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ASTM-D6890 2010

$44.96

D6890-10a Standard Test Method for Determination of Ignition Delay and Derived Cetane Number (DCN) of Diesel Fuel Oils by Combustion in a Constant Volume Chamber

Published By Publication Date Number of Pages
ASTM 2010 16
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1.1 This automated laboratory test method covers the quantitative determination of the ignition characteristics of conventional diesel fuel oil, oil-sands based fuels, blends of fuel containing biodiesel material, diesel fuel oils containing cetane number improver additives, and is applicable to products typical of ASTM Specification D975 grades No. 1-D and 2-D regular and low-sulfur diesel fuel oils, European standard EN 590, and Canadian standards CAN/CGSB-3.517 and 3.6-2000. The test method may also be applied to the quantitative determination of the ignition characteristics of diesel fuel blending components.

1.2 This test method measures the ignition delay and utilizes a constant volume combustion chamber with direct fuel injection into heated, compressed air. An equation correlates an ignition delay determination to cetane number by Test Method D613 , resulting in a derived cetane number (DCN).

1.3 This test method covers the ignition delay range from 3.1 to 6.5 ms (64 to 33 DCN). The combustion analyzer can measure shorter and longer ignition delays, but precision may be affected. For these shorter or longer ignition delays the correlation equation for DCN is given in Appendix X2. There is no information about how DCNs outside the 33 to 64 range compare to Test Method D613 cetane numbers.

1.4 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

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.

PDF Catalog

PDF Pages PDF Title
1 Scope
Referenced Documents
2 Terminology
Summary of Test Method
Significance and Use
3 Interferences
Apparatus
Reagents and Materials
4 Sampling and Test Specimen Preparation
Basic Apparatus Settings and Standard Operating Conditions
FIG. 1
5 Calibration and Quality Control Testing
6 Procedure
Calculation
7 Report
Precision and Bias
Keywords
TABLE 1
TABLE 2
8 A1. HAZARDS INFORMATION
A1.1 Introduction
A1.2
A1.3
A1.4
A1.5
A1.6
A1.7
A2. COMBUSTION ANALYZER EQUIPMENT DESCRIPTION AND SPECIFICATIONS
A2.1
A2.2
TABLE 3
9 A2.3
FIG. A2.1
10 A2.4
A2.5
A2.6 Circulating Coolant System
FIG. A2.2
11 A2.7 Optional Equipment
A3. COMBUSTION ANALYZER OPERATING FUNCTIONS
A3.1 Starting and Warm-up Procedure
A3.2 Fuel Injection System Procedure
12 A3.3 Pressure Sensor Assembly Cleaning Procedure
A3.4 Alternative Pressure Sensor Assembly Cleaning Procedure
13 A3.5 Combustion Chamber Sealing Integrity Check Procedure
A3.6 Combustion Analyzer Shut Down Procedure
A4. SUPPLEMENTAL PROCEDURE INFORMATION
A4.1 Test Sequence
14 A5. DERIVATION AND MAINTENANCE OF DCN EQUATION
A5.1
A5.2
A5.3
X1. EXAMPLE OF TEST OUTPUT
FIG. A4.1
15 FIG. X1.1
16 X2. CORRELATION EQUATION
X2.1
ASTM-D6890 2010
$44.96