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Formation of indoor nitrous acid (HONO) by light-induced NO2 heterogeneous reactions with white wall paint
Authors:Vincent Bartolomei  Matthias Sörgel  Sasho Gligorovski  Elena Gómez Alvarez  Adrien Gandolfo  Rafal Strekowski  Etienne Quivet  Andreas Held  Cornelius Zetzsch  Henri Wortham
Affiliation:1.Aix Marseille University,Marseille Cedex 3,France;2.Forschungsstelle für Atmosph?rische Chemie,Universit?t Bayreuth,Bayreuth,Germany;3.Biogeochemistry Department,Max Planck Institute for Chemistry,Mainz,Germany
Abstract:
Gaseous nitrogen dioxide (NO2) represents an oxidant that is present in relatively high concentrations in various indoor settings. Remarkably increased NO2 levels up to 1.5 ppm are associated with homes using gas stoves. The heterogeneous reactions of NO2 with adsorbed water on surfaces lead to the generation of nitrous acid (HONO). Here, we present a HONO source induced by heterogeneous reactions of NO2 with selected indoor paint surfaces in the presence of light (300 nm?λ??2), an increase of HONO production rate of up to 8.6?·?109 molecules cm?2 s?1 was observed at [NO2]?=?60 ppb and 50 % relative humidity (RH). At higher light intensity of 10.6 (W m?2), the HONO production rate increased to 2.1?·?1010 molecules cm?2 s?1. A high NO2 to HONO conversion yield of up to 84 % was observed. This result strongly suggests that a light-driven process of indoor HONO production is operational. This work highlights the potential of paint surfaces to generate HONO within indoor environments by light-induced NO2 heterogeneous reactions.
Keywords:
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