ASTM E1413-2013 Standard Practice for Separation of Ignitable Liquid Residues from Fire Debris Samples by Dynamic Headspace Concentration《采用动态顶部空间浓缩法对燃烧残骸试样中可燃性液体残留物进行分离的标准实施规程》.pdf
《ASTM E1413-2013 Standard Practice for Separation of Ignitable Liquid Residues from Fire Debris Samples by Dynamic Headspace Concentration《采用动态顶部空间浓缩法对燃烧残骸试样中可燃性液体残留物进行分离的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1413-2013 Standard Practice for Separation of Ignitable Liquid Residues from Fire Debris Samples by Dynamic Headspace Concentration《采用动态顶部空间浓缩法对燃烧残骸试样中可燃性液体残留物进行分离的标准实施规程》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E1413 13Standard Practice forSeparation of Ignitable Liquid Residues from Fire DebrisSamples by Dynamic Headspace Concentration1This standard is issued under the fixed designation E1413; the number immediately following the designation indicates the year oforiginal adoption or, in the c
2、ase 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 practice describes the procedure for separation ofsmall quantities of ignitable liqu
3、id residues from fire debrissamples using the method of dynamic headspace concentra-tion.1.2 Dynamic headspace concentration uses adsorption andsubsequent solvent elution or thermal desorption.1.3 Both positive and negative pressure systems for adsorp-tion are described, as well as a thermal desorpt
4、ion system.1.4 While this practice is suitable for successfully extractingignitable liquid residues over the entire range of concentration,the headspace concentration methods are best used when a highlevel of sensitivity is required due to a very low concentrationof ignitable liquid residues in the
5、sample.1.5 Alternate separation and concentration procedures arelisted in Section 2. If archival of the extract is of importance,then this practices thermal desorption procedure, SPME (Prac-tice E2154), and headspace (Practice E1388) sample separationtechniques are not recommended unless a portion o
6、f the extractcan be split and retained. In order to have an archivable extract,then this practices sample collection on charcoal, solventextraction (Practice E1386), or passive headspace concentra-tion (Practice E1412) is recommended.1.6 This practice offers a set of instructions for performingone o
7、r more specific operations. This standard cannot replaceknowledge, skill, or ability acquired through appropriateeducation, training, and experience and should be used inconjunction with sound professional judgment.1.7 This standard does not purport to address all of thesafety concerns, if any, asso
8、ciated 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.2. Referenced Documents2.1 ASTM Standards:2E1386 Practice for Separation of Ignitable Liquid Residue
9、sfrom Fire Debris Samples by Solvent ExtractionE1388 Practice for Sampling of Headspace Vapors from FireDebris SamplesE1412 Practice for Separation of Ignitable Liquid Residuesfrom Fire Debris Samples by Passive Headspace Concen-tration With Activated CharcoalE1459 Guide for Physical Evidence Labeli
10、ng and RelatedDocumentationE1492 Practice for Receiving, Documenting, Storing, andRetrieving Evidence in a Forensic Science LaboratoryE1618 Test Method for Ignitable Liquid Residues in Extractsfrom Fire Debris Samples by Gas Chromatography-MassSpectrometryE2154 Practice for Separation and Concentrat
11、ion of Ignit-able Liquid Residues from Fire Debris Samples by Pas-sive Headspace Concentration with Solid Phase Microex-traction (SPME)E2451 Practice for Preserving Ignitable Liquids and Ignit-able Liquid Residue Extracts from Fire Debris Samples3. Summary of Practice3.1 The sample, preferably in it
12、s original container, isheated, forcing volatile compounds to vaporize. The headspacein the sample is then drawn or pushed through a tubecontaining an adsorption media (typically activated charcoal orTenax) which adsorbs the vaporized compounds.3.2 Other solid adsorbents and collection systems can b
13、eused as long as the method has been validated with a widevariety of ignitable liquids with a range of both flash points andpolarity.4. Significance and Use4.1 This practice is useful for preparing extracts from firedebris for later analysis by gas chromatography-mass spec-trometry (GC-MS), see Test
14、 Method E1618.1This practice is under the jurisdiction of ASTM Committee E30 on ForensicSciences and is the direct responsibility of Subcommittee E30.01 on Criminalistics.Current edition approved Aug. 15, 2013. Published September 2013. Originallyapproved in 1991. Last previous edition approved in 2
15、007 as E1413 07. DOI:10.1520/E1413-13.2For referenced ASTM standards, 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.Copyright ASTM Internat
16、ional, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States14.2 This is a very sensitive separation procedure, capable ofisolating quantities smaller than 0.1 L of ignitable liquidresidue from a sample4.2.1 Actual recovery will vary, depending on severalfactors, includ
17、ing adsorption temperature, container size, andcompetition from the sample matrix.4.3 This is a potentially destructive technique. Portions ofthe sample subjected to this procedure may not be suitable forre-sampling. Therefore, a portion of the sample extract shouldbe saved for potential future anal
18、ysis. Consider using passiveheadspace concentration as described in Practice E1412.5. Apparatus5.1 Positive Pressure Apparatus:5.1.1 Sample Pressurization DeviceA system capable ofdelivering pressurized dry nitrogen (or other inert gas) at up to40 psi (276 kPa) to an orifice to be inserted into the
19、bottom ofthe sample container.5.1.1.1 A needle valve capable of fine control of the flowrate of the dry nitrogen, at up to 1500 cc/min.5.1.1.2 A flow meter capable of measuring the flow of drynitrogen through the end of the adsorption tube at the rate of 0to 1500 cc/min.5.1.1.3 Container ClosureAdev
20、ice suitable for sealing thecontainer and directing the effluent nitrogen (or other inert gas)and vapors to the adsorption tube.5.2 Negative Pressure Apparatus:5.2.1 Inlet and Outlet SystemA tube containing approxi-mately 1 cm of charcoal is fitted into the lid of the originalcontainer with a suitab
21、le penetrable seal. This serves as a filterfor incoming room air. A vacuum is pulled on an adsorptiontube also fitted into the lid of the original container with asuitable penetrable seal.5.2.2 A vacuum system capable of pulling between 200 and1500 cc/min on the sample collection tube.5.2.3 A flow m
22、eter capable of measuring the flow of airthrough the end of the charcoal tube at the rate of 200 to 1500cc/min.5.3 Thermal Desorption Apparatus:5.3.1 Sampling SystemAn air-tight syringe is connected tothe back-end of a Tenax tube. The front end of the Tenax tubeis fitted into the heated container.5.
23、3.2 In order to prevent leakage and contamination, thesystem should be designed to minimize loss of vapors from thecontainer. For example by means of a septum mounted on topof the lid of the container.5.3.3 Thermal Desorption DeviceA system capable ofdesorbing the volatiles by means of elevated temp
24、erature andtrapping the volatiles in a cold-trap. This apparatus is directlycoupled to a GC-MS.5.4 Adsorption Tubes:5.4.1 Charcoal TubesSuitable charcoal filter and sampleadsorption tubes may be made by inserting a small (approxi-mately 1 cm) plug of glass wool or cotton in the bottom of aPasteur pi
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