ASTM E1510-1995(2005) Standard Practice for Installing Fused Silica Open Tubular Capillary Columns in Gas Chromatographs《气相色谱仪中安装熔凝硅石开管状毛细管丛的标准实施规程》.pdf
《ASTM E1510-1995(2005) Standard Practice for Installing Fused Silica Open Tubular Capillary Columns in Gas Chromatographs《气相色谱仪中安装熔凝硅石开管状毛细管丛的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1510-1995(2005) Standard Practice for Installing Fused Silica Open Tubular Capillary Columns in Gas Chromatographs《气相色谱仪中安装熔凝硅石开管状毛细管丛的标准实施规程》.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1510 95 (Reappproved 2005)Standard Practice forInstalling Fused Silica Open Tubular Capillary Columns inGas Chromatographs1This standard is issued under the fixed designation E 1510; the number immediately following the designation indicates the year oforiginal adoption or, in the cas
2、e 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 practice covers the installation and maintenance offused silica capillary columns in
3、gas chromatographs that arealready retrofitted for their use. This practice excludes infor-mation on:1.1.1 Injection techniques.1.1.2 Column selection.1.1.3 Data acquisition.1.1.4 System troubleshooting and maintenance.1.2 For additional information on gas chromatography,please refer to Practice E 2
4、60. For specific precautions, seeNotes 1-4.1.3 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 applica-bility of regulato
5、ry limitations prior to use. For specific safetyinformation see Section 6 and Notes 2-4.22. Referenced Documents2.1 ASTM Standards:3E 260 Practice for Packed Column Gas ChromatographyE 355 Practice for Gas Chromatography Terms and Rela-tionships2.2 CGA Publications:4CGA P-1 Safe Handling of Compress
6、ed Gases in Contain-ersCGA G-5.4 Standard for Hydrogen Piping Systems at Con-sumer LocationsCGA P-9 The Inert Gases: Argon, Nitrogen and HeliumCGA V-7 Standard Method of Determining Cylinder ValveOutlet Connections for Industrial Gas MixturesCGA P-12 Safe Handling of Cryogenic LiquidsHB-3 Handbook o
7、f Compressed Gases3. Terminology3.1 Terms and relations are defined in Practice E 355.3.2 Nomenclature for open tubular or capillary columnswith a bore of 0.75 mm or less:3.3 porous layer open tubular (PLOT)refers to columnswith particles attached on the inside wall consisting of copoly-mers such as
8、 styrene/divinylbenzene, molecular sieves, oradsorbents such as Al2O2in film thicknesses of 5 to 50 m.3.4 support coated open tubular (SCOT)refers to fineparticles (silica or fine diatomite) coated with liquid stationaryphase, which is then deposited on the inside column wall toimprove stationary ph
9、ase stability and sample capacity.3.5 wall coated open tubular (WCOT)refers to columnscoated on the inside wall with a liquid stationary phase in film1This practice is under the jurisdiction of ASTM Committee E13 on MolecularSpectroscopy and Chromatography and is the direct responsibility of Subcomm
10、itteeE13.19 on Chromatography.Current edition approved Feb. 1, 2005. Published March 2005. Originallyapproved in 1993. Last previous edition approved in 2000 as E 1510 95(2000).2Reprinted by permission of Restek Corp., 110 Benner Circle, Bellefonte, PA16823-8812.3For referenced ASTM standards, visit
11、 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.4Available from Compressed Gas Association (CGA), 1725 Jefferson DavisHwy., Suite 1004, Arlington,
12、 VA 22202-4102.TABLE 1 Typical Splitter Vent Flow Rates (50 to 1 split ratio)(at optimum linear velocity)Carrier gas0.25-mm ID,cm3/min0.32-mm ID,cm3/min0.53-mm ID,cm3/minheliumhydrogen357080160125250NOTE 1The curves were generated by plotting the height equivalentto a theoretical plate (length of co
13、lumn divided by the total number oftheoretical plates, H.E.T.P.) against the columns average linear velocity.The lowest point on the curve indicates the carrier gas velocity in whichthe highest column efficiency is reached.FIG. 1 Van Deemter Profile for Hydrogen, Helium, and NitrogenCarrier Gases41C
14、opyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.thicknesses of 0.1 to 10.0 m. Also referred to as FSOT orfused silica open tubular.4. Summary of Practice4.1 The packed gas chromatography system is described inPractice E 260 and is esse
15、ntially the same as a capillary gaschromatography system except for modifications to the injectorand detector to accommodate the low flow rates and samplecapacity associated with capillary columns. Refer to the gaschromatography (GC) instrument manual for specific details oninjector or detector pneu
16、matics for capillary columns.4.2 Prior to performing a capillary GC analysis, the capil-lary column configuration must be determined. The stationaryphase type, stationary phase film thickness, column insidediameter, and column length must be selected. It is beyond thescope of this practice to provid
17、e these details. Consult acolumn or instrument supplier for details on selecting theappropriate capillary column configuration.4.3 Apply caution during handling or installation to avoidscratching or abrading the protective outer coating of thecolumn. Scratches or abrasions cause the fused silica cap
18、illarycolumn to spontaneously break or fail during usage.5. Significance and Use5.1 This practice is intended to be used by all analysts usingfused silica capillary chromatography. It contains the recom-mended steps for installation, preparation, proper installation,and continued column maintenance.
19、6. Hazards6.1 Gas Handling SafetyThe safe handling of compressedgases and cryogenic liquids for use in chromatography is theresponsibility of every laboratory. The Compressed Gas Asso-ciation, a member group of specialty and bulk gas suppliers,publishes the following guidelines to assist the laborat
20、orychemist to establish a safe work environment: CGA P-1, CGAG-5.4, CGA P-9, CGA V-7, CGA P-12, and HB-3.7. Installation Procedure for Fused Silica CapillaryColumns7.1 Abrief outline of the steps necessary for installing fusedsilica capillary columns in capillary dedicated gas chromato-graphs is as
21、follows:7.1.1 Cool all heated zones and replace spent oxygen andmoisture scrubbers,Carrier gas: Hydrogen Carrier gas: HeliumLinear velocity: 40 cm/s Linear velocity: 20 cm/sNOTE 1Fig. 2 shows that the resolution is similar but the analysis timeis reduced by 50 % when comparing hydrogen to helium in
22、an isothermalanalysis using optimum flow velocities.NOTE 2Hydrogen provides similar resolution in one-half the analysistime of helium for an isothermal analysis.NOTE 31. Tetrachloro-m- 8. Heptachlor epoxide 15. Endosulfan IIxylene 9. g-chlordane 16. DDD2. a-BHC 10. Endosulfan I 17. Endrin aldehyde3.
23、 b-BHC 11. a-chlordane 18. Endosulfan sulfate4. g-BHC 12. Dieldrin 19. DDT5. d-BHC 13. DDE 20. Endrin ketone6. Heptachlor 14. Endrin 21. Methyoxychlor7. AldrinNOTE 430 m, 0.25-mm ID, 0.25 m 5 % diphenyl 95 % dimethylpolysiloxane 0.1-L split injection of chlorinated pesticides.Oven temperature: 210C
24、isothermalInjector and detector temperature: 250C/300CECD sensitivity: 512 3 1011Split vent: 100 cm3/minFIG. 2 Hydrogen Versus Helium (Isothermal Analysis)FIG. 3 Capping Silanol Groups with Dimethyl Dichlorosilane(DMDCS)NOTE 1Septum bleed can obscure or co-elute with compounds ofinterest, thus decre
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