Literature DB >> 29398981

Comparison between PVI2D and Abreu-Johnson's Model for Petroleum Vapor Intrusion Assessment.

Yijun Yao1, Yue Wang1, Iason Verginelli2, Eric M Suuberg3, Jianfeng Ye4.   

Abstract

Recently, we have developed a two-dimensional analytical petroleum vapor intrusion model, PVI2D (petroleum vapor intrusion, two-dimensional), which can help users to easily visualize soil gas concentration profiles and indoor concentrations as a function of site-specific conditions such as source strength and depth, reaction rate constant, soil characteristics, and building features. In this study, we made a full comparison of the results returned by PVI2D and those obtained using Abreu and Johnson's three-dimensional numerical model (AJM). These comparisons, examined as a function of the source strength, source depth, and reaction rate constant, show that PVI2D can provide similar soil gas concentration profiles and source-to-indoor air attenuation factors (within one order of magnitude difference) as those by the AJM. The differences between the two models can be ascribed to some simplifying assumptions used in PVI2D and to some numerical limitations of the AJM in simulating strictly piecewise aerobic biodegradation and no-flux boundary conditions. Overall, the obtained results show that for cases involving homogenous source and soil, PVI2D can represent a valid alternative to more rigorous three-dimensional numerical models.

Entities:  

Year:  2016        PMID: 29398981      PMCID: PMC5792088          DOI: 10.2136/vzj2016.07.0063

Source DB:  PubMed          Journal:  Vadose Zone J        ISSN: 1539-1663            Impact factor:   3.289


  14 in total

1.  Experiments on pollutant transport from soil into residential basements by pressure-driven airflow.

Authors:  W W Nazaroff; S R Lewis; S M Doyle; B A Moed; A V Nero
Journal:  Environ Sci Technol       Date:  1987-05-01       Impact factor: 9.028

2.  Vapor intrusion screening model for the evaluation of risk-based vertical exclusion distances at petroleum contaminated sites.

Authors:  Iason Verginelli; Renato Baciocchi
Journal:  Environ Sci Technol       Date:  2014-10-29       Impact factor: 9.028

3.  Estimation of contaminant subslab concentration in petroleum vapor intrusion.

Authors:  Yijun Yao; Fangxing Yang; Eric M Suuberg; Jeroen Provoost; Weiping Liu
Journal:  J Hazard Mater       Date:  2014-06-23       Impact factor: 10.588

4.  Simulating the effect of aerobic biodegradation on soil vapor intrusion into buildings: influence of degradation rate, source concentration, and depth.

Authors:  Lilian D V Abreu; Paul C Johnson
Journal:  Environ Sci Technol       Date:  2006-04-01       Impact factor: 9.028

5.  Estimating the oxygenated zone beneath building foundations for petroleum vapor intrusion assessment.

Authors:  Iason Verginelli; Yijun Yao; Yue Wang; Jie Ma; Eric M Suuberg
Journal:  J Hazard Mater       Date:  2016-03-17       Impact factor: 10.588

6.  An Excel®-based visualization tool of 2-D soil gas concentration profiles in petroleum vapor intrusion.

Authors:  Iason Verginelli; Yijun Yao; Eric M Suuberg
Journal:  Ground Water Monit Remediat       Date:  2016-06-15       Impact factor: 2.019

7.  A two-dimensional analytical model of petroleum vapor intrusion.

Authors:  Yijun Yao; Iason Verginelli; Eric M Suuberg
Journal:  Water Resour Res       Date:  2016-02-28       Impact factor: 5.240

8.  Indoor vapor intrusion with oxygen-limited biodegradation for a subsurface gasoline source.

Authors:  George E DeVaull
Journal:  Environ Sci Technol       Date:  2007-05-01       Impact factor: 9.028

Review 9.  A review of vapor intrusion models.

Authors:  Yijun Yao; Rui Shen; Kelly G Pennell; Eric M Suuberg
Journal:  Environ Sci Technol       Date:  2013-02-27       Impact factor: 9.028

10.  Methane bioattenuation and implications for explosion risk reduction along the groundwater to soil surface pathway above a plume of dissolved ethanol.

Authors:  Jie Ma; William G Rixey; George E DeVaull; Brent P Stafford; Pedro J J Alvarez
Journal:  Environ Sci Technol       Date:  2012-05-08       Impact factor: 9.028

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