UOP 990-2011 Organic Analysis of Distillate by Comprehensive Two-Dimensional Gas Chromatography with Flame Ionization Detection.pdf
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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. MATERIAL SAFETY DATA SHEETS (MSDS) 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 2011 UOP LLC. All rights reserved. Non
3、confidential UOP Methods are available from ASTM International, 100 Barr Harbor Drive, P.O. Box C700, West Conshohocken, PA 19428-2959, USA. 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. Organic Analysis of Distillate by Comprehensive Two-Dimensional Gas Chromatography with Flame Ionization Detection UOP Method 990-11 Scope This method is for organic analysis of distillate or petroleum fractions boiling in the range of 36 435C using comprehensive two-dimensional gas chromato
5、graphy (GCxGC) coupled with a flame ionization detector (FID). Results, expressed in mass-% can be reported in three different formats: 1) molecular types indexed to n-alkanes; 2) molecular type homologous series by carbon number and 3) user specified resolved compounds or molecular type groups. Ind
6、ividual compounds and molecular type groups are identified by their location, as plotted on a chromatographic two-dimensional image. Olefins, unless specifically identified, are lumped with other molecular types, typically cycloparaffins. Heteroatomic species, when resolved, can be determined; other
7、wise they are lumped with other aromatic hydrocarbons. The lower limit of detection for a single molecular component is typically below 0.004 mass-% with the specified equipment. References Scanlon, J. T. and Willis, D. E., Journal of Chromatographic Science, 23, 333-340 (1985) UOP Method 999, “Prec
8、ision Statements in UOP Methods,” www.astm.org Zoex GC Image Users Guide, Zoex Technical Note KT030606-1: “What is Loop Modulation?,” Outline of Method The sample to be analyzed is injected into a gas chromatograph that is equipped with a two-stage thermal modulator system, “primary” and “secondar
9、y” fused silica open tubular capillary GC columns and a flame ionization detector (FID). The modulator serves as an interface between the two GC columns. The primary column is a conventional high resolution capillary GC column coated with a cross-linked methyl silicone stationary phase, which separa
10、tes molecules based on volatility. The secondary GC column is coated with cross-linked poly (ethylene glycol); it is short and narrow, for fast GC separations based on the molecular property of polarity. The modulator repetitively accumulates, focuses and re-injects “heart-cut” fractions eluting off
11、 the primary column onto the secondary column, which is connected to the FID. The outcome is a series of high speed 2 of 48 990-11 chromatograms from the secondary column which are transformed by computer software into a two-dimensional array and displayed as a two-dimensional image, with the x-axis
12、 representing the retention time from the primary column and the y-axis representing the retention time from the secondary column. Alternatively the data can be displayed as a 3-dimensional plot containing a third dimension which represents the FID signal intensity. A template is used to identify th
13、e boundaries between the different hydrocarbon types and label the separated components. The mass-% composition of the sample is obtained by internal normalization, wherein the peak volumes are normalized to 100 %. Apparatus References to catalog numbers and suppliers are included as a convenience t
14、o the method user. Other suppliers may be used if equivalent performance can be obtained. The GCxGC-FID instrument items listed below are specifically for the “ZX1-thermal modulator” instrument commercially available from Zoex Corporation. Analytical balance, readability 0.0001 g Chromatographic col
15、umn, primary, 50 m of 0.20 mm ID fused silica capillary, internally coated to a film thickness of 0.5 m (bonded) with cross-linked methyl silicone, Agilent Technologies, Cat. No. 19091S-001E. Use of this specific column is recommended. Chromatographic column, secondary, 20 m of 0.10 mm ID fused sili
16、ca capillary, internally coated to a film thickness of 0.2 m (bonded) with poly (ethylene glycol), Agilent Technologies, Cat. No. 127-7023. Use of this specific column is recommended. Note: Only a portion of the original column is used. See Preparation of GCxGC Fused Silica Column Set in the Appendi
17、x for specific instructions. Column holder, for mounting secondary column used specifically in a Zoex two-stage cryo loop modulator, Zoex Corporation, Cat. No. KT-CLM-ZOE02 Comprehensive two-dimensional GC imaging and data processing software, GC-Image V2.1, Zoex Corporation. The precision statement
18、 of this method was obtained using data processed by this specific software. Cryo auto-fill unit, liquid nitrogen level controller with two LSI-48 dual level sensors and liquid nitrogen transfer assembly with installed solenoid valve, Zoex Corporation, Cat. No. KT-DWR-TRG24 Cryo cylinder, 230 LP SB-
19、 square base with 22 psi relief valve, container for liquid nitrogen, Chart Inc., Storage System Division, Cat. No. 10648556. This is not needed if there is instrument access to a laboratory supplied liquid nitrogen distribution system. Data system, electronic, for GC instrument control, data acquis
20、ition and data processing. This device must acquire data at a sufficiently fast rate (200 Hz) so that narrow peaks typically resulting from use of a capillary column can be accurately measured. The suggested minimum computer configuration: Microsoft Windows operating system (e.g. Windows XP, Vista o
21、r Windows 7), 1000 MHz Intel Pentium 4 (or comparable) CPU (dual-core is preferred), 1 GB RAM (2 GB or more is preferred), 128 MB OpenGL-capable graphics card (256 MB is preferred), and color monitor with 1024x768 (or higher) resolution. Processed GCxGC data may require large disk capacity. It is id
22、eal to have two data systems: one for instrument control and data acquisition and a separate one for data processing. The data acquisition software must allow data to be exported in a format compatible with GC-Image software. Several formats that have been verified to work are 3 of 48 990-11 *.ch (A
23、gilent ChemStation IQ Data File Format); ASCII csv (Comma-Separated-Values in text format); and PEG (LECO file format for collected raw FID data). Excel 2003 or later, software, Microsoft Fused silica tubing cutter, ceramic wafer, Agilent Technologies, Cat. No. 5181-8836 Gas chromatograph, temperatu
24、re programmable, capable of constant flow, built for capillary column chromatography, utilizing a split injection system, equipped with a capillary injection port with a deactivated glass liner, and a flame ionization detector, Agilent Technologies, Model 7890A, with additional electronic pressure c
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