Literature DB >> 29525659

Occurrence of benzothiazole and its derivates in tire wear, road dust, and roadside soil.

Jing Zhang1, Xinfeng Zhang2, Lin Wu1, Ting Wang3, Jingbo Zhao1, Yanjie Zhang1, Zhengyu Men1, Hongjun Mao4.   

Abstract

Benzothiazole (BT) and its derivates are commonly used as vulcanization accelerators in rubber production. Information on the occurrence of BTs in road dust (RD) and on human exposure to these compounds is very limited. BT and its six derivates in tire wear particles (TWPs) and RD were determined in this study. Samples were extracted using solid-liquid extraction, purified by a HLB SPE column, and determined by ultra-high performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS). All seven BTs were found in 17 TWPs samples from different tire brands. The mass fractions of all seven BTs (∑BTs) in TWPs ranged from 46.93 to 215 μg/g with an average concentration of 99.32 μg/g. Benzothiazole and 2-hydroxybenzothiazole (2-OH-BT) were the two major compounds, accounting for 56%-89% of the total. The seven BTs were also found in all 36 sets of RD samples (each set included one sample of TSP (particles < 75 μm in diameter), PM10 (particles < 10 μm in diameter) and PM2.5 (particles < 2.5 μm in diameter)) fractions of RD. The median ∑BTs concentration was highest in PM2.5 (26.62 μg/g), followed by PM10 (22.03 μg/g), and TSP (0.68 μg/g). Of the seven BTs, BT, 2-aminobenzothiazole (2-NH2-BT), 2-mercaptobenzothiazole (MBT), and 2-(methylthio)benzothiazole (MTBT) were distributed in PM2.5 and 2-OH-BT was distributed in PM2.5-10 of RD. Based on the mass fractions of BTs in the TSP, PM10, and PM2.5 fractions of RD, human exposure via ingestion, inhalation and dermal absorption were evaluated. Ingestion was found to be the main exposure pathway in humans, and daily intake of BTs in PM2.5 was highest, followed by PM10 and TSP, respectively. Children may suffer more health risks than adults when exposed to RD.
Copyright © 2018 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Benzothiazole; Benzothiazole derivates; Daily intake; Road dust; Tire wear

Mesh:

Substances:

Year:  2018        PMID: 29525659     DOI: 10.1016/j.chemosphere.2018.03.007

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  6 in total

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Review 2.  A Review of Road Traffic-Derived Non-Exhaust Particles: Emissions, Physicochemical Characteristics, Health Risks, and Mitigation Measures.

Authors:  Julia C Fussell; Meredith Franklin; David C Green; Mats Gustafsson; Roy M Harrison; William Hicks; Frank J Kelly; Franceska Kishta; Mark R Miller; Ian S Mudway; Farzan Oroumiyeh; Liza Selley; Meng Wang; Yifang Zhu
Journal:  Environ Sci Technol       Date:  2022-05-25       Impact factor: 11.357

3.  Source-related smart suspect screening in the aqueous environment: search for tire-derived persistent and mobile trace organic contaminants in surface waters.

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Journal:  Anal Bioanal Chem       Date:  2020-05-08       Impact factor: 4.142

4.  New Evidence of Rubber-Derived Quinones in Water, Air, and Soil.

Authors:  Guodong Cao; Wei Wang; Jing Zhang; Pengfei Wu; Xingchen Zhao; Zhu Yang; Di Hu; Zongwei Cai
Journal:  Environ Sci Technol       Date:  2022-03-22       Impact factor: 9.028

5.  Beyond Substituted p-Phenylenediamine Antioxidants: Prevalence of Their Quinone Derivatives in PM2.5.

Authors:  Wei Wang; Guodong Cao; Jing Zhang; Pengfei Wu; Yanyan Chen; Zhifeng Chen; Zenghua Qi; Ruijin Li; Chuan Dong; Zongwei Cai
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6.  A Deep Dive into the Complex Chemical Mixture and Toxicity of Tire Wear Particle Leachate in Fathead Minnow.

Authors:  Leah Chibwe; Joanne L Parrott; Kallie Shires; Hufsa Khan; Stacey Clarence; Christine Lavalle; Cheryl Sullivan; Anna M O'Brien; Amila O De Silva; Derek C G Muir; Chelsea M Rochman
Journal:  Environ Toxicol Chem       Date:  2021-08-02       Impact factor: 4.218

  6 in total

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