UOP 730-2009 Total Oxygen in Liquid Hydrocarbons by Pyrolysis.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 2009 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. Total Oxygen in Liquid Hydrocarbons by Pyrolysis UOP Method 730-09 Scope This method is for determining total oxygen in liquid hydrocarbons, including synthetic paraffinic kerosene (SPK) and bio-derived green diesel fuel, by pyrolysis. The method is applicable to concentrations ranging from
5、approximately 0.02 to 1.0 mass-%. Higher concentrations can be determined with appropriate sample dilution. The method determines the total oxygen, including organic oxygen compounds, dissolved water, and dissolved molecular oxygen. Contributions of oxygen from water and dissolved molecular oxygen m
6、ust be measured using other methods (see References below) and subtracted from this result. References ASTM Method D 4052, “Density and Relative Density of Liquids by Digital Density Meter,” www.astm.org UOP Method 481, “Water in Liquid Hydrocarbons by Coulometry,” or ASTM Method D6304, “Water in Pe
7、troleum Products, Lubricating Oils, and Additives by Coulometric Karl Fischer Titration,” www.astm.org UOP Method 678, “Dissolved Molecular Oxygen in Liquid Hydrocarbons by Electrochemical Detection,” www.astm.org UOP Method 999, “Precision Statements in UOP Methods,” www.astm.org Outline of Method
8、An oxygen analyzer (CHN/O instrument) is set up and calibrated with liquid standards. Samples are directly injected into the pyrolysis tube in a helium carrier. Samples are pyrolyzed at a temperature in excess of 1000C. Subsequently, a metallized carbon reagent helps to quantitatively convert all of
9、 the oxygen into carbon monoxide (CO). Acid gas is removed from the product stream with an appropriate trap material (soda lime). The pyrolysis product gas is passed through a GC column to separate the CO. The CO content is measured using thermal conductivity detection. Apparatus References to catal
10、og numbers and suppliers are included as a convenience to the method user. 2 of 7 730-09 Other suppliers may be used. Balance, readability 0.1-mg CHN/O Analyzer, Model Flash EA1112, Thermo Scientific, available from CE Elantech. Instrument is equipped with a liquid autosampler. Follow the manufactur
11、ers recommendations for maintaining a supply of spare parts and consumables, such as autosampler vials. Any use of an alternative instrument must be tested to determine if it provides equivalent sensitivity and precision. Flasks, volumetric, Class A, borosilicate glass, 10-, 25-, and 50-mL, Fisher S
12、cientific, Cat. Nos. 20-812D, 10-210-8A, -8B, respectively Pipet, transfer, disposable plastic, 152-mm length, Fisher Scientific, Cat. No. 13-711-SA Pipet, volumetric, Class A, 1-, 2-, 5- and 10-mL, Fisher Scientific, Cat. No. 13-650-2B, -2C, -2F, and -2L, respectively Pipet filler, Fisher Scientifi
13、c, Cat. No. 13-681-51 Regulator, helium, two-stage, high purity, with stainless steel diaphragm, delivery pressure range 30-700 kPa (4-100 psi), Matheson, Cat. No. 3810-580 Syringe, gastight, 250-L, CE Elantech, Cat. No. 365-040-42 Reagents and Materials References to catalog numbers and suppliers a
14、re included as a convenience to the method user. Other suppliers may be used. References to water mean deionized or distilled water. The following items are required to perform the analysis. Additional reagents and materials may be required depending on the specific oxygen analyzer utilized. Where d
15、ifferent reagents are specified in the instrument manual, follow the manufacturers recommendations. Benzoic Acid, Aldrich, Cat. No. 242381-100G Helium, compressed gas, 99.999% minimum purity, such as Matheson Ultra High Purity. Magnesium perchlorate (Anhydrone), Thermo Electron, Cat. No. 338-219-00
16、Nickel coated carbon, Thermo Electron, Cat. No. 338-238-00 Quartz turnings, Thermo Electron, Cat. No. 338-223-10 Quartz wool, Thermo Electron, Cat. No. 338-222-50 Soda lime, Thermo Electron, Cat. No. 338-352-30 Toluene, anhydrous, Burdick 3 or 4 injections are recommended. Average the results. The r
17、epeatability of the replicates should be within the precision of the method. If they are not, look for air bubbles in the syringe or other instrument malfunction. The sample must be completely injected into the pyrolysis tube. Small volumes and/or slow injection rates can result in a loss of sample
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