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NBSHT0769-2019 English PDF

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NBSHT0769-2019: Standardtest method for determination of vapor pressure(VP x)of petroleum products,hydrocarbons,and hydrocarbon-oxygenate mixtures
Status: Valid
Standard IDContents [version]USDSTEP2[PDF] delivered inStandard Title (Description)StatusPDF
NB/SH/T 0769-2019English509 Add to Cart 4 days [Need to translate] Standardtest method for determination of vapor pressure(VP x)of petroleum products,hydrocarbons,and hydrocarbon-oxygenate mixtures Valid NB/SH/T 0769-2019

PDF similar to NBSHT0769-2019


Standard similar to NBSHT0769-2019

GB/T 510   NB/SH/T 0324   GB/T 511   NB/SH/T 0864   NB/SH/T 0843   NB/SH/T 0162   

Basic data

Standard ID NB/SH/T 0769-2019 (NB/SH/T0769-2019)
Description (Translated English) Standardtest method for determination of vapor pressure(VP x)of petroleum products��hydrocarbons��and hydrocarbon-oxygenate mixtures
Sector / Industry Energy Industry Standard (Recommended)
Classification of Chinese Standard E30
Classification of International Standard 75.080
Word Count Estimation 22,274
Date of Issue 2019-11-04
Date of Implementation 2020-05-01
Older Standard (superseded by this standard) SH/T 0769-2005
Quoted Standard GB/T 4756; GB/T 8017; GB/T 9168-1997; GB/T 27867; SH/T 0794; NB/SH/T 0843; ASTM D4953; ASTM D6300; ASTM D6708
Regulation (derived from) National Energy Administration Announcement No. 6 of 2019
Issuing agency(ies) National Energy Administration
Summary This standard specifies the method for measuring the vapor pressure of volatile liquid petroleum products, aviation turbine fuel, hydrocarbons, and hydrocarbon-oxygenated compound mixtures in a vacuum using an automatic vapor pressure tester. This standard applies to volatile liquid samples with a boiling point higher than 0��C, a gas-liquid ratio of 4:1, and a vapor pressure of 7kPa��150kPa at 37.8��C. It also applies to liquid samples with a boiling point higher than 0��C, gas-liquid An aviation turbine fuel sample with a ratio of 4:1 and a vapor pressure of OkPa to 110kPa at 25��C to 100��C. The amount of liquid sample required for the determination is related to the selected gas-liquid ratio (see note) and the volume capacity of the test chamber of the instrument (see 6.1.1 and its note). The gasoline and gasoline measured at a gas-liquid ratio of 4

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