ASTM D6159-2017 7789 Standard Test Method for Determination of Hydrocarbon Impurities in Ethylene by Gas Chromatography《用气相色谱法测定乙烯中烃类杂质的标准试验方法》.pdf
《ASTM D6159-2017 7789 Standard Test Method for Determination of Hydrocarbon Impurities in Ethylene by Gas Chromatography《用气相色谱法测定乙烯中烃类杂质的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D6159-2017 7789 Standard Test Method for Determination of Hydrocarbon Impurities in Ethylene by Gas Chromatography《用气相色谱法测定乙烯中烃类杂质的标准试验方法》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D6159 17Standard Test Method forDetermination of Hydrocarbon Impurities in Ethylene by GasChromatography1This standard is issued under the fixed designation D6159; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the ye
2、ar of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope*1.1 This test method covers the determination of methane,ethane, propane, propene, acetylene, iso-butane, propadien
3、e,butane, trans-2-butene, butene-1, isobutene, cis-2-butene,methyl acetylene and 1,3-butadiene in high-purity ethylene.The purity of the ethylene can be calculated by subtracting thetotal percentage of all impurities from 100.00 %. Since this testmethod does not determine all possible impurities suc
4、h as CO,CO2,H2O, alcohols, nitrogen oxides, and carbonyl sulfide, aswell as hydrocarbons higher than decane, additional tests maybe necessary to fully characterize the ethylene sample.1.2 Data are reported in this test method as ppmV (parts permillion by gaseous volume) and ppmMol (parts per million
5、Mol). This test method was evaluated in an interlaboratorycooperative study in the concentration range of 4 ppmV to340 ppmV (2 mg kg to 204 mg kg). The participants in theinterlaboratory cooperative study reported the data in non-SIunits. Wherever possible, SI units are included.1.3 This standard do
6、es 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 regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Sta
7、ndards:2D2504 Test Method for Noncondensable Gases in C2andLighter Hydrocarbon Products by Gas ChromatographyD2505 Test Method for Ethylene, Other Hydrocarbons, andCarbon Dioxide in High-Purity Ethylene by Gas Chroma-tographyD5234 Guide for Analysis of Ethylene Product3. Summary of Test Method3.1 A
8、gaseous ethylene sample is analyzed as received. Thegaseous sample is injected into a capillary gas chromatograph.Sample may be introduced by direct valve injection or by splitvalve injection. The gas chromatograph is provided with a6-port sampling valve and two wide bore capillary columnsconnected
9、in series. These columns are a dimethyl polysilox-ane column and a porous layer open tubular column (PLOT)Al2O3/KCl column. (See Note 1.)Aflame ionization detector isused for detection. The integrated detector signal (peak areas)are corrected for detector response. The hydrocarbon impuri-ties are de
10、termined and the total impurities are used todetermine the ethylene content.NOTE 1This column is supplied by major column manufacturers.4. Significance and Use4.1 High-purity ethylene is required as a feedstock for somemanufacturing processes and the presence of trace amounts ofcertain hydrocarbon i
11、mpurities can have deleterious effects.This test method is suitable for setting specifications, for use asan internal quality control tool, and for use in development orresearch work.4.2 This test method does not detect such impurities as H2O,CO, CO2, and alcohols that may be present in the sample.H
12、ydrocarbons higher than n-decane cannot be analyzed by thistest method, if present in the sample. Test Method D2504addresses the analysis of noncondensable gases and TestMethod D2505 addresses the analysis of CO2. Guide D5234describes all potential impurities present in ethylene. Thesestandards shou
13、ld be consulted when determining the totalconcentration of impurities in ethylene.5. Apparatus5.1 Gas Chromatograph (GC), a gas chromatographic in-strument provided with a temperature programmable columnoven and a flame ionization detector (FID). Carrier gas isregulated by pressure control.5.2 Detec
14、torA flame ionization detector (FID) having asensitivity of approximately 2.0 ppmV (1.2 mg kg) or less forthe compounds listed in 1.1. An FID was exclusively used inthe interlaboratory cooperative study.1This test method is under the jurisdiction of ASTM Committee D02 onPetroleum Products, Liquid Fu
15、els, and Lubricants and is the direct responsibility ofSubcommittee D02.D0.02 on Ethylene.Current edition approved Jan. 1, 2017. Published February 2017. Originallyapproved in 1997. Last previous edition approved in 2012 as D6159 97 (2012).DOI: 10.1520/D6159-17.2For referenced ASTM standards, visit
16、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.*A Summary of Changes section appears at the end of this standardCopyright ASTM International, 100
17、Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United StatesThis international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for theDevelopment of International Standards, Guides and Rec
18、ommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.15.3 Column Temperature ProgrammerThe chromatographshall be capable of linear programmed temperature operationover a range sufficient for separation of the components ofinterest. Section 8 lists the recom
19、mended operating conditions.The programming rate shall be sufficiently reproducible toobtain retention repeatability of 0.05 min (3 s) throughout thescope of this analysis.5.4 ColumnsCouple the two columns in series with eithera glass press tight connector or a mini-connector equipped withgraphite f
20、errules.5.4.1 Column 1, 50 m, 0.53 mm inside diameter (ID) KCldeactivated Al2O3PLOT column. Relative retention is depen-dent on the deactivation method of the column. Other deacti-vated Al2O3plot columns using sulfates as the deactivatingagent were also used in the interlaboratory comparison.5.4.2 C
21、olumn 2, 30 m, 0.53 mm ID, 5 m film thicknessmethyl polysiloxane. This column improves the separation ofmethyl acetylene, iso-pentane, and n-pentane.5.5 Sample Inlet SystemTwo injection modes were usedfor the interlaboratory cooperative study.5.5.1 A gas sampling valve placed in an unheated zone oft
22、he gas chromatograph injecting the sample directly into thecolumn.5.5.2 A gas sampling valve placed in an unheated zone ofthe gas chromatograph in conjunction with a splitter injectorheated with a variable temperature control.5.5.3 A gas sampling valve maintained at a constant tem-perature above amb
23、ient temperature may also be used, forexample, by installation in a valve oven or equivalent.5.6 Gas Sampling Valve and Injection System:5.6.1 Direct Valve InjectionUse a 6-port valve providedwith116 in. fittings as the sample injection system. A typicalvalve arrangement is shown in Fig. 1 and Fig.
24、2.A10Lto60 L loop as shown in Fig. 1 has proven satisfactory to attainthe detection limits described in this test method and notoverload the column. Use good valve piping techniques tominimize dead volumes, cold spots, and long connections; aswell as to ensure uniform heated zones. The preferred car
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