ASTM D4468-1985(2006) Standard Test Method for Total Sulfur in Gaseous Fuels by Hydrogenolysis and Rateometric Colorimetry《用还原法和比色法对气体燃料中总硫含量的试验方法》.pdf
《ASTM D4468-1985(2006) Standard Test Method for Total Sulfur in Gaseous Fuels by Hydrogenolysis and Rateometric Colorimetry《用还原法和比色法对气体燃料中总硫含量的试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D4468-1985(2006) Standard Test Method for Total Sulfur in Gaseous Fuels by Hydrogenolysis and Rateometric Colorimetry《用还原法和比色法对气体燃料中总硫含量的试验方法》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 4468 85 (Reapproved 2006)Standard Test Method forTotal Sulfur in Gaseous Fuels by Hydrogenolysis andRateometric Colorimetry1This standard is issued under the fixed designation D 4468; the number immediately following the designation indicates the year oforiginal adoption or, in the ca
2、se 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.1. Scope1.1 This test method covers the determination of sulfurgaseous fuels in the range from 0.001
3、to 20 parts per million byvolume (ppm/v).1.2 This test method may be extended to higher concentra-tion by dilution.1.3 This standard may involve hazardous materials, opera-tions, and equipment. This standard does not purport toaddress all of the safety concerns associated with its use. It isthe resp
4、onsibility of the user of this standard to establishappropriate safety and health practices and determine theapplicability of regulatory limitations prior to use. Specificprecautionary statements are given in 6.7, 6.8, and 7.3.2. Referenced Documents2.1 ASTM Standards:2D 1193 Specification for Reage
5、nt WaterD 1914 Practice for Conversion Units and Factors Relatingto Sampling and Analysis of AtmospheresD 4045 Test Method for Sulfur in Petroleum Products byHydrogenolysis and Rateometric Colorimetry3. Summary of Test Method3.1 The sample is introduced at a constant rate into aflowing hydrogen stre
6、am in a hydrogenolysis apparatus. Thesample and hydrogen are pyrolyzed at a temperature of 1000Cor above, to convert sulfur compounds to hydrogen sulfide(H2S). Readout is by the rateometric detection of the colori-metric reaction of H2S with lead acetate. Units used are ppm/v,which is equivalent to
7、micromoles/mole.4. Significance and Use4.1 This test method can be used to determine specification,or regulatory compliance to requirements, for total sulfur ingaseous fuels. In gas processing plants, sulfur can be acontaminant and must be removed before gas is introduced intogas pipelines. In petro
8、chemical plants, sulfur is a poison formany catalysts and must be reduced to acceptable levels,usually in the range from 0.01 to 1 ppm/v. This test methodmay also be used as a quality-control tool for sulfur determi-nation in finished products, such as propane, butane, ethane,and ethylene.5. Apparat
9、us5.1 Pyrolysis FurnaceA furnace that can provide anadjustable temperature of 900 to 1300C in a quartz or ceramictube of 5 mm or larger tube (ID) is required for pyrolysis of thesample. (See Fig. 1.) The flow system is to be a fluorocarbonor other material inert to H2S and other sulfur compounds. (S
10、eeFig. 1.)5.2 Rateometric H2S ReadoutHydrogenolysis productscontain H2S in proportion to sulfur in the sample. The H2Sconcentration is determined by measuring rate of change ofreflectance of a tape impregnated with lead acetate caused bydarkening when lead sulfide is formed. Rateometric electron-ics
11、, adapted to provide first derivative output, allows sufficientsensitivity to measure to 0.001 ppm/v. (See Fig. 2.)5.3 RecorderA suitable chart recorder may be used for apermanent record of analysis.6. Reagents and Materials6.1 Purity of ChemicalsReagent grade unless specifiedotherwise.6.2 Purity of
12、 WaterUnless otherwise indicated, referenceto water shall be understood to mean Type II, reagent gradewater, conforming to Specification D 1193.6.3 Sensing TapeLead acetate impregnated analyticalquality filter paper shall be used.6.4 Acetic Acid (5 %)Mix 1 part by volume reagent gradeglacial acetic
13、acid with 19 parts water to prepare 5 % aceticacid solution.1This test method is under the jurisdiction ofASTM Committee D03 on GaseousFuels and is the direct responsibility of Subcommittee D03.05 on Determination ofSpecial Constituents of Gaseous Fuels.Current edition approved June 1, 2006. Publish
14、ed August 2006. Originallyapproved in 1985. Last previous edition approved in 2000 as D446885 (2000).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 D
15、ocument Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.FIG. 1 Hydrogenolysis Flow DiagramFIG. 2 Photorateometry H2S ReadoutD 4468 85 (2006)26.5 Gastight SyringeA gastight 0.1- and 0.5-mL syringefor pr
16、eparing calibration standard. Volumetric measurementaccuracy of the syringe shall be 1 % or better.6.6 Piston CylinderUse a 10-Lacrylic cylinder with a freemoving piston and silicone rubber “O” ring lubricated with afree-flowing silicone lubricant. This cylinder is used to prepareppm/v calibration s
17、amples volumetrically.6.7 Carbonyl Sulfide (COS)Alecture bottle of COS, 99 %purity, with a needle valve connected to the lecture bottleoutlet. Connect 2 ft of tygon tubing to allow insertion of ahypodermic syringe to withdraw pure COS while tubing ispurged from the lecture bottle. Other sulfur compo
18、unds can beused with adequate odor control. If the sulfur compound hastwo sulfur atoms per molecule, reduce the volume by one half.(WarningWork with COS should be done in a well-ventilated area, or under a fume hood.)6.8 Hydrogen GasUse sulfur-free hydrogen of laboratorygrade. (WarningHydrogen has w
19、ide explosive limits whenmixed with air. See 1.3 regarding precautions.)6.9 Carrier Gas for Calibration StandardsUse sulfur-freelaboratory grade bottled gas of the same type or similar densityas the gas to be analyzed or calibrate the flowmeter to establishcorrect flow setting for an available carri
20、er gas. Test, as in 7.5,adding the carrier gas flow to the hydrogen flow.6.10 Purge GasSulfur-free purge gas, nitrogen, CO2,orother inert gas. Commercial grade cylinder gas is satisfactory.7. Preparation of Apparatus7.1 Turn on the furnace and allow temperature to stabilize at1000C. If thiophenic su
21、lfur could be present, use 1300Ctemperature setting.NOTE 1Reduced operating temperature extends furnace life.Thiophenic compound conversion increases from about 60 % at 1000C to100 % at 1300C.7.2 Connect all flow tubing between components and fillhumidifier inside the cabinet to 30 mL with a 5 % by
22、volumeacetic acid solution. Purge all flow systems with inert gas thenclose valve. Check all connections for leaks with soap solutionand repair any leaks. Connect hydrogen and set flow at 200mL/min and allow temperature to stabilize. Sample flow mustbe13 or less of the H2flow. Total flow can be up t
23、o 500mL/min, except when the sample has thiophenic compoundsthat require 200 mL/min of H2flow for conversion. Make finaltemperature adjustment to 1000 6 15C or a minimum 1300Cif the sample contains thiophenic sulfur compounds.7.3 Install sensing tape and turn H2S readout analyzer on.Use adequate saf
24、ety precautions in handling lead acetate tape.7.4 Adjust the zero of the analyzer indicator meter (andrecorder if used) to desired position with no flow. This shouldbe performed with span at maximum.7.5 Test hydrogen purity by turning on hydrogen flow andnoting any change in zero position after 5 mi
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