4.7 Article

Interaction of ozone with wooden building products, treated wood samples and exotic wood species

Journal

ATMOSPHERIC ENVIRONMENT
Volume 54, Issue -, Pages 365-372

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.atmosenv.2012.02.064

Keywords

Exotic wood emission; Ozone-terpene reaction; Emission test chambers; Ultrafine particles

Funding

  1. European project EUROCHAMP2 [228335]

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Wooden building products indoors are known to be able to affect the perceived air quality depending on their emission strength. The indoor application of modern ecological lacquer systems (eco-lacquers or 'green' lacquers) may be a much stronger source than the substrates itself. Especially with regard to the formation of ultrafine particles by gas-to-particle conversion in the presence of ozone or other reactive species the impact of the applied building products on the indoor air quality has to be addressed. The present study reports a two concentration step ozonation of OSB panels, painted beech boards, and a number of solid 'exotic' wood types in a 1 m(3) emission test chamber. The emission of volatile organic compounds (VOC) was recorded as well as the formation of ultrafine particles in the range 7-300 nm. The products are characterized on the basis of their ozone deposition velocity; the obtained values of 0.008-0.381 cm s(-1) are comparable with previously published data. Within the samples of the present study one eco-lacquer was the strongest source of VOC (total VOC similar to 60 mg m(-3)) while the wooden building products (OSB) were of intermediate emission strength. The lowest emission was found for the solid (exotic) wood samples. The VOC release of the samples corresponded roughly to the particle formation potential. However, the strongest UFP formation was measured for one solid wood sample ('Garapa') which showed a strong surface reaction in the presence of ozone and formed a large number of particles <40 nm. Overall, the experiments demonstrated the necessity of real-life samples for the estimation of UFP indoor air pollution from the ozone chemistry of terpenes. (C) 2012 Elsevier Ltd. All rights reserved.

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