NBSHT0939-2016 PDF English
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| NB/SH/T 0939-2016 | English | 209 | Add to Cart | 3 days [Need to translate] | 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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Basic data
| Standard ID | NB/SH/T 0939-2016 (NB/SH/T0939-2016) |
| Description (Translated English) | Standard test method for determination of aromatic hydrocarbon types in aviation fuels and petroleum distillates. High performance liquid chromatography method with refractive index detection |
| Sector / Industry | Energy Industry Standard (Recommended) |
| Classification of Chinese Standard | E31 |
| Classification of International Standard | 75.160.20 |
| Word Count Estimation | 9,944 |
| Date of Issue | 2016-12-05 |
| Date of Implementation | 2017-05-01 |
| Quoted Standard | GB/T 1884; GB/T 1885; GB/T 4756; GB/T 27867; SH/T 0604; SH/T 0806 |
| Adopted Standard | ASTM D6379-11, MOD |
| Regulation (derived from) | State Energy Administration Bulletin No.9 of 2016 |
| Issuing agency(ies) | National Energy Administration |
| Summary | This standard specifies the method for determination of monocyclic aromatic hydrocarbons and bicyclic aromatic hydrocarbons in petroleum petroleum fractions in the range of 50 �� C to 300 �� C boiling range by high performance liquid chromatography. The total aromatic content of mountain monocyclic aromatic hydrocarbons and bicyclic aromatic hydrocarbons is obtained by summation. This standard applies to the determination of aviation fuels and their fractions with a monocyclic aromatic hydrocarbon content of 10% (mass fraction) to 25% (mass fraction) and a bicyclic aromatic hydrocarbon content of 0 to 7% (mass fraction). The precision of the method is established from the detection results of kerosene fractions having a monocyclic aromatic hydrocarbon content of 10% (mass fraction) to 25% (mass fraction) and bicyclic aromatic hydrocarbons of 0 to 7% (mass fraction). Compounds containing sulfur, nitrogen and oxygen may cause disturbances. Monoolefins have no effect on the results of the measurements, but if conjugated dienes and polyenes are present, they may cause disturbances. |