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Passive Sampling of Gaseous Elemental Mercury Based on a Composite TiO2NP/AuNP Layer

Articolo
Data di Pubblicazione:
2018
Abstract:
Passive sampling systems (PASs) are a low cost strategy to quantify Hg levels in air over both different environmental locations and time periods of few hours to weeks/months. For this reason, novel nanostructured materials have been designed and developed. They consist of an adsorbent layer made of titania nanoparticles (TiO2NPs, <=25 nm diameter) finely decorated with gold nanoparticles. The TiO2NPs functionalization occurred for the photocatalytic properties of titania-anatase when UV-irradiated in an aqueous solution containing HAuCl4. The resulting nanostructured suspension was deposited by drop-casting on a thin quartz slices, dried and then incorporated into a common axial sampler to be investigated as a potential PAS device. The morphological characteristics of the sample were studied by High-Resolution Transmission Electron Microscopy, Atomic Force Microscopy, and Optical Microscopy. UV-Vis spectra showed a blue shift of the membrane when exposed to Hg0 vapors. The adsorbed mercury was thermally desorbed for a few minutes, and then quantified by a mercury vapor analyzer. Such a sampling system reported an efficiency of adsorption that was equal to ?95%. Temperature and relative humidity only mildly affected the membrane performances. These structures seem to be promising candidates for mercury samplers, due to both the strong affinity of gold with Hg, and the wide adsorbing surface.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
TiO2NPs; AuNPs; photocatalysis; mercury vapors adsorbing layer; PAS device
Elenco autori:
DE CESARE, Fabrizio; Papa, Paolo; Avossa, Joshua; Pirrone, Nicola; Sprovieri, Francesca; Macagnano, Antonella; Zampetti, Emiliano; Marelli, Marcello; Bearzotti, Andrea
Autori di Ateneo:
BEARZOTTI ANDREA
MACAGNANO ANTONELLA
MARELLI MARCELLO
PAPA PAOLO
PIRRONE NICOLA
SPROVIERI FRANCESCA
ZAMPETTI EMILIANO
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/353095
Pubblicato in:
NANOMATERIALS
Journal
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URL

https://www.mdpi.com/2079-4991/8/10/798
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