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GB/T 5121.14-2008 English PDF

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GB/T 5121.14-2008: Methods for chemical analysis of copper and copper alloys -- Part 14: Determination of manganese content
Status: Valid

GB/T 5121.14: Historical versions

Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 5121.14-2008299 Add to Cart 3 days Methods for chemical analysis of copper and copper alloys -- Part 14: Determination of manganese content Valid
GB/T 5121.14-1996359 Add to Cart 3 days Copper and copperr alloys--Determination of manganese content Obsolete

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Basic data

Standard ID: GB/T 5121.14-2008 (GB/T5121.14-2008)
Description (Translated English): Methods for chemical analysis of copper and copper alloys -- Part 14: Determination of manganese content
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: H13
Classification of International Standard: 77.120.30
Word Count Estimation: 13,124
Date of Issue: 2008-06-17
Date of Implementation: 2008-12-01
Older Standard (superseded by this standard): GB/T 5121.14-1996; GB/T 13293.3-1991
Adopted Standard: ISO 2543-1973, MOD
Regulation (derived from): National Standard Approval Announcement 2008 No.10 (Total No.123)
Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary: This standard specifies the method for determination of copper and copper alloys manganese content. This method is suitable for the determination of copper and copper alloys manganese content. Measuring range: 0. 00005% to 0. 0010%. Method Two high potassium iodate spectrophotometric method specifies the methods of measurement of copper and copper alloys manganese content. This method is suitable for the determination of copper and copper alloys manganese content. Measuring range: > 0. 030% to 2. 50%. Method three ferrous ammonium sulfate titration method provides for the determination of copper and copper alloys manganese content. This method is suitable for the determination of copper and copper alloys manganese content. Measuring range: > 2. 50% to 15. 00%.

GB/T 5121.14-2008: Methods for chemical analysis of copper and copper alloys -- Part 14: Determination of manganese content


---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.
Methods for chemical analysis of copper and copper alloys Part 14. Determination of manganese content ICS 77.120.30 H13 National Standards of People's Republic of China Replacing GB/T 5121.14-1996 Partially replace GB/T 13293.3-1991 Copper and copper alloys - Determination of manganese content. Part 14 (ISO 2543. 1973, Copperandcopperaloys-Determinationof manganese-Spectrophotometricmethod, MOD) Posted 2008-12-01 2008-06-17 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China released

Foreword

GB/T 5121 "Copper and copper alloy chemical analysis method" a total of 27 sections. --- Part 1. Determination of copper content; --- Part 2. Determination of phosphorus content; --- Part 3. Determination of lead content; --- Part 4. Carbon, Determination of sulfur content; --- Part 5. Determination of nickel content; --- Part 6. Determination of bismuth content; --- Part 7. Determination of arsenic content; --- Part 8. Determination of oxygen content; --- Part 9. Determination of iron content; --- Part 10. Determination of tin content; --- Part 11. Determination of zinc content; --- Part 12. Determination of antimony content; --- Part 13. Determination of aluminum content; --- Part 14. Determination of manganese content; --- Part 15. Determination of cobalt content; --- Part 16. Determination of chromium content; --- Part 17. Determination of beryllium content; --- Part 18. Determination of magnesium content; --- Part 19. Determination of silver content; --- Part 20. Determination of zirconium content; --- Part 21. Determination of titanium content; --- Part 22. Determination of cadmium content; --- Part 23. Determination of silicon content; --- Part 24. selenium, tellurium content was measured; --- Part 25. Determination of boron content; --- Part 26. Determination of mercury content; --- Part 27. Inductively coupled plasma atomic emission spectrometry. This is Part 14. This section includes a method, second method, Method three. The second method to modify the part using ISO 2543. 1973 "Copper and copper alloys - Determination of manganese content - spectrophotometric method." Major technology within The volume, and ISO 2543. 1973 the same structure does not correspond exactly to write. Specific technical difference in Appendix A, Appendix B. This Part replaces GB/T 5121.14-1996 "Copper and copper alloys - Determination of manganese content" and GB/T 13293.3- 1991 "Methods for chemical analysis of high purity copper cathode Zeeman effect electrothermal atomic absorption spectrometric method for the determination of chromium, manganese and cadmium." This portion of the GB/T 5121.14-1996, GB/T 13293.3-1991 compared to the main changes are as follows. --- One method of GB/T 13293.3-1991 amendment complements the quality assurance and control provisions, increasing the precision of the terms; --- Second method "for Determination of the amount of the first chapter potassium periodate spectrophotometric method" of GB/T 5121.14-1996 of repair Order to supplement the provisions of quality assurance and control, increasing the precision of the terms; --- Method three is GB/T 5121.14-1996 in "Method 2 The second ammonium ferrous sulfate titration method for the determination of manganese content" amendments Supplemented with quality assurance and control provisions, increasing the precision of the terms. This section in Appendix A, Appendix B is an informative annex. This part is proposed by the China Nonferrous Metals Industry Association. The non-ferrous metal part by the National Standardization Technical Committee. This section Chinalco Luoyang Copper Co., Ltd., Beijing General Research Institute of Mining and Metallurgy, China Nonferrous Metals Industry is responsible Institute of Standards Metrology and Quality Drafted. A method in this section was drafted by Beijing General Research Institute of Mining and Metallurgy. This section a method Jiangxi Copper Co., Ltd., Jinchuan Group Co., Ltd. participated in the drafting. The main drafters of this section a method. Feng advanced Lihua Chang Feng Yu Qing, high dielectric level, Yangsu Zhi. The main part of a method of verification of people. Percentage light cents, Shen Guang Xin, Zhao Quanmin, Li first super. This section Second method, Method three Central aluminum Shenyang Nonferrous Metals Processing Co. drafted. This section Second method, Method three Chinalco Luoyang Copper Co., Ltd., a limited liability company Northwest copper participated in the drafting. Method Two main drafters of this part. Sun Aiping, Li Yamin, wide Jin Lee. This section Method two main certifier. Liuai Ju, Yang Guiping, Guochao Xia, Liu Yan. Method three main drafters of this part. Sun Aiping, Li Jin wide. The method in this section are three main certifier. Liuai Ju, Liu Jianming, Guozhao Xia, Li Wenjun. This part of the standard replaces the previous editions are. --- GB/T 5121.14-1996, GB/T 13293.3-1991. Copper and copper alloys - Determination of manganese content. Part 14 Method 1 a Zeeman effect electrothermal atomic absorption spectrometry 1.1 Scope This method specifies the method for determination of copper and copper alloy of manganese content. This method is applicable to the determination of copper and copper alloy of manganese content. Measurement range. 0.00005% to 0.0010%. 1.2 Principle of the method Sample was dissolved in nitric acid, a volume of the test solution injected into the electrothermal atomizer with Zeeman effect atomic absorption spectrometer 279.5nm wavelength absorbance measurement manganese, manganese mass fraction calculated by working curve method. 1.3 Reagents Unless otherwise indicated in the analysis using only recognized as analytical grade reagents and distilled or deionized water or equivalent purity. experiment The utensils were soaked 12h, washed thoroughly with water and nitric acid (1.3.3). 1.3.1 Copper (Cu mass fraction ≥99.99%, manganese content < 0.00005%). 1.3.2 nitric acid (1 + 1). 1.3.3 nitric acid (1 + 19). 1.3.4 copper substrate solution (100g/L). Weigh 20.00g copper (1.3.1) into 400mL beaker was added in 160mL nitric acid (1.3.2), Leng Rong. After the reaction was stopped by intense, low heat until completely dissolved, oxides of nitrogen purge boiling, cooled to room temperature. Moved 200mL volumetric flask, dilute with water to volume, and mix. 1.3.5 Manganese standard stock solution. Weigh 0.2500g metal manganese (Mn mass fraction ≥99.95%) placed in 150mL beaker, 10mL of nitric acid (1.3.2), the cover sheet pan, on low heat until completely dissolved, cooled to room temperature. Transferred to 500mL volumetric flask, diluted with water To the mark, and mix. This solution 1mL containing 500μg manganese. 1.3.6 Manganese standard solution A. Pipette 10.00mL manganese standard stock solution (1.3.5) in 500mL flask, diluted with water to the mark, Mix well. This solution 1mL containing 10μg manganese. 1.3.7 Manganese standard solution B. Pipette 10.00mL manganese standard solution A (1.3.6) in 500mL volumetric flask, dilute to the mark with water, mix uniform. This solution 1mL containing 0.2μg of manganese. 1.4 Instrument 1.4.1 graphite furnace atomic absorption spectrometer. with electrothermal atomizer, micro sampler or autosampler, manganese hollow cathode lamp and Zeeman effect Background correction shall devices. 1.4.2 The graphite furnace atomic absorption spectrometer should meet the following specifications. --- Lowest sensitivity. curve used in the arithmetic series of standard solution of greatest concentration, absorbance should not be less than 0.300. --- Correlation coefficient curve is not less than 0.995. --- Low precision requirements. the highest concentration of standard solution, the absorbance measured 10 times, calculate the mean and standard deviation. The standard Standard deviation should not exceed 1.5% of the average absorbance. The lowest concentration of standard solutions (not zero concentration standard solution Solution), 10 times the absorbance measured, calculating the standard deviation. The standard deviation should not exceed the average absorbance of the highest concentration of the standard 0.5% of the value. 1.5 Sample Sample processed into crumb-like.
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