DIN 38405-17-1981 German Standard Methods for the Analysis of Water Waste Water and Sludge Anions (Group D) Determination of Borate Ions (D 17)《德国对水 废水和淤泥的统一检验法 阴离子(D组) 硼酸盐离子的测定(D1.pdf
《DIN 38405-17-1981 German Standard Methods for the Analysis of Water Waste Water and Sludge Anions (Group D) Determination of Borate Ions (D 17)《德国对水 废水和淤泥的统一检验法 阴离子(D组) 硼酸盐离子的测定(D1.pdf》由会员分享,可在线阅读,更多相关《DIN 38405-17-1981 German Standard Methods for the Analysis of Water Waste Water and Sludge Anions (Group D) Determination of Borate Ions (D 17)《德国对水 废水和淤泥的统一检验法 阴离子(D组) 硼酸盐离子的测定(D1.pdf(3页珍藏版)》请在麦多课文档分享上搜索。
1、German Standard Methods for the Analysis of Water, Waste Water and Sludge Determination of Borate ions (D 17) Anions (Group D) As it is current practice in standards published by the International Organization for Standardization (ISO), the comm, has been used throughout as a decimal marker. DIN 38
2、405 - Part 17 This Standard has been jointly prepared with the Technical Group Water Chemistry in the Gesellschaft Deutscher Chemiker (Association of German ChemistsJ, see Explanations. It is essential that qualified personnel or specialized equipment be used for the analyses according to this Stand
3、ard. 1 General The natural amount of boron compounds occuring in groundwater and surface water is small. Because boron compounds are ingredients of domestic washing agents, the boron content of surface water can be significantly increased due to waste water inputs. 2 Scope The method is suitable for
4、 determining borate ions in the mass concentration range between 0,Ol and 1 mg/i if the boron content is higher than this, the water sample must be diluted. The boron contained in the sodium perborate (sodium perborate-peroxhydrate) is fully determined by this method. 3 Basis of the method Borate io
5、ns, in a buffered solution with azomethine-H, yield a yellow pigment, the solution obeying the Bougert- Lambert-Beer Law. Azomethine-H is the condensation product of the H-acid (4-amino-5-hydroxynaphthaline-2,7- disul- phonic acid) and the salicylic aldehyde: H OH HO3 S CO3 H Azomethine-H 4 interfer
6、ence The determination of borate ions is not disturbed by the following ions: Mn2+, Zn2+, Ca2+, Mg*+, Na+, K+,PO 4 3-, SO 43 2- NO ions of the following elements, simulate borate ions: Zr, Cr, Ti, Cu, V, AL, Be, Fe. Thus, in water containing 0.25 mg/l of borate ions (as 6) and 5 mg/l of Fe2+ and 20
7、mg/l of Cu2+ as weil as 20 mg/l of Al3+, these metal ions lead to a borate ion overestimate of about 5%. The water to be examined must be colourless and free of any undissolved substances. The latter can be removed by filtering the water across a diaphragm filter (pore size 0,45 pm). Slight discoiou
8、rations can be compensated for by sub- jecting the sample to photometry, on the one hand with, and on the other hand without the addition of azomthine-H solution (see Section 7.121, and compara- tive measurement against doubledistilled water. If the water sample has too high a content of disturbing
9、substances, the boron can be,removed from the solution by extraction using 2-ethylhexane-l,3diol, and converted to the organic phase from which it can be returned to the aqueous phase again by means of a sodium hydroxide solution (see Section 7.6). l However, in all instances it must be established
10、whether this extraction stage is itself the cause of further interference . Other disturbing substances must be removed by using suitable methods, e. g. metal ions by precipitation or by cation exchange, turbidity and discolouration by precipitation using an aluminium salt. 5 Designation The designa
11、tion of the method employed for the photo- metric determination of borate ions (D 17) by means of azomethine-H (11, is: Method DIN 38 405 - D17 6 Apparatus - Plastic separating-funnel, nominal volume 100 ml - Polyethylene bottles, nominal volumes 1000, 500, - Volumetric pipettes nominal volumes 25 m
12、l, - Quartz glass or plastic measuring flasks, nominal - Spectrophotometer or filterphotometer, cuvettes, 100 ml e.g. pipette DIN 12 691 - VPAS 25 volumes 1000 ml, 100 ml layer thickness 1 ; 2; 5 cm. Continued on pages 2 and 3 Sole sale rights of German Standards (DIN-Normen) are with Beuth Verlag G
13、mbH. Berlin 30 DIN 38 405 Part 17 Engl. Price group 5 03.82 Sales No. 0105 Page 2 DIN 38 405 Part 17 7 Chemicals Only chemicals of the highest reagent quality must be used, and only double-distilled water or water of the same degree of purity. 7.1 Azomethine-H, sodium salt, Cl,H12NNa08 20 g of sodiu
14、m hydroxide, NaOH, are dissolved in 1OCi ml of water. 7.7 Sulfuric = 1,21 mg/l : 20 ml of sulfuric acid, H2S0, 0 = 1,84 mg/(, and 80 ml of water are carefully mixed with each other. 7.8 Phosphoric acid, H,PO, 020 = 1,71 mg/l 7.9 Citric acid, C6H807 . H,O 7.10 Ammonium acetate, C2H702N 7.1 1 Disodium
15、 sait of ethylenediaminotetraacetic acid (EDTA), C10H14N2N08 . 2H20 7.12 Azomethine-H solution: 1 ,O g of azomethine-H sodiumsalt (seeSection7.1) and 3,Ogof L(+) -ascorbic acid (see Section 7.2) are dissolved in water. After topping the solution up with water to a volume of 100 mi, it is stored in a
16、 plastic bottle in a refrigerator; its shelf life is about 1 week. 7.13 Buffer solution, pH value 5,9: 250 g of ammonium acetate (see Section 7.10), 250 ml of water, 80 ml of sulfuric acid (see Section 7.7), 5 ml of phosphoric acid (see Section 7.8), 1 ,O g citric acid (see Section 7.9) and 1,0 g of
17、 EDTA (see Section 7.1 i), are mixed to form a solution. 7.14 Reaction solution: equal volumes of azomethine-H solution (see Section 7.1 2) and buffer solution (see Section 7.13) are mixed together on the day of analysis. The solution must be kept in a refrigerator. 7.15 Extractant: 20 ml of 2-ethyl
18、hexane-l,3-diol (see Section 7.3) and 80 ml of isobutylmethylketone (see Section 7.4) are mixed together. 7.16 Borate stock solution: 0,143 g of boric acid, H,BO, in crystallized form, are dissolved in water; the solution is topped up with water in the measuring flask (the latter is made of a boron-
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