU做出了贡献,而没有很多困难。结论是,许多塑料原料回收工艺在技术上似乎可行且足够坚固,足以保证将来的进一步发展。

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