DIN 38409-7-2005 German standard methods for the examination of water waste water and sludge - Parameters characterizing effects and substances (group H) - Part 7 Determination of .pdf
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1、 DEUTSCHE NORM December 2005DIN 38409-7 ICS 13.060.50 Supersedes DIN 38409-7:2004-03 German standard methods for the examination of water, waste water and sludge Parameters characterizing effects and substances (group H) Part 7: Determination of acid and base-neutralizing capacities (H 7) Deutsche E
2、inheitsverfahren zur Wasser-, Abwasser- und Schlammuntersuchung Summarische Wirkungs- und Stoffkenngren (Gruppe H) Teil 7: Bestimmung der Sure- und Basekapazitt (H 7) Document comprises 24 pagesTranslation by DIN-Sprachendienst. In case of doubt, the German-language original should be consulted as t
3、he authoritative text. No part of this translation may be reproduced without prior permission of DIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany, has the exclusive right of sale for German Standards (DIN-Normen). English price group 13 www.din.de www.beuth.d
4、e !,l(-“10.06 9730510DIN 38409-7:2005-12 2 Contents Page Foreword2 Introduction .4 1 Scope 4 2 Normative references 5 3 Terms and definitions .6 4 Determination of pH 8,2 and 4,3 acid-neutralizing capacities.7 5 Determination of pH 4,3 acid-neutralizing capacity 10 6 Determination of pH 4,3 base-neu
5、tralizing capacity . 12 7 Determination of pH 8,2 base-neutralizing capacity by direct titration without adding tartrate/citrate solution. 13 8 Determination of pH 8,2 base-neutralizing capacity by direct titration with tartrate/citrate solution added 16 9 Determination of pH 8,2 base-neutralizing c
6、apacity by back-titration 17 10 Results of interlaboratory testing . 20 Annex A (informative) Preparation and mode of action of tartrate/citrate masking solution 21 Annex B (informative) Explanatory notes 23 Foreword This standard has been prepared jointly with Wasserchemische Gesellschaft (Water Ch
7、emistry Society), a specialist group of the Gesellschaft Deutscher Chemiker (German Chemists Society) (see Annex B). Expert assistance and specialized laboratories will be required to perform the analyses specified in this standard. Existing safety instructions shall be observed. When using the stan
8、dard, a check shall be made on a case-by-case basis as to whether and to what extent additional boundary conditions have to be specified. DIN 38409 German standard methods for the examination of water, waste water and sludge Parameters characterizing effects and substances (group H) comprises furthe
9、r parts. Annex B gives a survey of the German standard methods groups A to T. Annexes A and B are informative. Amendments This standard differs from the May 1979 edition as follows: a) The methods of determining the pH 8,2 and pH 4,3 acid-neutralizing capacities of water whose pH value is greater th
10、an 8,2 have been combined (Method DIN 38409 H 7-1). b) Method DIN 38409 H 7-2 describes the determination of pH 4,3 acid-neutralizing capacity and can be used for water whose pH value is greater than 4,3. DIN 38409-7:2005-12 3 c) Method DIN 38409 H 7-3 supersedes method DIN 38409 H 7-2-1 Determinati
11、on of pH 4,3 base-neutralizing capacity (H 7). d) Method DIN 38409 H 7-4-1 supersedes method DIN 38409 H 7-2-2 Determination of pH value 8,2 base-neutralizing capacity (H 7). e) The following methods have been included: Method DIN 38409 H 7-4-2 Determination of pH 8,2 base-neutralizing capacity by d
12、irect titration with tartrate/citrate solution added; Method DIN 38409 H 7-4-3 Determination of pH 8,2 base-neutralizing capacity by back-titration. f) For all determinations involving a titration to end-point equivalent to a pH value of 8,2, the water samples are no longer transferred to titrating
13、vessels using pipettes, but directly to sampling vessels where they are titrated. Flat bottom bottles with solid stopper are now used for sampling. The preparation and the use of sodium hydroxide solution and 0,02 mol/l hydrochloric acid are no longer required. g) When determining the base capacity
14、to a pH value of 8,2 by direct titration, the use of tartrate/citrate masking solution for the complex formation of calcium and heavy-metal ions is confined to cases where interference occurs. h) The masking solution is no longer adjusted by dilution with deionized water, but is directly adjusted to
15、 the optimum pH value of 7,4 using an acid or a base, depending on the application intended. Annex A provides information on the preparation and the mode of action of the tartrate/citrate solution. This standard differs from the March 2004 edition as follows: a) Clause 1, third from last sentence in
16、 the German text: The word ist has been deleted. b) Subclause 4.7, last sentence: m1was incorrect and has been replaced by m2. c) Subclause 6.1, second line: The base capacity K is now indicated with the corresponding index B4,3. d) Subclause 8.8, key to equation (10): The sample volume V1was incorr
17、ect and has been replaced by V2. e) Subclause 9.8, equation (13): The denominator V2was incorrect and has been replaced by V3. Previous editions DIN 8103: 1936-11 DIN 19641: 1961-09 DIN 38409-7: 1979-05, 2004-03 DIN 38409-7:2005-12 4 Introduction The methods specified in this standard serve to deter
18、mine the buffering capacities of water by titrating to end-points at pH values 4,3 and 8,2. These values reflect the equilibrium of carbonic acid and its ions in water and are based on the points of inflection in the steep portions of the titration curve obtained when a 0,01 mol/l sodium carbonate s
19、olution is titrated with hydrochloric acid. At 25 C, an aqueous solution of carbon dioxide having a hydrogen carbonate ion concentration in mmol/l that is 1 % of that of dissolved carbon dioxide and an ionic strength of 10 mmol/l has a pH value of 4,3 and virtually contains only dissolved carbon dio
20、xide (CO2aq). At 25 C, an aqueous hydrogen carbonate solution containing more than 1 mmol/l hydrogen carbonate ions and having an ionic strength of 10 mmol/l has a pH of 8,2 and virtually contains only hydrogen carbonate ions. If the contributions of weak acids other than carbonic acid and weak base
21、s other than the anions of carbonic acid to the buffering capacity are negligible, titration to end-points at pH values of 4,3 and 8,2 provides an important basis for characterizing a water. It yields basic experimental water chemistry parameters for calculating the carbonic acid equilibria and the
22、calcite saturation of a water. Depending on the extent of the other analytical data available, calcite saturation data can be calculated by the method described in DIN 38404-10. If the amount-of-substance concentrations of sodium, potassium, calcium, magnesium, chloride, sulfate and nitrate ions are
23、 also known, the pH value of a water at a given temperature can be calculated by the method specified in clause 6 of DIN 38404-10:1995-04. Conversely, if the pH value is known, either of the associated buffering capacities can be calculated. This makes it possible to check the consistency of analyti
24、cal values (cf. 1 in clause 2 Normative references). CAUTION Users of this standard should be familiar with standard laboratory practice. It is not claimed that all the safety problems associated with the use of the standard have been dealt with exhaustively here. It is therefore the responsibility
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