ASTM C1220-2017 Standard Test Method for Static Leaching of Monolithic Waste Forms for Disposal of Radioactive Waste《供进行放射性废物处理的整块废物的静力浸出的标准试验方法》.pdf
《ASTM C1220-2017 Standard Test Method for Static Leaching of Monolithic Waste Forms for Disposal of Radioactive Waste《供进行放射性废物处理的整块废物的静力浸出的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM C1220-2017 Standard Test Method for Static Leaching of Monolithic Waste Forms for Disposal of Radioactive Waste《供进行放射性废物处理的整块废物的静力浸出的标准试验方法》.pdf(25页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C1220 10C1220 17Standard Test Method forStatic Leaching of Monolithic Waste Forms for Disposal ofRadioactive Waste1This standard is issued under the fixed designation C1220; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revisi
2、on, 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 test method provides a measure of the chemical durability of a simulated or radioactive monolithi
3、c waste form, suchas a glass, ceramic, cement (grout), or cermet, in a test solution at temperatures 0.5 g/mL, repeat steps 6.5.8 6.5.19.6.5.21 If the F is still 0.5 g/mL after performing steps 6.5.8 6.5.19 twice, repeat steps 6.5.1 6.5.19.6.5.22 If the F concentration is 1 ppm isdetected for stainl
4、ess steel vessels, repeat steps 6.10.2 6.10.8.6.10.10 If three repetitions of steps 6.10.2 6.10.8 do not result in a pH within the range of 5.0 to 7.0, radioactivity belowdetection, and Si 1 ppm for stainless steel vessels, then repeat the cleaning starting at step 6.10.1.6.10.11 Dry vessels, lids,
5、and gaskets at 90 6 2C for a minimum of 16 h and store in a clean environment until needed.6.11 Cleaning Solution BottlesSolution bottles that will be used to contain analytical samples should be cleaned before use.Clean solution bottles using steps 6.11.1 6.11.3.6.11.1 Rinse bottles three times wit
6、h a dilute nitric acid solution (2 wt %). For each rinse, fill bottle to about 10 % bottlevolume, place cap on bottle, and shake to rinse all surfaces. Dispose of solution.6.11.2 Rinse bottles three times with reagent grade (demineralized) water. For each rinse, fill bottle to about 25 % bottle volu
7、me,place cap on bottle, and shake to rinse all surfaces. Dispose of rinse water.6.11.3 Dry bottle and cap in oven, then place cap on bottle and store until use.6.12 Mass MeasurementMaterial masses shall be determined with balances that provide the following accuracies, dependingon the materials bein
8、g weighed:6.13 Volume MeasurementMeasure leachant volumes gravimetrically or with pipettes, burettes, or flasks calibrated asdescribed in Table 1.6.14 Solution AnalysisMeasure solute concentrations using equipment standardized with standards traceable to NIST,preferably, or other recognized organiza
9、tions, such as EPA or USGS.6.14.1 Determine and report precision and bias for analyses. Although analytical results should normally be accurate within10 % when checked by individual measurements on reference solutions, this may not be possible when concentrations in thesolution are near detection li
10、mits. The detection limits for each analysis must accompany the reported result.6.14.2 Various analytical techniques can be used to determine the solute concentrations in leachates, including inductivelycoupled plasma spectroscopy (see Practice C1109 or EPA SW-846A, or both), direct current plasma s
11、pectroscopy, atomicabsorption emission spectroscopy, and neutron activation. Selection of a specific technique depends on specific test objectives andTABLE 1 Required Accuracy for Mass DeterminationsLeachant and vessels within 0.25 % of the leachant massChemical reagents usedto prepare leachantwithi
12、n 1 % of the reagent massTest specimens within 0.5 mgC1220 177the particular solutes of interest. For radioactive elements such as actinides and fission products, where small amounts may be ofinterest, radiochemistry/radiation counting may be needed or desirable.6.14.3 Analyzing blanks and simulated
13、 leachates with test solutions helps ensure that high-quality data are obtained.6.15 pH MeasurementMeasure the pH to an accuracy of 0.1 unit using an electrode and meter calibrated with commercialbuffers or buffers obtained from NIST. Follow Test Method D1293, Method A to make this measurement.6.15.
14、1 When measuring the pH of a deaerated solution, conduct the measurement under an argon atmosphere.6.15.2 When measuring the pH of a brine solution, the measured value will be affected by a significant liquid junction potentialthat is sensitive to the ionic strength and the activity coefficient of h
15、ydrogen that will different significantly from unity. Theseeffects lead to large uncertainties in the measured values. They are discussed in more detail in Appendix X1.6.16 Calibration and StandardsCalibrate all instruments used in these tests prior to use and check periodically to minimizepossible
16、errors due to drift. Table 2 shows the methods and the minimum frequency of calibration for the various devices used.Use standardized procedures that are published by recognized authorities such as NIST or ASTM.7. Leachant Preparation and Storage7.1 General Chemicals and ProceduresUse chemicals of r
17、eagent grade or better that conform to the specifications of theCommittee onAnalytical Reagents of theAmerican Chemical Society, where such specifications are available.5 It is recommendedthat the assays of each chemical be assessed to determine if impurities, once the leachant is prepared, will exc
18、eed detection limitsof the analysis system to be used. If impurities will cause detection limits to be exceeded, obtain a different batch of the chemicalor use an ultrapure chemical. Good laboratory practice should be used at all times to minimize contamination of the leachant.7.1.1 Although any lea
19、chant can be used in tests, recipes for a reference brine leachant and a reference silicate leachant areprovided to facilitate comparisons of test results from different laboratories. The reference brine and silicate leachant compositionsare not intended to represent any particular ground waters.7.1
20、.2 Blank tests must be conducted with all leachants to measure the stability of the leachant under the test conditions andinteractions with the vessel and support.7.1.3 The density of all leachants should be measured to permit the addition of leachant to the individual leach tests by weightrather th
21、an by volume.7.2 Demineralized WaterThe water referred to in this procedure is air-saturated reagent water Type I or II conforming toSpecification D1193, with a total impurity level, including organics, of less than 0.1 mg/L.7.2.1 Radiolysis of gases dissolved in water can become an important factor
22、 in tests with radioactive materials. Therefore,deaerated leachants should be used in tests with radioactive specimens.7.2.2 To deaerate demineralized water for use in leachant preparation, boil high-purity water for 15 min while purging withargon. Immediately place the hot water under an argon atmo
23、sphere to cool. Prepare the leachants as described below using thecooled, deaerated water in an argon atmosphere.7.2.3 The density of pure air-free water at 23C is 0.9976 g/cm3.5 Reagent Chemicals, American Chemical Society Specifications, American Chemical Society, Washington, DC. For suggestions o
24、n the testing of reagents not listed bythe American Chemical Society, see Analar Standards for Laboratory Chemicals, BDH Ltd., Poole, Dorset, U.K., and the United States Pharmacopeia and NationalFormulary, U.S. Pharmacopeial Convention, Inc. (USPC), Rockville, MD.TABLE 2 Required Calibration Schedul
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