ASTM F1277-2002 Standard Test Method for Determination of Leachable Chloride in Packing and Gasketing Materials by Ion-Selective Electrode Technique《用离子选择电极技术测定包装和衬垫材料中可沥虑氯化物的标准测试方.pdf
《ASTM F1277-2002 Standard Test Method for Determination of Leachable Chloride in Packing and Gasketing Materials by Ion-Selective Electrode Technique《用离子选择电极技术测定包装和衬垫材料中可沥虑氯化物的标准测试方.pdf》由会员分享,可在线阅读,更多相关《ASTM F1277-2002 Standard Test Method for Determination of Leachable Chloride in Packing and Gasketing Materials by Ion-Selective Electrode Technique《用离子选择电极技术测定包装和衬垫材料中可沥虑氯化物的标准测试方.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 1277 02Standard Test Method forDetermination of Leachable Chloride in Packing andGasketing Materials by Ion-Selective Electrode Technique1This standard is issued under the fixed designation F 1277; the number immediately following the designation indicates the year oforiginal adoption
2、 or, in the case 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 provides for the measurement ofchloride ion leached from f
3、lexible graphite, asbestos, or paper-based packing and gasketing materials. Samples containing 7to 6700 g Cl-/g sample can be analyzed with this procedure.The upper concentration limit can be extended by dilution ofthe test solution.1.2 It is the responsibility of the analyst to ensure thevalidity o
4、f this test method for other packing or gasketingmaterials.1.3 The values stated in SI units are to be regarded as thestandard. The values given in parentheses are for informationonly.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is ther
5、esponsibility 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. A specific warningstatement is given in 8.3.2. Referenced Documents2.1 ASTM Standards:D 512 Test Methods for Chloride Ion in Water
6、2E 50 Practices for Apparatus, Reagents, and Safety Consid-erations for Chemical Analysis of Metals, Ores, andRelated Materials3E 691 Practice for Conducting an Interlaboratory Study toDetermine the Precision of a Test Method4E 882 Guide for Accountability and Quality Control in theChemical Analysis
7、 Laboratory33. Summary of Test Method3.1 Chloride ion leached from packing and gasketing mate-rials is measured potentiometrically using a chloride ion-selective electrode in conjunction with a double junction,sleeve-type reference electrode. Potentials are read using apH/mV meter having 0.1 mV read
8、ability.3.2 A calibration curve is prepared by plotting the potentialsof known chloride solutions versus the corresponding concen-trations expressed in micrograms per millilitre. The chlorideconcentration of the test solution is determined from thecalibration curve, and this value is used to calcula
9、te the amountof chloride in parts per million that was leached from thepacking or gasketing material. The calibration and test solu-tions must be measured at the same temperature within 61C(62F).3.3 The calibration and test solutions are diluted with ionicstrength adjustor which also minimizes possi
10、ble interferencessuch as ammonia, bromide, iodide, cyanide, or sulfide (see TestMethods D 512).4. Significance and Use4.1 Chloride ion is highly detrimental to the valves, flanges,piping, etc. of stainless steel and copper-bearing alloys em-ployed in certain types of facilities, such as nuclear andc
11、hemical plants. Therefore, the amount of chloride ion that canbe leached from packing and gasketing materials used in thesefacilities must be controlled closely for prevention of damage.This test method is suitable for manufacturing control and forverifying that the packing and gasketing material me
12、ets speci-fications.4.2 It is assumed that the users of this test method will beanalysts capable of performing common laboratory proceduresskillfully and safely. It is recommended that the work will beperformed in a properly equipped laboratory under appropriatequality control practices such as thos
13、e described in GuideE 882.5. Interferences5.1 There is no interference from up to 500 g/mL ofsulfide, 1000 g/mL of bromide or iodide, a one hundred-foldexcess of cyanide over chloride, or 1000 g/mL of ammonia.Ferric, cupric, and permanganate ions do not interfere. Mer-cury must not be present.1This
14、test method is under the jurisdiction of ASTM Committee F03 on Gasketsand is the direct responsibility of Subcommittee F03.50 on Analytical Test Methods.Current edition approved October 10, 2002. Published October 2002. Originallypublished as F 1277 90. Last previous edition F 1277 95.2Annual Book o
15、f ASTM Standards, Vol 11.01.3Annual Book of ASTM Standards, Vol 03.05.4Annual Book of ASTM Standards, Vol 14.02.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.6. Apparatus6.1 Digital pH/mV Meter, with 0.1 mV readability pre-ferred,
16、but 1 mV readability is acceptable.6.2 Chloride Ion-Selective Electrode (Cl-) , having a silverchloride (AgCl) membrane. (WarningChloride ion-selectiveelectrodes with a silver chloride/silver sulfide membrane arenot suitable as the sulfide can be oxidized by the ionic strengthadjustor used in this p
17、rocedure.)6.3 Sleeve-Type Double Junction Reference Electrode.NOTE 1Other types of double junction reference electrodes may besuitable, but supporting data included in this test method were obtainedwith only the recommended type.6.4 Oven.6.5 Desiccator, containing anhydrous calcium sulfate(CaSO4).6.
18、6 Hot Plate.6.7 Magnetic Stirrer, with polytetrafluorethylene (PTFE)-coated stirring bars.6.8 Beakers, 150 and 250-mL graduated capacities.6.9 Volumetric Flasks, 100, 500, and 1000-mL capacities.6.10 Volumetric Pipets, with 2, 5, 10, 25, and 50-mLcapacities.6.11 Graduated Cylinder, 10-mL capacity.6.
19、12 Watch Glasses, with ribs on the bottoms.6.13 Glass Stirring Rods.6.14 Glass Funnels.6.15 Filter Paper, with fast filtering rate.6.16 Polyethylene Bottles, 150, 500, and 1000-mL capaci-ties.6.17 Cotton Gloves.6.18 Scissors or Knife.7. Preparation of Reference Materials and Samples7.1 Preparation o
20、f Calibration Solutions:7.1.1 Seven solutions shall be prepared in order to calibratethe chloride ion-selective electrode. Each solution shall containa different concentration of chloride. Prepare the solutions asfollows:7.1.1.1 500 g/mL Cl-SolutionWith a 5-mL volumetricpipet, pipet 5 mL of 10 000 g
21、/mL Cl-stock solution into a100-mL volumetric flask. Bring the solution in the flask up tothe mark with distilled water and mix thoroughly.7.1.1.2 100 g/mL Cl-SolutionWith a 10-mL volumetricpipet, pipet 10 mL of 1000 g/mL Cl-stock solution into a100-mL volumetric flask. Bring the solution in the fla
22、sk up tothe mark with distilled water and mix thoroughly.7.1.1.3 50 g/mL Cl-SolutionWith a 5-mL volumetricpipet, pipet 5 mL of 1000 g/mL Cl-stock solution into a100-mL volumetric flask. Bring the solution in the flask up tothe mark with distilled water and mix thoroughly.7.1.1.4 10 g/mL Cl-SolutionW
23、ith a 10-mL volumetricpipet, pipet 10 mL of 100 g/mL Cl-stock solution into a100-mL volumetric flask. Bring the solution in the flask up tothe mark with distilled water and mix thoroughly.7.1.1.5 5 g/mL Cl-SolutionWith a 5-mL volumetricpipet, pipet 5 mL of 100 g/mL Clstock solution into a100-mL volu
24、metric flask. Bring the solution in the flask up tothe mark with distilled water and mix thoroughly.7.1.1.6 2.5 g/mL Cl-SolutionWith a 25-mL volumetricpipet, pipet 25 mL of 10 g/mL Cl-stock solution into a100-mL volumetric flask. Bring the solution in the flask up tothe mark with distilled water and
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