ASTM D4051-2010(2015) Standard Practice for Preparation of Low-Pressure Gas Blends《制备低压气体混合物的标准实施规程》.pdf
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1、Designation: D4051 10 (Reapproved 2015)Standard Practice forPreparation of Low-Pressure Gas Blends1This standard is issued under the fixed designation D4051; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision
2、. 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 practice covers a laboratory procedure for thepreparation of low-pressure multicomponent gas blends. Thetechnique is applicabl
3、e to the blending of components atpercent levels and can be extended to lower concentrations byperforming dilutions of a previously prepared base blend. Themaximum blend pressure obtainable is dependent upon therange of the manometer used, but ordinarily is about 101 kPa(760 mm Hg). Components must
4、not be condensable at themaximum blend pressure.1.2 The possible presence of small leaks in the manifoldblending system will preclude applicability of the method toblends containing part per million concentrations of oxygen ornitrogen.1.3 This practice is restricted to those compounds that donot rea
5、ct with each other, the manifold, or the blend cylinder.1.4 This standard does not purport 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-bilit
6、y of regulatory limitations prior to use.2. Summary of Practice2.1 Through the use of a blending manifold, the blendcomponents are combined based upon partial pressure. Com-ponents are added in order of ascending vapor pressure; that is,components of lowest vapor pressure are added first, with theex
7、ception that components at concentrations of 5 % or lesswould usually be added first. Compressibility factors areapplied to the component partial pressures to convert themfrom ideal to real gas. The real partial pressures, which areproportional to gas volumes, are normalized to give molpercent compo
8、sition of the blend.3. Significance and Use3.1 The laboratory preparation of gas blends of knowncomposition is required to provide primary standards for thecalibration of chromatographic and other types of analyticalinstrumentation.4. Apparatus4.1 Blending ManifoldConstruct manifold as shown inFig.
9、1. Details of construction are not critical; that is, glass,pipe, or tubing with welded or compression fittings may beused. The manifold must be leak free and arranged forconvenience of operation. More than one feedstock connectionpoint may be included if desired. Connections to the pump andmanomete
10、r shall follow accepted vacuum practice. Valves shallhave large enough apertures to permit adequate pumping in areasonable length of time.4.1.1 The finished manifold shall have a leak rate no greaterthan 1 mm Hg/h (0.133 kPah).4.2 Gauge, a well-type manometer such as the MeriamModel 30EB25 (see Note
11、 1).NOTE 1A high-vacuum gauge of the McLeod Manostat type pressuretransducer or a 0 bar to 2 bar (absolute) gauge may be included in themanifold system to determine how well the system has been evacuated.4.2.1 Alternatively, an electronic pressure gauge may beused in place of a manometer.4.3 Pump, h
12、igh-vacuum, two-stage, capable of pumpingdown to a pressure of 1.33 104kPa (0.1 m).5. Reagents and Materials5.1 Blend Components, high-purity, as required dependingon the composition of the proposed blend.5.2 Nitrogen, high purity, as required, for purging and forbalance gas, where applicable.6. Pro
13、cedure6.1 Connect the blend cylinder to the manifold at position A(see Fig. 1 for valve and position designations). Open valves 1,2, 3, and 6 and evacuate the manifold system thoroughly.Valves 4 and 5 are closed.NOTE 2AMcLeod Manostat type gauge may be used at various timesduring the procedure to de
14、termine how well the system has beenevacuated and to indicate if there are leaks present. Otherwise, a steady1This practice is under the jurisdiction of ASTM Committee D02 on PetroleumProducts, Liquid Fuels, and Lubricants and is the direct responsibility of Subcom-mittee D02.04.0A on Preparation of
15、 Standard Hydrocarbon Blends.Current edition approved Oct. 1, 2015. Published December 2015. Originallyapproved in 1981. Last previous edition approved in 2010 as D4051 10. DOI:10.1520/D4051-10R15.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. Uni
16、ted States1state condition of the manometer or electronic pressure gauge reading canbe taken as an indication that an acceptable vacuum has been attained.6.1.1 When a good vacuum less than 0.01 kPa (0.1 mm Hg)is reached, connect one or more blend component cylinders tothe manifold at positions B or
17、C, or both. Close valve 2 andopen valves 4 and 5, thereby evacuating the connecting linesup to the blend component cylinder valves. When a goodvacuum is again reached, close valves 4 and 5 and open theblend component cylinder valves. Ensure that the pressure ofany blend component delivered to valves
18、 4 and 5 does notexceed 200 kPa (1500 mm Hg). Record the initial pressurereadings from both sides of the manometer.6.1.2 The first component to be added will either have thelowest vapor pressure or will be present in the final blend at aconcentration of 5 % or less. Assume that the first componentfe
19、edstock is connected to manifold valve 4. Close valve 1 andopen valve 2. While carefully watching the manometer orelectronic pressure gauge reading, slowly open valve 4. Allowthe blend gas component to flow into the blend manifold untilthe desired precalculated manometer reading is reached (see7.1).
20、 Close valve 4 and be sure that the pressure remainsconstant. If using a manometer, tap it lightly to be certain thecorrect reading is obtained. Record the reading of both sides ofthe manometer and then close valve 3. Open valve 1 and waituntil the manifold is thoroughly evacuated.6.1.3 If the manif
21、old includes only one feedstock connec-tion point it will be necessary at this time to remove the firstfeedstock cylinder, connect the second, and evacuate the lineback to the feedstock cylinder valve. Assume this to be thecase; value 4 will, therefore, always be used as the feedstockcontrol valve.6
22、.1.4 When manifold evacuation is complete, close valve 1and 4. Open the feedstock cylinder valve and then slowly openvalve 4, allowing the second blend gas to flow into themanifold. Carefully watch the manometer or electronic pres-sure gauge.NOTE 3All additions should be made slowly to avoid tempera
23、turechanges.6.1.5 When the pressure in the manifold is several pascalshigher than the previous reading and is still slowly rising,slowly begin to open valve 3 so as to admit the component tothe sample cylinder. Valve 4 will remain partially open.Continue to open valve 3 while controlling the flow th
24、roughvalve 4 until the next desired pressure level is reached, alwaysmaintaining a higher pressure in the manifold than that in thecylinder. Close valve 4, allow the pressure to equilibrate, andrecord the manometer reading from both sides. Close valve 3.When additional components are to be included
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