BS 6068-2 2-1983 Water quality - Physical chemical and biochemical methods - Determination of iron 1 10-phenanthroline photometric method《水质 第2部分 物理、化学和生物化学方法 第2节 含铁量测定 1 10-菲咯啉光度法.pdf
《BS 6068-2 2-1983 Water quality - Physical chemical and biochemical methods - Determination of iron 1 10-phenanthroline photometric method《水质 第2部分 物理、化学和生物化学方法 第2节 含铁量测定 1 10-菲咯啉光度法.pdf》由会员分享,可在线阅读,更多相关《BS 6068-2 2-1983 Water quality - Physical chemical and biochemical methods - Determination of iron 1 10-phenanthroline photometric method《水质 第2部分 物理、化学和生物化学方法 第2节 含铁量测定 1 10-菲咯啉光度法.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS 6068-2.2: 1983 ISO 6332:1982 Water quality Part 2: Physical, chemical and biochemical methods Section 2.2 Determination of iron: 1, 10-phenanthroline photometric method ISO title: Water analysis Determination of iron 1, 10-phenanthroline photometric method UDC 556:614.777:628.1/.
2、3:663.63:543.42.062:546.72BS6068-2.2:1983 This British Standard, having been prepared under the directionof the Environment andPollution Standards Committee, was published underthe authorityof the BoardofBSI andcomes intoeffecton 30September 1983 BSI 10-1999 The following BSI references relate to th
3、e work on this standard: Committee reference EPC/44 Draft for comment 81/52275 DC ISBN 0 580 11998 X Amendments issued since publication Amd. No. Date of issue CommentsBS6068-2.2:1983 BSI 10-1999 i Contents Page National foreword ii 1 Scope and field of application 1 2 Reference 1 3 Principle 1 4 Re
4、agents 1 5 Apparatus 1 6 Sampling and preparation of test samples 2 7 Procedure 2 8 Expression of results 3 9 Precision 3 10 Interferences 4 11 Test report 5 Table Statistical data on the repeatability of the method 4 Publications referred to Inside back coverBS6068-2.2:1983 ii BSI 10-1999 National
5、foreword This Section of this British Standard, which has been prepared under the direction of the Environment and Pollution Standards Committee, is identicalwith ISO 6332:1982 “Water analysis Determination of iron 1, 10-phenanthroline photometric method”. The International Standard was prepared by
6、subcommittee 2, Physical, chemical and biochemical methods, of Technical Committee 147, Water quality, of the International Organization for Standardization (ISO) as a result of discussion in which the UK participated. This British Standard is being published in a series of Parts subdivided into Sec
7、tions that will generally correspond to particular International Standards. Sections are being, or will be, published in the following Parts. Part 0: Introduction; Part 1: Glossary; Part 2: Physical, chemical and biochemical methods; Part 3: Radiological methods; Part 4: Microbiological methods; Par
8、t 5: Biological methods; Part 6: Sampling. Terminology and conventions. The text of the International Standard has been approved as suitable for publication as a British Standard without deviation. Some terminology and certain conventions are not identical with those used in British Standards; atten
9、tion is drawn especially to the following. The comma has been used as a decimal marker. In British Standards it is current practice to use a full point on the baseline as the decimal marker. Wherever the words “International Standard” appear, referring to this standard, they should be read as “Briti
10、sh Standard”. Additional information. 1) Attention is drawn to the general method for determination of iron by a 1,10-phenanthroline spectrophotometric method, published as BS 6337-3. 2) Attention is drawn to the need to take into account the dilution factor of5 when calculating results when the pro
11、cedure given in7.2.1.2 has been carried out. 3) The following clarification of the instructions in clause7 for taking test portions and test samples should be noted: a) in line 2 of7.1, “(clause 6)”, should be read as “(6.2, 6.3 or 6.4, as appropriate)”; b) in line 2 of7.2.1, “appropriate” should be
12、 read before “test portion”; c) in line 1 of7.2.2, “appropriate” should be read before “test sample” and “either 6.2 or 6.3” should be read as “7.1”; d) in line 1 of7.2.3, “appropriate” should be read before “test portion”. Cross-reference International Standard Corresponding British Standard ISO 56
13、67-1:1980 BS 6068 Water quality Section 6.1:1981 Guidance on the design of sampling programmes (Identical)BS6068-2.2:1983 BSI 10-1999 iii A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct applicatio
14、n. Compliance with a British Standard does not of itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i to iv, pages1to 6, an inside back cover and a back cover. This standard has been updated (see copyright date) and ma
15、y have had amendments incorporated. This will be indicated in the amendment table on the inside front cover.iv blankBS6068-2.2:1983 BSI 10-1999 1 1 Scope and field of application This International Standard specifies a1,10-phenanthroline photometric method for the determination of iron in water and
16、waste water. Procedures are described for the determination of total iron, total acid soluble iron, total dissolved iron and, if required, acid soluble and dissolved iron(II) and iron(III). The method is applicable to the determination of iron concentrations between 0,01 and 5mg/l. Iron concentratio
17、ns above 5mg/l may be determined after suitable dilution of the sample. 2 Reference ISO 5667-1, Water quality Sampling Part1:Guidance on the design of sampling programmes. 3 Principle 1) Addition of 1,10-phenanthroline solution to a testportion and photometric measurement of the orange-red complex a
18、t a wavelength of about510nm. If determining total iron, total acid soluble iron and total dissolved iron, hydroxylammonium chloride is added to reduce iron(III) to iron(II). If undissolved iron, iron oxides or iron complexes are present, pretreatment is necessary to bring such compounds into soluti
19、on. The iron(II)-1,10-phenanthroline complex is stable in the pH range from 2,5 to 9 and the intensity of the colour is proportional to the amount of iron(II) present. The relationship between concentration and absorbance is linear up to a concentration of5,0mg of iron per litre. Maximum absorbance
20、occurs at about 510nm molar absorption coefficient11 10 3l/(molcm). 4 Reagents Use only reagents of recognized analytical grade. The water used shall have as low an iron concentration as possible; a measurable iron concentration in the reagents is permissible provided that the lowest concentration t
21、o be determined is at least three times the standard deviation of the predetermined results of blank tests. Deionized water or water distilled from an all-glass apparatus has been found to be suitable. 4.1 Acetate buffer Dissolve 40g of ammonium acetate (CH 3 COONH 4 ) and 50ml of glacial acetic aci
22、d (CH 3 COOH) ( =1,06 g/ml) in water and dilute to 100ml with water. 4.2 Di-isopropyl ether (CH 3 ) 2 CH O CH(CH 3 ) 2 . ( = 0,72g/ml), alcohol free, boiling point between67 and 69 C. 4.3 Hydrochloric acid solution, = 1,125g/ml, c(HCl) . 7,7mol/l. 4.4 Hydroxylammonium chloride, 100g/l solution. Diss
23、olve 10g of hydroxylammonium chloride (NH 2 OHHCl) in water and dilute to 100ml. This solution is stable for at least 1week. 4.5 Nitric acid, concentrated, = 1,40g/ml. 4.6 1,10-phenanthroline solution Dissolve 0,5g of 1,10-phenanthrolinium chloride (monohydrate) (C 12 H 9 ClN 2 H 2 O) in water and d
24、ilute to 100ml. Alternatively, dissolve 0,42g 1,10-phenanthroline monohydrate (C 12 H 8 N 2 H 2 O) in 100ml of water containing 2 drops of hydrochloric acid(3.3). This solution is stable for 1 week if stored in the dark. 4.7 Potassium peroxodisulphate, 40g/l solution. Dissolve 4g of potassium peroxo
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