Vieyra Horacio, Molina-Romero Joan Manuel, Calderón-Nájera Juan de Dios, Santana-Díaz Alfredo
Tecnologico de Monterrey, Escuela de Ingeniería y Ciencias, Eduardo Monroy Cárdenas 2000, San Antonio Buenavista, Toluca de Lerdo 50110, Mexico.
Tecnologico de Monterrey, Escuela de Ingeniería y Ciencias, Eugenio Garza Sada 2501, Monterrey 64849, Mexico.
Polymers (Basel). 2022 Aug 21;14(16):3412. doi: 10.3390/polym14163412.
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.
汽车行业几乎从一开始就使用塑料了。塑料的轻便、柔韧性以及诸多特性使其成为汽车行业的理想之选,能够降低汽车的整体重量和油耗。该行业中的工程塑料属于不可再生资源的高性能类别。这些塑料展现出比通用塑料更高的性能。幸运的是,与回收的通用塑料不同,工程塑料卓越的性能和高性能特性使其在回收后能够得到有效再利用。用这些源自化石燃料的塑料进行替代,有助于解决轻量化问题,这是废物管理急需的解决方案,还能解决围绕塑料处理的工业和生态问题。全球所有主要汽车制造商都使用生物塑料和生物基塑料,包括天然纤维复合材料以及用天然纤维增强的工程塑料。将塑料的来源从可再生资源转变为原材料是实现可持续发展的合理途径。因此,从设计角度出发,可以利用高质量塑料、回收塑料、生物基塑料和可生物降解塑料,使可持续发展成为移动出行发展不可或缺的理念。本综述分析得出,从源自化石燃料的塑料转向源自可再生资源的塑料是朝着实现包括电动汽车在内的汽车行业当前环境目标迈进的一步。