ASTM E1786-2002 Standard Test Method for Determination of Low Levels of Water in Liquid Chlorine by On-Line Infrared Spectrophotometry《在线红外分光光度法测定液氯中水的低等级的标准试验方法》.pdf
《ASTM E1786-2002 Standard Test Method for Determination of Low Levels of Water in Liquid Chlorine by On-Line Infrared Spectrophotometry《在线红外分光光度法测定液氯中水的低等级的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1786-2002 Standard Test Method for Determination of Low Levels of Water in Liquid Chlorine by On-Line Infrared Spectrophotometry《在线红外分光光度法测定液氯中水的低等级的标准试验方法》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1786 02Standard Test Method forDetermination of Low Levels of Water in Liquid Chlorine byOn-Line Infrared Spectrophotometry1This standard is issued under the fixed designation E 1786; 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 is designed for the on-line determina-tion of the content of water in li
3、quid chlorine in the concen-tration range of 0.5 to 15 mg/kg (ppm).1.2 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the ap
4、plica-bility of regulatory limitations prior to use. Specific hazardsstatements are given in Section 7 and Note 2.2. Referenced Documents2.1 ASTM Standards:D 1193 Specifications for Reagent Water2E 806 Test Method for Carbon Tetrachloride and Chloro-form in Liquid Chlorine by Direct Injection (Gas C
5、hroma-tography Procedure)32.2 Federal Standards:449 CFR 173 Code of Federal Regulations Title 49 Trans-portation: Shippers General Requirements for Shipmentsand Packaging, including the following sections:173.304 Charging of Cylinders with Liquefied CompressedGas173.314 Requirements for Compressed G
6、ases in Tank Cars173.315 Compressed Gases in Cargo Tanks and PortableTank Containers2.3 Other Document:5Chlorine Institute Pamphlet No. 77Sampling LiquidChlorine3. Summary of Test Method3.1 Liquid chlorine continuously flows through a specialinfrared cell where it is maintained as a liquid under its
7、 ownpressure. A process infrared spectrometer scans from 400 to4400 wavenumbers of the infrared transmission spectrum ofliquid chlorine. This spectrum then is ratioed to one obtainedfrom the nitrogen-filled infrared cell previously. The ratioedspectrum is converted to absorbance, and the net absorba
8、nce ofwater band at 1596 wavenumbers, relative to a reference at1663 wavenumbers, is determined.3.2 The amount of water corresponding to this net absor-bance is determined from a calibration curve prepared from theinfrared absorbencies of standards which contain concentra-tions of water in liquid ch
9、lorine. These standards are preparedfrom manual samples of liquid chlorine in tantalum cylinders.Sample from each cylinder is introduced into a calibrationinfrared cell and maintained as a liquid under its own pressure.4. Significance and Use4.1 Trace amounts of water may be detrimental to the use o
10、fchlorine in some applications. The amount of water in thechlorine must be known to prevent problems during its use.5. Apparatus5.1 Process Infrared Spectrometer, capable of measure-ments in the 1600 wavenumber region. An FTIR with fourwavenumber resolution is the instrument of choice, but disper-si
11、ve instruments also may be used to achieve similar results.5.2 Special Infrared Calibration Cell (Fig. 1), as used forcalibration. Neither cell size nor pathlength are critical to theanalysis, but sensitivity and limit of detection are dependent onpathlength. The concentration range reported in the
12、Section 1 isachievable with a 60-mm pathlength cell constructed with thefollowing: Figs. 2-75.2.1 Hastelloy C and 316 Stainless Steel Stock, suitable formachining,65.2.2 Silver Chloride Windows, 0.5 cm 3 2.5 cm,7and5.2.3 Perfluoroelastomer Sheet, 0.030 in thickness.85.3 Ball Valves, Monel914-in. val
13、ve with pipe and14-in.tube ends.1This test method is under the jurisdiction of ASTM Committee E15 onIndustrial and Specialty Chemicalsand is the direct responsibility of SubcommitteeE15.02 on Product Standards.Current edition approved March 10, 2002. Published May 2002. Originallypublished as E 1786
14、 - 96. Last previous edition E 1786 - 96.2Annual Book of ASTM Standards, Vol 11.01.3Annual Book of ASTM Standards, Vol 15.05.4Code of Federal Regulations, available from U.S. Government Printing Office,Washington, DC 20402.5Available from The Chlorine Institute, Inc., 2001 L St. NW, Washington, DC20
15、036-4919.6Available from Collins Instrument Company, Inc., P.O. Drawer 938, Angleton,TX 77516-0938.7Available from Harshaw Chemical Company, 6801 Cochran Road, Solon, OH44139.8Available from E.I. DuPont de Nemours and Company, Wilmington, DE 19898.9Available from International Nickel Company and has
16、 been found satisfactoryfor this purpose.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5.4 Needle Valves, Nickel or Monel914-in. valve with pipeand14-in. tube ends.5.5 Sample Cylinder Assembly (Fig. 8), consisting of:5.5.1 Sample C
17、ylinder, nickel, Monel,9or tantalum, 400 to1000-mL capacity, double-ended, with valves at each end,specially cleaned. Cylinders with both valves at one end andwith a dip tube on one valve have been found to be satisfactory.Another option is to construct special cylinders containing aseptum fitting o
18、n one end.NOTE 1A procedure for cleaning cylinders and valves, for use withliquid chlorine, is given in Test Method E 806, Appendix X2 .5.5.2 One Needle and One Ball Valve, nickel body, havingpacking resistant to liquid chlorine.10If nickel valves are notavailable, monel valves may be used.5.5.3 Sep
19、tum, inserted into a14-in. nut.5.5.4 Glove Bag or Dry Box, purged with dry nitrogen (lessthan 5 ppm water vapor).5.5.5 Fittings, for transferring chlorine from one cylinder toanother.5.5.6 One0to10L Syringe and One 0 to 25 L Syringe,26 gage needle.5.5.7 Dewar Flask, of sufficient size to hold a cyli
20、ndersurrounded by dry ice and methylene chloride. The Dewarflask should be supported by a wooden holder for safetypurposes.5.5.8 Hygrometer, capable of measuring moisture as low as5 ppm in glove bag or dry box.5.6 Silicone Rubber Septa.5.7 Mechanical Shaker.5.8 Drying Oven.5.9 Special Infrared Proce
21、ss Cell (Fig. 9) for on-line analy-sis of water in liquid chlorine. Neither cell size nor path lengthis critical to the analysis, but sensitivity and limit of detectionare dependent on pathlength. The concentration range reportedin the scope is achievable with a 60-mm pathlength cellconstructed with
22、:5.9.1 Hastelloy C and 316 Stainless Steel Stock, suitable formachining.65.9.2 Silver Chloride Windows, two, 25-mm diameter by2-mm thick and two 25-mm diameter by 4-mm thick.710Packing made from tTEFLON, tVITON, or tKEL-F has been foundsatisfactory for this purpose.FIG. 1 Infrared Cell (Drawing Not
23、to Scale)FIG. 2 Pipe AdapterFIG. 3 Air Cap DetailE 178625.9.3 Eight Viton O-rings, Size 027.6. Reagents6.1 Purity of WaterUnless otherwise indicated, watermeans Type II or III reagent water conforming to SpecificationD 1993.6.2 Chlorine, liquid with less than 5 ppm water.6.3 Methylene Chloride (CH2C
24、l2).116.4 Dry Ice (CO2).6.5 Dry Nitrogen (5 ppm water), to purge glove bag or drybox and test equipment.7. Hazards7.1 Safety Precautions:7.1.1 Chlorine is a corrosive and toxic material. Use awell-ventilated fume hood to house all test equipment, exceptthe infrared spectrophotometer, when this mater
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