Publication detail

Determination of Pb content in recycled plastic debris by laser-induced breakdown spectroscopy

HOLUB, D. BUDAY, J. POŘÍZKA, P. KAISER, J.

English title

Determination of Pb content in recycled plastic debris by laser-induced breakdown spectroscopy

Type

journal article in Web of Science

Language

en

Original abstract

During several last decades, the usage of plastics has risen steadily across the globe. However, many potentially toxic materials have been used especially in their earlier production. These materials include additions of heavy metals such as arsenic, cadmium, chromium (VI), mercury and lead. Recently, the levels of these heavy metals and other hazardous materials have become controlled by various directives (Registration, Evaluation, Authorization and Restriction of Chemicals – REACH1, Restriction of Hazardous Substances in Electrical and Electronic Equipment – RoHS2 and Waste from Electrical and Electronic Equipment – WEEE3). These restrictions apply also to plastic products made from recycled polymer waste. This post-consumer polymer waste is the most susceptible to an increased heavy metal content. Usually, lead is the heavy metal with the highest concentration. The heavy metal content level needs to be determined reliably and quickly, which is not the case presently. Companies need to wait for a traditional lengthy analysis, which also destroys the sample. Laser Induced Breakdown Spectroscopy (LIBS) provides a drastic improvement in time of measurement and high enough robustness in the sense of precision and accuracy to be considered for this application. This paper presents the capabilities of LIBS to reliably quantify the lead content in polymer post-consumer recycled materials. Using the methodology defined in this work, LIBS can be used directly in-situ to control levels of lead and other toxic substances. In this feasibility work, an accuracy of more than 90% with a relative precision higher than 86% was achieved for the quantification of lead content in standard samples provided by a recycling company using standard multivariate chemometric techniques.

English abstract

During several last decades, the usage of plastics has risen steadily across the globe. However, many potentially toxic materials have been used especially in their earlier production. These materials include additions of heavy metals such as arsenic, cadmium, chromium (VI), mercury and lead. Recently, the levels of these heavy metals and other hazardous materials have become controlled by various directives (Registration, Evaluation, Authorization and Restriction of Chemicals – REACH1, Restriction of Hazardous Substances in Electrical and Electronic Equipment – RoHS2 and Waste from Electrical and Electronic Equipment – WEEE3). These restrictions apply also to plastic products made from recycled polymer waste. This post-consumer polymer waste is the most susceptible to an increased heavy metal content. Usually, lead is the heavy metal with the highest concentration. The heavy metal content level needs to be determined reliably and quickly, which is not the case presently. Companies need to wait for a traditional lengthy analysis, which also destroys the sample. Laser Induced Breakdown Spectroscopy (LIBS) provides a drastic improvement in time of measurement and high enough robustness in the sense of precision and accuracy to be considered for this application. This paper presents the capabilities of LIBS to reliably quantify the lead content in polymer post-consumer recycled materials. Using the methodology defined in this work, LIBS can be used directly in-situ to control levels of lead and other toxic substances. In this feasibility work, an accuracy of more than 90% with a relative precision higher than 86% was achieved for the quantification of lead content in standard samples provided by a recycling company using standard multivariate chemometric techniques.

Keywords in English

Laser-induced breakdown spectroscopy; Polymer waste; Heavy metal content; Quantification; Inductively coupled plasma Optical emission spectrometry; Chemometrics; Principal component analysis; Principal component regression; Partial least squares regression

Released

20.07.2023

Publisher

Elsevier

Location

Amsterdam, Nizozemsko

ISSN

0584-8547

Number

207

Pages count

8

BIBTEX


@article{BUT184815,
  author="Daniel {Holub} and Jakub {Buday} and Pavel {Pořízka} and Jozef {Kaiser},
  title="Determination of Pb content in recycled plastic debris by laser-induced breakdown spectroscopy",
  year="2023",
  number="207",
  month="July",
  publisher="Elsevier",
  address="Amsterdam, Nizozemsko",
  issn="0584-8547"
}