ASTM D7729-2012 3750 Standard Practice for Determining and Expressing Precision of Measurement Results in the Analysis of Water as Relative Standard Deviation Utilizing DQCALC Soft.pdf
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1、Designation: D7729 12Standard Practice forDetermining and Expressing Precision of MeasurementResults, in the Analysis of Water, as Relative StandardDeviation, Utilizing DQCALC Software1This standard is issued under the fixed designation D7729; the number immediately following the designation indicat
2、es the year oforiginal 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.1. Scope1.1 This Practice describes a procedure for devel
3、oping agraphical model of relative standard deviation vs concentrationfor a analytical methods used in the analysis of water (methodsthat are subject to non-additive random errors) for the purposeof assigning a statement of noise or randomness to analyticalresults (commonly referred to as a precisio
4、n statement), ineither a manual or an automated fashion.1.2 Data analysis and modeling is done with D19 AdjunctDQCALC (an Excel based tool).1.3 The values stated in SI units are to be regarded as thestandard. The values given in parentheses are for informationonly.1.4 This standard does not purport
5、to address all of thesafety concerns, if any, associated 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. Introduction2.1 An understanding of the uncerta
6、inty associated withmeasurement results is necessary for evaluating the utility ofthose results. Without a reported uncertainty estimate, users ofmeasurement results are unable to determine if the data aresufficiently precise for any specific data use.2.2 Measurement Uncertainty is most generally un
7、derstoodto be “a parameter characterizing the dispersion of the quantityvalues being attributed to a measurand” (from InternationalVocabulary of Metrology (VIM) 2.26). This definition can beimplemented as an expression (“uncertainty statement”) asso-ciated with an reported measurement that represent
8、s thestatistically based (TypeAestimate) dispersion of experimentalresults around a reported value.2.3 There is no universally agreed upon format or nomen-clature for uncertainty statements. The literature offers sugges-tions ranging from simple expressions of standard deviation or“fractional uncert
9、ainty” (standard deviation divided by re-ported result) to confidence intervals to detailed “uncertaintyreports”.2.4 In addition to the “random” errors encompassed in theideas expressed in 1.1 and 1.2, above, there are also “system-atic” errors, biases, that can be considered as part of uncer-tainty
10、. The literature is not consistent on how unknown bias isconsidered in an uncertainty statement. For purposes of thisStandard, bias is assumed to have been corrected for orinsignificant in the reported results, and bias is not specificallyincorporated in the proposed uncertainty statement.2.5 For pu
11、rposes of this Standard, the terms “MU”, uncer-tainty statement, or measurement uncertainty will be usedsynonymously to designate the expression accompanying mea-surement results for the purpose of assessing the utility of thoseresults.2.6 This Standard proposes the use of fractional uncertaintyor R
12、elative Standard Deviation (RSD) as the expression ofMU.2.7 Traditionally, in the generation and publication of datarelated to the analysis of water, a continuous function (model)describing the relationship of uncertainty (as standard devia-tion) to concentration is not available. To compensate for
13、thislack, discrete points bounding certain levels of uncertainty arecalculated, for example, “detection limits” (typically around33% RSD) and “quantitation limits” (often around 10% RSD).Results are flagged to indicate their relationship to one of theselimits. Alternatively, this Practice directs th
14、e creation of amodel of uncertainty (RSD vs concentration) which allowsassignment of a discrete uncertainty estimate to any resultvalue measured within the range of modeled data.2.8 This Practice is based on the use of the DQCALCsoftware that was developed to simplify the calculation of theIQE Inter
15、-laboratory Quantitation Estimate (D6512). ThisPractice is restricted to the development of an uncertaintymodel for the reporting of MU within a single laboratory. In1This practice is under the jurisdiction of ASTM Committee D19 on Water andis the direct responsibility of Subcommittee D19.02 on Qual
16、ity Systems, Specifi-cation, and Statistics.Current edition approved April 1, 2012. Published September 2012. DOI:10.1520/D772912.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.addition to providing an estimate of single-laboratory
17、measure-ment uncertainty, the DQCALC software automatically calcu-lates LC from Curie, equivalent to EPAs MDL, and theASTM Detection Estimate for a single lab (this utilizes a “3sigma” tolerance interval rather than the standard confidenceinterval).2.9 This Practice provides the tools to allow a Lab
18、oratory toembed the RSD vs Concentration relationship into a suffi-ciently powerful Laboratory Information Management System(LIMS) resulting in the ability to automatically report MU withall data reported out of the LIMS for modeled parameters.2.10 The DQCALC Software is available from ASTM (seeStan
19、dard D7510).2.11 In addition, this Standard discusses the variables thatshould be considered for inclusion in the uncertainty modelingstudy.3. Referenced Documents3.1 ASTM Standards:2D6512 Practice for Interlaboratory Quantitation EstimateD7510 Practice for Performing Detection and QuantitationEstim
20、ation and DataAssessment Utilizing DQCALC Soft-ware, based on ASTM Practices D6091 and D6512 ofCommittee D19 on Water3.2 Other Standard:3International Vocabulary of Metrology Basic and GeneralConcepts and Associated Terms, VIM, 3rd edition, JCGM200:20084. Terminology4.1 Definitions:4.1.1 Measurement
21、 Uncertainty, nin the analysis of water,a value representing the precision of a reported determination., nin the analysis of water, a value representing theprecision of a reported determination, expressed as the relativestandard deviation of typical measurements of the same form.4.2 SymbolsIQE Inter
22、-laboratory Quantitation EstimateLIMS Laboratory Information Management SystemMU Measurement UncertaintyRSD Relative Standard Deviation5. Summary of Practice5.1 The relationship between Relative Standard Deviationand concentration is modeled using a multi-replicate andmulti-level design and utilizin
23、g the curve fitting tools in theDQCALC software. The DQCALC software will return thecoefficients for the selected function/model of standard devia-tion against concentration. The general equations are given inthis Practice. From the equation, the appropriate standarddeviation for any concentration i
24、n the range represented in themodel study can be calculated. This can then be converted intoRSD, the recommended reporting format.5.2 The IQE Practice that forms the basis for this Practice,has the feature of correcting for recovery. Therefore, forpurposes of this Practice true concentrations, that
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