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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Indoor/outdoor concentrations of ozone and peroxyacetyl nitrate (PAN)
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Indoor/outdoor concentrations of ozone and peroxyacetyl nitrate (PAN)

机译:室内/室外臭氧和过氧乙酰硝酸盐(PAN)的浓度

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摘要

Photochemical pollutants such as ozone and peroxyacetyl nitrate (PAN) could adversely affect human health, especially with relation to effects on lung function. For a realistic assessment of ambient concentrations, both outdoor and indoor measurementsof ozone and PAN are required, because people stay indoors for most of the time. Indoor/outdoor concentration ratios, indoor half-life times and indoor chemistry including physicochemical reactions on surfaces are quite well known for ozone, but not forPAN. While ozone is removed very rapidly mainly by heterogeneous reactions on surfaces or by gasphase reactions with e.g. carpet emissions, no such processes are known for PAN at present. The main removal process for PAN is thermal decay. Indoor concentrations of ozone and PAN can be a significant fraction of those outdoors highly depending on the ventilation pattern. Our measurements in various kinds of non-air-conditioned rooms show maximal indoor concentrations between 80 and 100% of those outdoorsfor ozone and PAN, respectively. Average indoor/outdoor ratios were calculated of 0.5 for ozone and between 0.7 and 0.9 for PAN. The half-life times ranged between only a few minutes for ozone and 0.5 to 1 h for PAN.
机译:臭氧和过氧乙酰硝酸盐(PAN)等光化学污染物可能会对人体健康产生不利影响,尤其是对肺功能的影响。为了实际评估环境浓度,需要在室外和室内对臭氧和PAN进行测量,因为人们大部分时间都呆在室内。室内/室外浓度比,室内半衰期和室内化学物质(包括表面上的物理化学反应)对于臭氧而言是众所周知的,但对于PAN而言却不是。臭氧的去除非常迅速,这主要是由于表面上的非均相反应或与之发生的气相反应。地毯排放,目前尚无用于PAN的此类过程。 PAN的主要去除过程是热衰减。取决于通风方式,室内的臭氧和PAN浓度可能是室外浓度的很大一部分。我们在各种非空调房间的测量结果显示,室内最大臭氧浓度分别是臭氧和PAN的80%至100%。臭氧的平均室内/室外比为0.5,PAN的平均室内/室外比为0.7至0.9。对于臭氧,半衰期仅为几分钟,而对于PAN,半衰期仅为0.5到1小时。

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