ASTM D4891-2013 Standard Test Method for Heating Value of Gases in Natural Gas and Flare Gases Range by Stoichiometric Combustion《用化学计量燃烧法测定天然气和火炬气中气体热值的标准试验方法》.pdf
《ASTM D4891-2013 Standard Test Method for Heating Value of Gases in Natural Gas and Flare Gases Range by Stoichiometric Combustion《用化学计量燃烧法测定天然气和火炬气中气体热值的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D4891-2013 Standard Test Method for Heating Value of Gases in Natural Gas and Flare Gases Range by Stoichiometric Combustion《用化学计量燃烧法测定天然气和火炬气中气体热值的标准试验方法》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D4891 89 (Reapproved 2006)D4891 13Standard Test Method forHeating Value of Gases in Natural Gas and Flare GasesRange by Stoichiometric Combustion1This standard is issued under the fixed designation D4891; 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 () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the determination of the heating value of natur
3、al gases and similar gaseous mixtures within therange of composition shown in Table 1., and Table 2 that covers flare components but is not intended to limit the components tobe measured in flare gases.1.2 This standard involves combustible gases. It is not the purpose of this standard to address th
4、e safety concerns, if any,associated with their use. It is the responsibility of the user of this standard to establish appropriate safety and health practicesand determine the applicability of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D1826 Test Method for Calor
5、ific (Heating) Value of Gases in Natural Gas Range by Continuous Recording CalorimeterE691 Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method2.2 EPA Standard:3EPA-600 /2-85-106 Evaluation of the Efficiency of Industrial Flares: Flare Head Design and Gas Comp
6、osition3. Terminology3.1 All of the terms defined in Test Method D1826 are included by reference.3.2 Definitions of Terms Specific to This Standard:3.2.1 combustion ratioratio, nthe ratio of combustion air to gaseous fuel.3.2.2 stoichiometric ratiothe combustion ratio when the quantity of combustion
7、 air is just sufficient to convert all of thecombustibles in the fuel to water and carbon dioxide.3.2.2 burned gas parameterparameter, na property of the burned gas after combustion which is a function of thecombustion ratio.3.2.3 critical combustion ratioratio, n for a specific burned gas parameter
8、, the combustion ratio at which a plot of burnedgas parameter versus combustion ratio has either maximum value or maximum slope.3.2.4 combustion air requirement index (CARI), nis the amount of air required for complete combustion of the gas beingmeasured and can be used to index against other measur
9、ed values such as the Wobbe Index or Heating Value.3.2.5 stoichiometric ratio, nthe combustion ratio when the quantity of combustion air is just sufficient to convert all of thecombustibles in the fuel to water and carbon dioxide.4. Summary of Test Method4.1 Air is mixed with the gaseous fuel to be
10、tested. The mixture is burned and the air-fuel ratio is adjusted so that essentiallya stoichiometric proportion of air is present. More exactly, the adjustment is made so that the air-fuel ratio is in a constant1 This test method is under the jurisdiction of ASTM Committee D03 on Gaseous Fuels and i
11、s the direct responsibility of Subcommittee D03.03 on Determination ofHeating Value and Relative Density of Gaseous Fuels.Current edition approved June 1, 2006May 1, 2013. Published June 2006May 2013. Originally approved in 1989. Last previous edition approved in 2001 asD489189 (2001). DOI: 10.1520/
12、D4891-89R06.2 For referencedASTM standards, visit theASTM website, www.astm.org, or contactASTM Customer Service at serviceastm.org. For Annual Book of ASTM Standardsvolume information, refer to the standards Document Summary page on the ASTM website.3 Available from United States Environmental Prot
13、ection Agency (EPA), Ariel Rios Bldg., 1200 Pennsylvania Ave., NW, Washington, DC 20004, http:/www.epa.gov.This document is not an ASTM standard and is intended only to provide the user of an ASTM standard an indication of what changes have been made to the previous version. Becauseit may not be tec
14、hnically possible to adequately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current versionof the standard as published by ASTM is to be considered the official document.Copyright ASTM International, 100 Barr Harbor Drive, PO
15、 Box C700, West Conshohocken, PA 19428-2959. United States1TABLE 1 Natural Gas Components and Range of CompositionCoveredCompound Concentration Range, mole, %Helium 0.01 to 5Nitrogen 0.01 to 20Carbon dioxide 0.01 to 10Methane 50 to 100Ethane 0.01 to 20Propane 0.01 to 20n-butane 0.01 to 10isobutane 0
16、.01 to 10n-pentane 0.01 to 2Isopentane 0.01 to 2Hexanes and heavier 0.01 to 2TABLE 2 Natural Gas Components and Range of CompositionCoveredACompound CAS NumberVolatile AnalytesAcetone 67-64-1Acetonitrile 75-05-8Acrolein 107-05-8Acrylonitrile 107-13-1Benzene 71-43-2 21,3-Butadiene 106-99-0Carbon disu
17、lfide 75-15-0Chlorobenzene 108-90-7Cumene(isopropylbenzene)98-82-81,2-Dibromoethane 106-93-4Ethylbenzene 100-41-4 2,2,4Hexane 110-54-3Methanol 67-56-1Methyl isobutyl ketone 108-10-1Methyl t-butyl ether 1634-04-4Methylene chloride 75-09-2Nitrobenzene 98-95-3Nitropropane 79-46-9Pentane2 109-66-0Styren
18、e 100-42-5Tetrachloroethene 127-18-4Toluene 108-88-3Trichloroethene 79-01-6Trimethylpentane 2 540-84-1Xylenes (mixed isomers) 1330-20-7Trimethylpentane 2 540-84-1Xylenes (mixed isomers) 1330-20-7Semi-volatile AnalytesAcenaphthene 83-32-9Acenaphthylene 208-96-8Aniline 62-53-3Anthracene 120-12-7Benzid
19、ine1 92-87-5Benzaanthracene 56-55-3Benzobfluoranthene 205-99-2Benzokfluoranthene 207-08-9Benzog,h,iperylene 191-24-2Benzoapyrene 50-32-8Benzoepyrene2 192-97-2Biphenyl2, 92-52-4Cresol (mixed isomers) 1319-77-3Chrysene 218-01-9Dibenza,hanthracene 53-70-3Dibenzofuran 132-64-9Dibenzo(a,e)pyrene 192-65-4
20、3,3- Dimethoxybenzidine 119-90-4Dimethylaminobenzene 60-11-77,12-Dimethylbenz(a)anthracene57-97-63,3- Dimethylbenzidine 119-93-7,-Dimethylphenethylamine122-09-82,4-Dimethylphenol 105-67-9Fluoranthene 206-44-0Fluorene 86-73-7Indeno(1,2,3-cd)pyrene 193-39-5Isophorone 78-59-13-Methylcholanthrene 56-49-
21、52-Methylnaphthalene 91-57-6Naphthalene 91-20-3Perylene2 198-55-0Phenanthrene 85-01-8Phenol 108-95-21,4-Phenylenediamine 106-50-3Pyrene 129-00-0o-Toluidine 95-53-4AldehydesMethanol 67-56-1Formaldehyde 50-00-0Acetaldehyde 75-07-0D4891 132proportion to the stoichiometric ratio whichthat is a relative
22、measure of the heating value. To set this ratio, a characteristic propertyof the burned gas is measured, such as temperature or oxygen concentration.5. Significance and Use5.1 This test method provides an accurate and reliable procedure to measure the total heating value of a fuel gas, on a continuo
23、usbasis, which is used for regulatory compliance, custody transfer, and process control.5.2 Some instruments which conform to the requirements set forth in this test method can have response times on the order of1 min or less and can be used for on-line measurement and control.5.3 The method is sens
24、itive to the presence of oxygen and nonparaffin fuels. For components not listed and composition rangesthat fall outside those in Table 1 and Table 2, modifications in the method and changes to the calibration gas or gasses being usedmay be required to obtain correct results.6. Apparatus6.1 A suitab
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