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Recent Advances in Indoor Chemistry

机译:室内化学的最新进展

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Just as the chemistry creates urban smog and aerosols that influence climate change, chemistry in building air can alter the indoor environment for better or worse. This review focuses on chemical pathways initiated by oxidants that infiltrate from outdoor air and other indoor-sourced reactants and surfaces that make these environments unique chemical reactors. Ozone reacts with fragrance molecules, tobacco smoke residues, and even human skin oils to generate a host of oxidized organic compounds, secondary organic aerosols, and irritants. Nitrous acid is formed on indoor surfaces and is subsequently cleaved by even the relatively dim light indoor. This raises the indoor concentration of the highly reactive hydroxyl radical. Nitrous acid can also react with tobacco smoke residue to form carcinogenic nitrosamines. Some seek to harness this chemistry to help reduce indoor concentrations of unwanted indoor pollutants using novel surface coatings, but controlling that chemistry is challenging.
机译:正如化学物质会产生影响气候变化的城市烟雾和气溶胶一样,建筑空气中的化学物质也会改变室内环境的好坏。这篇综述主要关注由室外空气和其他室内来源的反应物渗透的氧化剂引发的化学途径,以及使这些环境成为独特的化学反应器的表面。臭氧与香气分子,烟草烟雾残留物甚至人类皮肤油发生反应,生成大量的氧化有机化合物,二次有机气溶胶和刺激物。亚硝酸在室内表面形成,随后甚至被室内相对较暗的光裂解。这提高了高反应性羟基的室内浓度。亚硝酸还可与烟草烟雾残留物反应形成致癌的亚硝胺。一些人试图利用这种化学物质来帮助使用新型表面涂层降低室内有害室内污染物的浓度,但是控制化学物质具有挑战性。

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