Petroleum hydrocarbons

Why is petroleum analysis important for you?

Until the mid-1980s, most underground storage tanks were made of bare steel, which is likely to corrode over time and allow contents to leak into the environment. Faulty installation or inadequate operating and maintenance procedures also can cause releases into the environment. Sources of petroleum hydrocarbons in the environment can arise from leaking underground storage tanks (USTs) and spills of gasoline, diesel fuel, aviation and other fuels. It is often important to understand the source of the petroleum hydrocarbons on a site prior to remediation.

When petroleum-derived substances are found in the environment, there are many questions that need to be answered before an effective remediation plan can be implemented. Identifying whether the substance is a refined product or crude oil is the first step in determining an appropriate course of action, followed by further investigation to identify the source of contamination to prevent further environmental damage.

Whether your petroleum testing needs are driven by state regulations associated with a spill, a risk assessment or Superfund or RCRA site, Eurofins Environment Testing can help you determine the proper plan for remediation.

We can also perform a more in-depth forensic investigation to identify the source of the contamination in order to assess the liability for cleanup efforts for litigation purposes.

Why choose Eurofins Environment Testing?

  • Eurofins Environment Testing has three shifts of operation and more than 230,000 square feet of laboratory space that allow us to respond quickly to petroleum analyses.
  • We have staff members and equipment dedicated exclusively for petroleum testing.
  • We can accommodate testing requests for 47 states, providing the same product deliverable from one LIMS.
  • We have >15 years of experience with petroleum analyses and the ability to further the investigation to identify fingerprints and interpret biomarkers.

Regulatory method challenges for petroleum hydrocarbons

Several states have developed their own TPH testing methods including NWTPH (Washington), TX 1005/1006, NJEPH, CTETPH, AK 102/103, TN EPH/GRO, FL PRO. Eurofins Environment Testing routinely provides these and many other state specific TPH methods.

Eurofins Environment Testing offers a diverse range of EPA and state required hydrocarbon testing methods as well as testing for incident response services. Methods include, but are not limited to:

Method Number Method Description Agency
SW 8015 Diesel Range Organics EPA
SW 8270 Diesel Range Organics EPA
SW 8015 Gas Range Organics EPA
SW 8260 Gas Range Organics EPA
EPA 1664 A & B Oil & Grease EPA
SW 9071 Oil & Grease EPA
SW 8015 Diesel Range Organics DOD
SW 8015 Gas Range Organics DOD
AK 102 Diesel Range Organics Alaska
AK 101 Gas Range Organics Alaska
AK 103 Residual Range Organics Alaska
8015 AZ R.1 Arizona TPH (C10 - C32) Arizona
LUFT Diesel TPH Diesel Range Organics California
LUFT Gas TPH Gas Range Organics California
CT ETPH Extractable Petroleum Hydrocarbons Connecticut
CT ETPH Petroleum Hydrocarbons Connecticut
FL PRO Florida Petroleum Residual Organics Florida
FL TPHCWG TPH Criteria Working Group Florida
IA UHL OA-2 Extractable Petroleum Hydrocarbons Iowa
IA UHL OA-2 (TEH) Total Extractable Petroleum Hydrocarbons Iowa
IA UHL OA-1 Volatile Petroleum Hydrocarbons Iowa
MADEP EPH Extractable Petroleum Hydrocarbons Massachusetts
MADEP EPH Volatile Petroleum Hydrocarbons Massachusetts
MT EPH Extractable Petroleum Hydrocarbons Montana
MT VPH Volatile Petroleum Hydrocarbons Montana
NV04-22-8270 Diesel Range Organics Nevada
NJDEP EPH Extractable Petroleum Hydrocarbons New Jersey
NJ OQA-QAM-025 Petroleum Hydrocarbons New Jersey
NYDOH 310.13 Hydrocarbons New York
NYDOH 310.14 Hydrocarbons New York
SW 8015B Diesel Range Organics OHVAP
SW 8015A Gas Range Organics OHVAP
OK DRO Diesel Range Organics (C10 to C28) Oklahoma
OK GRO Gas Range Organics (C6 to C10) Oklahoma
NW TPH-Gx Gas Range Organics Oregon/Washington
TN EPH Extractable Petroleum Hydrocarbons Tennessee
TN GRO Gas Range Organics Tennessee
TNRCC Method 1005 Volatile Petroleum Hydrocarbons Texas
TNRCC Method 1006 Volatile Petroleum Hydrocarbons Texas
NWTPHDx Diesel Range Organics Washington
NWTPHGx Gas Range Organics Washington
NWTPHGx Motor Oil Washington
NW TPH-Dx Semivolatile Petroleum Products Washington
WI DNR DRO Diesel Range Organics Wisconsin
WI DNR GRO Gas Range Organics Wisconsin

Arizona TPH (C10-C32)

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Method Number Agency
8015 AZ R.1 Arizona

Diesel range organics

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Method Number Agency
SW 8015 EPA
SW 8270 EPA
SW 8015 DOD
AK 102 Alaska
LUFT Diesel TPH California
NV04-22-8270 Nevada
SW 8015B OHVAP
NWTPHDx Washington
WI DNR DRO Wisconsin

Diesel range organics (C10 to C28)

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Method Number Agency
OK DRO Oklahoma

Extractable petroleum hydrocarbons

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Method Number Agency
CT ETPH Connecticut
IA UHL OA-2 Iowa
MADEP EPH Massachusetts
MT EPH Montana
NJDEP EPH New Jersey
TN EPH Tennessee

Florida petroleum residual organics

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Method Number Agency
FL PRO Florida

Gas range organics

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Method Number Agency
SW 8015 EPA
SW 8260 EPA
SW 8015 DOD
AK 101 Alaska
LUFT Gas TPH California
SW 8015A OHVAP
NW TPH-Gx Oregon/Washington
TN GRO Tennessee
NWTPHGx Washington
WI DNR GRO Wisconsin

Gas range organics (C6 to C10)

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Method Number Agency
OK GRO Oklahoma

Hydrocarbons

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Method Number Agency
NYDOH 310.13 New York
NYDOH 310.14 New York

Motor oil

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Method Number Agency
NWTPHGx Washington

Oil and grease

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Method Number Agency
EPA 1664 A & B EPA
SW 9071 EPA

Petroleum hydrocarbons

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Method Number Agency
CT ETPH Connecticut
NJ OQA-QAM-025 New Jersey

Residual range organics

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Method Number Agency
AK 103 Alaska

Semivolatile petroleum products

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Method Number Agency
NW TPH-Dx Washington

Total extractable petroleum hydrocarbons

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Method Number Agency
IA UHL OA-2 (TEH) Iowa

TPH criteria working group

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Method Number Agency
FL TPHCWG Florida

Volatile petroleum hydrocarbons

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Method Number Agency
IA UHL OA-1 Iowa
MADEP EPH Massachusetts
MT VPH Montana
TNRCC Method 1005 Texas
TNRCC Method 1006 Texas

Total petroleum hydrocarbons

Total petroleum hydrocarbons (TPH) are a large family of several hundred chemical compounds that originate from crude oil (mainly hydrogen and carbon).

Because TPH can be divided into groups (fractions) of petroleum hydrocarbons that act alike, it is not practical to measure each chemical separately. Rather, the total TPH should be measured in order to identify the mixture of chemicals contained in the sample.

Common TPH constituents found in UST cleanup, spill or contamination include jet fuels, diesel fuels, mineral oils, benzene, toluene, xylenes, PAHs such as naphthalene and fluorene, as well as other petroleum products and gasoline components.

Common analysis techniques

Gasoline Range Organics (GRO) by SW-846 8015

  • Purge-and-Trap GC/FID analysis
  • Gross measurement of organics in the C6-C10 range

Diesel Range Organics (DRO) by SW-846 8015

  • Sample is extracted with (CH2Cl2)
  • GC/FID analysis
  • Gross measurement of organics in the C10-C28 range
  • Extended ranges (ORO) to C40 can be performed

Specific Compound Identifications

  • Methods 8015, 8260, 8270, etc.
  • Examples: BTEX, MTBE, PAHs, Oxygenates, EDB
  • Alcohols

 

Interferences and cleanups

Non-petroleum organics can elute in the GRO or DRO ranges, possibly resulting in false positives. Potential interferences may include:

  • Naturally occurring organic material
  • Terpenes
  • Animal and vegetable oils/fats
  • Phthalates
  • Chlorinated hydrocarbons
  • Phenols organic acids

Silica gel cleanup can be used to remove potential DRO interferences.

Forensic testing capabilities

Fingerprint TPH by GC/FID

Understanding what type of fuel you’re dealing with at your site can be critical to determining your best course of corrective action. We can provide you with the analysis and expert interpretation of your samples with unknown petroleum products. We analyze samples using GC/FID Method SW-846 8015B from C8-C40 to identify the extractable petroleum products in soil, water and natural fuels and compare your sample chromatogram against our petroleum standard reference library.

Your analysis report will detail the identified component(s) in your sample and qualitative, interpretative information with regard to the weathering of the petroleum product. We encourage you to submit a sample of the source or material so we can use it as a comparison to your samples.

PAHs, Alkylated PAHs and Biomarker Analysis (SW-846 8270 SIM)

Some of the most important target analytes in assessment from petroleum impacts are PAHs and alkylated PAHs. Alkylated PAHs are PAHs that have one or more alkylated groups attached to their aromatic structure. They are often more abundant and can be more toxic than their parent PAH compounds. These compounds are important in petroleum geochemistry and environmental toxicology studies.

Biomarkers are complex organic compounds that are found in petroleum. They show little to no change in structure from their parent molecules found in living organisms, are unique to each source of petroleum and have been well documented.

Eurofins analyzes biomarkers, including terpanes, steranes and triaromatic steroids and provides the data in a format that can be used by petroleum experts to evaluate possible sources of the contamination. The biomarkers are often used in a tiered approach  with alkanes, PAHs and alkylated PAHs to determine the source of contamination.

Alkanes, Isoprenoids and Standard Hydrocarbons

Our detailed aliphatic hydrocarbon profile, along with isoprenoid information and pristine/phytane (C17/C18) ratios are valuable tools that can assist in the characterization of crude oil.

Eurofins provides analysis of water, salt water, soil, sediment, product and tissue samples for alkanes, TPH/SHC/DRO and isoprenoids using GC/FID SW-846 8015, including:

  • nC9 to nC40
  • Total TPH (C9-C40)
  • Total SHC
  • DRO (C10-C28)
  • Total Resolved SHC (C9-C40)
  • 2,6,10-Trimethyldodecane (1380)
  • 2,6,10-Trimethyltridecane (1470)
  • 2,6,10-Trimethylpentadecane (1650)
  • Pristane
  • Phytane

Start your testing now

Contact us to discuss your project goals and learn how our testing solutions can support your data and regulatory needs.