ASTM D4737-2010 Standard Test Method for Calculated Cetane Index by Four Variable Equation《四变量公式法计算十六烷指数的标准试验方法》.pdf
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1、Designation: D4737 10Standard Test Method forCalculated Cetane Index by Four Variable Equation1This standard is issued under the fixed designation D4737; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A
2、number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope*1.1 The calculated Cetane Index by Four Variable Equationprovides a means for estimating the ASTM cetane number(Test Method D613) of disti
3、llate fuels from density anddistillation recovery temperature measurements. The valuecomputed from the equation is termed the Calculated CetaneIndex by Four Variable Equation.1.2 The Calculated Cetane Index by Four Variable Equationis not an optional method for expressingASTM cetane number.It is a s
4、upplementary tool for estimating cetane number whena result by Test Method D613 is not available and if cetaneimprover is not used. As a supplementary tool, the CalculatedCetane Index by Four Variable equation must be used with dueregard for its limitations.1.3 Procedure A is to be used for Specific
5、ation D975,Grades No. 1D S15, No. 1D S500, No. 1D S5000, No. 2DS15, No. 2D S5000, and No. 4D. This method for estimatingcetane number was developed by Chevron Research Co.2Procedure A is based on a data set including a relatively smallnumber of No. 1D fuels. Test Method D4737 Procedure Amay be less
6、applicable to No. 1D S15, No. 1D S500, and No.1D S5000 than to No. 2D grade S5000 or to No. 4D fuels.1.3.1 Procedure A has been verified as applicable to GradeNo. 2D S15 diesel fuels.31.4 Procedure B is to be used for Specification D975, GradeNo. 2D S500.1.5 The test method “Calculated Cetane Index
7、by FourVariable Equation” is particularly applicable to Grade 1DS5000, Grade No. 1D S500, Grade No. 2D S5000 and GradeNo. 2D S500 diesel fuel oils containing straight-run andcracked stocks, and their blends. It can also be used for heavierfuels with 90 % recovery points less than 382C and for fuelsc
8、ontaining derivatives from oil sands and oil shale.NOTE 1Sxx is the designation for maximum sulfur level specified forthe grade. For example, S500 grades are those with a maximum sulfurlimit of 500 ppm (g/g).1.6 Biodiesel blends are excluded from this test method,because they were not part of the da
9、tasets use to develop eitherProcedure A or B.1.7 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.8 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility o
10、f the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:4D86 Test Method for Distillation of Petroleum Products atAtmospheric PressureD613 Test Method for Cetan
11、e Number of Diesel Fuel OilD975 Specification for Diesel Fuel OilsD1298 Test Method for Density, Relative Density (SpecificGravity), or API Gravity of Crude Petroleum and LiquidPetroleum Products by Hydrometer MethodD2887 Test Method for Boiling Range Distribution ofPetroleum Fractions by Gas Chroma
12、tographyD4052 Test Method for Density, Relative Density, and APIGravity of Liquids by Digital Density MeterD6751 Specification for Biodiesel Fuel Blend Stock (B100)for Middle Distillate FuelsD6890 Test Method for Determination of Ignition Delayand Derived Cetane Number (DCN) of Diesel Fuel Oils byCo
13、mbustion in a Constant Volume ChamberD7170 Test Method for Determination of Derived CetaneNumber (DCN) of Diesel Fuel OilsFixed Range Injec-tion Period, Constant Volume Combustion ChamberMethod2.2 CEN Standards:51This test method is under the jurisdiction of ASTM Committee D02 onPetroleum Products a
14、nd Lubricants and is the direct responsibility of SubcommitteeD02.E0.02 on Diesel Fuel Oils.Current edition approved Aug. 1, 2010. Published September 2010. Originallyapproved in 1987. Last previous edition approved in 2009 as D473709a. DOI:10.1520/D4737-10.2Ingham, M. C., et al., “Improved Predicti
15、ve Equations for Cetane Number,”SAE Paper No 860250, Society of Automotive Engineers (SAE), 400 Common-wealth Dr., Warrendale, PA 15096-0001.3Supporting data (the analysis leading to the use of ProcedureAfor No. 2-D S15diesel fuels and to Procedure B) have been filed at ASTM International Headquar-t
16、ers and may be obtained by requesting Research Report RR:D02-1699.4For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM web
17、site.5Available from the National CEN members listed on the CEN website(www.cenorm.be) or from the CEN/TC 19 Secretariat (astmnen.nl).1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959,
18、 United States.EN 14214 Automotive fuels Fatty acid methyl esters(FAME) for diesel engines Requirements and testmethods3. Summary of Test Method3.1 Two correlations in SI units have been establishedbetween the ASTM cetane number and the density and 10 %,50 %, and 90 % distillation recovery temperatu
19、res of the fuel.Procedure A has been developed for diesel fuels meeting therequirements of Specification D975 Grades No. 1D S15, No.1D S500, No. 1D S5000, No. 2D S5000, and No. 4D. Ithas been found to be applicable to Grade No. 2D S15. Therelationship is given by the following equation:CCI 5 45.2 1
20、0.0892! T10N! 1 0.131 1 0.901!B!#T50N#1 0.05232 0.420!B!#T90N# 1 0.00049T10N!22 T90N!2# 1 107!B!1 60!B!2(1)where:CCI = Calculated Cetane Index by Four Variable Equa-tion,D = Density at 15C, g/mL determined by Test Meth-ods D1298 or D4052,DN = D - 0.85,B =e(-3.5)(DN)-1,T10= 10 % recovery temperature,
21、 C, determined byTest Method D86 and corrected to standard baro-metric pressure,T10N=T10- 215,T50= 50 % recovery temperature, C, determined byTest Method D86 and corrected to standard baro-metric pressure,T50N=T50- 260,T90= 90 % recovery temperature, C, determined byTest Method D86 and corrected to
22、standard baro-metric pressure, andT90N=T90- 310.3.2 The empirical equation for Procedure A of the Calcu-lated Cetane Index by Four Variable Equation was derivedusing a generalized least squares fitting technique whichaccounted for measurement errors in the independent variables(fuel properties) as w
23、ell as in the dependent variable (cetanenumber by Test Method D613). The data base consisted of1229 fuels including; commercial diesel fuels, refinery blend-ing components and fuels derived from oil sands, shale, andcoal. The analysis also accounted for bias amongst the indi-vidual sets of data comp
24、rising the database.3.3 Procedure B has been developed for diesel fuels meetingthe requirements of Specification D975 Grade No. 2D S500.The relationship is given by the following equation:3CCI 52399.90D! 1 0.1113 T10! 1 0.1212 T50! 1 0.0627 T90!1 309.33 (2)where:CCI = Calculated Cetane Index by Four
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