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YS/T 520.11-2007 English PDF

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YS/T 520.11-2007: Chemical analysis of gallium. Part 11: Determination of mercury content. The cold vapor atomic absorption spectral method

YS/T 520.11: Evolution and historical versions

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YS/T 520.11-2007English209 Add to Cart 3 days [Need to translate] Chemical analysis of gallium. Part 11: Determination of mercury content. The cold vapor atomic absorption spectral method   YS/T 520.11-2007
YS/T 520.11-2006English199 Add to Cart 2 days [Need to translate] Methods for chemical analysis of gallium. The cold vapor atomic absorption spectrophotometric method for the determination of mercury content Obsolete YS/T 520.11-2006

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Basic data

Standard ID YS/T 520.11-2007 (YS/T520.11-2007)
Description (Translated English) Chemical analysis of gallium. Part 11: Determination of mercury content. The cold vapor atomic absorption spectral method
Sector / Industry Nonferrous Metallurgy Industry Standard (Recommended)
Classification of Chinese Standard H14
Classification of International Standard 77.120.70
Word Count Estimation 6,630
Date of Issue 2007-11-14
Date of Implementation 2008-05-01
Older Standard (superseded by this standard) YS/T 520.11-2006
Regulation (derived from) NDRC Notice No. 77 of 2007
Issuing agency(ies) National Development and Reform Commission
Summary This standard specifies the gallium determination of mercury. This standard applies to the determination of mercury in gallium. Measuring range: 0. 00002% 0. 00010%

YS/T 520.11-2007: Chemical analysis of gallium. Part 11: Determination of mercury content. The cold vapor atomic absorption spectral method


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Chemical analysis of gallium.Part 11. Determination of mercury content.The cold vapor atomic absorption spectral method ICS 77.120.70 H14 People's Republic of China Nonferrous Metals Industry Standard Replacing YS/T 520.11-2006 Chemical analysis of gallium Part 11. Determination of mercury content Cold vapor atomic absorption spectrometry Posted 2007-11-14 2008-05-01 implementation National Development and Reform Commission issued

Foreword

YS/T 520-2007 "Chemical analysis of gallium" Is the YS/T 520-2006 (formerly GB/T 4375-1984) amendments, divided into Part 12. --- Part 1. Determination of copper content of 2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline spectrophotometry --- Part 2. Determination of lead content of 4- (2-pyridyl) - resorcinol spectrophotometry --- Part 3. Determination of aluminum content Chromazurol S- tetradecyl pyridine bromide spectrophotometric method --- Part 4. Determination of iron content of 4,7-diphenyl-1,10-phenanthroline spectrophotometry --- Part 5. Determination of calcium content nitrous oxide - acetylene flame atomic absorption spectrometry --- Part 6. Determination of tin content salicylfluorone - cetyl trimethyl ammonium bromide, spectrophotometry --- Part 7. Determination of silicon content extraction - molybdenum blue spectrophotometric method --- Part 8. Determination of indium content of ethyl violet spectrophotometry --- Part 9. Determination of germanium content Phenylfluorone - polyethylene glycol octyl phenyl ether extraction spectrophotometric method --- Part 10. Determination of zinc content atomic absorption spectrometry --- Part 11. Determination of mercury content of the cold atomic absorption spectrometry --- Part 12. lead, copper, nickel, aluminum, indium and zinc Determination of chemical spectroscopy This is Part 11. The partial replacement of YS/T 520.11-2006 (formerly GB/T 4375.11-1984). This part is YS/T 520.11-2006 "Determination of cold Chemical analysis of gallium Part 11 of mercury content by atomic absorption spectrometry Law "editorial finishing. The non-ferrous metal part by the National Standardization Technical Committee and centralized. This standard by the Aluminum Corporation of China Shandong branch responsible for drafting. This section drafters. Zhang Xinyu, Liu Yulong. The non-ferrous metal part by the National Standardization Technical Committee responsible for the interpretation. This part of the standard replaces the previous editions are. --- YS/T 520.11-2006 (formerly GB/T 4375.11-1984). Chemical analysis of gallium Part 11. Determination of mercury content Cold vapor atomic absorption spectrometry

1 Scope

This section provides the determination of gallium mercury content. This section applies to the determination of gallium mercury content. Measurement range. ~ 0.00002% 0.00010%.

2 Method summary

Sample was dissolved in nitric acid, sulfuric acid. Stannous chloride as a reducing agent, using air as a carrier gas, and the resulting mercury vapor atomic mercury vapor measured Import Meter were measured.

3 Reagents

3.1 nitric acid, pure class distinctions (ρ1.42g/cm 3). 3.2 sulfuric acid, pure class distinctions (1 + 1). 3.3 sulfuric acid, pure class distinctions (1 + 35). 3.4 stannous chloride solution (10%). Weigh 10g of stannous chloride (SnCl2 · 2H2O) was dissolved in 100mL of hydrochloric acid (1 + 1). time cost Now equipped. 3.5 Storage mercury standard solution. Weigh 1.0000g pure mercury spectrum [(Hg) ≥99.99%], placed in 250mL beaker, add 20mL ~ 30mL of nitric acid (1 + 1), the hood to slowly dissolved by heating, to be dissolved completely after dilution with water, transferred to 1000mL capacity Flask and dilute with water to volume, and mix. This solution 1mL containing 1.0mg of mercury. 3.6 mercury standard solution. Pipette 10.00mL mercury standard stock solution (3.5), placed in 100mL flask, nitric acid is added 1mL (3.1), dilute to the mark and mix. This solution 1mL containing 100μg mercury. 3.7 mercury standard solution. Pipette 10.00mL mercury standard solution (3.6), placed in 100mL flask, add 1mL of nitric acid (3.1), with Dilute with water to volume, and mix. This solution 1mL containing 10μg mercury. 3.8 mercury standard solution. Pipette 10.00mL mercury standard solution (3.7), placed in 100mL flask, add 1mL of nitric acid (3.1), with Dilute with water to volume, and mix. This solution 1mL containing 1μg mercury. 3.9 Compressed air (cylinders loaded, or produced by the air compressor).

4 instruments and apparatus

Mercury vapor meter and ancillary equipment is shown in Figure 1.

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