Waste electronic and electric equipment (WEEE) are collected in high amounts in the EU. However, in order to enable safe and effective recycling of their plastic fraction, harmful additives inside the plastics need to be identified. In this study, two spectroscopic methods, laser-induced breakdown spectroscopy (LIBS) and Raman spectroscopy were employed for characterizing different brominated flame retardants (BFRs) inside plastics from the actual WEEE stream, and also lab-made plastics. The results of this preliminary study indicate the ability of LIBS for accurate quantification of bromine content, and the prospective capability of Raman and combined Raman-LIBS for identifying different BFRs in plastics.publishedVersionPeer reviewe
During the recycling process of end-of-life waste electric and electronic equipment (EOL-WEEE), down...
AbstractTwo kinds of BFRs in three WEEE plastics(cell phone shells, computer housings and TV housing...
Plastic is one of the materials mostly used in many industrial sectors, as those of packaging, const...
Waste electronic and electric equipment (WEEE) are collected in high amounts in the EU. However, in ...
n this study, X-ray fluorescence (XRF) spectroscopy was used, in combination with micro-Raman spectr...
The use of plastics is rapidly rising around the world causing a major challenge for recycling. Late...
In this work, the application of Short-Wave Infrared (SWIR: 1000–2500 nm) spectroscopy was evaluated...
Brominated Flame Retardants (BFRs) are toxic for the environment and harmful for human health and an...
International audienceIn this work, the application of Short-Wave Infrared (SWIR: 1000–2500 nm) spec...
In this study a number of analytical techniques for the screening, quantification and identification...
Most plastics need to incorporate flame retardants to meet fire safety standards requirements. The a...
A paper reporting the use of Raman Spectroscopy in fire debris analysis is presented. Five polymer b...
This paper reported a study based on the application of SWIR (shortwave infrared) spectroscopy to as...
Brominated flame retardants (BFRs) are used in different types of products such as plastic, textiles...
A range of plastic consumer products and components thereof have been analysed by x-ray fluorescence...
During the recycling process of end-of-life waste electric and electronic equipment (EOL-WEEE), down...
AbstractTwo kinds of BFRs in three WEEE plastics(cell phone shells, computer housings and TV housing...
Plastic is one of the materials mostly used in many industrial sectors, as those of packaging, const...
Waste electronic and electric equipment (WEEE) are collected in high amounts in the EU. However, in ...
n this study, X-ray fluorescence (XRF) spectroscopy was used, in combination with micro-Raman spectr...
The use of plastics is rapidly rising around the world causing a major challenge for recycling. Late...
In this work, the application of Short-Wave Infrared (SWIR: 1000–2500 nm) spectroscopy was evaluated...
Brominated Flame Retardants (BFRs) are toxic for the environment and harmful for human health and an...
International audienceIn this work, the application of Short-Wave Infrared (SWIR: 1000–2500 nm) spec...
In this study a number of analytical techniques for the screening, quantification and identification...
Most plastics need to incorporate flame retardants to meet fire safety standards requirements. The a...
A paper reporting the use of Raman Spectroscopy in fire debris analysis is presented. Five polymer b...
This paper reported a study based on the application of SWIR (shortwave infrared) spectroscopy to as...
Brominated flame retardants (BFRs) are used in different types of products such as plastic, textiles...
A range of plastic consumer products and components thereof have been analysed by x-ray fluorescence...
During the recycling process of end-of-life waste electric and electronic equipment (EOL-WEEE), down...
AbstractTwo kinds of BFRs in three WEEE plastics(cell phone shells, computer housings and TV housing...
Plastic is one of the materials mostly used in many industrial sectors, as those of packaging, const...