首页> 外文会议>9th International Conference on Indoor Air Quality and Climate Vol.1, Jun 30-Jul 5, 2002, Monterey, California >ESTIMATING INDOOR AIR EXPOSURE TO VOCS FROM SUBSURFACE RELEASES - FIELD METHODS AND MODEL LIMITATIONS
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ESTIMATING INDOOR AIR EXPOSURE TO VOCS FROM SUBSURFACE RELEASES - FIELD METHODS AND MODEL LIMITATIONS

机译:从地下释放估算室内空气中的VOCS-现场方法和模型局限性

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摘要

Exposure to carcinogenic volatile organic compounds (VOCs) poses a potentially significant risk due to vapors associated with migrating subsurface releases of chlorinated solvents. The evaluation of the cancer risk associated with subsurface releases is generally estimated using fate and transport models adopted by the USEPA, i.e., Johnson-Ettinger model. Field verification of the Johnson-Ettinger model has identified that it underestimates exposure concentrations up to 1000 times especially through the use of default parameters. The model is characterized as a non-deterministic numerical model that requires evaluation of site-specific parameters and performance of sensitivity analyses. Field methods have been developed and tested that result in more reliable exposure evaluation techniques. Data from field studies in varying soil and atmospheric conditions have been evaluated to generate more representative estimates of exposure concentrations.
机译:暴露于致癌的挥发性有机化合物(VOC)可能会带来潜在的重大风险,这是由于蒸汽与氯化溶剂的地下释放迁移有关。与地下释放有关的癌症风险的评估通常使用USEPA所采用的命运和运输模型(即Johnson-Ettinger模型)进行估算。 Johnson-Ettinger模型的现场验证已发现,它会低估多达1000倍的暴露浓度,尤其是使用默认参数时。该模型的特征是非确定性数值模型,需要评估特定地点的参数并进行敏感性分析。已经开发和测试了现场方法,这些方法导致了更可靠的曝光评估技术。已对来自不同土壤和大气条件下的田间研究的数据进行了评估,以得出更具代表性的暴露浓度估算值。

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