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ASTM D6379-99

Historical Revision

Standard Test Method for Determination of Aromatic Hydrocarbon Types in Aviation Fuels and Petroleum Distillates—High Performance Liquid Chromatography Method with Refractive Index Detection

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1.1 This test method covers a high performance liquid chromatographic test method for the determination of monoaromatic and di-aromatic hydrocarbon contents in aviation kerosenes and petroleum distillates boiling in the range from 50 to 300°C, such as Jet A or Jet A-1 fuels. The total aromatic content is calculated from the sum of the individual aromatic hydrocarbon-types.

Note 1-Samples with a final boiling point greater than 300°C that contain tri-aromatic and higher polycyclic aromatic compounds are not determined by this test method and should be analysed by IP 391, or other suitable equivalent test methods.

1.2 This test method is calibrated for distillates containing from 10 to 25% m/m mono-aromatic hydrocarbons and from 0 to 7% m/m di-aromatic hydrocarbons.

1.3 The precision of this test method has been established for kerosene boiling range distillates containing from 10 to 25% m/m mono-aromatic hydrocarbons and from 0 to 7% m/m di-aromatic hydrocarbons.

1.4 Compounds containing sulfur, nitrogen, and oxygen are possible interferents. Mono-alkenes do not interfere, but conjugated di- and poly-alkenes, if present, are possible interferents.

1.5 This 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.


SDO ASTM: ASTM International
Document Number D6379
Publication Date Jan. 10, 1999
Language en - English
Page Count 5
Revision Level 99
Supercedes
Committee D02.04.0C
Publish Date Document Id Type View
July 15, 2021 D6379-21E01 Revision
July 15, 2021 D6379-21 Revision
June 1, 2011 D6379-11 Revision
May 1, 2004 D6379-04 Revision
Jan. 10, 1999 D6379-99 Revision
June 1, 2019 D6379-11R19 Reaffirmation