BS 6068-2 11-1984 Water quality - Physical chemical and biochemical methods - Determination of ammonium manual spectrometric method《水质 第2部分 物理、化学和生物化学方法 第11节 铵含量测定 人工光谱测定法》.pdf
《BS 6068-2 11-1984 Water quality - Physical chemical and biochemical methods - Determination of ammonium manual spectrometric method《水质 第2部分 物理、化学和生物化学方法 第11节 铵含量测定 人工光谱测定法》.pdf》由会员分享,可在线阅读,更多相关《BS 6068-2 11-1984 Water quality - Physical chemical and biochemical methods - Determination of ammonium manual spectrometric method《水质 第2部分 物理、化学和生物化学方法 第11节 铵含量测定 人工光谱测定法》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS6068-2.11: 1984 ISO7150-1: 1984 Water quality Part2: Physical, chemical and biochemical methods Section2.11 Determination of ammonium: manual spectrometric method ISO title: Water quality Determination of ammonium Manual spectrometric method UDC 556:614.777:628.1/.3:663.63:543.42.
2、062:546.171.1BS6068-2.11:1984 This British Standard, having been prepared under the directionof the Environment andPollution Standards Committee, was published underthe authority of the BoardofBSI and comes into effect on 31 December 1984 BSI 06-1999 The following BSI references relate to the work o
3、n this standard: Committee reference EPC/44 Draft for comment 83/51031 DC ISBN 0 580 14157 8 Amendments issued since publication Amd. No. Date of issue CommentsBS6068-2.11:1984 BSI 06-1999 i Contents Page National foreword ii 1 Scope and field of application 1 2 Reference 1 3 Principle 1 4 Reagents
4、1 5 Apparatus 2 6 Sampling and samples 2 7 Procedure 2 8 Expression of results 3 9 Interferences 4 10 Special cases 4 11 Notes on procedure 4 12 Test report 5 Annex A The effect of other substances on N 6 Annex B Typical absorbance values for blank and standard solutions 6 Table 1 Volumes of standar
5、d solution for use in the calibration series 3 Table 2 Conversion table 3 Table 3 Repeatability and reproducibility standard deviations 4 Publication referred to Inside back coverBS6068-2.11:1984 ii BSI 06-1999 National foreword This Section of BS6068, which has been prepared under the direction of
6、the Environment and Pollution Standards Committee, is identical in technical content and in presentation with ISO7150 Water quality Determination of ammonium Part1:1984 Manual spectrometric method. The international standard was prepared by Subcommittee2, Physical, chemical and biochemical methods,
7、of Technical Committee147, Water quality, of the International Organization for Standardization (ISO) as a result of discussion in which the UKparticipated. BS6068 is being published in a series of Parts subdivided into Sections that will generally correspond to particular international standards. S
8、ections are being, or will be, published in Parts1 to6, which, together with Part0, are listed below. Part 0: Introduction; Part 1: Glossary; Part 2: Physical, chemical and biochemical methods; Part 3: Radiological methods; Part 4: Microbiological methods; Part 5: Biological methods; Part 6: Samplin
9、g. 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; attention is drawn especially to the followin
10、g. 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. Where the words “International Standard” appear, referring to this standard, they should be read as “Section of BS6068”. It is current practice in Br
11、itish Standards for the symbol “L” to be used for litre rather than “l” and for the term “sulphur” to be used rather than “sulfur”. Textual error. When adopting the text of this international standard, the textual error given below was discovered. It has been marked in the text and has been reported
12、 to ISO in a proposal to amend the text of the international standard. In Table 3, for “well-water”, the repeatability should be0.002 to0.007. A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct appli
13、cation. Compliance with a British Standard does not of itself confer immunity from legal obligations. Cross-reference International standard Corresponding British Standard ISO5664-1984 BS6068 Water quality Section2.7:1984 Determination of ammonium: distillation and titration method (Identical) Summa
14、ry of pages This document comprises a front cover, an inside front cover, pagesi andii, pages1to6, an inside back cover and back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amendment table on the inside front cove
15、r.BS6068-2.11:1984 BSI 06-1999 1 1 Scope and field of application 1.1 Substance determined This part of ISO7150 specifies a manual spectrometric method for the determination of ammonium in water. NOTEAn automated spectrometric method for the determination of ammonium will form the subject of ISO7150
16、/2. 1.2 Type of sample The method is applicable to the analysis of potable water, and most raw and waste waters. Application to excessively coloured or saline waters shall be preceded by distillation (see clause10). For interferences, see clause9. 1.3 Range An ammonium nitrogen concentration, A Nof
17、up to1mg/l, using the maximum test portion of40ml, can be determined. Much higher concentrations can be determined by taking smaller test portions. 1.4 Limit of detection 1) When using cells of optical path length40mm and a40ml test portion, the limit of detection lies within the range A N =0,003 to
18、0,008mg/l. 1.5 Sensitivity 1) Using a40ml test portion and a cell of optical path length40mm, A N =0,200mg/l gives an absorbance of about0,69units. Using a40ml test portion and a cell of optical path length10mm, A N =0,750mg/l gives an absorbance of about0,65units. 2 Reference ISO5664, Water quality
19、 Determination of ammonium Distillation and titration method. 3 Principle Spectrometric measurement at about655nm of the blue compound formed by reaction of ammonium with salicylate and hypochlorite ions in the presence of sodium nitrosopenta-cyanoferrate(III) (sodium nitroprusside). Hypochlorite io
20、ns are generated in situ by the alkaline hydrolysis of N, N-dichloro-1,3,5-triazine-2,4,6 (1H,3H,5H)-trione, sodium salt (sodium dichloroisocyanurate). Reaction of the chloramine with sodium salicylate takes place at pH12,6 in the presence of sodium nitroprusside. Any chloramines present in the samp
21、le are quantitatively determined as a consequence. Sodium citrate is incorporated in the reagent to mask interference from cations, notably calcium and magnesium. 4 Reagents During the analysis, use only reagents of recognized analytical grade and only water prepared as described in4.1. 4.1 Water, a
22、mmonium-free, prepared by one of the following methods. 4.1.1 Ion exchange method Pass distilled water through a column of strongly acidic cation exchange resin (in the hydrogen form) and collect the eluate in a glass bottle provided with a well-fitting glass stopper. Add about10g of the same resin
23、to each litre of collected eluate for storage purposes. 4.1.2 Distillation method Add0,10 0,01ml of sulfuric acid (A=1,84g/ml) to1000 10ml of distilled water and redistil in an all glass apparatus. Discard the first50ml of distillate, and then collect the distillate in a glass bottle provided with a
24、 well-fitting glass stopper. Add about10g of strongly acidic cation exchange resin (in the hydrogen form) to each litre of collected distillate. 4.2 Colour reagent Dissolve1301g of sodium salicylate (C 7 H 6 O 3 Na) and1301g of trisodium citrate dihydrate (C 6 H 5 O 7 Na 3 2H 2 O) in water(4.1) in a
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