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Study of Bio-Based Carbon Fractions in Tires and Their Pyrolysis Products

Datos Bibliográficos

ID9243306
AutoresKomal Aziz Gill (0000-0002-7087-1659), Danuta J Michczyńska (0000-0001-5348-5791), Adam Michczyński (0000-0003-2795-6830), Natalia Piotrowska (0000-0002-8194-6767), Marzena Kłusek (0000-0003-4341-5719), Klaudia Końska, Krzysztof Wróblewski, Marie-Josée Nadeau, Martin Seiler (0000-0003-4267-0478)
Año2022
Volumen64
Número6
Páginas1457-1469
Fecha de publicación2022-12-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaRadiocarbon (JOURNAL)
Identificadores de la revistaISSN: 0033-8222 • E-ISSN: 1945-5755
EditorialCambridge University Press (CUP) (PUBLISHER)
DOI10.1017/rdc.2022.88
OpenAlexW4311630807
IdiomaEN
Citas recibidas4
Referencias citadas16

Wasted tires are the great source of fuel and valuable components but could be a cause of environmental and land pollution. This study shows the detailed method for the determination of radiocarbon isotope ( 14 C) concentration in tires and their pyrolysis products. Samples are taken from truck and passenger car tires in the form of shredded rubber, pyrolysis oil and recovered carbon black. Liquid scintillation counting (LSC) and accelerator mass spectrometry (AMS) techniques were used for the investigation at Gliwice Radiocarbon and Mass Spectrometry Laboratory, and National Laboratory for Age Determination, Trondheim, Norway. The results are in good agreement. Radiocarbon concentration of the rubber varies significantly because of its complex structure and composition within the tires. The 14 C concentration values were found to be higher in pyrolytic oil compared to rubber, and greater in truck tires rather than car tires

Accelerator mass spectrometry · Archaeology · Carbon black · Carbon fibers · Chromatography · Composite material · Isotope · Liquid scintillation counting · Mass spectrometry · Natural rubber · Nuclear physics · Pyrolysis · Pyrolytic carbon · Radiocarbon dating · Radiochemistry · Truck · Waste management · Archaeology and ancient environmental studies · Chemistry · Engineering · Environmental Science · Isotope Analysis in Ecology · Materials Science · Environmental Chemistry · Pollution

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    Open Access•Alicja Ustrzycka, Natalia Piotrowska et al.•Radiocarbon•2024

  • The Potential of Biogenic Fraction Analysis by Radiocarbon in Food, Drug, and Cosmetic Products

    Open Access•Tamás Vargas, Dóra Szejke et al.•Radiocarbon•2023

  • Monitoring of Modern Carbon Fraction in Disposable Packaging

    Open Access•Komal Aziz Gill, Danuta J Michczyńska et al.•Radiocarbon•2024

  • Determination of radiocarbon content in liquid fuel blends by accelerator mass spectrometry and liquid scintillation counting in the Gliwice radiocarbon and mass spectrometry laboratory

    Open Access•Jean Baptiste Baranyika, Natalia Piotrowska et al.•Radiocarbon•2024

  • A revolutionary graphitisation system

    Open Access•Lukas Wacker, Mojmír Němec et al.•Nuclear Instruments and Methods…•2010

  • Status report of the Trondheim Radiocarbon Laboratory

    Open Access•Martin Seiler, Pieter M Grootes et al.•Radiocarbon•2019

  • Discussion Reporting of 14 C Data

    Open Access•Minze Stuiver, Henry A Polach•Radiocarbon•1977

  • Commissioning of a Quantulus 1220 TM Liquid Scintillation Beta Spectrometer for Measuring 14 C and 3 H at Natural Abundance Levels

    Open Access•Jacek Pawlyta, Anna Pazdur et al.•Radiocarbon•1997

Obras citantes distintas4
Citas por año1,33
Intervalo de citas2023 - 2024 (2)
Velocidad de citaciónrecent
Altamente citadoNo
Tipos de citaNeutras: 4
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