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ASTM_D_2334_-_88e1_scan.pdf

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1、ASTM D233g*El 88 I 0757530 00b737b 7 m 4 C T b Designation:D 2334-88 AMERICAN SOCIETY FOR TESTINQ AND MATERIALS 1916 Race SI.Philadelphia,Pa.19103 Ropiintod trom lhe Annual Book ol ASTM Siandaids.CwyrigM ASTM If not listed in the curred combned index.will appear in iM neil&ilion.Standard Test Method

2、s for Radioactive iodine in Water This standard is issued under the fixed designation D 2334;the number immediately following the designation indicates the year of original adoption or,in the case of revision,the year of last revision.A number in parentheses indicates the year of last reapproval.A s

3、uperscript epsilon(L)indicates an editorial change since the last revision or reapproval.NOTE-Paragraph 13.3 was corrected editorially in September 1990.1.Scope D 1890 Test Method for Beta Particle.Radioactivity of Water3 of Applicable Methods of Committee D-19 on Wate3 D3370 D 3649 Practice for Hig

4、h-Resolution Gamma-Ray Spec-trometry of Wate?1.1 These test methods cover the determination of radio-pCi/L.Concentration of the sample can increase the sensi-tivity of the test methods.The test methods are given as follows:active iodine in water in concentrations greater than 100 D2777 Practice for

5、Determination O f Precision and Bias for Sampling Sections 1.2 These test methods may be used for absolute measure-ments by calibrating the nuclear radiation detector with appropriate radioactive standards,or for relative measure-ments by comparing measurements with each other.The choices of test me

6、thods are limifed by radiation detector and the count time for the determination of iodine isotopes of mass 129,131,132,133,134,and 135 which are fission products.The decay characteristics of the radioiodine iso-topes are shown in Appendix X 1.The isotopes of mass 124,125,126,and 130,which are not f

7、ssion products,will interfere,if present,unless a high-resolution,high-purity,intrinsic germanium,or lithium-drifted germanium detector is used for the measurement;however,these isotopes are rarely encountered.1.3 This test method does not meet the current require-ments of Practice D 2777.1.4 It is

8、the users responsibility to ensure the validity of these test methods for waters of untested matrices.1.5 This standard may involve hazardous materials,oper-ations,and equipment.This standard does not purport to address all o f the safetyproblems associated with its use.It is the responsibility o f

9、the user o f this standard to establish appropriate safety and health practices and determine the applicability o f regulatory limitations prior to use.2.Referenced Documents 2.1 ASTM Standards:D 1129 Definitions of Terms Relating to Wate?D 1192 Specification for Equipment for Sampling Water D 1193

10、Specification for Reagent Wate3 and Steam2.T e s t Method A(Heterogeneous Exchange)Test Method B(Distillation)Test Method C(Solvent Extraction)8 to 14 IS to 21 22 to 28 3.Definitions refer to Definitions D 1129.4.Counting Instruments and Counting 4.1 Beta Particle Counter,usually a proportional or G

11、eiger-Mller detector,connected to appropriate amplifier,pulse-height discriminator,scaler,and register.Refer to Test Method D 1890.4.2 Gamma ray spectrometer consisting of the following components:4.2.1 Preferably a high-resolution,high-purity germanium(HpGe),or lithium-drifted germanium(Ge(Li)detec

12、tor.For analyses that do not require high resolution,a sodium iodide(Na(T1)detector may be used.Associated electronics in-cluding a power supply and amplifier are also required.Refer to Practice D 3649.Typical gamma ray spectra are shown in reports by Heath?4.2.2 Multichannel analyzer with associate

13、d readout de-vices.A minimum of 2048 channels is recommended for high-resolution gamma spectrometry.4.2.3 A high-resolution gamma spectrometer is recom-mended when analyzing a fresh mixture of fission products which may contain all of the isotopes listed in Table Xl.1.4.3 The counting techniques are

14、 common to all three test methods.The silver iodide precipitate may be counted with a beta particle or gamma detector.A gamma spectrometer is preferred when isotopic identifications are necessary and is required when making absolute measurements when more than one iodine isotope is present.For Test

15、Methods B and C,the carbon tetrachloride or aqueous solution of the purified iodine isotopes may be counted direcuy with the gamma counter or spectrometer.Yield determinations can then be made after countinn.Corrections are made for 3.1 For definitions of terms used in these test methods,counter dea

16、d time,background count,and radioactive decay from sampling time.For absolute counting,the observed I These test methods are under the jurisdiction of ASTM Committee D-19 on Waicr and arc the direct responsibility of Subcommittee D19.04 on Method of Radiochcmiccil Analysis.Current edition approved March 28,1988.Published May 1988.Originally published as D 2334-65 T.Last previous edition D 2334-73(1979).Annual Book o f ASTM Standards,Vol I 1.02.Heath,R.L.,Gamma Ray Specmrum Catalog.&(LO and Si(L0

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