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ASTM D2887-16a

M00023935

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ASTM D2887-16a Standard Test Method for Boiling Range Distribution of Petroleum Fractions by Gas Chromatography

standard by ASTM International, 10/01/2016

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1.1This test method covers the determination of the boiling range distribution of petroleum products. The test method is applicable to petroleum products and fractions having a final boiling point of 538C (1000F) or lower at atmospheric pressure as measured by this test method. This test method is limited to samples having a boiling range greater than 55.5C (100F), and having a vapor pressure sufficiently low to permit sampling at ambient temperature.

Note 1:Since a boiling range is the difference between two temperatures, only the constant of 1.8F/C is used in the conversion of the temperature range from one system of units to another.

1.1.1Procedure A (Sections 6 - 14)-Allows a larger selection of columns and analysis conditions such as packed and capillary columns as well as a Thermal Conductivity Detector in addition to the Flame Ionization Detector. Analysis times range from 14min to 60 min.

1.1.2Procedure B (Sections 15 - 23)-Is restricted to only 3 capillary columns and requires no sample dilution. In addition, Procedure B is used not only for the sample types described in Procedure A but also for the analysis of samples containing biodiesel mixtures B5, B10, and B20. The analysis time, when using Procedure B (Accelerated D2887), is reduced to about 8min.

1.2This test method is not to be used for the analysis of gasoline samples or gasoline components. These types of samples must be analyzed by Test Method D7096.

1.3The values stated in SI units are to be regarded as standard. The inch-pound units given in parentheses are for information only.

1.4This 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 and health practices and determine the applicability of regulatory limitations prior to use.