ASTM D1840-2003 Standard Test Method for Naphthalene Hydrocarbons in Aviation Turbine Fuels by Ultraviolet Spectrophotometry《紫外线分光光度法测定航空涡轮机燃料中萘烃的标准试验方法》.pdf
《ASTM D1840-2003 Standard Test Method for Naphthalene Hydrocarbons in Aviation Turbine Fuels by Ultraviolet Spectrophotometry《紫外线分光光度法测定航空涡轮机燃料中萘烃的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D1840-2003 Standard Test Method for Naphthalene Hydrocarbons in Aviation Turbine Fuels by Ultraviolet Spectrophotometry《紫外线分光光度法测定航空涡轮机燃料中萘烃的标准试验方法》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 1840 03An American National StandardStandard Test Method forNaphthalene Hydrocarbons in Aviation Turbine Fuels byUltraviolet Spectrophotometry1This standard is issued under the fixed designation D 1840; the number immediately following the designation indicates the year oforiginal ado
2、ption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.This standard has been approved for use by agencies of the Department of Defense.1
3、. Scope*1.1 This test method covers the determination, by ultravioletspectrophotometry, of the total concentration of naphthalene,acenaphthene, and alkylated derivatives of these hydrocarbonsin jet fuels. This test method is designed to analyze fuelscontaining not more than 5 % of such components an
4、d havingend points below 315C (600F); however, the range ofconcentrations used in the interlaboratory test programs whichestablished the precision statements for this test method were0.03 to 4.25 volume % for ProcedureA, and 0.08 to 5.6 volume% for Procedure B. This test method determines the maximu
5、mamount of naphthalenes that could be present.1.2 The values stated in SI units are to be regarded as thestandard. The values stated in inch-pound units are for infor-mation only.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is therespon
6、sibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. For specificwarning statements, see 8.1 and 8.2.2. Referenced Documents2.1 ASTM Standards:2E 131 Terminology Relating to Molecular Spec
7、troscopyE 169 Practices for General Techniques of Ultraviolet-Visible Quantitative AnalysisE 275 Practice for Describing and Measuring Performanceof Ultraviolet, Visible, and Near-Infrared Spectrophotom-eters3. Terminology3.1 Definitions:3.1.1 Definitions of terms and symbols relating to absorp-tion
8、 spectroscopy in this test method shall conform to Termi-nology E 131. Terms of particular significance are the follow-ing:3.1.1.1 radiant energy, nenergy transmitted as electro-magnetic waves.3.1.1.2 radiant power, P, nthe rate at which energy istransported in a beam of radiant energy.3.2 Definitio
9、ns of Terms Specific to This Standard:3.2.1 absorbance, A, nthe molecular property of a sub-stance that determines its ability to take up radiant power,expressed byA 5 log101/T! 52log10T (1)where:T = transmittance as defined in 3.2.5.3.2.1.1 DiscussionIt may be necessary to correct theobserved trans
10、mittance (indicated by the spectrophotometer)by compensating for reflectance losses, solvent absorptionlosses, or refraction effects.3.2.2 absorptivity, a, nthe specific property of a substanceto absorb radiant power per unit sample concentration and pathlength, expressed bya 5 A/bc (2)where:A = abs
11、orbance defined in 3.2.1,b = sample cell path length, andc = quantity of absorbing substance contained in a unitvolume of solvent.3.2.2.1 DiscussionQuantitative ultraviolet analyses arebased upon the absorption law, known as Beers law. The lawstates that the absorbance of a homogeneous sample contai
12、ning1This test method is under the jurisdiction of ASTM Committee D02 onPetroleum Products and Lubricants and is the direct responsibility of SubcommitteeD02.04.0F on Absorption Spectroscopic Methods.Current edition approved Nov. 1, 2003. Published November 2003. Originallyapproved in 1961. Last pre
13、vious edition approved in 2002 as D 1840-02.2For 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 website.1*A Summary of Ch
14、anges section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.an absorbing substance is directly proportional to the concen-tration of the absorbing substance at a single wavelength,expressed byA 5
15、abc (3)where:A = absorbance as defined in 3.2.1,a = absorptivity as defined in 3.2.2,b = sample cell path length, andc = quantity of absorbing substance contained in a unitvolume of solvent.3.2.3 concentration, c, nthe quantity of naphthalene hy-drocarbons in grams per litre of isooctane.3.2.4 sampl
16、e cell path length, b, nthe distance, in centi-metres, measured in the direction of propagation of the beam ofradiant energy, between the surfaces of the specimen on whichthe radiant energy is incident and the surface of the specimenfrom which it is emergent.3.2.4.1 DiscussionThis distance does not
17、include thethickness of the cell in which the specimen is contained.3.2.5 transmittance, T, nthe molecular property of asubstance that determines its transportability of radiant powerexpressed byT 5 P/Po(4)where:P = radiant power passing through the sample, andPo= radiant power incident upon the sam
18、ple.4. Summary of Test Method4.1 The total concentration of naphthalenes in jet fuels isdetermined by measurement of the absorbance at 285 nm of asolution of the fuel at known concentration.5. Significance and Use5.1 This test method for naphthalene hydrocarbons is one ofa group of tests used to ass
19、ess the combustion characteristics ofaviation turbine fuels of the kerosene boiling range. Thenaphthalene hydrocarbon content is determined because naph-thalenes, when burned, tend to have a relatively larger contri-bution to a sooty flame, smoke, and thermal radiation thansingle ring aromatics.6. I
20、nterferences6.1 Interferences add to the apparent naphthalene content.Phenanthrenes, dibenzothiophenes, biphenyls, ben-zothiophenes, and anthracenes interfere if present. The endpoint limitation of 315C will minimize this interferenceexcept for benzothiophenes and biphenyls. The contribution tomeasu
21、red naphthalene content by the presence of 1 % of suchinterfering compounds can be estimated from Table 1.6.2 Saturated hydrocarbons, olefins, thiophenes, and alkylor cycloalkyl derivatives of benzene will not interfere.7. Apparatus7.1 Spectrophotometer, equipped to measure the absorbanceof solution
22、s in the spectral region 240 to 300 nm with a spectralslit width of 1 nm or less. Wavelength measurements shall berepeatable and known to be accurate within 0.1 nm or less asmeasured by mercury emission line at 253.65 nm or theabsorption spectrum of either holmium oxide glass at 287.5 nmor holmium o
23、xide solution at 287.1 nm. At the 0.4 absorbancelevel in the spectral region between 240 and 300 nm, absor-bance measurements shall be repeatable within 60.5 % orbetter. In the absorbance range encompassing 0.2 to 0.8, thephotometric accuracy shall not differ by more than 60.5 % ofsamples whose abso
24、rbance has been established by a standard-izing laboratory.7.1.1 DiscussionMany manufacturers provide secondarystandards, traceable to NIST primary standards, for checkingthe wavelength accuracy and photometric accuracy of spectro-photometers. These materials may be used to verify spectro-photometer
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