Department of Chemistry, University of Toronto, Toronto, ON M5S 3H6, Canada.
Department of Chemistry, Indiana University, Bloomington, Indiana 47405, United States.
Environ Sci Technol. 2020 Nov 3;54(21):13488-13497. doi: 10.1021/acs.est.0c05356. Epub 2020 Oct 16.
The relative importance of common activities on indoor nitrous acid (HONO) mixing ratios was explored during high time resolution, month-long measurements by chemical ionization mass spectrometry in a previously unoccupied house. Indoor HONO varied from 0.2 to 84.0 ppb (mean: 5.5 ppb; median 3.8 ppb), an order of magnitude higher than simultaneously measured outdoor values, indicating important indoor sources. They agree well with simultaneous measurements of HONO by Laser-Photofragmentation/Laser-Induced Fluorescence. Before any combustion activities, the mixing ratio of 3.0 ± 0.3 ppb is indicative of secondary sources such as multiphase formation from NO. Cooking (with propane gas), especially the use of an oven, led to significant enhancements up to 84 ppb, with elevated mixing ratios persisting for a few days due to slow desorption from indoor surface reservoirs. Floor bleach cleaning led to prolonged, substantial decreases of up to 71-90% due to reactive processes. Air conditioning modulated HONO mixing ratios driven by condensation to wet surfaces in the AC unit. Enhanced ventilation also significantly lowered mixing ratios. Other conditions including human occupancy, ozone addition, and cleaning with terpene, natural product, and vinegar cleaners had a much smaller influence on HONO background levels measured following these activities.
在一个以前未有人居住的房屋内,通过化学电离质谱仪进行了长达一个月的高时间分辨率测量,探索了常见活动对室内亚硝酸(HONO)混合比的相对重要性。室内 HONO 的浓度范围为 0.2 到 84.0 ppb(平均值:5.5 ppb;中位数 3.8 ppb),比同时测量的室外值高一个数量级,表明存在重要的室内来源。这与同时测量的 HONO 激光光解/激光诱导荧光结果一致。在任何燃烧活动之前,3.0 ± 0.3 ppb 的混合比表明存在二次来源,如 NO 的多相形成。烹饪(使用丙烷气),特别是使用烤箱,会导致浓度显著升高,最高可达 84 ppb,由于室内表面储库中脱附缓慢,升高的混合比会持续数天。地板漂白剂清洁会导致长达数小时的显著降低,最高可达 71-90%,这是由于反应过程所致。空调通过冷凝到空调机组的湿表面来调节 HONO 混合比。增强通风也会显著降低混合比。其他条件,包括人员入住、臭氧添加以及使用萜烯、天然产物和醋清洁剂进行清洁,对这些活动后测量的 HONO 背景水平的影响要小得多。