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Environmental release of engineered nanomaterials from commercial tiles under standardized abrasion conditions.
Bressot, Christophe; Manier, Nicolas; Pagnoux, Cécile; Aguerre-Chariol, Olivier; Morgeneyer, Martin.
Afiliação
  • Bressot C; Direction de Risques Chroniques, Institut National de l'Environnement Industriel et des Risques (INERIS), Verneuil en Halatte, France. Electronic address: christophe.bressot@ineris.fr.
  • Manier N; Direction de Risques Chroniques, Unité EXES, Institut National de l'Environnement Industriel et des Risques (INERIS), Verneuil en Halatte, France. Electronic address: nicolas.manier@ineris.fr.
  • Pagnoux C; CEC -12 rue Atlantis, 87068 Limoges Cedex, France. Electronic address: cecile.pagnoux@unilim.fr.
  • Aguerre-Chariol O; Direction de Risques Chroniques, Institut National de l'Environnement Industriel et des Risques (INERIS), Verneuil en Halatte, France. Electronic address: olivier.aguerre-chariol@ineris.fr.
  • Morgeneyer M; Génie de Procédés Industriels, Sorbonne Universités, Université de Technologie de Compiègne (UTC), Compiègne, France. Electronic address: martin.morgeneyer@utc.fr.
J Hazard Mater ; 322(Pt A): 276-283, 2017 Jan 15.
Article em En | MEDLINE | ID: mdl-27321746
ABSTRACT
The study presented here focuses on commercial antibacterial tiles whose emissivity of (nano) particles due to abrasion has yet barely been investigated. The tiles have been characterized regarding their surface properties and composition throughout their chain-of-use, i.e. from their state of commercialization until the experimental end-of-service life. In contrast to plane standard tiles, their surfaces form hilly surfaces. In the depressions, titanium dioxide is found at the surface, thus theoretically protected by the hilly areas against abrasion on the tile's surface. Furthermore, a deposition technique has been put in place by producers allowing for coating the before mentioned commercial tiles with titanium dioxide, thus being similar to those commercially available. It consists in depositing titanium dioxide on the surface, latter one allowing fixing the first. This development allows for better understanding the future options for product formulation and thus improvement with respect to particle release. The tests reveal the aerosolization from commercial antibacterial tiles of micronic and submicronic particles in the inhalable region or particles that can subjected to be released in the environment (<10µm). The aersolization of the particles from the coated tiles was found to be significantly higher compared to the non coated tiles.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Titânio / Nanoestruturas Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Titânio / Nanoestruturas Idioma: En Ano de publicação: 2017 Tipo de documento: Article