GPA STD 2186-2014 Method for the Extended Analysis of Hydrocarbon Liquid Mixtures Containing Nitrogen and Carbon Dioxide by Temperature Programmed Gas Chromatography.pdf
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1、 Method for the Extended Analysis of Hydrocarbon Liquid Mixtures Containing Nitrogen and Carbon Dioxide by Temperature Programmed Gas Chromatography Adopted as a Standard 2002 Revised 2014 Gas Processors Association 6526 East 60th Street Tulsa, Oklahoma 74145 GPA Standard 2186-14 DISCLAIMER GPA publ
2、ications necessarily address 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 r
3、egulations should be reviewed. 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
4、 this publication and 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, e
5、quipment, or method so covered. “Copyright2014 by Gas Processors Association. All rights reserved. No part of this Report may be reproduced without the written consent of the Gas Processors Association.” Impact Statement Method for the Extended Analysis of Liquid Hydrocarbon Mixtures Containing Nitr
6、ogen and Carbon Dioxide by Temperature Programmed Gas Chromatography GPA 2186 Purpose This standard covers the determination of the chemical composition of natural gas liquid streams where precise physical property data of the hexanes and heavier fraction is required. This procedure is applicable fo
7、r liquid hydrocarbon mixes which may contain nitrogen and carbon dioxide and/or hydrocarbon complexes C1 through C10 that fall within the ranges listed in Table 1. This standard had previously seen only minor revisions since its adoption as a technical standard in 1986. In this revision, portions th
8、at had become obsolete and that did not reflect current industry practices were revised. In addition, the example calculations that utilize GPA 2145 to reflect the 2009 revision of GPA 2145 and all calculations related to those presented in GPA 2172 were removed and referenced to GPA 2172. Also, the
9、 QA/QC related material previously included in this standard have been removed and referenced to GPA 2198. The most significant changes to the standard involve updates to the method to maintain consistency with current technologies. Contracts It is recognized that parties may enter into a contractua
10、l agreement different from this Standard. Economic / Commercial Impact GPA 2186 may currently be referenced in custody transfer contracts. There are no anticipated costs associated with the implementation of the revised method. However, companies should assess their own economic impact of implementi
11、ng the method into their measurement, accounting and laboratory systems. Environmental / Safety Impact GPA 2186-14 is expected to have no environmental or safety impact on the industry. Operations / Maintenance Impact GPA 2186-14 should result in no changes to programs, spreadsheets, and other softw
12、are tools used to perform the analysis that are covered by this standard. Facilities Design GPA 2186-14 is expected to have no impact on facilities design. Implementation It is proposed that this revised standard have an implementation date one year after publication. 1 Method for the Extended Analy
13、sis of Hydrocarbon Liquid Mixtures Containing Nitrogen and Carbon Dioxide by Temperature Programmed Gas Chromatography 1.0 Scope 1.1 This method is intended for the compositional analysis of natural gas liquid mixtures where precise physical property data of the hexanes and heavier fraction are requ
14、ired. The procedure is applicable for mixtures which may contain components of nitrogen, carbon dioxide, and/or hydrocarbon compounds C1- C14. Table 1 - Components and Recommended Compositional Ranges Components Concentration Range (mole %) Nitrogen 0.01 5.0Carbon Dioxide 0.01 5.0Methane 0.01 5.0Eth
15、ane 0.01 95.0Propane 0.01 100.0Iso-Butane 0.01 100.0N-Butane and 2,2-Dimethylpropane 0.01 100.0Iso-Pentane 0.01 15.0N-Pentane 0.01 15.02,2-Dimethylbutane, 2,2-Dimethylbutane,and 2-Methylpentane, 3-Methylpentane, Cyclopentane, N-Hexane 0.01 15.0 Heptanes & Heavier 0.01 5.02.0 Summary of Method 2.1 Co
16、mponents to be determined in a natural gas liquid sample are physically separated by Gas Chromatography and compared to calibration data obtained under identical operating conditions on a mixture (or mixtures) of known composition. 2.2 A fixed volume of sample in the liquid phases is isolated in a s
17、uitable sample inlet valve. The fixed volume is injected into a chromatographic system. 2.2.1 The Hexanes Plus components are individually separated using a capillary column, temperature programming and a flame ionization detector (FID). (See Figure 2A and Figure 2B.) Appendix A contains a packed co
18、lumn alternative to the capillary column method. 2.2.2 Nitrogen/Air, Carbon Dioxide and C1 to C5 or Hexanes Plus hydrocarbons are analyzed using GPA Standard 2177 (Analysis of Natural Gas Liquid Mixtures Containing Nitrogen and Carbon Dioxide by Gas Chromatography), latest version. 2 2.2.2.1 If the
19、allocation calculation method is chosen, the C6 plus portion of the GPA 2177 analysis must be reported. 2.2.2.2 If the bridging calculation method is used, the C6 plus portion of the GPA 2177 analysis is not required. 2.2.2.3 Future reference to the nitrogen through pentanes or hexanes analysis will
20、 be called, “GPA 2177 analysis”. 2.2.2.4 Future references to the hexanes plus individual component separation will be called, “this standard”. 2.2.3 The combined GPA 2177 analysis and analysis from this standard may be performed using two different instruments or may be combined into a single chrom
21、atograph. (see Figure 1) Figure 1 Possible Valve, Column and Detector Configuration for a single instrument performing the GPA 2186 Analysis 2.3 An electronic integrator/computer data station is utilized to provide peak area information and to perform calculations. Individual component peak areas of
22、 the unknown sample are mathematically compared to peak areas of corresponding components in a known reference standard (or standards). 2.4 The GPA 2177 analysis and the GPA 2186 analysis are then used to calculate the weight, mole and liquid volume percent of each component using one of the calcula
23、tion procedures (allocation or bridging). 3 2.4.1 The allocation and bridging calculation procedures differ only in the way the weight percent of the hexanes plus components are calculated. GPA studies have shown that, when performed correctly, both procedures produce final results that are essentia
24、lly identical. Note 1: The term “Cn” is used in this document. The subscript “n” refers to the carbon number of the largest hydrocarbon molecule expected in the sample. For example, if dodecane (C12) is the largest hydrocarbon molecule, then “n” would be “12”. Figure 2A Chromatogram of Natural Gas L
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