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SN/T 0837.4-2006 English PDF

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SN/T 0837.4-2006: Determination of the amount of chlorine content in arsenic trioxide. Photometric method of distillation-mercuric thiocyanate
Status: Valid
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SN/T 0837.4-2006English199 Add to Cart 3 days [Need to translate] Determination of the amount of chlorine content in arsenic trioxide. Photometric method of distillation-mercuric thiocyanate Valid SN/T 0837.4-2006

PDF similar to SN/T 0837.4-2006


Standard similar to SN/T 0837.4-2006

GB/T 3049   GB/T 3051   GB/T 3050   SN/T 0837.2   SN/T 0837.3   SN/T 0837.1   

Basic data

Standard ID SN/T 0837.4-2006 (SN/T0837.4-2006)
Description (Translated English) Determination of the amount of chlorine content in arsenic trioxide. Photometric method of distillation-mercuric thiocyanate
Sector / Industry Commodity Inspection Standard (Recommended)
Classification of Chinese Standard G10
Classification of International Standard 71.060
Word Count Estimation 6,610
Date of Issue 2006-04-25
Date of Implementation 2006-11-15
Regulation (derived from) Industry Standard Notice 2006 No. 7 (No. 79 overall)
Issuing agency(ies) General Administration of Customs
Summary This standard specifies the arsenic trioxide in the Method for determination of chloride ion content. This standard applies to arsenic trioxide chloride ion content. Measurement range: 0. 0010% ~ 0. 03%

SN/T 0837.4-2006: Determination of the amount of chlorine content in arsenic trioxide. Photometric method of distillation-mercuric thiocyanate


---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Determination of the amount of chlorine content in arsenic trioxide. Photometric method of distillation-mercuric thiocyanate Book of the People's Republic of China Entry and Exit Inspection and Quarantine Determination of chloride ion content in arsenic trioxide Distillation-mercury thiocyanate spectrophotometry Released on.2006-04-25 Implementation of.2006-11-15 People's Republic The General Administration of Quality Supervision, Inspection and Quarantine issued

Foreword

SN/T 0837 is divided into 4 parts. --- Method for determining the purity of arsenic trioxide exported; --- Determination of moisture in the export of arsenic trioxide; --- Determination of iron in the export of arsenic trioxide; --- Determination of chloride ion content in arsenic trioxide - Distillation - Mercury thiocyanate spectrophotometric method. This part is the fourth part of SN/T 0837. This part is proposed and managed by the National Certification and Accreditation Administration. This section drafted by. Yunnan Entry-Exit Inspection and Quarantine Bureau of the People's Republic of China. The main drafters of this section. Jiang Yanzhai. This section is the first industry standard for entry-exit inspection and quarantine. Determination of chloride ion content in arsenic trioxide Distillation-mercury thiocyanate spectrophotometry Warning - Personnel using this section should have hands-on experience with formal laboratory work. This section does not point out all possible security questions. question. It is the responsibility of the user to take appropriate safety and health measures and to ensure compliance with the conditions set by the relevant national regulations.

1 Scope

This section specifies the method for determining the chloride ion content of arsenic trioxide. This section applies to the determination of chloride ion content in arsenic trioxide. The measurement range is from 0.0010% to 0.0300%.

2 Method summary

The sample is dissolved in nitric acid and distilled in a nitric acid medium at a temperature of 230 ° C to 270 ° C. The evolved gas is absorbed in sodium hydroxide. In the liquid. Adding thiocyanate and iron perchlorate, the formed chloride reacts with thiocyanate to free thiocyanate and iron (III) to develop color. The absorbance of the spectrophotometer was measured at a wavelength of 460 nm.

3 reagents

Unless otherwise stated, only reagents confirmed to be analytically pure and secondary distilled water distilled with a small amount of sodium hydroxide were used in the analysis. 3.1 sodium hydroxide, excellent grade pure. 3.2 Reduce iron powder. 3.3 Mercury thiocyanate. 3.4 Potassium chloride, excellent grade pure. 3.5 Methanol. 3.6 Perchloric acid (ρ1.67g/mL). 3.7 Nitric acid (ρ1.42g/mL), excellent grade. 3.8 Nitrogen, high purity. 3.9 Nitric acid (2+1). 3.10 sodium hydroxide solution (0.2mol/L). 3.11 Iron perchlorate solution. Weigh 7g of reduced iron powder into a 400mL beaker, add.200mL of nitric acid (3.9), and heat to dissolve. Add 60 mL of perchloric acid, heat to the perchloric acid fumes and continue to heat until the solution is reddish brown and cool. Dilute to 500 mL with water and mix. 3.12 Mercury thiocyanate-methanol solution (5g/L). Weigh 0.5g of thiocyanate in a 250mL beaker, add 100mL of methanol, dissolve it. Move all the way back into a brown bottle for storage. 3.13 Chloride standard storage solution. Weigh 0.2103g of superior pure potassium chloride (burned at 500 °C for 30min, and cooled in a desiccator to At room temperature, place in a 250mL beaker, dissolve in an appropriate amount of water, transfer to a 1000mL volumetric flask, dilute to the mark with water, and mix. This solution 1 mL contains 100 μg of chloride ion. 3.14 Chloride standard solution. Pipette 50.00mL of chloride ion standard storage solution (3.13) in a 500mL volumetric flask and dilute with water until Scale and mix. 1 mL of this solution contained 10 μg of chloride ion.

4 instruments and devices

4.1 Spectrophotometer. 4.2 Distillation unit (see Figure 1).

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