ImageVerifierCode 换一换
格式:PDF , 页数:4 ,大小:76.22KB ,
资源ID:518976      下载积分:10000 积分
快捷下载
登录下载
邮箱/手机:
温馨提示:
如需开发票,请勿充值!快捷下载时,用户名和密码都是您填写的邮箱或者手机号,方便查询和重复下载(系统自动生成)。
如填写123,账号就是123,密码也是123。
特别说明:
请自助下载,系统不会自动发送文件的哦; 如果您已付费,想二次下载,请登录后访问:我的下载记录
支付方式: 支付宝扫码支付 微信扫码支付   
注意:如需开发票,请勿充值!
验证码:   换一换

加入VIP,免费下载
 

温馨提示:由于个人手机设置不同,如果发现不能下载,请复制以下地址【http://www.mydoc123.com/d-518976.html】到电脑端继续下载(重复下载不扣费)。

已注册用户请登录:
账号:
密码:
验证码:   换一换
  忘记密码?
三方登录: 微信登录  

下载须知

1: 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。
2: 试题试卷类文档,如果标题没有明确说明有答案则都视为没有答案,请知晓。
3: 文件的所有权益归上传用户所有。
4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
5. 本站仅提供交流平台,并不能对任何下载内容负责。
6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。

版权提示 | 免责声明

本文(ASTM D5143-2006(2015)e1 Standard Test Method for Analysis of Nitroaromatic and Nitramine Explosive in Soil by High Performance Liquid Chromatography《用高效液相色谱法分析土壤中硝基和三硝基苯甲硝胺炸药的标准试验方.pdf)为本站会员(progressking105)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ASTM D5143-2006(2015)e1 Standard Test Method for Analysis of Nitroaromatic and Nitramine Explosive in Soil by High Performance Liquid Chromatography《用高效液相色谱法分析土壤中硝基和三硝基苯甲硝胺炸药的标准试验方.pdf

1、Designation: D5143 06 (Reapproved 2015)1Standard Test Method forAnalysis of Nitroaromatic and Nitramine Explosive in Soilby High Performance Liquid Chromatography1This standard is issued under the fixed designation D5143; the number immediately following the designation indicates the year oforiginal

2、 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.1NOTEReapproved with editorial changes in August 2015.1. Scope*1.1 This test me

3、thod describes a procedure for the labora-tory determination of the concentration of nitroaromatic andnitramine explosives in soil. The explosives involved in thistest method are as follows: HMX (octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine), RDX (hexahydro-1,3,5-trinitrol-1,3,5-triazine), TNT (

4、2,4,6-trinitrotoluene), TNB (1,3,5trinitrobenzene), DNB (1,3 dinitrobenzene), tetryl (methyl-2,4,6-trinitrophenylnitramine), and 2,4-DNT (2,4-dinitrotoluene).1.2 All observed and calculated values shall conform to theguidelines for significant digits and rounding established inPractice D6026.1.2.1 T

5、he procedures used to specify how data are collected/recorded or calculated, in this standard are regarded as theindustry standard. In addition, they are representative of thesignificant digits that generally should be retained. The proce-dures used do not consider material variation, purpose forobt

6、aining the data, special purpose studies, or any consider-ations for the users objectives; and it is common practice toincrease or reduce significant digits of reported data to becommensurate with these considerations. It is beyond the scopeof this standard to consider significant digits used in ana

7、lysismethods for engineering design.1.3 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.4 This standard does not purport to address the safetyconcerns associated with its use. It is the responsibility of theuser of this standa

8、rd to establish appropriate safety and healthpractices and determine the applicability of regulatory limita-tions prior to use.2. Referenced Documents2.1 ASTM Standards:2C670 Practice for Preparing Precision and Bias Statementsfor Test Methods for Construction MaterialsD653 Terminology Relating to S

9、oil, Rock, and ContainedFluidsD3740 Practice for Minimum Requirements for AgenciesEngaged in Testing and/or Inspection of Soil and Rock asUsed in Engineering Design and ConstructionD6026 Practice for Using Significant Digits in GeotechnicalDataE682 Practice for Liquid Chromatography Terms and Rela-t

10、ionships3. Terminology3.1 Definitions:3.1.1 For definitions of common technical terms used in thisstandard, refer to Terminology D653.3.2 Definitions of Terms Specific to This Standard:3.2.1 HPLChigh power liquid chromatography.4. Significance and Use4.1 This test method can be used to make reliable

11、 andreproducible measurements in soil in the range from thedetection level to the percent levels of each of seven explosivecompounds.4.2 This test method does not attempt to quantify thereactivity or mobility of the explosive content, only theconcentration of these compounds in the soil.4.3 This tes

12、t method can be used to determine the extent ofcontamination resulting from the use, misuse, or spillage ofexplosive compounds. It is useful to determine the effective-ness of clean-up actions at disposal sites, and to determine theenvironmental impact at explosives disposal, manufacturing, orstorag

13、e sites.1This test method is under the jurisdiction ofASTM Committee D18 on Soil andRock and is the direct responsibility of Subcommittee D18.06 on Physical-ChemicalInteractions of Soil and Rock.Current edition approved Aug. 15, 2015. Published September 2015. Originallyapproved in 1991. Last previo

14、us edition approved in 2010 as D5143 06(2010)1.DOI: 10.1520/D5143-06R15E01.2For 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

15、 ASTM website.*A Summary of Changes section appears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States15. Apparatus5.1 Liquid Chromatograph, conforming to the descriptionand requirements of Practice E682 and eq

16、uipped with two 25cm by 4.6 mm reversed-phase HPLC columns (one LC-18, oneLC-CN); a fixed 254 nm UV detector; an integrator and a 100L sample loop injector.5.2 Solvent Delivery Module, should be reliable enough forisocratic analysis with flow range capability from 0.1 to 3.0mL/min.5.3 Volumetric Pip

17、ets.5.4 Scintillation Vials.5.5 Plastic B-D Syringe, fitted with a disposable 0.5 mfilter assembly.5.6 Vortex Mixer.5.7 Amber Injector Vials.5.8 Mortar and Pestle.5.9 Rubber Tipped Pestle.5.10 Standard no. 10 (2 mm) sieve.6. Reagents6.1 Unless otherwise stated, it is intended that all reagentsconfor

18、m to the specification of the committee on AnalyticalReagents of the American Chemical Society.36.2 HPLC Grade Methanol.6.3 HPLC Grade Acetonitrile.6.4 ASTM Type I Water.6.5 Reference Standards of the following:6.5.1 HMX,6.5.2 RDX,6.5.3 TNT,6.5.4 DNB (1,3-dinitrobenzene),6.5.5 TNB (1,3,5-trinitroben

19、zene),6.5.6 Tetryl, and6.5.7 2,4-DNT and 2,6-DNT.7. Procedure7.1 Sample Preparation:7.1.1 Air dry the soil to a constant mass out of directsunlight at normal ambient humidity and 20 to 25C (roomtemperature).7.1.2 Disaggregate the soil using a rubber tipped pestle andmortar, and sieve the soil throug

20、h a No. 10 sieve to remove thecoarser stones and pebbles. Discard only those particles thatare not passable through the No. 10 sieve.7.1.3 Grind the soil using a pestle and mortar.7.1.4 Sieve the soil through a 30 mesh sieve. Ensure that allof the particles are ground to pass through the sieve openi

21、ngsand are collected prior to continuing.7.1.5 Thoroughly mix the collected soil fraction and draw a2.00 gm sample for each test replicate.7.1.6 Thoroughly clean the sieves, pestles, and mortars withlaboratory soap and water followed by an isopropanol rinsebetween samples.7.2 Extraction of Soil:7.2.

22、1 Weigh out exactly 2.00 g of soil into a 11.1 mL (6dram) screw top glass vial equipped with a TFE-fluorocarbon-lined cap.7.2.2 With a volumetric pipette, introduce 10.0 mL ofacetonitrile to the soil, and screw on the closures tightly.7.2.3 Place the vials on a vortex mixer for 1 min followedby plac

23、ing the sample in an ultrasonic bath for 18 h.7.2.4 The ultrasonic bath should be maintained near ambi-ent temperature to minimize loss of tetryl due to thermaldegradation. Remove the samples from the bath and allowthem to stand for a minimum of 15 min to allow the largerparticles to settle.7.2.5 Wi

24、th a volumetric pipet, remove a 5.00 mL aliquot ofthe suspension and mix it with a 5.00 mL of 5 g/L aqueousCaCl2in a glass scintillation vial. Shake the vials and allow tostand for 15 min.7.2.6 Filter about 5 mL of the clarified sample into a cleanscintillation vial by forcing the supernatant throug

25、h a 0.5 mfilter usinga3mLdisposable syringe. The first millilitre isdiscarded and the remainder saved for analysis. Place thefiltered sample in an amber injection vial for analysis.7.3 Liquid Chromatographic Analysis:7.3.1 Accomplish the liquid chromatograph separations iso-cratically by the use of

26、a 5 m, reversed-phase LC-18 andLC-CN cartridge column, with a 50/50 methanol/water mobilephase, at a flow of 1.5 mL/min. The LC-CN cartridge columnis used for confirmation of the analytical results.7.3.2 Make quantifications at the 254 nm wavelength.7.3.3 Base quantitation on response factors establ

27、ished byreplicate analysis of a single high range standard. Dilutestandards, controls, and blanks 1:1 with aqueous CaCl2prior toanalysis.7.3.4 The elution time for the total assay is less than 15 min.8. Calculation8.1 Experience indicates that a linear calibration curve withzero intercept is appropr

28、iate for each compound as shown inthe references from the Corps of Engineers. Therefore, cali-bration is accomplished by repeated analysis of a high rangestandard. The mean response (R) for each compound obtainedin the peak height mode is calculated for each analyte. Theresponse factors (RF) are the

29、n obtained by dividing each R bythe known solution concentration (C) for that compound inunits of g/L.RF 5 R/C (1)8.2 The concentrations of analytes in the extracts are ob-tained by dividing the response of each analyte (Ra)bytheappropriate response factor (RFa).Ca5 Ra/RFa(2)3Reagent Chemicals, Amer

30、ican Chemical Society Specifications, AmericanChemical Society, Washington, DC. For suggestions on the testing of reagents notlisted by the American Chemical Society, see Analar Standards for LaboratoryChemicals, BDH Ltd., Poole, Dorset, U.K., and the United States Pharmacopeiaand National Formulary

31、, U.S. Pharmaceutical Convention, Inc. (USPC), Rockville,MD.D5143 06 (2015)128.3 The concentration in soil (Xa), on a g/g basis, is thenobtained by multiplying the solution concentration by the totalvolume of extract (0.010 L) and dividing by the actual mass ofdried soil used (M).Xa5 Ca30.010!/M (3)

32、9. Report9.1 For each soil tested, report the following information:9.1.1 The name of the person performing the test and thedate of the test,9.1.2 The sample identification,9.1.3 The specific analyte,9.1.4 The detection limit, and9.1.5 The concentration of explosive found in g/g of drysoil.10. Preci

33、sion and Bias10.1 Precision:10.1.1 Within-Laboratory PrecisionThe within-laboratorystandard deviations (also called repeatability) for the sevenanalytes were obtained by means of a collaborative test. Thetest results were obtained from seven laboratories conductinganalysis of eight soils in duplicat

34、e. Four of the test soils werefield contaminated soils and four were spiked soils. Thewithin-laboratory standard deviation was obtained from theagreement of duplicates4.Within-laboratory precision estimatesare presented in Table 1. Therefore, the results of two properlyconducted tests by the same op

35、erator with the same equipmenton duplicate samples should not be considered suspect unlessthey differ by more than the values presented in the within lab,2ds column of Table 1 (See Footnote 7).4The data in Table 1satisfy the 1s and d2s requirements outlined in Practice C670.10.1.2 Between-Laboratory

36、 PrecisionThe between-laboratory precision (also called reproducibility) was obtainedfrom the results of a seven-laboratory collaborative test. Thebetween-laboratory precision estimates (see Table 1) wereobtained by the method described in Footnote 8.5Therefore,the results of two properly conducted

37、tests by different opera-tors with the different equipment on duplicate samples shouldnot be considered suspect unless they differ by more than thevalues presented in the between lab, 2ds column of Table 1.10.2 BiasThe procedure in this test method for measuringthe explosive content of soils has no

38、bias because the value ofthe explosive residue content is only defined in terms of the testmethod. However, to aid the user of this standard in determin-ing bias relative to other methods, the percent recovery wasobtained from regression analysis of the four spiked soilsanalyzed in duplicate in the

39、collaborative test described above.Results are presented in Table 1.11. Keywords11.1 army; explosives; liquid chromatography; military; soilREFERENCES(1) U.S.Army Corps of Engineers, Cold Regions Research and Engineer-ing Laboratory Report 88-8, Development of an analytical method forthe determinati

40、on of explosive residues in soil, Part II; Additionaldevelopment and ruggedness testing. July, 1988.(2) U.S.Army Corps of Engineers, Cold Regions Research and Engineer-ing Laboratory Report 89-9, Development of an analytical method forthe determination of explosive residues in soil, Part III; Collab

41、orativetest results and final performance evaluation. 1989.(3) U.S.Army Corps of Engineers, Cold Regions Research and Engineer-ing Laboratory Report 85-15, TNT, RDX, and HMX explosives insoils and sediments, analysis techniques and drying losses. October1985.(4) U.S.Army Corps of Engineers, Cold Reg

42、ions Research and Engineer-ing Laboratory Report 85-22, Comparison of extraction techniquesand solvents for explosive residues in soil. November, 1985.4U.S. Army Corps of Engineers, Cold Regions Research and EngineeringLaboratory Report 87-7, Development of an Analytical Method for ExplosiveResidues

43、 in Soil, June 1987.5Youden, W. J. and Steiner, E. H. Statistical Manual of the AOAC, 1978.TABLE 1 Performance Data for Method for Determination ofNitroaromatics and Nitramines Residues in SoilAnalyteRetentionTime, MinDetectionLimits,Ag/gBias (Re-covery)B,%PrecisionC, g/gWithin-LabBetween-Lab1s (2ds

44、) 1s (2ds)HMX 2.4 1.27 95.4 3.7 (10.5) 5.7 (16.1)RDX 3.7 0.74 96.8 2.3 (6.5) 4.3 (12.2)TNB 5.1 0.29 92.0 4.4 (12.4) 6.8 (19.2)DNB 6.2 0.11 93.0 4.0 (11.3) 6.9 (19.5)Tetryl 6.9 0.12 74.7 17.9 (50.6) 30.7 (86.8)TNT 8.4 0.08 96.8 3.5 (9.9) 4.7 (13.3)2,4-DNT 10.1 0.03 96.0 3.4 (9.6) 4.4 (12.4)AObtained

45、using EPA MDL procedure at the 99 % confidence level.BObtained from the slope of the regression line versus known concentrationscollaborative tests.CObtained from collaborative test results.D5143 06 (2015)13SUMMARY OF CHANGESIn accordance with Committee D18 policy, this section identifies the locati

46、on of changes to this standard sincethe last edition (D5143 06(2010)1) that may impact the use of this standard.(1) Editorial changes were made throughout as part of thefive-year review for this standard.ASTM International takes no position respecting the validity of any patent rights asserted in co

47、nnection with any item mentionedin this standard. Users of this standard are expressly advised that determination of the validity of any such patent rights, and the riskof infringement of such rights, are entirely their own responsibility.This standard is subject to revision at any time by the respo

48、nsible technical committee and must be reviewed every five years andif not revised, either reapproved or withdrawn. Your comments are invited either for revision of this standard or for additional standardsand should be addressed to ASTM International Headquarters. Your comments will receive careful

49、 consideration at a meeting of theresponsible technical committee, which you may attend. If you feel that your comments have not received a fair hearing you shouldmake your views known to the ASTM Committee on Standards, at the address shown below.This standard is copyrighted by ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959,United States. Individual reprints (single or multiple copies) of this standard may be obtained by contacting ASTM at the aboveaddress or at 610-832-9585 (phone), 610-832-9555 (fax), or service

copyright@ 2008-2019 麦多课文库(www.mydoc123.com)网站版权所有
备案/许可证编号:苏ICP备17064731号-1