ASTM D5368-1993(2006) Standard Test Methods for Gravimetric Determination of Total Solvent Extractable Content (TSEC) of Solid Waste Samples《固体废弃物样品中溶剂可萃取总含量的重量分析测定试验方法》.pdf
《ASTM D5368-1993(2006) Standard Test Methods for Gravimetric Determination of Total Solvent Extractable Content (TSEC) of Solid Waste Samples《固体废弃物样品中溶剂可萃取总含量的重量分析测定试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D5368-1993(2006) Standard Test Methods for Gravimetric Determination of Total Solvent Extractable Content (TSEC) of Solid Waste Samples《固体废弃物样品中溶剂可萃取总含量的重量分析测定试验方法》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 5368 93 (Reapproved 2006)Standard Test Methods forGravimetric Determination of Total Solvent ExtractableContent (TSEC) of Solid Waste Samples1This standard is issued under the fixed designation D 5368; the number immediately following the designation indicates the year oforiginal adop
2、tion 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 These test methods describe standard procedures forgravimetrically dete
3、rmining the total nonvolatile and semi-volatile organic content of solvent extracts from soils or solidwastes. The following methods are included:SectionMethod AMicro-Determination of TSEC 11-13Method BEvaporating Dish Procedure 14-16Method CBoiling Flask Procedure 17-191.2 These methods are used af
4、ter a solvent extract isobtained from a soil or solid waste. For these methods to beapplicable, the extraction solvent must have a boiling point lessthan that of water at ambient pressure.1.3 The total solvent extractable content (TSEC) of a soil,sediment, sludge, or solid waste depends upon the sol
5、vent andmethod used for the extraction procedure.2. Referenced Documents2.1 ASTM Standards:2D 2109 Test Methods for Nonvolatile Matter in Haloge-nated Organic Solvents and Their AdmixturesD 2910 Method for Removal of Organic Matter from Waterby Activated Carbon Absorption3D 3086 Test Method for Orga
6、nochlorine Pesticides in Wa-ter3D 3445 Method of Test for Nonvolatile Matter in Trichlo-rotrifluoroethane3D 3694 Practices for Preparation of Sample Containers andfor Preservation of Organic ConstituentsD 4281 Test Method for Oil and Grease (FluorocarbonExtractable Substances) by Gravimetric Determi
7、nationD 5369 Practice for Extraction of Solid Waste Samples forChemical Analysis Using Soxhlet Extraction3. Terminology3.1 Definition:3.1.1 total solvent extractable content (TSEC) the totalconcentration by weight (w/w) of organic materials that isextractable from a soil or solid waste by the select
8、ed solvent.4. Summary of Methods4.1 The sample is extracted with an organic solvent using aprocedure such as described in Practices D 5369 (SoxhletExtraction) or Test Method D 4281. The quantity of materialextracted into the solvent is determined as the residue weightafter solvent evaporation. Simil
9、ar ASTM methods are TestMethods D 2109 and D 3445, and Practice D 2910.4.1.1 Method A, Micro-Determination MethodThe resi-due weight after solvent evaporation is determined for 200 Lof solvent extract evaporated on an aluminum weighing dish.Aheat lamp is used to effect evaporation.4.1.2 Method B, Ev
10、aporating Dish ProcedureThe residueweight after solvent evaporation is determined for 1.0 to 75.0mL of solvent extract. Solvent is evaporated in an evaporatingdish by heating at 5C below the solvent boiling point. Astream of nitrogen over the surface of the solvent is used toaccelerate evaporation.4
11、.1.3 Method C, Boiling Flask MethodThe residue weightafter solvent evaporation is determined for 100 to 300 mL ofsolvent evaporated in a boiling flask. Solvent is evaporated ina water bath at the solvent boiling point.5. Significance and Use5.1 The TSEC provides a quantitative measure of the totalso
12、lvent extractable organic content of the solid waste inquestion. Based upon the TSEC, the extract may be analyzed orfurther processed (that is, further cleanup or solvent concen-tration) in preparation for analysis. Thus, the TSEC provides aquantitative measure for optimizing the extractable organic
13、concentration prior to chemical analysis.5.2 The TSEC of soil or waste material may be used as aquantitative measure for the screening and selection of samplesfor chemical analysis.1These test methods are under the jurisdiction of ASTM Committee D34 onWaste Management and are the direct responsibili
14、ty of Subcommittee D34.01.06 onAnalytical Methods.Current edition approved Feb. 1, 2006. Published March 2006. Originallyapproved in 1993. Last previous edition approved in 2001 as D 5368 - 93(2001)2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service
15、at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Withdrawn.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5.3 The TSEC may be useful as a simpl
16、e and relativelyinexpensive quantitative indicator of changes occurring in thetotal extractable organic content of soil or waste materials.5.4 The detection limit of the TSEC depends upon thespecific procedures employed. Typical detection limits insolvent extracts (that is, without solvent pre-conce
17、ntration) forMethod A are more than 1000 g/g. For Method B typicaldetection limits are 20 to 100 g/g in the solvent extract. ForMethod C the typical detection limits are 3 to 20 g/g forsolutes in the solvent extract.5.5 The sensitivity of the methods can be adjusted byvarying the volume of solvent e
18、xtract prior to gravimetricresidue determination.6. Interferences6.1 Solvents, reagents, glassware, and other sample process-ing hardware may yield an unacceptable background relative tothe limit of detection required for the TSEC measurement. Amethod blank must be performed in order to demonstrate
19、theviability of the solvent and equipment used. Specific selectionof reagents and the purification of solvents by distillation inall-glass systems may be required when low levels (that is,20 % of the minimum TSEC concentration ofinterest) in the solvent will preclude the application of themethod for
20、 TSEC determinations in those cases. Residueignition and inorganic analysis are suggested to evaluate thispotential background.6.3 Organic interferences can arise from the extraction ofimpurities from inorganic drying agents. If this is suspected,the interference may be removed by rinsing the drying
21、 agentwith pure extraction solvent followed by oven drying of theinorganic drying agent.6.4 Inorganic constituents extractable from the waste by thesolvent selected will result in a positive interference in thedetermination of TSEC, unless removed prior to TSEC deter-mination. This potential for int
22、erference must be determined bythe analyst on a case by case basis using existing data and bestjudgment.7. Selection of the Extraction Solvent7.1 The selection of solvent for extraction and TSECdetermination will depend upon many factors, including thefollowing (see Table 1 for selected applications
23、):7.1.1 Boiling point of the solvent,7.1.2 Boiling point of the compounds or class of compoundsof interest,7.1.3 Tendency of the solvent and matrix to form emulsions,7.1.4 Solvent strength (that is, polarity, solubility of com-pounds of interest),7.1.5 Safety of solvent use (that is, toxicity, flamm
24、ability),7.1.6 Purity of solvent, and7.1.7 Solvent compatibility with analysis instrumentation.7.2 The analyst should demonstrate a recovery using aspiking procedure in the matrix of interest before using thisprocedure.7.3 The extract is exposed to temperatures approaching theboiling point of the so
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