Quantitative assessment of additive leachates in abiotic weathered tire cryogrinds and its application to tire wear particles in roadside soil samples

IF 8.1 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Jomin Thomas , Teresa Cutright , Coleen Pugh , Mark D. Soucek
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引用次数: 9

Abstract

Tire and road wear particles (TRWP) are becoming an important research question with potential risks on ecological system. A comprehensive understanding of their detection and quantification in soils are challenged by the inherent technological inconsistencies, lack of well-set standardized methods, and generalized protocols. Reference tire cryogrinds were subjected to abiotic weathering. Next, the total environmental availability from parent elastomers and the release of additives from tire tread compounds were evaluated using mass concentration factors obtained from abiotic weathered tire cryogrinds. Headspace Gas chromatography-mass spectroscopy (HS-GC-MS) was employed as a nontargeted, suspect screening analysis technique to identify the tire related intermediates. Benzothiazole, 1,2-dihydro-2,2,4-trimethylquinoline (TMQ), aniline, phenol and benzoic acid were detected as tire tetrahydrofuran leachates. Total environmental availability of TMQ and benzothiazole were in the range of 1.7 × 10−3 and 0.11, respectively. Benzene and benzoic acid derivatives were identified as marker compounds for environmental samples. A TRWP content evaluation was made possible by quantifying marker concentrations and reference tire cryogrind formulation. TRWP content in the size range of 1–5 mm was between 800 and 1300 μg/g and 1200–3100 μg/g TRWP in Ohio and Kansas soil. For TRWP less than 1 mm, 0.15–2.1 wt% content was observed in Kansas and Ohio samples and were seemingly dependent on the locations and the traffic. This simple, widely applicable quantification method for TRWP analysis provides a database of tire degradation and TRWP intermediates. The TRWP content research is critical for further TRWP research development in terrestrial environment.

Abstract Image

非生物风化轮胎冷冻磨料中添加剂渗滤液的定量评价及其在路边土样轮胎磨损颗粒中的应用
轮胎和道路磨损颗粒(TRWP)已成为具有潜在生态风险的重要研究课题。由于固有的技术不一致、缺乏完善的标准化方法和通用的协议,对土壤中它们的检测和量化的全面理解受到了挑战。参考轮胎冷冻磨具经受非生物风化。接下来,利用从非生物风化轮胎冷冻磨料中获得的质量浓度因子,评估母胎弹性体的总环境有效性和轮胎胎面化合物中添加剂的释放。采用顶空气相色谱-质谱(HS-GC-MS)作为一种非靶向、可疑筛选分析技术,对轮胎相关中间体进行鉴定。苯并噻唑、1,2-二氢-2,2,4-三甲基喹啉(TMQ)、苯胺、苯酚和苯甲酸是轮胎四氢呋喃浸出液的主要成分。TMQ和苯并噻唑的总环境有效度分别为1.7 × 10−3和0.11。苯和苯甲酸衍生物被确定为环境样品的标记化合物。通过量化标记物浓度和参考轮胎冷冻磨配方,可以对TRWP含量进行评估。俄亥俄州和堪萨斯州土壤TRWP含量分别为800 ~ 1300 μg/g和1200 ~ 3100 μg/g。对于TRWP小于1 mm,在堪萨斯州和俄亥俄州的样品中观察到0.15-2.1 wt%的含量,并且似乎依赖于位置和交通。这种简单、广泛应用于TRWP分析的量化方法提供了轮胎降解和TRWP中间体的数据库。TRWP内容的研究是进一步开展陆地环境TRWP研究的关键。
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来源期刊
Chemosphere
Chemosphere 环境科学-环境科学
CiteScore
15.80
自引率
8.00%
发文量
4975
审稿时长
3.4 months
期刊介绍: Chemosphere, being an international multidisciplinary journal, is dedicated to publishing original communications and review articles on chemicals in the environment. The scope covers a wide range of topics, including the identification, quantification, behavior, fate, toxicology, treatment, and remediation of chemicals in the bio-, hydro-, litho-, and atmosphere, ensuring the broad dissemination of research in this field.
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