UOP 980-2017 C5 and Lower Boiling Dienes Olefins and Paraffins in Naphthas by GC.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. SAFETY DATA SHEETS (SDS) OR EXPERIMENTAL SAFETY DATA SHEETS (ESDS) FOR ALL OF THE MATERIALS USED IN THIS PROCEDURE SHOULD BE REVIEWED FOR SELECTION OF THE APPROPRIATE PERSONAL PROTECTION EQUIPMENT (PPE). COPYRIGHT 2003, 2007, 2017 UOP LLC. All rights reserved. Nonconfiden
3、tial 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 PHONE.
4、C5 and Lower Boiling Dienes, Olefins, and Paraffins in Naphthas by GC UOP Method 980-17 Scope This method is for determining C5 and lighter diolefins, mono-olefins, and paraffins in olefinic naphthas. Resolved acetylenes and resolved C6 hydrocarbons, including resolved dienes, are also identified. T
5、he method is applicable to selective hydrogenation process feeds, products, and other process streams with similar matrices having a final boiling point of 260 C or lower. Components that do not elute from the chromatographic system under the specified conditions, if present in the sample, are not d
6、etermined. The lower limit of detection for any compound is 0.01 mass-%. The Appendix describes an extension of the method to analyze LPG samples. References ASTM Method D 4307, “Preparation of Liquid Blends for Use as Analytical Standards,” www.astm.org ASTM Method D 5854, “Standard Practice for Mi
7、xing and Handling of Liquid Samples of Petroleum and Petroleum Products,” www.astm.org Scanlon, J. T. and Willis, D. E., Journal of Chromatographic Science, 23, 333-340 (1985) UOP Method 999, “Precision Statements in UOP Methods,” www.astm.org Outline of Method The sample to be analyzed is injected
8、into a gas chromatograph that is equipped with a fused silica capillary column, internally coated with (bonded) poly-dimethyl siloxane, and a flame ionization detector (FID). The mass-% composition of the sample is obtained by the internal normalization technique, wherein the peak areas are first co
9、rrected for differences in response and then normalized to 100%. Apparatus References to catalog numbers and suppliers are included as a convenience to the method user. Other suppliers may be used. Balance, readable to 0.1 mg Chromatographic column, 100 m of 0.25-mm ID fused silica capillary, intern
10、ally coated to a film thickness of 0.5 micron (bonded) with poly-dimethyl siloxane, Petrocol DH, Sigma-Aldrich, Cat. No. 24160-U 2 of 15 980-17 Data system, electronic, for obtaining peak areas. This device must integrate areas at a sufficiently fast rate so that narrow peaks, typically obtained fro
11、m a capillary column, can be accurately measured. The integrator must have programmable parameters for controlling baseline events, and have graphics capabilities. ChemStation, Agilent Technologies. Electronic leak detector, Agilent gas leak detector, Agilent, Cat. No. G3388B Freezer, flammable-mate
12、rials storage, Fisher Scientific, Cat. No. 05-FFE-ETSA Gas chromatograph, temperature programmable with cryogenic cooling, built for capillary column chromatography, utilizing a split injection system, equipped with a glass injection port insert, and a flame ionization detector that will give a mini
13、mum peak height response of five times the background noise for 0.01 mass-% n-heptane when operated at the recommended conditions, Agilent Technologies, Model 7890. The inclusion of an autosampler (or auto injector) is recommended but not required. Gas purifier, hydrogen carrier gas purifier, VICI M
14、etronics, Cat. No. P200-1 Regulator, air, two-stage, high purity, Matheson Tri-Gas, Model 3120A-590 Regulator, hydrogen, two-stage, high purity, Matheson Tri-Gas, Model 3120A-350 Regulator, nitrogen or helium, two-stage, high purity, Matheson Tri-Gas, Model 3120A-580 Sample injector, syringe or inje
15、ctor capable of introducing a 0.5 L volume of sample. An autosampler (or auto injector) is recommended, Agilent Technologies, Model 7693A. Reagents and Materials References to catalog numbers and suppliers are included as a convenience to the method user. Other suppliers may be used. Air, zero gas,
16、total hydrocarbons less than 2.0 ppm as methane Autosampler vials, glass, 12- x 32- mm, for Agilent autosampler, Fisher Scientific, Cat. No. 03-391-8 Benzene, 99.9% purity, Aldrich, Cat. No. 270709 Caps, for autosampler vials, open hole with septum, screw, 9- mm, with Tef/Sil/Tef liner, Fisher Scien
17、tific, Cat. No. 03-377-2A Carbon Dioxide, commercial liquid, 99.5% minimum purity, with full-length eductor tube for liquid withdrawal, for cryogenic cooling Liquid Nitrogen, commercial liquid, obtained locally. n-Heptane, 99.9+% purity, Sigma-Aldrich, Cat. No. 270512 Hydrogen, zero gas, 99.95% mini
18、mum purity, total hydrocarbons less than 0.5 ppm as methane Pipet bulb, 1 mL, Fisher Scientific, Cat. No. 03-448-25 Pipets, disposable, Pasteur, Fisher Scientific, Cat. No. 13-678-20A Nitrogen or helium, zero gas, total hydrocarbons less than 0.5 ppm as methane Syringe, for sample injector, 5- L, Ag
19、ilent Technologies, Cat. No. 51811273 Toluene, 99.8% purity, Sigma-Aldrich, Cat. No. 270377 Vials, 15- mL, with screw cap, Fisher Scientific, Cat. No. 03-339-21J 3 of 15 980-17 p-Xylene, 99+% purity, Sigma-Aldrich, Cat. No. 317195 Procedure The analyst is expected to be familiar with general laborat
20、ory practices, the technique of gas chromatography, and the equipment being used. Dispose of used supplies and samples in an environmentally safe manner according to applicable regulations. Sampling Obtain the sample by following the procedures described in ASTM Practice D 4307, “Preparation of Liqu
21、id Blends for Use as Analytical Standards,” ASTM Practice D 5854, “Standard Practice for Mixing and Handling of Liquid Samples of Petroleum and Petroleum Products,” or other reliable technique. Chromatographic Technique The analyst is expected to be familiar with the technique of gas chromatography
22、and the equipment being used. 1. Install the gas purifier in the supply line between the carrier gas source and the carrier gas inlets on the gas chromatograph. Column life is significantly reduced if the gas purifier is not used. 2. Install the fused silica capillary column in the gas chromatograph
23、, according to the column and gas chromatograph manufacturers instructions. CAUTION: Hydrogen leakage into the confined volume of the column oven can cause a violent explosion. It is mandatory to check for leaks each time a connection is made and periodically thereafter. Table 1 Recommended Operatin
24、g Conditions Carrier gas hydrogen Mode constant flow Head pressure 207 kPa gauge (30 psig) Linear velocity 15 C 38 cm/sec Equivalent flow 15 C 2.6 mL/min Split flow 200 mL/min Injection port temperature 215 C Column temperature program Initial temperature 15 C Initial hold time 15 min Programming ra
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