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Factors affecting the indoor concentrations of carbonaceous aerosols of outdoor origin

机译:影响室外来源碳质气溶胶室内浓度的因素

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A field study was conducted in an unoccupied single-story residence in Clovis, California, to provide data to address issues important to assess the indoor exposure to particles of outdoor origin. Measurements of black and organic carbonaceous aerosols were performed using a variety of methods, resulting in both near real-time measurements as well as integrated filter-based measurements. Comparisons of the different measurement methods show that it is crucial to account for gas phase adsorption artifacts when measuring organic carbon (OC). Measured concentrations affected by the emissions of organic compounds sorbed to indoor surfaces imply a higher degree of infiltration of outdoor organic carbon aerosols into the indoor environment for our unoccupied house. Analysis of the indoor and outdoor data for black carbon (BC) aerosols show that, on average, the indoor concentration of black carbon aerosols behaves in a similar manner to sulfate aerosols. In contrast, organic carbon aerosols are subject to chemical transformations indoors that for our unoccupied home, resulted in lower indoor OC concentrations than would be expected by physical loss mechanisms alone. These results show that gas to particle partitioning of organic compounds, as well as gas to surface interactions within the residence, are an important process governing the indoor concentration to OC aerosols of outdoor origin.
机译:在加利福尼亚克洛维斯市一间空置的单层住宅中进行了一项田野研究,以提供数据,以解决对评估室内暴露于室外室外颗粒的重要问题。黑色和有机碳质气溶胶的测量使用多种方法进行,从而实现了近实时测量以及基于过滤器的集成测量。不同测量方法的比较表明,在测量有机碳(OC)时考虑气相吸附伪影至关重要。所测量的浓度受吸附到室内表面的有机化合物排放量的影响,这意味着我们空置房屋的室外有机碳气溶胶会更多地渗透到室内环境中。对黑碳(BC)气溶胶的室内和室外数据的分析表明,平均而言,黑碳气溶胶的室内浓度与硫酸盐气溶胶的行为相似。相比之下,有机碳气溶胶在室内会发生化学转化,这对于我们空置的房屋而言,导致室内OC浓度低于仅通过物理损失机制所预期的浓度。这些结果表明,有机化合物的气体与颗粒之间的分配以及住所内的气体与表面的相互作用是控制室内向室外来源的OC气溶胶浓度的重要过程。

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