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A novel method for the quantification of tire and polymer-modified bitumen particles in environmental samples by pyrolysis gas chromatography mass spectroscopy

Journal of Hazardous Materials 2021 108 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Cassandra Rauert, Elvis D. Okoffo, Cassandra Rauert, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Cassandra Rauert, Elvis D. Okoffo, Sondre Meland, Elisabeth S. Rødland, Elisabeth S. Rødland, Elisabeth S. Rødland, Elisabeth S. Rødland, Elisabeth S. Rødland, Elisabeth S. Rødland, Elisabeth S. Rødland, Elisabeth S. Rødland, Cassandra Rauert, Cassandra Rauert, Cassandra Rauert, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Cassandra Rauert, Cassandra Rauert, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Cassandra Rauert, Cassandra Rauert, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Cassandra Rauert, Cassandra Rauert, Cassandra Rauert, Cassandra Rauert, Saer Samanipour, Saer Samanipour, Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Elisabeth S. Rødland, Elisabeth S. Rødland, Elisabeth S. Rødland, Ole Christian Lind, Ole Christian Lind, Ole Christian Lind, Elvis D. Okoffo, Cassandra Rauert, Cassandra Rauert, Elvis D. Okoffo, Elvis D. Okoffo, Cassandra Rauert, Kevin V. Thomas Elvis D. Okoffo, Elisabeth S. Rødland, Kevin V. Thomas Elvis D. Okoffo, Kevin V. Thomas Kevin V. Thomas Cassandra Rauert, Elvis D. Okoffo, Kevin V. Thomas Cassandra Rauert, Cassandra Rauert, Kevin V. Thomas Lene Sørlie Heier, Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Elisabeth S. Rødland, Lene Sørlie Heier, Kevin V. Thomas Kevin V. Thomas Cassandra Rauert, Elvis D. Okoffo, Lene Sørlie Heier, Elvis D. Okoffo, Lene Sørlie Heier, Elvis D. Okoffo, Lene Sørlie Heier, Cassandra Rauert, Lene Sørlie Heier, Lene Sørlie Heier, Lene Sørlie Heier, Kevin V. Thomas Elisabeth S. Rødland, Kevin V. Thomas Kevin V. Thomas Saer Samanipour, Cassandra Rauert, Malcom J. Reid, Sondre Meland, Cassandra Rauert, Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Malcom J. Reid, Elisabeth S. Rødland, Ole Christian Lind, Cassandra Rauert, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Elvis D. Okoffo, Saer Samanipour, Cassandra Rauert, Kevin V. Thomas Elvis D. Okoffo, Cassandra Rauert, Kevin V. Thomas Kevin V. Thomas Cassandra Rauert, Lene Sørlie Heier, Cassandra Rauert, Lene Sørlie Heier, Lene Sørlie Heier, Cassandra Rauert, Cassandra Rauert, Cassandra Rauert, Cassandra Rauert, Lene Sørlie Heier, Kevin V. Thomas Kevin V. Thomas Ole Christian Lind, Saer Samanipour, Elvis D. Okoffo, Saer Samanipour, Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Saer Samanipour, Elvis D. Okoffo, Saer Samanipour, Kevin V. Thomas Cassandra Rauert, Cassandra Rauert, Sondre Meland, Sondre Meland, Sondre Meland, Kevin V. Thomas Sondre Meland, Sondre Meland, Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Cassandra Rauert, Kevin V. Thomas Sondre Meland, Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Kevin V. Thomas Cassandra Rauert, Elvis D. Okoffo, Cassandra Rauert, Saer Samanipour, Elvis D. Okoffo, Kevin V. Thomas Saer Samanipour, Saer Samanipour, Cassandra Rauert, Elvis D. Okoffo, Kevin V. Thomas

Summary

Researchers developed a novel pyrolysis gas chromatography mass spectrometry method for quantifying tire and polymer-modified bitumen particles in environmental samples, improving the detection of what may be the largest source of microplastic pollution.

Study Type Environmental

Tire and road wear particles may constitute the largest source of microplastic particles into the environment. Quantification of these particles are associated with large uncertainties which are in part due to inadequate analytical methods. New methodology is presented in this work to improve the analysis of tire and road wear particles using pyrolysis gas chromatography mass spectrometry. Pyrolysis gas chromatography mass spectrometry of styrene butadiene styrene, a component of polymer-modified bitumen used on road asphalt, produces pyrolysis products identical to those of styrene butadiene rubber and butadiene rubber, which are used in tires. The proposed method uses multiple marker compounds to measure the combined mass of these rubbers in samples and includes an improved step of calculating the amount of tire and road based on the measured rubber content and site-specific traffic data. The method provides good recoveries of 83-92% for a simple matrix (tire) and 88-104% for a complex matrix (road sediment). The validated method was applied to urban snow, road-side soil and gully-pot sediment samples. Concentrations of tire particles in these samples ranged from 0.1 to 17.7 mg/mL (snow) to 0.6-68.3 mg/g (soil/sediment). The concentration of polymer-modified bitumen ranged from 0.03 to 0.42 mg/mL (snow) to 1.3-18.1 mg/g (soil/sediment).

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