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首页> 外文期刊>Journal of environmental monitoring: JEM >Indoor and outdoor air concentrations of BTEX and NO2: correlation of repeated measurements
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Indoor and outdoor air concentrations of BTEX and NO2: correlation of repeated measurements

机译:室内和室外空气中BTEX和NO2的浓度:重复测量的相关性

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摘要

Studies on health effects of air pollutants ideally define exposure through the collection of air samples in the participants' homes. Concentrations derived from these samples are then considered as an estimate for the average concentration of air pollutants in the homes. Conclusions drawn from such studies therefore depend very much on the validity of the measured air pollution concentrations. In this paper we analysed repeated BTEX and NO2 measurements with a time period of several months lying between the two conducted home visits. We investigated the variability of their concentrations over time by determining correlation coefficients and calculating within- and between-home variances. Our population consisted of 631 homes of participants from two cohort studies within the framework of the German study on Indoor Factors and Genetics in Asthma. Air pollutants were measured using passive samplers both indoors and outdoors. The measured BTEX concentrations were poorly correlated, with Pearson's correlation coefficient r ranging from -0.19 to 0.27. Additionally, a considerable seasonal effect could be observed. A higher correlation was found for the NO2 concentrations with r ranging between 0.24 and 0.55. For the BTEX, the between-home variance was bigger than the within- home variance, for NO2 both variances were of about the same order. Our results indicate that in a setting of moderate climate like in Germany, the variability of BTEX and NO2 concentrations over time is high and a single measurement is a poor surrogate for the long-term concentrations of these air pollutants.
机译:关于空气污染物对健康的影响的研究理想地通过收集参与者家中的空气样本来定义暴露。然后,将从这些样本中得出的浓度视为房屋中空气污染物平均浓度的估计值。因此,从这些研究得出的结论在很大程度上取决于所测量的空气污染浓度的有效性。在本文中,我们分析了两次BTEX和NO2的重复测量,两次测量之间存在几个月的时间。我们通过确定相关系数并计算家庭内部和家庭之间的方差来调查其浓度随时间的变化。我们的人口由来自两项关于哮喘的室内因素和遗传学的德国研究框架内的两项队列研究的参与者之家组成。在室内和室外均使用被动采样器测量了空气污染物。测得的BTEX浓度相关性很差,皮尔森相关系数r在-0.19至0.27之间。另外,可以观察到相当大的季节性影响。发现NO 2浓度具有更高的相关性,r在0.24至0.55之间。对于BTEX,家庭之间的差异大于家庭内部的差异,对于NO2,两个方差大致相同。我们的结果表明,在像德国这样的温和气候环境中,BTEX和NO2浓度随时间的变化很大,并且一次测量不能很好地替代这些空气污染物的长期浓度。

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