LEPABE - Laboratory for Process Engineering, Environment, Biotechnology and Energy, Faculty of Engineering, University of Porto, Rua Dr. Roberto Frias, 4200-465, Porto, Portugal.
LEPABE - Laboratory for Process Engineering, Environment, Biotechnology and Energy, Faculty of Engineering, University of Porto, Rua Dr. Roberto Frias, 4200-465, Porto, Portugal.
Chemosphere. 2022 Jul;299:134379. doi: 10.1016/j.chemosphere.2022.134379. Epub 2022 Mar 23.
Crumb rubber derived from end-of-life tires (ELTs) is frequently used as infill of synthetic turf pitches, promoting circular economy. Although important to reduce the accumulation of waste, the use of recycled ELTs can be a problem to human health and the environment, both by direct contact during pitch use and by the release of these elements to the surroundings, mostly via volatilization and leaching. The present study aimed to evaluate the distribution of metals in ELT-derived crumb rubber collected in artificial turf worldwide and assess possible trends by country, pitch age and type (indoor vs. outdoor). The concentration ranges observed are very wide, especially in outdoor fields and for the most abundant metals, namely Zn (2989-5246 mg/kg), Fe (196-5194 mg/kg), Mg (188-1795 mg/kg) and Al (159-1882 mg/kg). For Zn, the levels were mostly above the safe limits set in European directives for relatable matrices (soils and toy materials), and the same happened for Pb, a much more toxic metal at lower concentrations. A multi-pathway human exposure study was also performed, and the risk assessment shows non-carcinogenic and carcinogenic risks from accidental crumb rubber ingestion (with Cr and Pb as major contributors) above the acceptable values for all the receptors except adult bystanders, with a higher significance to younger individuals. These results bring a different perspective regarding most of the studies reporting low risks related with exposure to metals in crumb rubber.
废旧轮胎(ELT)衍生的橡胶颗粒常用于合成草皮场地的填充材料,促进了循环经济的发展。虽然这对减少废物积累很重要,但使用回收的 ELT 可能会对人类健康和环境造成问题,无论是在场地使用期间的直接接触,还是这些元素通过挥发和浸出释放到周围环境中。本研究旨在评估全球人工草皮场地中收集的废旧轮胎衍生橡胶颗粒中金属的分布情况,并通过国家、场地使用年限和类型(室内与室外)评估可能的趋势。观察到的浓度范围非常广泛,尤其是在室外场地和最丰富的金属(锌、铁、镁和铝)中。对于锌,其含量大多高于欧洲指令中针对相关基质(土壤和玩具材料)设定的安全限值,对于毒性更高的金属铅也是如此,即使在较低浓度下。还进行了多途径人体暴露研究,风险评估表明,对于所有受体(除了成人旁观者),意外摄入橡胶颗粒的非致癌和致癌风险(以 Cr 和 Pb 为主要贡献者)均超过了可接受值,对于年轻个体的意义更大。这些结果与大多数报道接触橡胶颗粒中金属的低风险相关的研究相比提供了不同的视角。