ASTM D6646-2003(2008) 895 Standard Test Method for Determination of the Accelerated Hydrogen Sulfide Breakthrough Capacity of Granular and Pelletized Activated Carbon《颗粒和柱状活性炭硫化氢穿透.pdf
《ASTM D6646-2003(2008) 895 Standard Test Method for Determination of the Accelerated Hydrogen Sulfide Breakthrough Capacity of Granular and Pelletized Activated Carbon《颗粒和柱状活性炭硫化氢穿透.pdf》由会员分享,可在线阅读,更多相关《ASTM D6646-2003(2008) 895 Standard Test Method for Determination of the Accelerated Hydrogen Sulfide Breakthrough Capacity of Granular and Pelletized Activated Carbon《颗粒和柱状活性炭硫化氢穿透.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 6646 03 (Reapproved 2008)Standard Test Method forDetermination of the Accelerated Hydrogen SulfideBreakthrough Capacity of Granular and Pelletized ActivatedCarbon1This standard is issued under the fixed designation D 6646; the number immediately following the designation indicates the
2、 year oforiginal adoption 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 is intended to evaluate the perfor
3、manceof virgin, newly impregnated or in-service, granular or pellet-ized activated carbon for the removal of hydrogen sulfide froman air stream, under the laboratory test conditions describedherein. A humidified air stream containing 1 % (by volume)hydrogen sulfide is passed through a carbon bed unt
4、il 50 ppmbreakthrough of H2S is observed. The H2S adsorption capacityof the carbon per unit volume at 99.5 % removal efficiency (gH2S/cm3carbon) is then calculated. This test is not necessarilyapplicable to non-carbon adsorptive materials.1.2 This standard as written is applicable only to granularan
5、d pelletized activated carbons with mean particle diameters(MPD) less than 2.5 mm. See paragraph 5.3 if activatedcarbons with larger MPDs are to be tested.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of
6、this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 2652 Terminology Relating to Activated CarbonD 2854 Test Method for Apparent Density of ActivatedCarbonD 2867 Test
7、Methods for Moisture in Activated CarbonE 300 Practice for Sampling Industrial Chemicals3. Terminology3.1 Terms relating to this standard are defined in D 2652.4. Summary of Test Method4.1 Breakthrough capacity is determined by passing astream of humidified air containing 1 volume % hydrogensulfide
8、through a sample of granular or pelletized activatedcarbon of known volume under specified conditions until theconcentration of hydrogen sulfide in the effluent gas reaches 50ppmv.5. Significance and Use5.1 This method compares the performance of granular orpelletized activated carbons used in odor
9、control applications,such as sewage treatment plants, pump stations, etc. Themethod determines the relative breakthrough performance ofactivated carbon for removing hydrogen sulfide from a humidi-fied gas stream. Other organic contaminants present in fieldoperations may affect the H2S breakthrough c
10、apacity of thecarbon; these are not addressed by this test. This test does notsimulate actual conditions encountered in an odor controlapplication, and is therefore meant only to compare thehydrogen sulfide breakthrough capacities of different carbonsunder the conditions of the laboratory test.5.2 T
11、his test does not duplicate conditions that an adsorberwould encounter in practical service. The mass transfer zone inthe 23 cm column used in this test is proportionally muchlarger than that in the typical bed used in industrial applica-tions. This difference favors a carbon that functions morerapi
12、dly for removal of H2S over a carbon with slower kinetics.Also, the 1 % H2S challenge gas concentration used hereengenders a significant temperature rise in the carbon bed. Thiseffect may also differentiate between carbons in a way that isnot reflected in the conditions of practical service.5.3 This
13、 standard as written is applicable only to granularand pelletized activated carbons with mean particle diametersless than 2.5 mm. Application of this standard to activatedcarbons with mean particle diameters (MPD) greater than 2.5mm will require a larger diameter adsorption column. The ratioof colum
14、n inside diameter to MPD should be greater than 10 inorder to avoid wall effects. In these cases it is suggested thatbed superficial velocity and contact time be held invariant atthe conditions specified in this standard (4.77 cm/sec and 4.81This test method is under the jurisdiction of ASTM Committ
15、ee D28 onActivated Carbon and is the direct responsibility of Subcommittee D28.04 on GasPhase Evaluation Tests.Current edition approved Aug. 1, 2008. Published September 2008. Originallyapproved in 2001. Last previous edition approved in 2003 as D 664603.2For referenced ASTM standards, visit the AST
16、M 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.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, Unite
17、d States.sec).Although not covered by this standard, data obtained fromthese tests may be reported as in paragraph 12 along withadditional information about column diameter, volume ofcarbon, and volumetric flow rate used.5.4 For pelletized carbons, it is felt that the equivalentspherical diameter of
18、 the pellet is the most suitable parameterfor determining the appropriate adsorption column insidediameter. The equivalent spherical diameter is calculatedaccording to the following equation.Deqv53 XdXhd 1 2 Xh(1)where:d = the diameter, andh = the length of the pellet in mm.An average of 50 to 100 m
19、easurements is recommended todetermine the average length of a pellet. Annex A3 is a table toguide the user in selecting bed diameter and flow rates fromtypical equivalent diameters (or MPD) of pelletized carbon.6. Apparatus and Materials6.1 (561) % Hydrogen Sulfide in Nitrogen Mixture. Theconcentra
20、tion of hydrogen sulfide in the gas test mixture mustbe known. It is recommended that gas cylinders specificallymanufactured for holding hydrogen sulfide gas be used. Ana-lyzed and certified hydrogen sulfide in nitrogen gas mixturescan be purchased from specialty gas suppliers. Annex A1 andAnnex A2
21、present methods that may be used to check thehydrogen sulfide concentration of hydrogen sulfide/nitrogengas mixtures. It is recommended that the hydrogen sulfideconcentration be checked if gas cylinders are stored for morethan three months, particularly after being partially depleted.Other organic c
22、ontaminants that may be present in the hydro-gen sulfide tank can affect the adsorption capacity of the carbonbeing tested.6.2 Hydrogen Sulfide Detector. The hydrogen sulfide detec-tor used in this test must be demonstrated to reliably detect 50ppm hydrogen sulfide in a humidified air stream. In add
23、ition tocertain “solid state” detectors, electrochemical type hydrogensulfide sensors, e.g., Ecolyzer Model 6400 or Interscan LD-17,have been evaluated and fit this requirement. Other means ofhydrogen sulfide detection may be selected, as long as they arecarefully calibrated and evaluated for this a
24、pplication.6.3 Adsorption Tube. The adsorption tube is shown in Fig. 1.Adsorption tubes are not commercially available; however,they can be custom fabricated by a scientific glassblower. Theperforated support shown is necessary to support the carbonbed and to enhance diffusion of the gases. (Adjust
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