ASTM D5453-2009 866 Standard Test Method for Determination of Total Sulfur in Light Hydrocarbons Spark Ignition Engine Fuel Diesel Engine Fuel and Engine Oil by Ultraviolet Fluores.pdf
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1、Designation: D 5453 09Standard Test Method forDetermination of Total Sulfur in Light Hydrocarbons, SparkIgnition Engine Fuel, Diesel Engine Fuel, and Engine Oil byUltraviolet Fluorescence1This standard is issued under the fixed designation D 5453; the number immediately following the designation ind
2、icates the year oforiginal adoption 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. Scope*1.1 This test method covers the determinatio
3、n of total sulfurin liquid hydrocarbons, boiling in the range from approxi-mately 25 to 400C, with viscosities between approximately0.2 and 20 cSt (mm2/S) at room temperature.1.2 Three separate interlaboratory studies (ILS) on preci-sion, and three other investigations that resulted in an ASTMresear
4、ch report, have determined that this test method isapplicable to naphthas, distillates, engine oil, ethanol, FattyAcid Methyl Ester (FAME), and engine fuel such as gasoline,oxygen enriched gasoline (ethanol blends, E-85, M-85, RFG),diesel, biodiesel, diesel/biodiesel blends, and jet fuel. Samplescon
5、taining 1.0 to 8000 mg/kg total sulfur can be analyzed(Note 1).NOTE 1Estimates of the pooled limit of quantification (PLOQ) for theprecision studies were calculated. Values ranged between less than 1.0 andless than 5.0 mg/kg (see Section 8 and 15.1).1.3 This test method is applicable for total sulfu
6、r determi-nation in liquid hydrocarbons containing less than 0.35 %(m/m) halogen(s).1.4 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.5 This standard does not purport to address all of thesafety concerns, if any, associated
7、with its use. It is theresponsibility 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 warningstatements, see 3.1, 6.3, 6.4, Section 7, and 8.1.2. Referenced Documents2.1 ASTM Standards:2D
8、1298 Test Method for Density, Relative Density (SpecificGravity), or API Gravity of Crude Petroleum and LiquidPetroleum Products by Hydrometer MethodD 4052 Test Method for Density and Relative Density ofLiquids by Digital Density MeterD 4057 Practice for Manual Sampling of Petroleum andPetroleum Pro
9、ductsD 4177 Practice for Automatic Sampling of Petroleum andPetroleum ProductsD 6299 Practice for Applying Statistical Quality Assuranceand Control Charting Techniques to Evaluate AnalyticalMeasurement System Performance3. Summary of Test Method3.1 A hydrocarbon sample is either directly injected or
10、placed in a sample boat. The sample or boat, or both, is insertedinto a high temperature combustion tube where the sulfur isoxidized to sulfur dioxide (SO2) in an oxygen rich atmosphere.Water produced during the sample combustion is removed andthe sample combustion gases are next exposed to ultravio
11、let(UV) light. The SO2absorbs the energy from the UV light andis converted to excited sulfur dioxide (SO2*). The fluorescenceemitted from the excited SO2* as it returns to a stable state,SO2, is detected by a photomultiplier tube and the resultingsignal is a measure of the sulfur contained in the sa
12、mple.(WarningExposure to excessive quantities of ultraviolet(UV) light is injurious to health. The operator must avoidexposing any part of their person, especially their eyes, notonly to direct UV light but also to secondary or scatteredradiation that is present.)1This test method is under the juris
13、diction of ASTM Committee D02 onPetroleum Products and Lubricants and is the direct responsibility of SubcommitteeD02.03 on Elemental Analysis.Current edition approved June 15, 2009. Published July 2009. Originallyapproved in 1993. Last previous edition approved in 2008 as D 545308b.2For referenced
14、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 Changes section appears at the end of this standard.Copyright
15、ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.4. Significance and Use4.1 Some process catalysts used in petroleum and chemicalrefining can be poisoned when trace amounts of sulfur bearingmaterials are contained in the feedstocks. This test me
16、thod canbe used to determine sulfur in process feeds sulfur in finishedproducts, and can also be used for purposes of regulatorycontrol.5. Apparatus5.1 FurnaceAn electric furnace held at a temperature(1075 6 25C) sufficient to pyrolyze all of the sample andoxidize sulfur to SO2.5.2 Combustion TubeA
17、quartz combustion tube con-structed to allow the direct injection of the sample into theheated oxidation zone of the furnace or constructed so that theinlet end of the tube is large enough to accommodate a quartzsample boat. The combustion tube must have side arms for theintroduction of oxygen and c
18、arrier gas. The oxidation sectionshall be large enough (see Fig. 1) to ensure complete combus-tion of the sample. Fig. 1 depicts conventional combustiontubes. Other configurations are acceptable if precision is notdegraded.5.3 Flow ControlThe apparatus must be equipped withflow controllers capable o
19、f maintaining a constant supply ofoxygen and carrier gas.5.4 Drier TubeThe apparatus must be equipped with amechanism for the removal of water vapor. The oxidationreaction produces water vapor which must be eliminated priorto measurement by the detector. This can be accomplished witha membrane dryin
20、g tube, or a permeation dryer, that utilizes aselective capillary action for water removal.5.5 UV Fluorescence DetectorA qualitative and quantita-tive detector capable of measuring light emitted from thefluorescence of sulfur dioxide by UV light.5.6 Microlitre SyringeA microlitre syringe capable ofa
21、ccurately delivering 5 to 20-L quantities. The needle shall be50 mm (65 mm) long.5.7 Sample Inlet SystemEither of two types of sampleinlet systems can be used.5.7.1 Direct InjectionA direct injection inlet system mustbe capable of allowing the quantitative delivery of the materialto be analyzed into
22、 an inlet carrier stream which directs thesample into the oxidation zone at a controlled and repeatablerate. A syringe drive mechanism which discharges the samplefrom the microlitre syringe at a rate of approximately 1 L/s isrequired. For example, see Fig. 2.5.7.2 Boat Inlet SystemAn extended combus
23、tion tubeprovides a seal to the inlet of the oxidation area and is swept bya carrier gas. The system provides an area to position thesample carrying mechanism (boat) at a retracted positionFIG. 1 Conventional Combustion TubesD5453092removed from the furnace. The boat drive mechanism willfully insert
24、 the boat into the hottest section of the furnace inlet.The sample boats and combustion tube are constructed ofquartz. The combustion tube provides a cooling jacket for thearea in which the retracted boat rests awaiting sample intro-duction from a microlitre syringe. A drive mechanism whichadvances
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