ASTM D7165-2006 Standard Practice for Gas Chromatograph Based On-line At-line Analysis for Sulfur Content of Gaseous Fuels《基于On-line At-line分析的气体色谱法测定气体燃料中硫含量的标准实施规范》.pdf
《ASTM D7165-2006 Standard Practice for Gas Chromatograph Based On-line At-line Analysis for Sulfur Content of Gaseous Fuels《基于On-line At-line分析的气体色谱法测定气体燃料中硫含量的标准实施规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM D7165-2006 Standard Practice for Gas Chromatograph Based On-line At-line Analysis for Sulfur Content of Gaseous Fuels《基于On-line At-line分析的气体色谱法测定气体燃料中硫含量的标准实施规范》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 7165 06Standard Practice forGas Chromatograph Based On-line/At-line Analysis forSulfur Content of Gaseous Fuels1This standard is issued under the fixed designation D 7165; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revisi
2、on, 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.1. Scope1.1 This practice is for the determination of volatilesulfur-containing compounds in high methane content
3、 gaseousfuels such as natural gas using on-line/at-line instrumentation,and continuous fuel monitors (CFMS). It has been successfullyapplied to other types of gaseous samples including air,digester, landfill, and refinery fuel gas. The detection range forsulfur compounds, reported as picograms sulfu
4、r, based uponthe analysis ofa1ccsample, is one hundred (100) to onemillion (1,000,000). This is equivalent to 0.1 to 1,000 mg/m3.1.2 This practice does not purport to measure all sulfurspecies in a sample. Only volatile compounds that are trans-ported to an instrument under the measurement condition
5、sselected are measured.1.3 The values stated in SI units are standard. The valuesstated in inch-pound units are for information only.1.4 This practice does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this practice to estab
6、lish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 1072 Test Method for Total Sulfur in Fuel GasesD 1945 Test Method for Analysis of Natural Gas by GasChromatographyD 3606 Test Method for
7、Determination of Benzene andToluene in Finished Motor and Aviation Gasoline by GasChromatographyD 4084 Test Method for Analysis of Hydrogen Sulfide inGaseous Fuels (Lead Acetate Reaction Rate Method)D 4468 Test Method for Total Sulfur in Gaseous Fuels byHydrogenolysis and Rateometric ColorimetryD 46
8、26 Practice for Calculation of Gas ChromatographicResponse FactorsD 4810 Test Method for Hydrogen Sulfide in Natural GasUsing Length-of-Stain Detector TubesD 5504 Test Method for Determination of Sulfur Com-pounds in Natural Gas and Gaseous Fuels by Gas Chro-matography and ChemiluminescenceD 6228 Te
9、st Method for Determination of Sulfur Com-pounds in Natural Gas and Gaseous Fuels by Gas Chro-matography and Flame Photometric DetectionE 594 Practice for Testing Flame Ionization Detectors Usedin Gas or Supercritical Fluid Chromatography3. Terminology3.1 Definitions:3.1.1 direct samplingSampling wh
10、ere there is no directconnection between the medium to be sampled and theanalytical unit.3.1.2 in-line instrumentInstrument whose active elementis installed in the pipeline and measures at pipeline conditions.3.1.3 on-line instrumentAutomated instrument thatsamples gas directly from the pipeline, bu
11、t is installed exter-nally.3.1.4 at-line instrumentinstrument requiring operator in-teraction to sample gas directly from the pipeline.3.1.5 continuous fuel monitor (CFM)Instrument thatsamples gas directly from the pipeline on a continuous orsemi-continuous basis.3.1.6 total reduced sulfur (TRS)Summ
12、ation of sulfurspecies where the sulfur oxidation number is 2, excludingsulfur dioxide, sulfones, and other inorganic sulfur compounds.This includes but is not limited to mercaptans, sulfides, anddisulfides.3.1.7 near-real time monitoring systemsMonitoring sys-tem where measurement occurs soon after
13、 sample flow throughthe system or soon after sample extraction. The definition of anear real time monitoring system can be application specific.4. Summary of Practice4.1 A representative sample of the gaseous fuel is extractedfrom a process pipe or pipeline and is transferred in a timelymanner to an
14、 analyzer inlet system. The sample is conditioned1This practice is under the jurisdiction of ASTM Committee D03 on GaseousFuels and is the direct responsibility of Subcommittee D03.12 on On-Line/At-LineAnalysis of Gaseous Fuels.Current edition approved Jan. 15, 2006. Published January 2006.2For refe
15、renced 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.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, Wes
16、t Conshohocken, PA 19428-2959, United States.with minimum impact on sulfur content. A precisely measuredvolume of sample is injected into the analyzer. Excess processor pipeline sample is vented or is returned to the process streamdependant upon application and regulatory requirements.4.2 Sample con
17、taining carrier gas is fed to a gas chromato-graph where the components are separated using either apacked or capillary column. Measurement is performed using asuitable sulfur detection system.4.3 Calibration, precision, calibration error, performanceaudit tests, maintenance methodology and miscella
18、neous qual-ity assurance procedures are conducted to determine analyzerperformance characteristics and validate both the operation andthe quality of generated results.5. Significance and UseOn-line, at-line, in-line, CFMS, and other near-real timemonitoring systems that measure fuel gas characterist
19、ics, suchas the sulfur content, are prevalent in the natural gas and fuelgas industries. The installation and operation of particularsystems vary on the specific objectives, contractual obligations,process type, regulatory requirements, and internal perfor-mance requirements needed by the user. This
20、 standard isintended to provide guidelines for standardized start-up proce-dures, operating procedures, and quality assurance practices foron-line, at-line, in-line, CFMS, and other near-real time gaschromatographic based sulfur monitoring systems used todetermine fuel gas sulfur content. For measur
21、ement of gaseousfuel properties using laboratory based methods the user isreferred to Test Methods D 1072, D 1945, D 4084, D 4468,D 4810 and Practices D 4626, E 594.6. Apparatus6.1 InstrumentAny gas chromatographic based instru-ment of standard manufacture, with hardware necessary forinterfacing to
22、a natural gas or other fuel gas pipeline andcontaining all features necessary for the intended application(s)can be used.6.1.1 The chromatographic parameters must be capable ofobtaining retention time repeatability of 0.05 min. (3 sec.).Instrumentation must meet the performance characteristics forre
23、peatability and precision without encountering unacceptableinterference or bias. The components coming in contact withsample, such as tubing and valving, must be passivated orconstructed of inert materials to ensure an accurate sulfur gasmeasurement.6.2 Sample Inlet SystemA sample inlet system capab
24、le ofoperating continuously above the maximum column tempera-ture is necessary. A variety of sample inlet configurations canbe used including but not limited to on-column systems andsplit/splitless injection system capable of splitless operationand split control from 10:1 up to 50:1. An automated ga
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