ASTM D7904-2015 9260 Standard Test Method for Determination of Water Vapor (Moisture Concentration) in Natural Gas by Tunable Diode Laser Spectroscopy (TDLAS)《采用可调二极管激光光谱 (TDLAS) 测.pdf
《ASTM D7904-2015 9260 Standard Test Method for Determination of Water Vapor (Moisture Concentration) in Natural Gas by Tunable Diode Laser Spectroscopy (TDLAS)《采用可调二极管激光光谱 (TDLAS) 测.pdf》由会员分享,可在线阅读,更多相关《ASTM D7904-2015 9260 Standard Test Method for Determination of Water Vapor (Moisture Concentration) in Natural Gas by Tunable Diode Laser Spectroscopy (TDLAS)《采用可调二极管激光光谱 (TDLAS) 测.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D7904 15Standard Test Method forDetermination of Water Vapor (Moisture Concentration) inNatural Gas by Tunable Diode Laser Spectroscopy (TDLAS)1This standard is issued under the fixed designation D7904; the number immediately following the designation indicates the year oforiginal adopt
2、ion or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers online determination of vaporphase moisture conce
3、ntration in natural gas using a tunablediode laser absorption spectroscopy (TDLAS) analyzer alsoknown as a “TDL analyzer.” The particular wavelength formoisture measurement varies by manufacturer; typically be-tween 1000 and 10 000 nm with an individual laser having atunable range of less than 10 nm
4、.1.2 Process stream pressures can range from 700-mbar to700-bar gage. TDLAS is performed at pressures near atmo-spheric (700- to 2000-mbar gage); therefore, pressure reduc-tion is typically required. TDLAS can be performed in vacuumconditions with good results; however, the sample conditioningrequir
5、ements are different because of higher complexity and atendency for moisture ingress and are not covered by this testmethod. Generally speaking, the vent line of a TDL analyzer istolerant to small pressure changes on the order of 50 to200 mbar, but it is important to observe the manufacturerspublish
6、ed inlet pressure and vent pressure constraints. Largespikes or steps in backpressure may affect the analyzer read-ings.1.3 The typical sample temperature range is -20 to 65C inthe analyzer cell. While sample system design is not coveredby this standard, it is common practice to heat the sampletrans
7、port line to around 50C to avoid concentration changesassociated with adsorption and desorption of moisture alongthe walls of the sample transport line.1.4 The moisture concentration range is 1 to 10 000 partsper million by volume (ppmv). It is unlikely that one spec-trometer cell will be used to me
8、asure this entire range. Forexample, a TDL spectrometer may have a maximum measure-ment of 1 ppmv, 100 ppmv, 1000 ppmv, or 10 000 ppmv withvarying degrees of accuracy and different lower detectionlimits.1.5 TDL absorption spectroscopy measures molar ratiossuch as ppmv or mole percentage. Volumetric
9、ratios (ppmv and%) are not pressure dependant. Weight-per-volume units suchas milligrams of water per standard cubic metre or pounds ofwater per standard cubic foot can be derived from ppmv at aspecific condition such as standard temperature and pressure(STP). Standard conditions may be defined diff
10、erently fordifferent regions and entities. The moisture dew point can beestimated from ppmv and pressure. Refer to Test MethodD1142 and ISO 18453.1.6 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.7 This standard does not pur
11、port to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. Some specifichazards statements are given in
12、 Section 8 on Hazards.2. Referenced Documents2.1 ASTM Standards:2D1142 Test Method for Water Vapor Content of GaseousFuels by Measurement of Dew-Point TemperatureD4150 Terminology Relating to Gaseous FuelsD5503 Practice for Natural Gas Sample-Handling and Con-ditioning Systems for Pipeline Instrumen
13、tationD5454 Test Method for Water Vapor Content of GaseousFuels Using Electronic Moisture Analyzers2.2 ISO Standards:3ISO 10715 Natural Gas Sampling GuidelinesISO 18453 Natural GasCorrelation Between Water Con-tent and Water Dew Point3. Terminology3.1 Definitions: Also refer to Terminology D4150.1Th
14、is test method is under the jurisdiction ofASTM Committee D03 on GaseousFuels and is the direct responsibility of Subcommittee D03.12 on On-Line/At-LineAnalysis of Gaseous Fuels.Current edition approved Jan. 1, 2015. Published February 2015. DOI: 10.1520/D7904/D7904152For referenced ASTM standards,
15、visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from International Organization for Standardization (ISO), 1, ch. dela Voie-Creuse
16、, CP 56, CH-1211 Geneva 20, Switzerland, http:/www.iso.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States13.1.1 absorption spectroscopy, nrefers to spectroscopictechniques that measure the absorption of electromagneticradiation (such
17、 as light), as a function of frequency orwavelength, because of its interaction with a sample.3.1.2 adsorption, nadhesion of molecules to a solid sur-face forming a molecular or atomic film.3.1.3 chemometrics, nfield of science relating measure-ments made on a chemical system or process to the state
18、 of thesystem via application of mathematical or statistical methods.3.1.4 desorption, nphenomenon whereby a substance isreleased from a surface (the opposite of adsorption).3.1.5 heat trace, nribbon-shaped tape that uses electricalresistance or steam to generate heat.3.1.5.1 DiscussionHeat trace ta
19、pe is attached to sampletubing and other sample conditioning components to avoidcondensation and stabilize the temperature of the wettedcomponents and the gas stream.3.1.6 moisture dew point, nA temperature and pressure atwhich water vapor begins to condense into liquid.3.1.6.1 DiscussionFor a given
20、 concentration of watervapor, the dew point temperature is a function of pressure. Adew point curve is shown in Fig. 1 with the dew pointtemperature on the x-axis and pressure on the y-axis.3.1.7 nanometre, nunit of length;1 nm = 1/1 000 000 000thof a metre.3.1.8 selectivity, nrefers to the extent t
21、o which TDLAScan detect moisture in gas matrices without significant inter-ferences from other components in the mixture.3.1.9 standard condition for temperature and pressure, STP,nstandard set of conditions established to allow the compari-son of different sets of data.3.1.10 tunable diode laser ab
22、sorption spectroscopy, TDLAS,ntechnique for measuring the concentration of a specificcomponent, such as water vapor, in a gaseous sample byabsorption spectrometry using tunable diode lasers.4. Summary of Test Method4.1 A representative sample of the gas is extracted from aprocess pipe or pipeline an
23、d is transferred by a sampletransport line through an appropriately designed samplingsystem to the inlet of a moisture analyzer. The sample must beconditioned with a minimum, preferably negligible, impact onthe moisture concentration. The gas flows continuouslythrough the analyzer and is vented to a
24、tmosphere, or to flare, orback to the process stream depending on application andregulatory requirements.4.2 The gas sample stream flows through the measurementcell. An overall diagram of the system is shown in Fig. 2.Asolid state laser with a narrow wavelength range is used as alight source. Electr
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