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Definitive Vapor Intrusion Investigations Using On-site GC/MS Analysis and Building Pressure Control

机译:使用现场GC / MS分析和建筑压力控制的明确蒸汽入侵调查

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Rapid and accurate assessment of the vapor intrusion pathway is important from risk-management and community-relations perspectives. Vapor intrusion investigations using conventional approaches, however, do not efficiently address indoor sources of target volatile organic compounds (VOCs) or temporal variability in vapor intrusion. The conventional process includes a questionnaire to identify indoor VOC sources, followed by indoor and subslab sampling for off-site analysis with typical turn-around time of two weeks. When results are finally received, investigators must reconstruct field observations to attempt to decipher the potential sources of specific VOCs detected in the indoor air samples. Additionally, they are unable to efficiently evaluate how changes in building operating conditions may affect soil gas entry. As a result, multiple rounds of sampling are commonly required to complete the vapor intrusion investigation. We have developed a streamlined investigation approach that addresses these common challenges. Our approach involves on-site GC/MS analysis to map target VOC concentrations in indoor air, identify indoor VOC sources, and evaluate potential vapor entry points. Following baseline characterization, we induce negative and/or positive building pressure conditions to refine the understanding of VOC sources and susceptibility of the building to vapor intrusion under normal and "worst-case" conditions. The ability to accurately identify indoor VOC sources and vapor entry points eliminates the need to collect subslab samples to support the interpretation of the indoor air results. Additionally, vapor entry point identification supports development of interim measures (e.g., sealing of entry points) to reduce exposure. The investigation approach has been validated through application at a number of single-family residences and industrial buildings including buildings with difficult-to-locate indoor sources, a building with immovable indoor sources also found to have vapor intrusion, and a building with vapor intrusion through a sewer line. The investigation approach typically yields definitive results from a single 1/2-day to 1-day sampling program.
机译:对蒸汽入侵途径的快速准确评估是风险管理和社区关系的观点的重要性。然而,使用常规方法的蒸汽入侵调查没有有效地解决靶挥发性有机化合物(VOC)的室内来源或蒸汽侵入中的时间变异。传统过程包括调查问卷,以识别室内VOC来源,然后是室内和子目标采样,用于在两周的典型转折时间内进行场外分析。当最终收到结果时,调查人员必须重建现场观察以试图破译在室内空气样本中检测到的特定VOC的潜在来源。此外,它们无法有效地评估建筑运行条件的变化可能会影响土壤气体进入。结果,通常需要多回合的采样来完成蒸汽入侵调查。我们制定了一种简化的调查方法,解决了这些共同挑战。我们的方法涉及现场GC / MS分析,以在室内空气中映射目标VOC浓度,识别室内VOC来源,评估潜在的蒸气入口点。在基线表征之后,我们诱导负面和/或正建筑的压力条件,以优化对大学呼气源和建筑物的易感性,以在正常和“最坏情况”条件下的蒸气侵扰。准确识别室内VOC源和蒸气入口点的能力消除了收集子目标样本以支持室内空气结果的解释。此外,蒸气入口点识别支持开发临时措施(例如,入口点的密封)以减少暴露。通过在许多单独的住宅和工业建筑中验证了调查方法,包括难以定位室内源的建筑物,一个具有不可移动的室内源的建筑物也发现了蒸气侵入,以及通过蒸汽侵入的建筑物一条下水道。调查方法通常从单一的1/2天到1天采样计划产生明确的结果。

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