ASTM D6886-2003 Standard Test Method for Speciation of the Volatile Organic Compounds (VOCs) in Low VOC Content Waterborne Air-Dry Coatings by Gas Chromatograpy《使用气体色谱法的低VOC含量水中空气干.pdf
《ASTM D6886-2003 Standard Test Method for Speciation of the Volatile Organic Compounds (VOCs) in Low VOC Content Waterborne Air-Dry Coatings by Gas Chromatograpy《使用气体色谱法的低VOC含量水中空气干.pdf》由会员分享,可在线阅读,更多相关《ASTM D6886-2003 Standard Test Method for Speciation of the Volatile Organic Compounds (VOCs) in Low VOC Content Waterborne Air-Dry Coatings by Gas Chromatograpy《使用气体色谱法的低VOC含量水中空气干.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 6886 03Standard Test Method forSpeciation of the Volatile Organic Compounds (VOCs) inLow VOC Content Waterborne Air-Dry Coatings by GasChromatograpy1This standard is issued under the fixed designation D 6886; the number immediately following the designation indicates the year oforigin
2、al adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method is for the determination of the weightpercent o
3、f individual volatile organic compounds in low VOCcontent waterborne latex air-dry coatings. The method isintended primarily for analysis of waterborne coatings in whichthe material VOC content is below 5 weight percent. Themethod has been used successfully with higher VOC contentwaterborne coatings
4、.1.2 This method may also be used to measure the exemptvolatile organic compound content (acetone, methyl acetate,and p-chlorobezotrifluoride) of waterborne coatings. The meth-odology is virtually identical to that used in Test MethodD 6133 and similar to that used in Test Method D 6438.1.3 Volatile
5、 compounds that are present at the 0.05 weightpercent level or greater can be determined. Solid phasemicroextraction will detect volatile compounds at lower levels.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the
6、 user of 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:D 1475 Test Method for Density of Liquid Coatings, Inks,and Related Products2D 2369 Test Method for Volatile
7、Content of Coatings2D 3792 Test Method for Water Content of Coatings byDirect Injection Into a Gas Chromatograph2D 3925 Practice for Sampling Liquid Paints and RelatedPigmented Coatings2D 3960 Practice for Determining Volatile Organic Com-pound (VOC) Content of Paints and Related Coatings2D 4017 Tes
8、t Method for Water in Paints and Paint Materialsby Karl Fischer Method2D 6133 Test Method for Acetone p-ChlorobenzotrifluorideMethyl Acetate or t-Butyl Acetate Content of Solventborneand Waterborne Paints, Coatings, Resins, and Raw Mate-rials by Direct Injection into A Gas Chromatograph2D 6438 Test
9、Method for Acetone, Methyl Acetate, andParachlorobenzotrifluoride Content of Paints, and Coat-ings by Solid Phase Microextraction-Gas Chromatogra-phy2E 177 Practice for Use of the Terms Precision and Bias inASTM Test Methods3E 691 Practice for Conducting an Interlaboratory Study toDetermine the Prec
10、ision of a Test Method33. Terminology3.1 Abbreviations:3.1.1 CW/DVBCarbowaxy/divinylbenzene3.1.2 DB2-(2-butoxyethoxy)ethanol; Butyl Carbitoly;diethylene glycol monobutyl ether3.1.3 EB2-butoxyethanol; Butyl Cellosolvey; ethyleneglycol monobutyl ether3.1.4 EGethylene glycol3.1.5 FIDflame ionization de
11、tector3.1.6 F-VOCformulation data calculated volatile organiccompound in g/(L-water)3.1.7 GCgas chromatograph3.1.8 PGpropylene glycol3.1.9 % RSDpercent relative standard deviation3.1.10 SPMEsolid phase microextraction3.1.11 Std Devstandard deviation3.1.12 TX2,2,4-trimethypentane-1,3-diol, monoisobu-
12、tyrate; Texanoly3.1.13 VOCvolatile organic compound3.1.14 X-VOCexperimental volatile organic compound ing/(L-water)4. Summary of Test Method4.1 A known weight of coating is dispersed in tetrahydro-furan (THF), internally standardized, and analyzed by capillarygas chromatography to give a speciated c
13、omposition of thevolatile organic compounds and exempt organic compounds, if1This test method is under the jurisdiction of ASTM Committee D01 on Paintand Related Coatings, Materials, and Applications and is the direct responsibility ofSubcommittee D01.21 on Chemical Analysis of Paints and Paint Mate
14、rials.Current edition approved March 10, 2003. Published May 2003.2Annual Book of ASTM Standards, Vol 06.01.3Annual Book of ASTM Standards, Vol 14.02.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.any, present in the coating. Summat
15、ion of the individualvolatile organic compound weight fractions gives the totalVOC content of the coating measured in weight percent (Note1).NOTE 1Using the provisions of Practice D 3960, the VOC content ofcoatings measured in g/L minus water, or other units, may be determined.Since the determinatio
16、n of weight percent VOC in the present method isby direct measurement, either the water fraction (Test Method D 3792 orTest Method D 4017) or the nonvolatile fraction (Test Method D 2369)may be determined indirectly in the application of Practice D 3960. Theequations for calculating regulatory VOC c
17、ontent when no exempt volatilecompounds are present are:VOC 5fVOCDP!1 2 1 2 fNV2 fVOC!DP/DW!#(1)orVOC 5fVOCDP!1 2 fWDP/DW!#(2)where:DP,fNV,fVOC, and fW= coating density, nonvolatile fraction,VOC fraction, and water fraction, respec-tively.4.2 Direct GC/FID, GC/MS and solid phase microextraction/ gas
18、 chromatography (SPME/GC) of the coating may be usedto facilitate identification of the volatile compounds present ina coating. Table X1.1 lists the GC retention times for thevolatile compounds which may be found in low VOC contentwaterborne air-dry coatings. Table X1.1 also lists possibleinternal s
19、tandards for use in the analysis and minor volatilecomponents which are sometimes found in waterborne coat-ings (Note 2).NOTE 2The analyst should consult MSDS and product data sheets forpossible information regarding solvents which may be present in aparticular coating. SPME/GC may be used to ascert
20、ain that decompositionvolatiles are not measured.5. Significance and Use5.1 In using Practice D 3960 to measure the regulatory VOCcontent of coatings, precision tends to be poor for low VOCcontent waterborne coatings because the VOC weight fractionis determined indirectly. The present method first i
21、dentifies andthen quantifies the weight fraction of individual VOCs directlyin low VOC content waterborne air-dry coatings. The totalVOC weight fraction can be obtained by adding the individualweight fraction values (Note 3).NOTE 3An effort is currently underway in California to considerchanging mas
22、s-based VOC regulations for architectural coatings toreactivity-based VOC regulations. In California, reactivity based regula-tions have already been implemented for aerosol coatings, that is,MIR-indexed regulations (California Air Resources Board). Reactivitybased regulations would require knowing
23、the weight fractions of eachindividual volatile compound present in a coating.5.2 SPME/GC makes it possible to identify very low levelsof volatile compounds in a coating and could serve to make itpossible to identify the presence of hazardous air pollutants(HAPs).6. Apparatus6.1 SPME Sampling Appara
24、tus and Fibers,4manualSPME holders fitted with a 70 m Carbowaxy/Divinylbenzene(CW/DVB) StableFlex fiber assembly.6.2 Gas Chromatograph, FID Detection with ElectronicData Acquisition SystemAny capillary gas chromatographequipped with a flame ionization detector and temperatureprogramming capability m
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