Polyurethane Recycling and Disposal: Methods and Prospects

Author:

Kemona Aleksandra,Piotrowska MałgorzataORCID

Abstract

Growing water and land pollution, the possibility of exhaustion of raw materials and resistance of plastics to physical and chemical factors results in increasing importance of synthetic polymers waste recycling, recovery and environmentally friendly ways of disposal. Polyurethanes (PU) are a family of versatile synthetic polymers with highly diverse applications. They are class of polymers derived from the condensation of polyisocyanates and polyalcohols. This paper reports the latest developments in the field of polyurethane disposal, recycling and recovery. Various methods tested and applied in recent years have proven that the processing of PU waste can be economically and ecologically beneficial. At the moment mechanical recycling and glycolysis are the most important ones. Polyurethanes’ biological degradation is highly promising for both post-consumer and postproduction waste. It can also be applied in bioremediation of water and soil contaminated with polyurethanes. Another possibility for biological methods is the synthesis of PU materials sensitive to biological degradation. In conclusion, a high diversity of polyurethane waste types and derivation results in demand for a wide range of methods of processing. Furthermore, already existing ones appear to be enough to state that the elimination of not reprocessed polyurethane waste in the future is possible.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference115 articles.

1. PlasticsEurope Association of Plastics Manufacturers Plastics—The Facts 2019 An analysis of European Plastics Production, Demand and Waste Datahttps://www.plasticseurope.org/en/resources/market-data

2. Evaluation of biological degradation of polyurethanes

3. The 12th Edition of Report on the Markets for Polyurethane Chemicals and Products in Europe, Middle East and Africa,2018

4. Polyurethane–polyisocyanurate foams modified with hydroxyl derivatives of rapeseed oil

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