ASTM UOP1015-2017 Determination of Trace Oxygenates in Polymer Grade Ethylene & Propylene by Gas Chromatography Mass Spectrometry《采用气相质谱法测定聚合级乙烯&x26 丙烯中的痕量氧化物》.pdf
《ASTM UOP1015-2017 Determination of Trace Oxygenates in Polymer Grade Ethylene & Propylene by Gas Chromatography Mass Spectrometry《采用气相质谱法测定聚合级乙烯&x26 丙烯中的痕量氧化物》.pdf》由会员分享,可在线阅读,更多相关《ASTM UOP1015-2017 Determination of Trace Oxygenates in Polymer Grade Ethylene & Propylene by Gas Chromatography Mass Spectrometry《采用气相质谱法测定聚合级乙烯&x26 丙烯中的痕量氧化物》.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、 IT IS THE USERS RESPONSIBILITY TO ESTABLISH APPROPRIATE PRECAUTIONARY PRACTICES AND TO DETERMINE THE APPLICABILITY OF REGULATORY LIMITATIONS PRIOR TO USE. EFFECTIVE HEALTH AND SAFETY PRACTICES ARE TO BE FOLLOWED WHEN UTILIZING THIS PROCEDURE. FAILURE TO UTILIZE THIS PROCEDURE IN THE MANNER PRESCRIB
2、ED HEREIN CAN BE HAZARDOUS. SAFETY DATA SHEETS (SDS) OR EXPERIMENTAL MATERIAL SAFETY DATA SHEETS (EMSDS) FOR ALL OF THE MATERIALS USED IN THIS PROCEDURE SHOULD BE REVIEWED FOR SELECTION OF THE APPROPRIATE PERSONAL PROTECTION EQUIPMENT (PPE). COPYRIGHT 2017 UOP LLC. All rights reserved. . Nonconfiden
3、tial UOP Methods are available from ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States. The UOP Methods may be obtained through the ASTM website, www.astm.org, or by contacting Customer Service at serviceastm.org, 610.832.9555 FAX, or 610.832.9585
4、 PHONE. Determination of Trace Oxygenates in Polymer Grade Ethylene & Propylene by Gas Chromatography Mass Spectrometry UOP Method 1015-17 Scope This method is for determining trace oxygenated components in high purity polymer grade ethylene and propylene gas or liquid using a gas chromatograph equi
5、pped with a mass spectrometer run in selected ion monitoring mode. The specific instrument is preconfigured and is capable of determining typical impurities in polymer grade ethylene or propylene, however this method only outlines the procedure for determining the specific oxygenates 2-butanol, acet
6、one, acetaldehyde, ethanol, isopropanol, methanol, methyl tert-butyl ether, n-propanol, n-butanol and tert-butanol. Some components co-elute but are readily extracted by unique ions. The lower limit of quantitation for each component is 0.05 mol-(or mass-) ppm. References UOP Method 999, “Precision
7、Statements in UOP Methods,” www.astm.org Wasson ECE Instrumentation, Application 460-SP instrument manual Wasson ECE Instrumentation, Dynamic Blender instrument manual Outline of Method The method requires the use of a dedicated gas chromatographic mass spectrometer system that is configured for aut
8、omated analysis which is capable, via valving and an on-board vaporizer, of determining impurities in polymer-grade ethylene or propylene gas or liquid. For the trace oxygenate analysis, a reproducible sample volume is injected into a gas chromatograph (GC) that is equipped with a polar fused silica
9、 capillary column (Figure 1, column 2), a mass spectrometer detector, and control and quantitation software. The concentrations of individual oxygenates are determined by a multi-point external standard calibration curve for each component that represents the area of each selected ion versus its con
10、centration, analyzed under identical conditions and injection volumes. Significance and Use High purity ethylene and propylene are used as feedstocks for production of polyethylene and polypropylene, respectively. The quality of the monomer is critical to successful polymerization. The presence of t
11、race amounts of certain impurities can have detrimental effects on the catalyst and product yields. This test method is suitable for setting specifications, for use as an internal quality control tool, and for use in development or research work. 2 of 13 1015-17 Apparatus References to catalog numbe
12、rs and suppliers are included as a convenience to the method user. Other suppliers may be used. Analyzer Wasson-ECE Instrumentation Application 460-SP “GC/MS Analysis of Impurities in Polymer-grade Propylene”, other vendors also supply similar systems. Confirm with the selected vendor that the requi
13、red separations are provided for the specific sample types to be analyzed. Pre-configured systems are available from Wasson-ECE for determining only oxygenates, the application specified can determine other impurities. The Wasson-ECE analyzer includes: Chromatographic column, 60 meters, PLOT, part#
14、60 m 2358, Wasson-ECE Instrumentation Chromatographic column, 60 meters, polar, part# 60 m 2318, Wasson-ECE Instrumentation Gas chromatograph, capable of multiple temperature ramping, built for capillary column chromatography utilizing a split injection system with electronic pressure control (EPC),
15、 having a glass injection port insert. Three channels of additional electronic pressure control is required. Agilent Technologies, Model 7890. Mass Spectrometer Detector, capable of selected ion monitoring and equipped with inert EI source, performance turbo pump, ion gauge controller kit and data s
16、ystem. Agilent Technologies, Model 5977B. On-board Vaporizer, converts LPG to the gas phase prior to injection, Wasson-ECE Instrumentation Clamp, for ring stand and sample cylinders, Fisher Scientific Cat. No. 02-217-000 Clamp holder, for ring stand and clamp, Fisher Scientific Cat. No. 02-217-005 D
17、ata System, for computerized instrument control of data acquisition and data reduction, ChemStation, Agilent Technologies. Dynamic Blender with mass flow controller, model DB302, Wasson-ECE Instrumentation Flowmeter, Mass/VLM, Agilent Technologies, Model ADM 2000. Leak detector, gas, Fisher Scientif
18、ic, Cat. No. 0.-251-702 Tubing, Sulfinert, .030-in ID x 1/16-in OD, Cat# 29230, Restek Tubing, translucent, FEP Teflon, 3.2-mm (1/8-inch) OD, 1.6-mm (1/16-inch) ID, 3450 kPa (500 psi), Thomas Scientific, Cat. No. 9567K20 Regulator, helium, two-stage, high purity, delivery pressure range 30 to 700 kP
19、a (4 to 100 psi), Matheson Tri-Gas, Model 3122-580, Cat. No. SEQ3122A580, 2 required Regulator, nitrogen, two-stage, high purity, delivery pressure range 30 to 700 kPa (4 to 100 psi), Matheson Tri-Gas, Model 3122-580, Cat. No. SEQ3122A580 Regulator, Eight component oxygenate blend, two-stage, high p
20、urity, delivery pressure range 30 to 1700 kPa (0 to 250 psi), Matheson Tri-Gas, Model 3810-350, Cat. No. SEQ3816A350 Regulator, acetaldehyde blend, two-stage, high purity, delivery pressure range 30 to 1700 kPa (0 to 250 psi), Matheson Tri-Gas, Model 3810-350, Cat. No. SEQ3816A350 Ring stand, with r
21、ectangular base, 140- x 229- mm with 610- mm rod, Fisher Scientific, Cat. No. 14-679Q 3 of 13 1015-17 Reagents and Materials References to catalog numbers and suppliers are included as a convenience to the method user. Other suppliers may be used. Calibration blends, Gas, quantitative, one containin
22、g acetone, n-butanol, sec-butanol, ethanol, methanol, n-propanol, isopropanol, and methyl tert-butyl ether at the 3 mol-ppm level in helium, one containing acetaldehyde at the 3 mol-ppm level in helium, and one containing tert-butanol at the 3 mol-ppm level in helium, local supply. Gas purifier, for
23、 carrier gases, to remove moisture, VICI Mat/Sen, Cat. Nos. P100-1(helium), P300-1(nitrogen), local supply. Helium, UHP, 99.9995% minimum purity, total hydrocarbons less than 0.5 ppm as methane, local supply. Nitrogen, zero gas, 99.99% minimum purity, total hydrocarbons less than 0.5 ppm as methane,
24、 local supply. Procedure The analyst is expected to be familiar with general laboratory practices, the technique of gas chromatography, mass spectrometry and the equipment being used. Dispose of used reagents, materials, and samples in an environmentally safe manner according to local regulations. S
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