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废旧轮胎的最新进展:文献计量分析、工艺和废物管理方法。

Recent advances on waste tires: bibliometric analysis, processes, and waste management approaches.

机构信息

Department of Life Sciences, Central University of Technology, Free State, Private Bag X20539, Bloemfontein, 9300, South Africa.

DSI/Mintek-Nanotechnology Innovation Centre, Advanced Materials, Mintek, Randburg, 2125, South Africa.

出版信息

Environ Sci Pollut Res Int. 2023 Dec;30(56):118213-118245. doi: 10.1007/s11356-023-30758-4. Epub 2023 Nov 8.

Abstract

End of life tires (ELTs) are a pressing environmental concern due to their non-biodegradable nature and potential release of toxic chemicals, as confirmed by human health exposure studies. The expanding transport sector, driven by the automotive industry, has led to inadequate attention to safe tire disposal. This review extracted papers using keywords such as "waste tire rubber," "waste tire pollution," and "waste tire applications" from 2012 to 2023. Recycling publications have surged by 80% in the past decade, with China and the USA leading the research. Pyrolysis and devulcanization methods have emerged as key circular economy (CE) advancements, producing fuel and reusable rubber. Globally, 1.5 billion waste tires accumulate yearly, projected to increase by 70% in the next 30 years if unaddressed. Around 26 million tonnes of used tires are generated annually worldwide, while civil engineering and backfilling use 17 million tonnes of recycled rubber particles. These tires are complex polymer composites, primarily composed of natural and synthetic rubber. The amorphous nature of rubber results in a 50% loss of mechanical properties when exposed to chemicals and microbes, shortening its lifespan. This paper explores the applicability of waste tire rubber and polymer fabrication to offer eco-friendly and cost-effective solutions for proper disposal, mitigating environmental accumulation.

摘要

废弃轮胎(ELTs)由于其不可生物降解的性质和潜在的有毒化学物质释放,对环境构成了紧迫的关注,这一点已被人类健康暴露研究所证实。由于汽车行业的推动,运输部门不断扩张,但对安全处理废旧轮胎的关注不足。本综述从 2012 年到 2023 年,使用了“废轮胎橡胶”、“废轮胎污染”和“废轮胎应用”等关键词提取文献。在过去的十年中,回收利用出版物的数量增加了 80%,中国和美国在这方面处于领先地位。热解和脱硫方法已成为关键的循环经济(CE)进展,可生产燃料和可重复使用的橡胶。全球每年积累 15 亿个废旧轮胎,如果不加以处理,预计未来 30 年将增加 70%。全球每年产生约 2600 万吨废旧轮胎,土木工程和回填使用了 1700 万吨再生橡胶颗粒。这些轮胎是复杂的聚合物复合材料,主要由天然和合成橡胶组成。橡胶的非晶态性质导致其在暴露于化学物质和微生物时机械性能损失 50%,从而缩短其使用寿命。本文探讨了废轮胎橡胶和聚合物制造的适用性,为妥善处理提供环保且经济有效的解决方案,减轻环境积累。

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