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US Residential Building Air Exchange Rates: New Perspectives to Improve Decision Making at Vapor Intrusion Sites

机译:美国住宅建筑的空气汇率:改善蒸气入侵现场决策的新观点

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摘要

Vapor intrusion (VI) is well-known to be difficult to characterize because indoor air (IA) concentrations exhibit considerable temporal and spatial variability in homes throughout impacted communities. To overcome this and other limitations, most VI science has focused on subsurface processes; however there is a need to understand the role of aboveground processes, especially building operation, in the context of VI exposure risks. This tutorial review focuses on building air exchange rates (AERs) and provides a review of literature related building AERs to inform decision making at VI sites. Commonly referenced AER values used by VI regulators and practitioners do not account for the variability in AER values that have been published in indoor air quality studies. The information presented herein highlights that seasonal differences, short-term weather conditions, home age and air conditioning status, which are well known to influence AERs, are also likely to influence IA concentrations at VI sites. Results of a 3D VI model in combination with relevant AER values reveal that IA concentrations can vary more than one order of magnitude due to air conditioning status and one order of magnitude due to house age. Collectively, the data presented strongly support the need to consider AERs when making decisions at VI sites.
机译:众所周知,蒸汽入侵(VI)难以表征,因为室内空气(IA)的浓度在整个受影响社区的房屋中都表现出相当大的时空变化。为了克服此限制和其他限制,大多数VI科学都将重点放在地下过程上。但是,在VI暴露风险的背景下,有必要了解地上过程的作用,尤其是建筑操作。本教程的重点是建筑物空气交换率(AER),并提供与文献相关的建筑物AER的回顾,以为VI站点的决策提供依据。 VI监管者和从业人员常用的AER值并未考虑室内空气质量研究中已公布的AER值的可变性。本文提供的信息突出表明,众所周知会影响AER的季节性差异,短期天气状况,居家年龄和空调状况也可能会影响VI站点的IA浓度。将3D VI模型与相关的AER值相结合的结果表明,由于空调状态的影响,IA浓度的变化可能会超过一个数量级,而由于入屋年龄的影响,IA浓度可能会变化一个数量级。总体而言,所提供的数据强烈支持在VI站点进行决策时考虑AER的需求。

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