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Title: Geographic Information Systems as an Opportunity for Public Engagement in Environmental Data Analysis for Nuclear Waste Management

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Publication Date:
Research Org.:
Argonne National Lab. (ANL), Argonne, IL (United States)
Sponsoring Org.:
USDOE Office of Energy Efficiency and Renewable Energy (EERE) - Office of Fuel Cell Technologies (FCTO); USDOE Office of Nuclear Energy
OSTI Identifier:
DOE Contract Number:
Resource Type:
Resource Relation:
Conference: 2017 Waste Management Symposia, 03/05/17 - 03/09/17, Phoenix, AZ, US
Country of Publication:
United States

Citation Formats

Nadhan, Arthi, Nutt, W. Sam, Dvorak, Kyra, Grainger, Cloee, and MacDonell, Margaret. Geographic Information Systems as an Opportunity for Public Engagement in Environmental Data Analysis for Nuclear Waste Management. United States: N. p., 2017. Web.
Nadhan, Arthi, Nutt, W. Sam, Dvorak, Kyra, Grainger, Cloee, & MacDonell, Margaret. Geographic Information Systems as an Opportunity for Public Engagement in Environmental Data Analysis for Nuclear Waste Management. United States.
Nadhan, Arthi, Nutt, W. Sam, Dvorak, Kyra, Grainger, Cloee, and MacDonell, Margaret. 2017. "Geographic Information Systems as an Opportunity for Public Engagement in Environmental Data Analysis for Nuclear Waste Management". United States. doi:.
title = {Geographic Information Systems as an Opportunity for Public Engagement in Environmental Data Analysis for Nuclear Waste Management},
author = {Nadhan, Arthi and Nutt, W. Sam and Dvorak, Kyra and Grainger, Cloee and MacDonell, Margaret},
abstractNote = {},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = 2017,
month = 5

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  • Environmental risk prioritization is a method of estimating the probability and severity of an environmental impact related to a petroleum facility. The risk analysis is directed at prioritizing environmental risks associated with each facility and so that capital expenditures can be directed toward mitigation at high risk sites and monitoring or stewardship at low risk locations. The expenditures or investments may include facility upgrades, waste disposal or containment, soil and water remediation, or facility monitoring activities. The risk analyses and petroleum retail facilities prioritization system presented in this paper includes a geographic information systems (GIS) and rapid field investigation techniques.more » This system was recently used in the prioritization of 150 petroleum facilities in Caracas, Venezuela and is currently being expanded to include additional facilities. The prioritization system used GIS and a data management system to quantify the Potential Impact Factors (PIF) and the Leak Likelihood Factors (LLF) associated with each facility. The PIF analysis used GIS to perform a proximity analysis; a radial search was performed for each site identifying proximal receptors including sensitive environmental receptors, water supply well locations, protected open spaces, water supply watersheds, areas of critical environmental concern, and residential populations. The LLF analysis assessed risk based on the age of the underground storage tanks, presence of leak protection devices, soils and groundwater conditions, tank and piping characteristics, sales volume and proximity to sources of high voltage. Prioritization weighting was placed on each of the LLF factors based on the risk associated with each. After the initial GIS site rankings, rapid site audits were completed selected the high risk sites. These audits included compilation of spill histories and soil vapor analyses using gas chromatography.« less
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