GPA STD 2194-2014 Low-Pressure Field Method for Determining Ethyl Mercaptan Odorant in LP-Gas Using Length of Stain Tubes.pdf
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1、 Low-Pressure Field Method for Determining Ethyl Mercaptan Odorant in LP-Gas Using Length of Stain Tubes Adopted as a Standard 2001 Revised 2014 Gas Processors Association 6526 East 60th Street Tulsa, Oklahoma 74145 GPA Standard 2194-14 DISCLAIMER GPA publications necessarily address problems of a g
2、eneral 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 con-tained in its publications. With respect to particular circumstances, local, state, and federal laws and reg-ulations should be reviewed. It is not t
3、he intent of GPA to assume the duties of employers, manufactur-ers, 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 hereby expressly di
4、sclaims any liability or responsibility for loss or damage resulting from its use or for the vio-lation 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 covered. Copyrigh
5、t2014 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 Low Pressure Field Method for the Determination of Ethyl-Mercaptan Odorant in LP Gas Using a Length of Stain Tube GPA 219
6、4-14 Purpose This standard covers the determination of the concentration of Ethyl-Mercaptan in low pressure LP Gas using a length of stain tube. While other mercaptans and sulfur species may be indicated in a stain tube it is important to remember that the tubes are calibrated for and intended to be
7、 used to determine the con-centrations specifically of Ethyl Mercaptan in LP gas. This standard has not seen any revisions since its adoption as a Tentative Standard in 1994. It was then reapproved in 2001. This revision updates some materials used in the procedures which by todays best practices wo
8、uld be found obsolete in terms of what we would use to collect or transport a sample to the stain tube. i.e. gum rubber tubing etc. The most significant addition to the standard is a “Cautionary Statement”. The intention of the statement is to inform the user that it is critical that manufacturers i
9、nstructions be followed implicitly. Each lot of stain tubes is tested by the manufacturer for compliance to stated accuracy and each lot or box of stain tubes quite possibly is slightly different in terms of how they are to be used i.e. exposure times, indicat-ing colors or contaminants etc. Further
10、 the manufacturers instructions will state the exponent to be used for multiple or partial testing “pulls” of the pump or if these are allowed at all. This information may vary from lot to lot and from one brand of tube to another. Also of significance is the concept that if high accuracy and repeat
11、ability is required and chromatog-raphy is not indicated or feasible then there is many portable handheld electronic devices which offer these things as well as low power usage and intrinsic safety. So the user should consider if a length of stain tube is really the best commercially available optio
12、n based on their situation and requirements. Impact It is not expected that the use of this Standard will have any new or further impact. The users of this Standard should perform their own economic evaluation to include the use of handheld portable electronic devices as applicable. 1 Low-Pressure F
13、ield Method for Determining Ethyl Mercaptan Odorant in LP-Gas Using Length of Stain Tubes CAUTIONARY STATEMENT The need to determine the concentration of Ethyl Mercaptan in Propane can be driven by numerous fac-tors, including safety related incidents. The user should be aware that if definitive, hi
14、ghly accurate and repeatable readings are needed, length of stain tubes may not be the first choice as a commercially viable solution. In recent years there have been advancements in the determination of components of interest in various gases and liquids by means of portable or handheld electronic
15、devices which are outside the scope of this document. Concentration level accuracies can be greatly enhanced by the use of these electronic de-vices and of course chromatographic analysis can be the most accurate means of determining the con-centration levels of components of interest. The analytica
16、l results from a length of stain tubes are highly dependent on many factors. Therefore, it is imperative that the user read, understand and follow the instructions in each box of tubes implicitly since every box or lot of tubes potentially has its own individual characteristics. Interferences may in
17、clude temperature and moisture content of the product under test, ambient conditions, and a number of other diluents and contaminants. Ambient or operational conditions may preclude the use of a stain tube. It may be too hot or humid outside or the conditions in the propane may not be appropriate fo
18、r stain tube use. Manufacturers instructions will direct the user. Stain tube accuracies as stated by most manufacturers is 25%. While GPA testing shows 10% accu-racy in controlled conditions, it is important for the user to determine if the stated accuracy by the stain tube manufacturer is acceptab
19、le, based on the operational conditions, ambient conditions and safety re-quirements for the determination of the concentration level of Ethyl Mercaptan in Propane. 2 Low-Pressure Field Method for Determining Ethyl Mercaptan Odorant in LP-Gas Using Length of Stain Tubes 1.0 Scope 1.1 This method cov
20、ers the determination of ethyl mercaptan in LP-Gas vapors when those vapors are at a pressure of eleven (11) inches of water column. The time specified for the test is one minute (see manufacturers instructions). The stain tube suggested is calibrated to read directly in parts per million (2.5 40) a
21、t the specified condition. This test method is a field method to generally determine if an LP-Gas sample contains adequate odorization to meet the minimum requirements of NFPA58. A chromato-graphic method should be used for a more precise, quantitative determination. CAUTION: This test procedure req
22、uires the release of very small volumes of combustible LP-Gas vapors. The user is warned to take proper safety precautions to prevent the accumulation of a combustible mixture and prevent ignition. This procedure should never be performed in an enclosed building unless a properly designed vapor reco
23、very exhaust hood is provided. Liquid propane evaporates rapidly and can freeze flesh quickly. If any liquid propane is encoun-tered, avoid any skin contact. 2.0 Summary of Method 2.1 A sample of LP-Gas vapors is pressured through the detector tube with the pressure available at a consumer location,
24、 typically a service line, which is usually eleven (11) inches of water column pres-sure. This is normally the standard final pressure regulator setting for LP-Gas vapors at the point of con-sumption; however, field settings may be found 3”wc of this standard. The sample is pressured through the det
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