API Soil & Groundwater Technical Resources


API Soil & Groundwater Technical Resources

API’s Soil and Groundwater Technical Group (SGTG) maintains this website as a repository for science-based tools, guidance documents, and research to support protective and practicable cleanup of petroleum release sites. These resources are designed for regulators, site managers, and environmental professionals and cover topics ranging from natural attenuation and vapor intrusion to LNAPL management and site closure.

Understanding Petroleum Releases in Soil & Groundwater

When petroleum is released from an underground storage tank, its components behave differently in soil, groundwater, and soil gas — some dissolve readily, some volatilize, and some biodegrade under natural conditions. API has funded decades of research to characterize this behavior. The Technical Bulletins below summarize key findings on topics including natural attenuation, plume behavior, and risk evaluation at petroleum release sites.

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API Environmental Research and Technology Bulletins
Bulletin Date Title
01 Sep 1996 Summary of Processes, Human Exposures and Remediation Technologies Applicable to Low-Permeability Soils
02 Mar 1997 Estimation of Infiltration and Recharge for Environmental Site Assessment
03 Mar 1998 Ten Frequently Asked Questions About MTBE in Water
04 Jul 1998 Selective Subcritical Water Extraction of Aromatic and Aliphatic Organic Pollutants from Petroleum Industry Soils and Sludges
05 Feb 1998 Evaluation of Sampling and Analytical Methods for Measuring Indicators of Intrinsic Bioremediation
07 Aug 1998 DAFfy Graphs: An Innovative Approach for Modeling the Soil-to-Groundwater Pathway
08 Dec 1998 Characteristics of Dissolved Petroleum Hydrocarbon Plumes — Results from Four Studies
09 Jun 2000 Non-Aqueous Phase Liquid (NAPL) Mobility Limits in Soil
10 Jun 2000 Simulation of Transport of Methyl Tert-Butyl Ether (MTBE) to Groundwater from Small-Volume Releases of Gasoline in the Vadose Zone
11 Aug 2000 Strategies for Characterizing Subsurface Releases of Gasoline Containing MTBE
12 Oct 2000 No-Purge Groundwater Sampling
13 Sept 2000 Dissolution of MTBE from a Residually Trapped Gasoline Source
14 Sept 2001 Predicting the Effect of Hydrocarbon and Hydrocarbon-Impacted Soil on Groundwater
15 Dec 2001 Vadose Zone Natural Attenuation of Hydrocarbon Vapors
16 April 2002 Migration of Soil Gas Vapors To Indoor Air
17 May 2002 Identification of Critical Parameters for the Johnson Ettinger (1991) Vapor Intrusion Model
19 Oct 2003 Evaluation of Small-Volume Releases of Ethanol-Blended Gasoline at UST Sites
20 Dec 2003 Answers to Frequently Asked Questions About Ethanol Impacts to Groundwater
21 Jan 2005 Evaluation of Potential Vapor Transport to Indoor Air Associated with Small-Volume Releases of Oxygenated Gasoline in the Vadose Zone
22 Jan 2005 Maximum Potential Impacts of Tertiary Butyl Alcohol (TBA) on Groundwater from Small-Volume Releases of Ethanol-Blended Gasoline in the Vadose Zone
23 Dec 2005 The Impact of Gasohol and Fuel-Grade Ethanol on BTX and Other Hydrocarbons in Ground Water
24 April 2006 Downward Solute Plume Migration: Assessment, Significance, and Implications for Characterization and Monitoring of “Driving Plumes”
25 February 2012 Remediation Progress at California LUFT Sites: Insights from the Geo Tracker Database
26 March 2012 Tertiary-Butyl Alcohol (TBA) Biodegradation

Petroleum Vapor Intrusion (PVI)

Vapor intrusion (VI) occurs when vapors from subsurface contamination migrate into overlying buildings. The BioVapor model is a screening tool that estimates indoor air concentrations from subsurface petroleum vapor sources, accounting for aerobic biodegradation in the vadose zone.

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Assets Format
BioVapor Model Excel Spreadsheet Click to Download Spreadsheet
BioVapor User’s Guide PDF Click to Download PDF
BioVapor Troubleshooting Guide PDF Click to Download PDF

LNAPL Management

Light non-aqueous phase liquid (LNAPL) is often present at petroleum release sites. API has developed tools to help practitioners and regulators evaluate LNAPL mobility, estimate recoverability, and make risk-informed decisions.

Related Assets

Asset Format Link / Status
API LNAPL Transmissivity Workbook (+ metric version) Excel Click to Download Metric
Click to Download WorkBook
LNAPL Examples Excel Click to Download Example 1 Spreadsheet
Click to Download Example 2 Spreadsheet
Click to Download Example 3 Spreadsheet
Managing Risks at LNAPL Sites (LNAPL FAQ Volume 2) PDF Click to Download PDF
API LNAPL Interactive Guide Unknown TBA
LDRM (LNAPL Distribution and Recovery Model) Unknown TBA
API LNAPL Skimming Spreadsheet Excel TBA
Tn Values Database Unknown TBA
LNAPL FAQs PDF Click to Download PDF
API Groundwater Arsenic Manual – Publication 4761 PDF Click to Download PDF
Evaluating Hydrocarbon Removal from Source Zones and its Effect on Dissolved Plume Longevity and Magnitude – Publication 4715 PDF Click to Download PDF
Quantification of Vapor Phase-related Natural Source Zone Depletion Processes – Publication 4784 PDF Click to Download PDF

Groundwater Monitoring & Site Closure

Tracking groundwater quality over time is essential for demonstrating that a site is stable and progressing toward closure. API’s GWSDAT tool provides statistical and spatial analysis of groundwater monitoring data to support closure decisions. The video resources below provide introductions to key concepts in site assessment and closure.

Related Assets

# Title URL
1 API LNAPL Transmissivity Workbook Video – Pre-Analysis Quality Check Watch video
2 API LNAPL Transmissivity Workbook Video – Interpretation of Example Data Sets Watch video
3 API LNAPL Transmissivity Workbook Video – ID of Test Results Indicating Confined/Perched Conditions Watch video
4 API LNAPL Transmissivity Workbook Video – Interpreting Test Results Using the Bouwer and Rice Method Watch video
5 API LNAPL Transmissivity Workbook Video – Summary Watch video