ASTM D6721-2001(2006) Standard Test Method for Determination of Chlorine in Coal by Oxidative Hydrolysis Microcoulometry《氧化水解微库仑分析法测定煤中氯含量的标准试验方法》.pdf
《ASTM D6721-2001(2006) Standard Test Method for Determination of Chlorine in Coal by Oxidative Hydrolysis Microcoulometry《氧化水解微库仑分析法测定煤中氯含量的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D6721-2001(2006) Standard Test Method for Determination of Chlorine in Coal by Oxidative Hydrolysis Microcoulometry《氧化水解微库仑分析法测定煤中氯含量的标准试验方法》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 6721 01 (Reapproved 2006)Standard Test Method forDetermination of Chlorine in Coal by Oxidative HydrolysisMicrocoulometry1This standard is issued under the fixed designation D 6721; the number immediately following the designation indicates the year oforiginal adoption or, in the case
2、 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 totalchlorine in coal.2. Referenced Documents2
3、.1 ASTM Standards:2D 2013 Practice for Preparing Coal Samples for AnalysisD 3173 Test Method for Moisture in theAnalysis Sample ofCoal and CokeD 3180 Practice for Calculating Coal and Coke Analysesfrom As-Determined to Different BasesD 4621 Guide for Quality Management in an OrganizationThat Samples
4、 or Tests Coal and CokeD 5142 Test Methods for Proximate Analysis of the Analy-sis Sample of Coal and Coke by Instrumental ProceduresE 29 Practice for Using Significant Digits in Test Data toDetermine Conformance with SpecificationsE 691 Practice for Conducting an Interlaboratory Study toDetermine t
5、he Precision of a Test Method2.2 Other StandardsISO 5725-6:1994 Accuracy of measurement methods andresults-Part 6: Use in practice of accuracy values33. Summary of Test Method3.1 A 5.00 to 40.00 mg sample of coal is combusted withtungsten accelerator in a humidified oxygen gas flow, at 900C.Halogens
6、 are oxidized and converted to hydrogenated halides,which are flushed into a titration cell where they accumulate.Chlorine is converted to hydrochloric acid. Once the chloride iscaptured in the electrolyte of the titration cell, it can bequantitatively determined by microcoulometery, where chlo-ride
7、 ions react with silver ions present in the electrolyte. Thesilver ion thus consumed is coulometrically replaced and thetotal electrical work needed to replace it is proportional to thechloride in the test sample.4. Significance and Use4.1 This test method permits measurements of the chlorinecontent
8、 of coals.5. Interferences5.1 Bromides and iodides, if present are calculated aschloride. However, fluorides are not detected by this testmethod.6. Apparatus6.1 Hydrolysis Furnace, which can maintain a minimumtemperature of 900C.6.2 Hydrolysis Tube, made of quartz and constructed suchthat when the s
9、ample is combusted in the presence of tungstenaccelerator and humidified oxygen, the byproducts of combus-tion are swept into a humidified hydrolysis zone. The inlet endshall allow for the introduction and advancement of the sampleboat into the heated zone. The inlet shall have a side arm for theint
10、roduction of the humidified oxygen gas. The hydrolysis tubemust be of ample volume, and have a heated zone with quartzwool so that complete hydrolysis of the halogens is ensured.6.3 Titration Cell, containing a reference electrode, a work-ing electrode, and a silver sensor electrode, a magnetic stir
11、reras well as an inlet from the hydrolysis tube.6.4 Microcoulometer, capable of measuring the potential ofthe sensing-reference electrode pair, comparing this potentialwith a bias potential, and amplifying the difference to theworking electrode pair to generate current. The microcoulom-eter output v
12、oltage should be proportional to the generatingcurrent.6.5 Controller, with connections for the reference, working,and sensor electrodes, for setting operating parameters and fordata integration.1This test method is under the jurisdiction of ASTM Committee D05 on Coaland Coke and is the direct respo
13、nsibility of Subcommittee D05.29 on MajorElements in Ash and Trace Elements of Coal.Current edition approved April 1, 2006. Published April 2006. Originallyapproved in 2001. Last previous edition approved in 2001 as D 6721 01.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orco
14、ntact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from International Organization for Standardization 1 Rue deVaremb, Case Postale 56, CH-1211, Geneva 20, Switzerland1Copyrig
15、ht ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.6.6 Hydration Tube, containing water, positioned before thegas inlet on the side arm of the combustion tube, through whichoxygen gas bubbles to provide a hydrated gas flow.6.7 Dehydration Tube,
16、 positioned at the end of the hydroly-sis tube so that effluent gases are bubbled through a 95 %sulfuric acid solution. Water vapor is subsequently trappedwhile other gases flow into the titration cell.6.8 Gas-Tight Sampling Syringe, having a 50 L capacity,capable of accurately delivering 10 to 40 L
17、 of standardsolution.6.9 Sample Boats, made of quartz, ceramic or platinum.6.10 Balance, analytical, with a sensitivity to 0.00001 g.7. Reagents and Materials7.1 Purity of ReagentsReagent grade chemicals shall beused in all tests. Unless otherwise indicated, it is intended thatall reagents shall con
18、form to the specification of the Committeeon Analytical Reagents of the American Chemical Society,where such specifications are available. Other grades may beused, provided that the reagent is of sufficiently high purity topermit its use without lessening the accuracy of the determi-nation.7.2 Purit
19、y of WaterUnless otherwise indicated, referencesto water shall be understood to mean reagent water conformingto Specification D 1193, Type II or Type III.7.3 Acetic Acid (sp gr. 1.05), glacial acetic acid(CH3COOH).7.4 Argon or Helium, carrier gas, minimum 99.9 % purity.7.5 Sodium Acetate, anhydrous,
20、 (NaCH3CO2), fine granular.7.6 Cell Electrolyte SolutionDissolve 1.35 g sodium ac-etate (NaCH3CO2) in 100 mL water. Add to 850 mL of aceticacid (CH3COOH) and dilute to 1000 mL with water.7.7 Tungsten Powder, combustion accelerator, (-100 mesh)minimum 99.9 % purity.7.8 Oxygen, combustion gas minimum
21、99.6 % purity.7.9 Gas RegulatorsUse two-stage gas regulators for thecarrier and combustion gases.7.10 Potassium Nitrate (KNO3), fine granular.7.11 Potassium Chloride (KCl), fine granular.7.12 Working Electrode Solution (10 % KNO3), Dissolve50 g potassium nitrate (KNO3) in 500 mL of water.7.13 Inner
22、Chamber Reference Electrode Solution (1 MKCl)Dissolve 7.46 g potassium chloride (KCl) in 100 mL ofwater.7.14 Outer Chamber Reference Electrode Solution (1 MKNO3)Dissolve 10.1 g potassium nitrate (KNO3) in 100 mLof water.7.15 Sodium Chloride (NaCl), fine granular.7.16 Sulfuric Acid (sp gr. 1.84), (H2
23、SO4), concentrated.7.17 2,4,6-Trichlorophenol (TCP) (C6H3OCl3), fine granu-lar.7.18 Methanol (MeOH) (CH3OH), 99.9 % minimum purity.7.19 Working Chlorine Standard (1g/L)Weigh accu-rately 0.1856 g of 2,4,6-Trichlorophenol to the nearest 0.1 mg.Transfer to a 100 mL volumetric flask. Dilute to the mark
24、withmethanol.WSCI5 gofTCP 3 0.5386 3 1000/100! (1)where:TCP = 2,4,6-Trichlorophenol, andWSCI= the working chlorine standard concentration.8. Hazards8.1 Consult the current version of OSHA regulations, sup-pliers Material Safety Data Sheets, and local regulations forall materials used in this test me
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