DIN 38404-6-1984 German standard methods for the examination of water waste water and sludge physical and physico-chemical parameters (group C) determination of the oxidation reduc.pdf
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1、May 1984 UDC 628.u.3: 001.4:620.1: 543.3: 541.138 DEUTSCHE NORM German standard methods for the examination of water, waste water and sludge Physical and physico-chemical parameters (Group C) I 38404 Determination of the oxidation reduction (redox) potential (C 6) Part 6 Deutsche Einheitsverfahren z
2、ur Wasser-, Abwasser- und Schlammuntersuchung; physikalische und physikalisch-chemische Kenngrssen (Gruppe C); Bestimmung der Redox-Spannung (C 6) ln keeping with current practice in standards published by the International Organization for Standardization IlSol, a comma has been used throughout as
3、the decimal marker. This standard has been prepared jointly with the Study Group Wasserchemie of the Gesellschaft Deutscher Chemiker (Society of German Chemists) (see Explanatory notes). For analyses in compliance with this standard, the services of specialists and specialized laboratories shall be
4、sought. 1 Field of application This method is applicable to all aquatic environments which satisfy the conditions specified in subclause 8.2. 2 Scope The redox voltage serves as an indication of the condi- tions and processes in an aquatic environment in connec- tion with which oxidizing and reducin
5、g substances become active 11. Note. The redox voltage was formerly known as the redox potential (see Gesetz ber Einheiten im Messwesen (Law on units in metrology) and DIN 1323). 3 Concept The redox voltage is generated by oxidizing or reducing substances dissolved in the water, in so far as these s
6、ub- stances become active at the surface of the electrode. It is specified as the voltage between an inert electron con- ductor and the standard hydrogen electrode. 4 Principle of the method For practical reasons, the measurement is carried out with platinum or gold electrodes against, for example,
7、a siIver/siIver chloride reference electrode, and the meas- ured voltage is recalculated in relation to the standard hydrogen electrode (see clause 9) 2 3. Changes in the redox voltage in the positive direction are an indication of a more pronounced influence of oxidizing substances. The same applie
8、s vice versa. In many cases, more than one redox pairs are present in aquatic environments, but they are not necessarily in a state of redox equilibrium 4. Consequently, the pos- sibility shall be ruled out of using the measured value to draw inferences on the concentration of individual redox pairs
9、 or of individual components. The redox voltage is temperature-dependent to an unforeseeable degree; it can also very with the pH value. 5 Interference The measurement is liable to suffer severe interference from deposits on the surfaces of the redox electrodes (see subclause 7.11, e.g. deposits of
10、grease or reaction products of substances contained in the water. Therefore the bare metal surfaces of the electrodes must be kept bright and free of these deposits. For example, Mn2+ ions are liable under certain condi- tions to promote manganese oxide deposits on the platinum electrode. The diaphr
11、agm of the reference electrode shall not become clogged (see DIN 38 404 Part 5). Figure 1. Continuous flow vessel as specified in subclause 7.4 6 Designation The method for the electrometric determination of the redox voltage (C 6) shall be designated as follows: Method DIN 38 404 - C 6 Continued on
12、 pages 2 to 5 euth Verlag GmnH. Berlin 30, has exclusive sale lights for German Standards (fllN-Normen) DIN 38 404 Part 6 Engl. Price group 5 Sales No. 0105 06.85 Page 2 DIN 38 404 Part 6 _ c (KCU Temperature 1 mol/l 3 mol/l 3,5mol/l Satu rated Measured voltage U, 0 “C mV 10 218 245 247 251 15 208 2
13、35 239 243 20 199 228 231 236 25 191 220 224 230 30 173 204 209 217 40 164 195 200 210 45 155 187 192 203 50 146 178 184 196 Table 1. Redox voltages of the Ag/AgCL/KCL/redox buffer (as in subclause 7.9) measuring chain 1, to be measured using a platinum electrode Redox vol tage UH*) pH-value rnV 462
14、 7,06 450 7,04 439 7 ,O2 427 7.00 404 6,96 391 6,95 379 6,95 366 6,95 7 Apparatus and reagents 7.1 Redox electrode as measuring electrode (platinum or e.g. with DIN 12 242 - KNS 14/23 ground joint. 7.2 Reference electrode with DIN 12 242 - KNS 14/23 ground joint; silver/silver chloride reference sys
15、tem. Reference electrodes should be stored in a potassium chloride solution of the same concentration as that present in the electrode (see also DIN 38 404 - C 5 method). 7.3 pH electrode2), e.g. as specified in DIN 19 261, with DIN 12 242 - KNS 14/23 ground joint. 7.4 Continuous flow vessel, e.g. a
16、s shown in figure 1. 7.5 Thermometer, e.g. DIN 12 775 - E 0,1/0/50 thermometer. 7.6 Millioltmeter), with an input resistance not less than 1012Q. 7.7 Cleaning agent for the metal electrode, e.g. mildly abrasive household detergent or cleanser. All reagents used shall be of analytical quality, and on
17、ly distilled water or water of the same degree of purity shall be used. 7.8 Hydrochloric acid, g = 1,12g/ml. 7.9 Test solution (redox buffer) The following shall be dissolved in 1 of water: - potassium hexacyanoferrate (II), - potassium hexacyanoferrate (III), - potassium dihydrogen phosphate, KH,P0
18、4, 1.8 g; - disodium hydrogen phosphate, (See table 1 for the redox voltages.) The test solution will remain well preserved for approxi- mately one month if stored in a dark coloured bottle. K4 FdCN),. 3 H,O, 5,28 9; K3 Fe(CN)6, 4,11 9; NaZHP04. 2 H20, 39 9. 8 Procedure 8.1 Pretreatment of redox ele
19、ctrodes The electrodes shall be cleaned at regular intervals, preferably prior to each series of measurements in the 1 Intermediate values shall be interpolated linearly. 2, Also used as singlerod measuring chain with the 3, Laboratory pH meters are equipped with a switch- reference electrode. over
20、facility for voltage measurement. All measuring instruments shall be suitable for measurements in earthed solutions (see DIN 38 404 Part 5, subclause 6.1, January 1984 edition). DIN 38 404 Part 6 Page 3 case of laboratory measurements. The cleaning proce- dure shall involve the following steps: - de
21、greasing and cleaning using cleaning agents (as specified in subclause 7.7); - rinsing with water; - treatment with hydrochloric acid (as specified in subclause 7.8); - rinsing with water. Any further pretreatment will depend on the anti- cipated redox voltage level and on the type of metal electrod
22、e used. No further pretreatment will be neces- sary if gold electrodes are used. Platinum electrodes shall undergo further pretreatment, as follows: a) when measurements are taken in an oxidizing medium, - rinse with an ammonia solution, w(NH3) = 25%; b) when measurements are taken in a reducing med
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