DIN 51898-1-2014 Gas analysis - Absolute volumetric method for dynamic preparation of calibration gases - Part 1 Preparation from pure gases with CD-ROM《气体分析 动态制备校准气体用绝对体积法 第1部分 制备.pdf
《DIN 51898-1-2014 Gas analysis - Absolute volumetric method for dynamic preparation of calibration gases - Part 1 Preparation from pure gases with CD-ROM《气体分析 动态制备校准气体用绝对体积法 第1部分 制备.pdf》由会员分享,可在线阅读,更多相关《DIN 51898-1-2014 Gas analysis - Absolute volumetric method for dynamic preparation of calibration gases - Part 1 Preparation from pure gases with CD-ROM《气体分析 动态制备校准气体用绝对体积法 第1部分 制备.pdf(41页珍藏版)》请在麦多课文档分享上搜索。
1、May 2014DEUTSCHE NORMNormenausschuss Materialprfung (NMP) im DINDIN-SprachendienstEnglish price group 20No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale f
2、or German Standards (DIN-Normen).ICS 71.040.40!%1d7“2146520www.din.deDDIN 51898-1Gas analysis Absolute volumetric method for dynamic preparation of calibrationgases Part 1: Preparation from pure gases, with CD-ROM,English translation of DIN 51898-1:2014-05Gasanalyse Absolutes volumetrisches Verfahre
3、n zur dynamischen Herstellung von Kalibriergasen Teil 1: Herstellung aus reinen Gasen, mit CD-ROM,Englische bersetzung von DIN 51898-1:2014-05Analyse des gaz Mthode absolue volumtrique pour la prparation dynamique de mlanges de gaz pourtalonnage Partie 1: Prparation base de gaz pures, avec CD-ROM,Tr
4、aduction anglaise de DIN 51898-1:2014-05www.beuth.deDocument comprises 41 pages11.14 DIN 51898-1:2014-05 2 A comma is used as the decimal marker. Content Page Foreword . 3 Introduction 4 1 Scope . 5 2 Normative references . 5 3 Terms and definitions 6 4 Principle . 6 5 Preparation of calibration gas
5、es . 8 6 Influencing factors 11 6.1 Influencing factors and effects 11 6.2 Supplementary information . 15 7 Calculation of composition 16 7.1 Symbols and abbreviations . 16 7.2 Rough estimates . 17 7.3 Calculation of component contents 17 7.3.1 General . 17 7.3.2 Calculation of discharged gas volume
6、s . 18 7.3.3 Calculation of compression factors 18 7.3.4 Calculation of mole fractions 19 7.3.5 Calculation of volume fractions 19 8 Estimation of uncertainty . 20 8.1 General . 20 8.2 Determination of input uncertainties 20 8.3 Uncertainty of the mole fractions 23 8.4 Uncertainty of the volume frac
7、tions . 24 9 Methods for the verification of a calculated composition 24 9.1 General . 24 9.2 Comparison measurements using traceable gas mixtures . 24 9.3 Comparison measurements using gas density gauges (sinker densimeters) . 25 9.4 Symmetry check of the gas mixing pump 25 10 Test report . 25 Anne
8、x A (informative) Validation and verification 26 A.1 Requirements for validation 26 A.2 Verification of linearity . 26 Annex B (informative) Realized applications 28 Annex C (informative) Example calculations 29 Annex D (informative) Computer program 40 Bibliography . 41 DIN 51898-1:2014-05 3 Forewo
9、rd This document has been prepared by Working Committee NA 062-05-73 AA Gasanalyse und Gasbeschaffenheit of the Normenausschuss Materialprfung (Materials Testing Standards Committee, NMP). Attention is drawn to the possibility that some of the elements of this document may be the subject of patent r
10、ights. DIN shall not be held responsible for identifying any or all such patent rights. In order to facilitate the use of this document the common abbreviation GUM, for Guide to the expression of uncertainty in measurement, is used throughout. The normative references include the German translation
11、DIN V ENV 13005. DIN 51898 Gas analysis Absolute volumetric method for dynamic preparation of calibration gases consists of the following parts: Part 1: Preparation from pure gases Part 2: Preparation from gas mixtures (in preparation) Part 3: Systems with one single piston pump (in preparation) DIN
12、 51898-1:2014-05 4 Introduction Calibration gases with direct traceability to the International System of Units (fr: Systme International dUnits, SI) are of great interest to a large user community and of considerable commercial relevance. Starting from dimensional calibration of the piston pumps in
13、 the SI base unit of length, a mathematical model is presented which serves as a basis for calculating the composition of the calibration gases as well as for estimating the associated uncertainty. Calibration gases prepared according to the absolute volumetric method using piston pumps, as specifie
14、d in this standard, conform to the requirements of direct traceability to the SI. The gas-forwarding geometric volumes of the individual piston pumps are completely determined by their cylinder diameter, piston stroke height and the number of piston strokes. DIN 51898-1 operates on the assumption th
15、at the parent gases are pure gases. DIN 51898-21)also covers the case of gas mixtures as parent gases. The commercially available gas mixing pumps are suitable for the dynamic preparation of two- and multi-component gas mixtures. In contrast with other methods for dynamic gas mixture preparation, th
16、e gas flow forwarded by the individual piston pumps is not calibrated by comparison measurements. The composition of the calibration gases is calculated using the specified mathematical model, where departures from the ideal gas law are accounted for by means of the calculation methods and gas data
17、(pressure virial coefficients) given in DIN EN ISO 14912. Composition is preferably expressed in mole fractions, alternatively also in volume fractions. NOTE As an advantage over volume fractions, mole fractions are independent of pressure and temperature, and they are easily converted into other qu
18、antities of composition (e.g. mass concentrations) as required, using DIN EN ISO 14912. For a defined range, calculated composition can be verified using the engaged mixing pump. The respective procedure is described in the standard. Validation at the highest metrological level is exemplified for ga
19、s mixtures with composition ranges extending over several decades. Minimum requirements and minimum scope of procedures for validating the performance of gas mixing pumps are specified. Provided that rigorous and comprehensive quality assurance and quality control measures are taken in gas mixture p
20、reparation and performance validation, this method has the potential to generate calibration gases of highest accuracy within the validated composition range. 1) In preparation.DIN 51898-1:2014-05 5 1 Scope This document specifies an absolute volumetric method for dynamic preparation of calibration
21、gases consisting of two or several components from pure gases, using commercially available gas mixing pumps with at least two piston pumps driven at defined stroke ratios. Peripheral devices for gas feed and homogenization are also commercially available and constitute a functional unit with the ga
22、s mixing pump. Gas mixing pumps with several piston pumps are suitable for preparing multi-component gas mixtures, where the range of component proportions is determined by the ratio of the geometric stroke volumes of the piston pumps concerned. The geometric stroke volume is equated with the gas vo
23、lume forwarded by the respective piston pump. The prerequisite condition for this process is as follows: when operating the pump at admissible stroke numbers, the conveying factor shall not deviate significantly in comparison to the specified uncertainty from 1. DIN 51898-1 covers the preparation of
24、 calibration gases from commercially available pure gases (post-purified where appropriate), where the effects of impurities of the parent gases on the composition of calibration gases are accounted for in the estimation of uncertainty. Dry air is treated as a pure gas with the composition specified
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