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XB/T 614.1-2011 English PDF

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XB/T 614.1-2011: Chemical analysis method of gadolinium-magnesium alloy—Part 1: Determination of total rare earth content—Gravimetry
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XB/T 614.1-2011English249 Add to Cart 3 days [Need to translate] Chemical analysis method of gadolinium-magnesium alloy—Part 1: Determination of total rare earth content—Gravimetry   XB/T 614.1-2011

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Basic data

Standard ID XB/T 614.1-2011 (XB/T614.1-2011)
Description (Translated English) Chemical analysis method of gadolinium-magnesium alloy��Part 1: Determination of total rare earth content��Gravimetry
Sector / Industry Rare Earth Metal Industry Standard (Recommended)
Classification of Chinese Standard H14
Classification of International Standard 77.120.99
Word Count Estimation 7,788
Date of Issue 2011-12-20
Date of Implementation 2012-07-01
Regulation (derived from) Ministry of Industry and Information Technology Announcement No. 43 of 2011; Industry Standard Recording Announcement No. 9 of 2012 (Total No. 153); Ministry of Industry and Information Technology Announcement No. 23 of 2017
Issuing agency(ies) Ministry of Industry and Information Technology
Summary This standard specifies the method for determining the total amount of rare earths in gadolinium-magnesium alloys. This standard applies to the determination of the total amount of rare earths in gadolinium-magnesium alloys. The measurement range is 15.00%��90.00%.

XB/T 614.1-2011: Chemical analysis method of gadolinium-magnesium alloy—Part 1: Determination of total rare earth content—Gravimetry


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Chemical analysis method of gadolinium-magnesium alloy-Part 1.Determination of total rare earth content-Gravimetry ICS 77.120.99 H14 Rare Earth Industry Standard of the People's Republic of China Gadolinium-magnesium alloy chemical analysis method Part 1.Determination of the total amount of rare earths Weight method Gravimetry 2011-12-20 released 2012-07-01 implementation Issued by the Ministry of Industry and Information Technology of the People's Republic of China

Foreword

XB/T 614 "Methods for Chemical Analysis of Gadolinium Magnesium Alloys" is divided into 6 parts. ---Part 1.Determination of the total amount of rare earths by gravimetric method; ---Part 2.Determination of magnesium content EDTA titration; ---Part 3.Determination of carbon content high frequency-infrared absorption method; ---Part 4.Determination of fluorine content by steam distillation spectrophotometry; ---Part 5.Determination of rare earth impurities; --- Part 6.Determination of the amount of aluminum, calcium, copper, iron, nickel, and silicon inductively coupled plasma atomic emission spectrometry. This part is part 1. This part is under the jurisdiction of the National Rare Earth Standardization Technical Committee (SAC/TC229). Responsible for drafting this section. Baotou Rare Earth Research Institute, China Non-ferrous Metals Industry Standard Metrology and Quality Research Institute. Drafting unit of this section. Baotou Rare Earth Research Institute. Participated in the drafting of this section. Ganzhou Qiandong Rare Earth Group Co., Ltd., Hunan Rare Earth Metal Materials Research Institute, Beijing Nonferrous Metals Research Institute. The main drafters of this section. Wang Sumei, Zhang Huizhen, Hao Qian, Yao Nanhong, Chen Jie, Zhu Ni, Guo Yongjiao, Cai Huazhe, Liu Bing, Liu Pengyu, Liu Rongli and Wang Suling. Gadolinium-magnesium alloy chemical analysis method Part 1.Determination of the total amount of rare earths Weight method

1 Scope

This part of XB/T 614 specifies the method for determining the total amount of rare earths in gadolinium-magnesium alloys. This section applies to the determination of the total amount of rare earths in gadolinium-magnesium alloys. The measurement range is 15.00%~90.00%.

2 Method principle

The sample is dissolved in hydrochloric acid, in the presence of ammonium chloride, the rare earth is precipitated in ammonia water, calcium, magnesium, etc. are separated, and the rare earth is dissolved in hydrochloric acid at a pH of 1.8 to 2.0 Precipitating rare earths with oxalic acid to separate iron, aluminum, nickel, etc. under the above conditions, burn them to constant weight at 950℃, weigh their mass, and calculate the total amount of rare earths.

3 Reagents and materials

3.1 Ammonium chloride. 3.2 Hydrochloric acid (ρ1.19g/mL). 3.3 Nitric acid (ρ1.42g/mL). 3.4 Perchloric acid (ρ1.67g/mL). 3.5 Ammonia (ρ0.90g/mL). 3.6 Hydrogen peroxide (30%). 3.7 Hydrochloric acid (1 1). 3.8 Ammonia (1 1). 3.9 Ammonium chloride-ammonia water washing solution. 100mL water contains 2.0g ammonium chloride (3.1) and 2.0mL ammonia water (3.5). 3.10 Oxalic acid solution (100g/L). 3.11 Oxalic acid lotion (2.0g/L). 3.12 m-cresol purple solution (1g/L, ethanol solution). 3.13 pH test paper (0.5~5.0).

4 sample

Remove the surface oxide layer of the sample and weigh it immediately after sampling.

5 Analysis steps

5.1 Sample Weigh the sample (4) according to Table 1, accurate to 0.0001g.

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