We need your consent to use the individual data so that you can see information about your interests, among other things. Click "OK" to give your consent.
Standard Test Method for Determining Water Separation Characteristics of Kerosine-Type Aviation Turbine Fuels Containing Additives by Portable Separometer
Translate name
STANDARD published on 15.1.2023
Designation standards: ASTM D7224-23
Publication date standards: 15.1.2023
SKU: NS-1100833
The number of pages: 15
Approximate weight : 45 g (0.10 lbs)
Country: American technical standard
Category: Technical standards ASTM
Keywords:
additives, aviation turbine fuel, coalescence, jet fuel, micro-separometer, MSEP rating, surfactant, water separation,, ICS Number Code 75.160.20 (Liquid fuels)
Significance and Use | ||||||||||||
5.1?This test method provides a measurement of the presence of surfactants in aviation turbine fuels. Like previous obsolete Test Methods D2550 and D3602 and current Test Methods D3948 and D8073, this test method can detect trace amounts of refinery treating chemicals in fuel. The test methods can also detect surface active substances added to fuel in the form of additives or picked up by the fuel during handling from point of production to point of use. Some of these substances degrade the ability of filter separators to separate free water from the fuel. 5.2?This test method yields approximately the same (low) MSEP ratings as Test Method D3948 for fuels that contain strong surfactants. 5.2.1?This test method will give approximately the same MSEP ratings for Jet A, Jet A-1, JP-5, JP-7, and JP-8 fuels as Test Method D3948 when testing reference fluids. 5.3?The MSEP ratings obtained by this test method are less affected by weak surfactants than Test Method D3948. Somewhat higher MSEP ratings for Jet A, Jet A-1, JP-5, JP-7, and JP-8 fuels are obtained by this test method than those obtained by Test Method D3948 when additives such as static dissipater additives (SDA) and corrosion inhibitors are present in the fuel. This correlates with the satisfactory performance of filter separators for such fuels, when wet. However, these same additives adversely affect the MSEP ratings obtained by Test Method D3948 by erroneously indicating that such additized fuels would significantly degrade the ability of filter separators to separate free water from the fuel in actual service. 5.4?The Micro-Separometer instrument has an effective measurement range from 50 to 100. Values obtained outside of those limits are undefined and invalid. Note 1:?In the event a value greater than 100 is obtained,
there is a good probability that light transmittance was reduced by
material, typically water, contained in the fuel that was used to
set the 100 reference level. During the coalescing portion of the
test, the contaminating material as well as the 50 ?L ? 1 ?L of
distilled water was subsequently removed during this portion of the
test. Thus, the processed fuel had a higher light transmittance
than the fuel sample used to obtain the 100 reference level
resulting in the final rating measuring in excess of
100.
|
||||||||||||
1. Scope | ||||||||||||
1.1?This test method covers a rapid portable means for field and laboratory use to rate the ability of kerosine-type aviation turbine fuels, both neat and those containing additives, to release entrained or emulsified water when passed through coalescing material. 1.1.1?This test method is applicable to kerosine-type aviation turbine fuels including: Jet A and Jet A-1 (as described in Specification D1655); JP-5, JP-7, JP-8, and JP-8+100. (See Section 6.) 1.2?The 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. 1.3?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, health, and environmental practices and determine the applicability of regulatory limitations prior to use. 1.4?This 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. |
||||||||||||
2. Referenced Documents | ||||||||||||
|
Do you want to make sure you use only the valid technical standards?
We can offer you a solution which will provide you a monthly overview concerning the updating of standards which you use.
Would you like to know more? Look at this page.
Latest update: 2024-11-22 (Number of items: 2 206 568)
© Copyright 2024 NORMSERVIS s.r.o.