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Standard Test Method for Motor Octane Number of Spark-Ignition Engine Fuel (Includes all amendments And changes 11/15/2017).
Name übersetzen
NORM herausgegeben am 1.12.2016
Bezeichnung normen: ASTM D2700-16a
Anmerkung: UNGÜLTIG
Ausgabedatum normen: 1.12.2016
SKU: NS-673944
Zahl der Seiten: 58
Gewicht ca.: 174 g (0.38 Pfund)
Land: Amerikanische technische Norm
Kategorie: Technische Normen ASTM
Keywords:
aviation rating, guide table, isooctane, knock intensity, motor octane number, n-heptane, spark-ignition engine fuel performance, toluene standardization fuel ,, ICS Number Code 75.160.20 (Liquid fuels)
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5.1 Motor O.N. correlates with commercial automotive spark-ignition engine antiknock performance under severe conditions of operation. 5.2 Motor O.N. is used by engine manufacturers, petroleum refiners and marketers, and in commerce as a primary specification measurement related to the matching of fuels and engines. 5.2.1 Empirical correlations that permit
calculation of automotive antiknock performance are based on the
general equation: Values of k1, k2, and k3 vary with vehicles and vehicle populations and are based on road-octane number determinations. 5.2.2 Motor O.N., in conjunction with
Research O.N., defines the antiknock index of automotive
spark-ignition engine fuels, in accordance with Specification
D4814. The antiknock index of
a fuel approximates the road octane ratings for many vehicles, is
posted on retail dispensing pumps in the United States, and is
referred to in vehicle manuals. This is more commonly presented as: 5.3 Motor O.N. is used for measuring the antiknock performance of spark-ignition engine fuels that contain oxygenates. 5.4 Motor O.N. is important in relation to the specifications for spark-ignition engine fuels used in stationary and other nonautomotive engine applications. 5.5 Motor O.N. is utilized to determine, by correlation equation, the Aviation method O.N. or performance number (lean-mixture aviation rating) of aviation spark-ignition engine fuel.1.1 This laboratory test method covers the quantitative determination of the knock rating of liquid spark-ignition engine fuel in terms of Motor octane number, including fuels that contain up to 25 % v/v of ethanol. However, this test method may not be applicable to fuel and fuel components that are primarily oxygenates.2 The sample fuel is tested in a standardized single cylinder, four-stroke cycle, variable compression ratio, carbureted, CFR engine run in accordance with a defined set of operating conditions. The octane number scale is defined by the volumetric composition of primary reference fuel blends. The sample fuel knock intensity is compared to that of one or more primary reference fuel blends. The octane number of the primary reference fuel blend that matches the knock intensity of the sample fuel establishes the Motor octane number. 1.2 The octane number scale covers the range from 0 to 120 octane number, but this test method has a working range from 40 to 120 octane number. Typical commercial fuels produced for automotive spark-ignition engines rate in the 80 to 90 Motor octane number range. Typical commercial fuels produced for aviation spark-ignition engines rate in the 98 to 102 Motor octane number range. Testing of gasoline blend stocks or other process stream materials can produce ratings at various levels throughout the Motor octane number range. 1.3 The values of operating conditions are stated in SI units and are considered standard. The values in parentheses are the historical inch-pounds units. The standardized CFR engine measurements continue to be in inch-pound units only because of the extensive and expensive tooling that has been created for this equipment. 1.4 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. For more specific hazard statements, see Section
8, 14.4.1, 15.5.1, 16.6.1, Annex A1, A2.2.3.1, A2.2.3.3(
Standard Test Method for Trace Impurities
in Monocyclic Aromatic Hydrocarbons by Gas Chromatography
(Withdrawn 2016) Standard Test Method for Determination of
Water in Petroleum Products, Lubricating Oils, and Additives by
Coulometric Karl Fischer Titration Standard Test Method for Hydroperoxide
Number of Aviation Turbine Fuels, Gasoline and Diesel Fuels Standard Specification for Reagent
Water Standard Test Method for Determination of
Octane Number of Spark-Ignition Engine Fuels by On-Line Direct
Comparison Technique (Includes all amendments and changes
3/27/2026). Standard Test Method for Research Octane
Number of Spark-Ignition Engine Fuel Standard Terminology Relating to Quality
and Statistics (Includes all amendments and changes 4/16/2024). Standard Test Method for Water in Organic
Liquids by Coulometric Karl Fischer Titration Standard Practice for Gravimetric
Calibration of Laboratory Volumetric Instruments Terminology Relating to Thermometry and
Hydrometry (Includes all amendments and changes 4/21/2026). C-39.1 Requirements for Electrical Analog
Indicating Instruments IP 224/02 Standard Practice for Manual Sampling of
Petroleum and Petroleum Products Standard Terminology Relating to
Petroleum Products, Liquid Fuels, and Lubricants (Includes all
amendments and changes 6/9/2026). Standard Practice for Automatic Sampling
of Petroleum and Petroleum Products (Includes all amendments and
changes 3/24/2023). Standard Specification for Automotive
Spark-Ignition Engine Fuel Standard Practice for Sampling and
Handling of Fuels for Volatility Measurement Standard Practice for Applying
Statistical Quality Assurance and Control Charting Techniques to
Evaluate Analytical Measurement System Performance (Includes all
amendments and changes 8/4/2026). Standard Test Method for Analysis of
High-Purity n-Heptane and Isooctane by Capillary Gas
Chromatography |
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