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新兴研究员系列:轮胎和人工草皮颗粒橡胶的深入化学剖析:老化、转化产物和迁移途径。

Emerging investigator series: in-depth chemical profiling of tire and artificial turf crumb rubber: aging, transformation products, and transport pathways.

机构信息

Department of Chemistry and Chemical Biology, College of Science, Northeastern University, Boston, MA, USA.

Barnett Institute for Chemical and Biological Analysis, College of Science, Northeastern University, Boston, MA, USA.

出版信息

Environ Sci Process Impacts. 2024 Oct 16;26(10):1703-1715. doi: 10.1039/d4em00326h.

Abstract

Crumb rubber generated from end-of-life tires (ELTs) poses a threat to environmental and human health based on its widespread use. Of particular concern is the use of ELT crumb rubber as infill for artificial turf fields, as people are unknowingly exposed to complex mixtures of chemicals when playing on these fields. Additionally, there is concern regarding transport of rubber-related chemicals from artificial turf into the environment. However, existing knowledge does not fully elucidate the chemical profile, transformation products, and transport pathways of artificial turf crumb rubber across different ages. To address these knowledge gaps, we utilized a multi-faceted approach that consisted of targeted quantitation, chemical profiling, and suspect screening ultra-high performance liquid chromatography-high-resolution mass spectrometry (UHPLC-HRMS). We collected and processed 3 tire and 11 artificial turf crumb rubber samples solvent extraction, leaching, and a bioaccessibility-based extraction. Nineteen rubber-derived chemicals were quantified using parallel reaction monitoring and isotope dilution techniques. In solvent extracts, the most abundant analytes were 1,3-diphenylguanidine (0.18-1200 μg g), -(1,3-dimethylbutyl)-'-phenyl--phenylenediamine (6PPD, 0.16-720 μg g), 2-mercaptobenzothiazole (0.47-140 μg g), and benzothiazole (0.84-150 μg g). Chemical profiling assessed changes in sample diversity, abundance, polarity, and molecular mass. Suspect screening identified 81 compounds with different confidence levels (16 at level 1, 53 with level 2, 7 at level 3, and 5 at level 4). The formation rate of transformation products and clustering analysis results identified time-based trends in artificial turf field samples. We found that the first two years of aging may be critical for the potential environmental impact of artificial turf fields. Our analysis provides insight into the chemical complexity of artificial turf crumb rubber samples ranging from 0-14 years in age.

摘要

废旧轮胎(ELT)制成的橡胶颗粒因其广泛的应用而对环境和人类健康构成威胁。特别令人关注的是将 ELT 橡胶颗粒用作人造草皮场地的填充物,因为人们在这些场地上玩耍时会不知不觉地接触到复杂的化学物质混合物。此外,还担心橡胶相关化学物质从人造草皮转移到环境中。然而,现有知识并未充分阐明不同年龄的人造草皮橡胶颗粒的化学特征、转化产物和迁移途径。为了解决这些知识空白,我们采用了一种多方面的方法,包括靶向定量、化学特征分析和可疑物筛选超高效液相色谱-高分辨率质谱(UHPLC-HRMS)。我们收集并处理了 3 个轮胎和 11 个人造草皮橡胶颗粒样品,采用溶剂萃取、浸出和基于生物可利用性的提取方法。使用平行反应监测和同位素稀释技术对 19 种橡胶衍生化学品进行了定量分析。在溶剂提取物中,最丰富的分析物是 1,3-二苯基胍(0.18-1200μg/g)、-(1,3-二甲基丁基)-'-苯基--亚苯基二胺(6PPD,0.16-720μg/g)、2-巯基苯并噻唑(0.47-140μg/g)和苯并噻唑(0.84-150μg/g)。化学特征分析评估了样品多样性、丰度、极性和分子量的变化。可疑物筛选确定了 81 种具有不同置信水平的化合物(16 种为 1 级,53 种为 2 级,7 种为 3 级,5 种为 4 级)。转化产物的形成速率和聚类分析结果确定了人造草皮场地样品随时间的变化趋势。我们发现,老化的前两年可能对人造草皮场地的潜在环境影响至关重要。我们的分析提供了对 0-14 年不同年龄的人造草皮橡胶颗粒样品的化学复杂性的深入了解。

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