GPA STD 2103-2003 Tentative Method for the Analysis of Natural Gas Condensate Mixtures Containing Nitrogen and Carbon Dioxide by Gas Chromatography《采用气相色谱法分析含氮和二氧化碳的天然气凝析混合物的暂行方法》.pdf
《GPA STD 2103-2003 Tentative Method for the Analysis of Natural Gas Condensate Mixtures Containing Nitrogen and Carbon Dioxide by Gas Chromatography《采用气相色谱法分析含氮和二氧化碳的天然气凝析混合物的暂行方法》.pdf》由会员分享,可在线阅读,更多相关《GPA STD 2103-2003 Tentative Method for the Analysis of Natural Gas Condensate Mixtures Containing Nitrogen and Carbon Dioxide by Gas Chromatography《采用气相色谱法分析含氮和二氧化碳的天然气凝析混合物的暂行方法》.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、GPA Standard 21 03-03 Tentative Method for the Analysis of Natural Gas Condensate Mixtures Containing Nitrogen and Carbon Dioxide by Gas Chromatography Adopted as Tentative Standard, 2003 Gas Processors Association 6526 East 60th Street Tulsa, ktahorna 74145 DISCLAIMER GPA publications necessarily a
2、ddress problems of a general nature and may be used by anyone desiring to do so. Every effort has been made by GPA to assure accuracy and reliability of the information contained in its publications. With respect to particular circumstances, local, state, and federal laws and regulations should be r
3、eviewed. It is not the intent of GPA to assume the duties of employers, manufacturers, or suppliers to warn and properly train employees, or others exposed, concerning health and safety risks or precautions. GPA makes no representation, warranty, or guarantee in connection with this publication and
4、hereby expressly disclaims any liability or responsibility for loss or damage resulting from its use or for the violation of any federal, state, or municipal regulation with which this publication may conflict, or for any infringement of letters of patent regarding apparatus, equipment, or method so
5、 covered. “Copyrignt 2003 by Gas Processors Association. All rights reserved. No part of this Report may be reproduced without written consent of the Gas Processors Association.” Tentative Method for the Analysis of Natural Gas Condensate Mixtures Containing Nitrogen and Carbon Dioxide by Gas Chroma
6、tography 1. SCQPE 1.1 This method is intended for the analysis of separator condensates containing nitrogenhir and carbon dioxide, that fall wiihin the compositional ranges listed in Table I. This method is intended for mixtures containing greater than 5 mole percent of heptanes and heavier fraction
7、s. Tabte I Components and Compositional Ranges Allowed 1 Components Conc. Range (moi %) Nitrogen 0.01 -50 Carbon Dioxide O O1 - 5.0 Methane 0.01 - 40 o Ethane 0.01 - 15.0 Propane 0.01 - 15.0 Iso-Butane 0.01 - 15.0 N-Butane and 2,2-Dimethylpropane 0.01 - 75.0 Iso-Pentane 0.01 - 15.0 N-Pentane 0.01 -
8、15.0 I 2,2-Dimethylbutane, 2,3-Dimethylbutane and 0.01 - 50.0 I 2-Methylpentane, 3-Methylpentane, Cyclopentane, N-Hexane Heptanes & Heavier 50-800 _I - 1.2 The heptanes and heavier fraction is ignored in the chromatographic analysis, or precut to vent and determined volumetrically with the physical
9、properties determined by direct measurement andlor calculation. 1.3 Reference documents are ASTM 0-2001 (modified for co n dens aie) “D epe n tan iza f ion of Gasoline and Naph th a s “ (a I tern at el y AST M D -86 “Stan da rd Test Method for Distillation of Petroleum Products at Atmospheric Pressu
10、re“, or equivalent, ASTM D-4052 “Standard Test Methad for Density and Relative Density of Liquids by Digital Density Meter“ (alternately ASTM D- 287 “Standard Test Method far API Gravity of Crude Petroleum and Petroleum Producfs (Hydrometer Method)“), UOP-I 58 “Molecular Weight Determination Using F
11、reezing Point Osmometer“ (alternately ASTM D- 66 or GPSA Engineering Data Book, Kragcoe correlation), API MPMS Chapter 20. I “Allocation Measurement“, API MPMS Chapter 12.2 Part 3 “Calculation of Net Standard Volumes and GPA 2177 Nnalysis of Natural Gas Liquid Mixtures Containing Nitrogen and Carbon
12、 Dioxide by Gas Chromatography : Note 1-Thrs method can be used for a hexanes-plus analysis by adjusting the timing of the precut event to occur following he elution of n-pentane from the precut column 1 2. SUMMARY OF METHOD 2.1 Components to be determined in a natural gas condensate mixture are phy
13、sically separated by gas chromatography and compared to calibration data obtained under identical operating conditions. A fixed volume of sample in the liquid phase is isolated in a suitable sample inlet system and flashed onto the chromatographic column. 2.1 .I Components nitrogdair through n-hexan
14、e are individually separated with the carrier flow in the forward direction. The numerous heavy end components are precut via a switching valve immediately following the elution of normal hexane. The heptanes-plus fraction may be ignored or precut to vent. (See Fig. I.) I- _- - Figure 1 - Chromatogr
15、am of Demethanized Hydrocarbon Liquid Mixture. (Frontal Carrier Gas Flow through N-Hexane. Precut Heptanes Plus). 2 I .2 The Heptanes-Plus fraction is determined separately by physically measuring its volume The physical properties, such as Molecular Weight, Density and Heating Value, of the Heptane
16、s-Plus are measured by other methods 2.2 The chromatogram is interpreted by comparing the areas of component peaks obtained from the unknown sample with corresponding areas obtained from a run of a selected reference standard. Any component in the unknown suspected to be outside the linearity range
17、of the detector, with reference to the known amount of that component in the reference standard, must be determhed by a response curve. (See Section 5.1 & 5.1.1 for further explanation of instrument linearity check procedures.) 3. APPARATUS 3.1.4 Chromatographic Columns 3.1.4, i Column No, 1(Analyti
18、cal Column) - A partition column must be provided capable of separating nitrogenlair, carbon dioxide and the hydrocarbons methane through normal hexane. (See Fig. 1) Separation of carbon dioxide must be sufficient so that a sample containing 0.01 mole percent carbon dioxide will produce a detectable
19、 peak on the chromatogram. (The Silicone 200/500 column. containing a 27-30 weight percent liquid phase load, has proven satisfactory for this type of analysis.) (See Paragraph 3-2. Appendix B, GPA Publication 2261 for further explanation and construction of column.) 3.1.4.2 Column No. 2 (Precut Col
20、umn) - A partition column similar to column No. 1, it must be of the same diameter as column No. 1. The column must be of an appropriate length to clearly separate the heptanes-plus fraction from the hexanes and lighter components. 3.1.5 Temperature Control - The chromatographic coiumn(s) and the de
21、tector shall be maintained at temperatures stable enough to achieve the precision requirements in Section 8. 3.15 Carrier Gas System - Components of the carrier gas system must provide the ability to control the pressure and/or flow stable enough to achieve the precision requirements in Section 8. I
22、t is desirable to use a carrier gas which contains minimal quantities of critical impurities (ie, oxygen, water and total hydrocarbons). 3.2 Integration Systems 3.2.1 Computerized Integration System - This is the preferred and recommended integration system. This type of system provides the highest
23、degree of precision, flexibility of data handling, and operator convenience. 3.2.2 Electronic Digital Integrator - Electronic digital integrators are able to integrate peak areas accurately via several different methods employing various correction adjustments. Note 3-CAUTION- The operator must ther
24、efore be well versed in integrator operation, preventing improper handling of data - ultimately resulting in false information. 3.3 Sample Containers 3.3.1 Floating Piston Cylinder - A strongly preferred and recommended device suitable for securing, containing and transferring samples into a liquid
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