Impact of the spectral and spatial properties of natural light on indoor gas-phase chemistry: Experimental and modeling study
Author:
Affiliation:
1. PC2A; UMR 8522 CNRS/Université Lille 1; Villeneuve d'Ascq France
2. CNRS; Laboratoire Image Ville Environnement (LIVE); UMR 7362; Université de Strasbourg; Strasbourg France
3. Octopus Lab; Villeneuve d'Ascq France
Publisher
Wiley
Subject
Public Health, Environmental and Occupational Health,Building and Construction,Environmental Engineering
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/ina.12450/fullpdf
Reference49 articles.
1. Determination of material emission signatures by PTR-MS and their correlations with odor assessments by human subjects;Han;Indoor Air,2010
2. Application of proton-transfer-reaction-mass-spectrometry for Indoor Air Quality research;Schripp;Indoor Air,2014
3. Identification of the major HOx radical pathways in an indoor air environment;Mendez;Indoor Air,2017
4. The use of a housecleaning product in an indoor environment leading to oxygenated polar compounds and SOA formation: gas and particulate phase chemical characterization;Rossignol;Atmos Environ,2013
5. Ozone in indoor environments: concentration and chemistry;Weschler;Indoor Air,2000
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