ASTM D 8236 : 2018
Current
The latest, up-to-date edition.
Standard Practice for Preparing an Equilibrium Liquid/Vapor Sample of Live Crude Oil, Condensates, or Liquid Petroleum Products Using a Manual Piston Cylinder for Subsequent Liquid Analysis or Gas Analysis
Hardcopy , PDF
English
12-15-2018
This practice covers the preparation of an equilibrium gas sample of live crude oil, condensate, or liquid petroleum products, using a Practice D8009 manual piston cylinder (MPC) as a vapor tight expansion chamber to generate an equilibrium vapor/liquid pair at a known temperature and vapor/liquid ratio (V/L).
Committee |
D 02
|
DocumentType |
Standard Practice
|
Pages |
10
|
PublisherName |
American Society for Testing and Materials
|
Status |
Current
|
1.1This practice covers the preparation of an equilibrium gas sample of live crude oil, condensate, or liquid petroleum products, using a Practice D8009 manual piston cylinder (MPC) as a vapor tight expansion chamber to generate an equilibrium vapor/liquid pair at a known temperature and vapor/liquid ratio (V/L). Inert gas such as helium or argon is injected to the equilibrium vapor space of the MPC to provide an equilibrium vapor sample sufficiently above atmospheric pressure for subsequent analysis using a standard refinery gas analyzer (RGA) such as described in Test Method D7833. Other gas analysis methods may be used provided they meet the minimum performance criteria stated in 7.4.1.
1.2This practice is suitable for UN Class 3 Liquid samples having vapor pressures between 0 kPa and 300 kPa at 50.0 °C, and 0.1:1 to 4:1 vapor/liquid ratio, spanning the nominal range near bubble point (Test Method D6377 VPCr,0.1) to Test Methods D323 (RVP), D4953, and D5191 (V/L=4). The temperature may vary over a wide range, provided that the cylinder is maintained at isothermal and isobaric conditions to prevent condensation of equilibrium vapor upon cooling either in the cylinder or in the injection system of the Refinery Gas Analyzer (RGA, Test Method D7833). The method is best suited for preparation of an equilibrium gas/liquid pair near ambient conditions, typical of routine daily operations in a typical refinery quality assurance or marine terminal laboratory, to routinely monitor the light ends content of crude oil receipts.
1.3This practice is suitable to prepare an equilibrium liquid/vapor sample pair in a sealed sampling system (no light ends loss from either phase). The equilibrium gas phase is suitable for subsequent gas analysis of both hydrocarbon and fixed/inert gases in the sample, including: hydrogen, oxygen, nitrogen, carbon dioxide, carbon monoxide, hydrogen sulfide, C1 to C7 hydrocarbons at levels consistent with the Test Method D7833 method used. The equilibrium liquid phase can be subsequently analyzed by Test Method D8003 to obtain paired analytical results on both the equilibrium liquid and vapor pair with a sealed sample system.
1.4Addition of the diluent gas provides a positive pressure sample to allow the use of a typical RGA-type gas injection system that operates only slightly above barometric pressure. The preferred diluent gas shall be the same as the carrier gas used in the RGA (typically helium or argon). Choice of diluent or carrier gas may affect the ability to detect some inert gases (especially O2 or H2) in some RGA configurations conforming to Test Method D7833.
1.5The VLE gas generation and subsequent RGA output is used as a screening method to identify gas components that can be present in the crude oil affecting the total vapor pressure. The RGA output only represents the equilibrium vapor components present and relative to one another. Due to dilution of the VLE gas with inert gas, the RGA output does not purport to accurately provide the actual vapor composition at VLE conditions and is definitely not representative of the composition of the whole sample.
1.6The values stated in SI units are to be regarded as standard. The values given in parentheses after SI units are provided for information only and are not considered standard.
1.7This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.
1.8This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
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ASTM D 8003 : 2015 : REV A | Standard Test Method for Determination of Light Hydrocarbons and Cut Point Intervals in Live Crude Oils and Condensates by Gas Chromatography |
ASTM D 5191 : 2006 : EDT 1 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 8003 : 2015 : REV A : R2021 | Standard Test Method for Determination of Light Hydrocarbons and Cut Point Intervals in Live Crude Oils and Condensates by Gas Chromatography |
ASTM D 8009 : 2015 | Standard Practice for Manual Piston Cylinder Sampling for Volatile Crude Oils, Condensates, and Liquid Petroleum Products |
ASTM D 4057 : 1981 : EDT 2 | Standard Practice for Manual Sampling of Petroleum and Petroleum Products |
ASTM D 5191 : 2001 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 5191 : 2010 : REV A | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 8003 : 2015 | Standard Test Method for Determination of Light Hydrocarbons and Cut Point Intervals in Live Crude Oils and Condensates by Gas Chromatography |
ASTM D 6377 : 2003 | Standard Test Method for Determination of Vapor Pressure of Crude Oil: VPCR<sub>x</sub> (Expansion Method) |
ASTM D 4953 : 1999 : REV A | Standard Test Method for Vapor Pressure of Gasoline and Gasoline-Oxygenate Blends (Dry Method) |
ASTM D 4057 : 2006 | Standard Practice for Manual Sampling of Petroleum and Petroleum Products |
ASTM D 6377 : 2015 | Standard Test Method for Determination of Vapor Pressure of Crude Oil: VPCR<inf>x</inf > (Expansion Method) |
ASTM D 5191 : 2012 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 7833 : 2014 | Standard Test Method for Determination of Hydrocarbons and Non-Hydrocarbon Gases in Gaseous Mixtures by Gas Chromatography |
ASTM D 4953 : 2006 : R2012 | Standard Test Method for Vapor Pressure of Gasoline and Gasoline-Oxygenate Blends (Dry Method) |
ASTM D 4057 : 2012 | Standard Practice for Manual Sampling of Petroleum and Petroleum Products |
ASTM D 8009 : 2022 | Standard Practice for Manual Piston Cylinder Sampling for Volatile Crude Oils, Condensates, and Liquid Petroleum Products |
ASTM D 5191 : 2003 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 6377 : 2010 | Standard Test Method for Determination of Vapor Pressure of Crude Oil: VPCR<sub>x</sub> (Expansion Method) |
ASTM D 5191 : 1999 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 6377 : 2016 | Standard Test Method for Determination of Vapor Pressure of Crude Oil: VPCR<inf>x</inf > (Expansion Method) |
ASTM D 7975 : 2014 | Standard Test Method for Determination of Vapor Pressure of Crude Oil: <brk/>VPCR<inf >x</inf>-F(Tm°C)(Manual Expansion Field Method) |
ASTM D 6377 : 2014 | Standard Test Method for Determination of Vapor Pressure of Crude Oil: VPCR<inf>x</inf > (Expansion Method) |
ASTM D 5191 : 2018 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 5191 : 2010 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 5191 : 2002 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 6377 : 2008 | Standard Test Method for Determination of Vapor Pressure of Crude Oil: VPCR<sub>x</sub> (Expansion Method) |
ASTM D 5191 : 2019 | Standard Test Method for Vapor Pressure of Petroleum Products and Liquid Fuels (Mini Method) |
ASTM D 8003 : 2022 | Standard Test Method for Determination of Light Hydrocarbons and Cut Point Intervals in Live Crude Oils and Condensates by Gas Chromatography |
ASTM D 7975 : 2022 | Standard Test Method for Determination of Vapor Pressure of Crude Oil: <brk/>VPCR<inf >x</inf>-F(Tm°C) (Manual Expansion Field Method) |
ASTM D 4057 : 2022 | Standard Practice for Manual Sampling of Petroleum and Petroleum Products |
ASTM D 6377 : 1999 | Standard Test Method for Determination of Vapor Pressure of Crude Oil: VPCR<sub>x</sub> (Expansion Method) |
ASTM D 5191 : 2004 : REV A | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 5191 : 2020 | Standard Test Method for Vapor Pressure of Petroleum Products and Liquid Fuels (Mini Method) |
ASTM D 5191 : 2007 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 4057 : 1995 : R2000 | Standard Practice for Manual Sampling of Petroleum and Petroleum Products |
ASTM D 5191 : 2015 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 7833 : 2020 | Standard Test Method for Determination of Hydrocarbons and Non-Hydrocarbon Gases in Gaseous Mixtures by Gas Chromatography |
ASTM D 4953 : 2020 | Standard Test Method for Vapor Pressure of Gasoline and Gasoline-Oxygenate Blends (Dry Method) |
ASTM D 4057 : 2006 : R2011 | Standard Practice for Manual Sampling of Petroleum and Petroleum Products |
ASTM D 5191 : 2010 : REV B | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 5191 : 2013 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 4953 : 2006 | Standard Test Method for Vapor Pressure of Gasoline and Gasoline-Oxygenate Blends (Dry Method) |
ASTM D 5191 : 2006 | Standard Test Method for Vapor Pressure of Petroleum Products (Mini Method) |
ASTM D 7833 : 2012 | Standard Test Method for Determination of Hydrocarbons and Non-Hydrocarbon Gases in Gaseous Mixtures by Gas Chromatography |
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