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Impact of surface ozone interactions on indoor air chemistry : a modelling study

机译:表面臭氧相互作用对室内空气化学的影响:模拟研究

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An INdoor air Detailed Chemical Model was developed to investigate the impact of ozone reactions with indoor surfaces (including occupants), on indoor air chemistry in simulated apartments subject to ambient air pollution. The results are consistent with experimental studies showing that approximately 80% of ozone indoors is lost through deposition to surfaces. The human body removes ozone most effectively from indoor air per square meter of surface, but the most significant surfaces for C6-C10 aldehyde formation are soft furniture and painted walls owing to their large internal surfaces. Mixing ratios of between 8 and 11 ppb of C6-C10 aldehydes are predicted to form in apartments in various locations in summer, the highest values are when ozone concentrations are enhanced outdoors. The most important aldehyde formed indoors is predicted to be nonanal (5-7 ppb), driven by oxidation-derived emissions from painted walls. In addition, ozone-derived emissions from human skin were estimated for a small bedroom at nighttime with concentrations of nonanal, decanal, and 4-oxopentanal predicted to be 0.5, 0.7, and 0.7 ppb, respectively. A detailed chemical analysis shows that ozone-derived surface aldehyde emissions from materials and people change chemical processing indoors, through enhanced formation of nitrated organic compounds and decreased levels of oxidants.
机译:开发了室内空气详细化学模型,以研究室内表面(包括居住者)的臭氧反应对受环境空气污染影响的模拟公寓中室内空气化学的影响。结果与实验研究一致,后者表明室内大约80%的臭氧通过沉积到表面而损失。人体每平方米的表面最有效地从室内空气中除去臭氧,但是用于C6-C10醛形成的最重要的表面是柔软的家具和粉刷墙壁,这是因为它们的内表面很大。预计夏季在不同位置的公寓中会形成8到11 ppb的C6-C10醛混合比,最高的值是在室外增加臭氧浓度时。在室内形成的最重要的醛预计是壬醛(5-7 ppb),这是由油漆墙氧化产生的排放驱动的。此外,估计夜间一间小卧室的人皮肤臭氧产生的排放量,壬醛,癸醛和4-氧戊醛的浓度分别预计为0.5、0.7和0.7 ppb。详细的化学分析表明,材料和人类产生的源自臭氧的表面醛排放物,通过增强硝化有机化合物的形成和降低氧化剂的含量,改变了室内的化学工艺。

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