Skip to main content
U.S. flag

An official website of the United States government

Here’s how you know

Dot gov

Official websites use .gov
A .gov website belongs to an official government organization in the United States.

HTTPS

Secure .gov websites use HTTPS
A lock (LockA locked padlock) or https:// means you have safely connected to the .gov website. Share sensitive information only on official, secure websites.

  • Environmental Topics
  • Laws & Regulations
  • Report a Violation
  • About EPA
Contact Us

Grantee Research Project Results

Subsurface In Situ Volatile Organic Contaminant Sampling Using Multiple Sorbent Traps With Rapid On-Site/Off-Site Quantitative Speciation

EPA Contract Number: 68D01015
Title: Subsurface In Situ Volatile Organic Contaminant Sampling Using Multiple Sorbent Traps With Rapid On-Site/Off-Site Quantitative Speciation
Investigators: Dvorak, Michael
Small Business: Dakota Technologies Inc.
EPA Contact: Richards, April
Phase: I
Project Period: April 1, 2001 through September 1, 2001
Project Amount: $70,000
RFA: Small Business Innovation Research (SBIR) - Phase I (2001) RFA Text |  Recipients Lists
Research Category: Ecological Indicators/Assessment/Restoration , SBIR - Monitoring , Small Business Innovation Research (SBIR)

Description:

Dakota Technologies, Inc. (DTI), has demonstrated successfully key technologies used in the operation of a miniature gas chromatograph (GC) that fits inside a push rod for field screening and quantification of subsurface volatile organic compounds (VOCs). The GC is soft-pushed (no percussion) into the earth and uses a heated microporous inlet membrane on the side of the probe to transfer VOCs from the soil formation to a sorbent trap. Based on previous success of adapting these technologies, DTI proposes the design, construction, and field testing of a novel trap and valve assembly (TVA) that fits into a similar narrow-bore push rod for direct, hard-push, percussion delivery. The TVA consists of a series of sorbent traps and three-way solenoid valves for gas flow control. The strategy for site characterization is based on trapping VOCs at multiple depths using the multiple sorbent traps. The TVA is easily removed from the push rod and can be connected to a miniature, fixed-setting GC analyzer that permits rapid (less than 5 minutes) identification and quantification of the ballistically desorbed and eluting species. This GC analyzer is small enough that analysis can take place in a mobile laboratory or at a later time in a standard analytical laboratory. The key advantage to this approach is the ability of the TVA to operate with percussion hammering of the rod assembly and the ability to gather multiple VOC samples at discrete, user-defined depths. DTI previously has constructed novel, fixed-setting, miniature GCs with 5-m columns that employ ballistic heating of a sorbent trap for desorption of VOCs. The GC analyzers employ either a halogen-specific detector for chlorinated species or a general-purpose photoionization detector that can detect chlorinated or fuel-related species. The GC analyzers occupy a footprint of less than 0.5 ft2 and can be controlled via microprocessors.

Supplemental Keywords:

small business, SBIR, monitoring, volatile organic compound, gas chromatography, VOCs, engineering, chemistry, EPA, sampling, chlorinated compounds., RFA, Scientific Discipline, Ecosystem Protection/Environmental Exposure & Risk, Toxics, Engineering, Chemistry, Monitoring/Modeling, VOCs, Environmental Engineering, Environmental Monitoring, chromatograph, gas chromatography, analyzer, sorbent trap, Volatile Organic Compounds (VOCs)

Progress and Final Reports:

  • Final Report
  • Top of Page

    The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.

    Project Research Results

    • Final Report

    Site Navigation

    • Grantee Research Project Results Home
    • Grantee Research Project Results Basic Search
    • Grantee Research Project Results Advanced Search
    • Grantee Research Project Results Fielded Search
    • Publication search
    • EPA Regional Search

    Related Information

    • Search Help
    • About our data collection
    • Research Grants
    • P3: Student Design Competition
    • Research Fellowships
    • Small Business Innovation Research (SBIR)
    Contact Us to ask a question, provide feedback, or report a problem.
    Last updated April 28, 2023
    United States Environmental Protection Agency

    Discover.

    • Accessibility
    • Budget & Performance
    • Contracting
    • EPA www Web Snapshot
    • Grants
    • No FEAR Act Data
    • Plain Writing
    • Privacy
    • Privacy and Security Notice

    Connect.

    • Data.gov
    • Inspector General
    • Jobs
    • Newsroom
    • Open Government
    • Regulations.gov
    • Subscribe
    • USA.gov
    • White House

    Ask.

    • Contact EPA
    • EPA Disclaimers
    • Hotlines
    • FOIA Requests
    • Frequent Questions

    Follow.