Engineering, Recyclable, and Biodegradable Plastics in the Automotive Industry: A Review

Author:

Vieyra HoracioORCID,Molina-Romero Joan Manuel,Calderón-Nájera Juan de Dios,Santana-Díaz AlfredoORCID

Abstract

The automotive industry has used plastics almost since the beginning. The lightness, flexibility, and many qualities of plastics make them ideal for the automotive industry, reducing cars’ overall weight and fuel consumption. Engineering plastics in this industry belong to the high-performance segment of non-renewable resources. These plastics exhibit higher properties than commodity plastics. Fortunately, unlike recycled commodity plastics, the super properties and high-performance characteristics make engineering plastics effectively reused after recycling. The substitution of these fossil-fuel-derived plastics adds to the solution of lightweighting, a much-needed solution to waste management, and solves industrial and ecological issues surrounding plastic disposal. All major vehicle manufacturers worldwide use bioplastics and bio-based plastics, including natural-fiber composites and engineering plastics reinforced with natural fibers. Changing the source of plastics to raw materials from renewable resources is the logical approach to sustainability. Thus, high-quality plastics, recycled plastics, bio-based plastics, and biodegradable plastics could be exploited from design, making sustainability an integral concept of mobility development. This review analyzes that switching from fossil-fuel- to renewable-sources-derived plastics is a step toward meeting the current environmental goals for the automotive industry, including electric cars.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference108 articles.

1. Economic Contributions https://www.oica.net/category/economic-contributions

2. The Future of Work in the Automotive Industry: The Need to Invest in People’s Capabilities and Decent and Sustainable Work;Griffin,2020

3. IEA Energy End Use and Efficiency Trends https://www.iea.org/reports/energy-efficiency-indicators-overview/iea-energy-end-use-and-efficiency-trends

4. International Energy Outlook 2016 Liquid fuels. U.S. Energy Information Administration;Diefenderfer;DOE/EIA-0484,2016

5. 2017 and Later Model Year Light-Duty Vehicle Greenhouse Gas Emissions and Corporate Average Fuel Economy Standards

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