YS/T 254.5-2011 English PDFUS$159.00 · In stock
Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. YS/T 254.5-2011: Methods for chemical analysis of beryllium concentrate and beryl. Part 5: Determination of fluorine content. Ion selective electrode method Status: Valid YS/T 254.5: Historical versions
Basic dataStandard ID: YS/T 254.5-2011 (YS/T254.5-2011)Description (Translated English): Methods for chemical analysis of beryllium concentrate and beryl. Part 5: Determination of fluorine content. Ion selective electrode method Sector / Industry: Nonferrous Metallurgy Industry Standard (Recommended) Classification of Chinese Standard: D43 Classification of International Standard: 73.060 Word Count Estimation: 6,614 Date of Issue: 2011-12-20 Date of Implementation: 2012-07-01 Older Standard (superseded by this standard): YS/T 254.5-1994 Regulation (derived from): ?MIIT Announcement 2011 No.43 Issuing agency(ies): Ministry of Industry and Information Technology Summary: This standard specifies the beryllium ore, determination of the amount of fluorine in beryl. This standard applies to beryllium ore, determination of fluorine in beryl. Measuring range: 0. 050% to 5. 00%. YS/T 254.5-2011: Methods for chemical analysis of beryllium concentrate and beryl. Part 5: Determination of fluorine content. Ion selective electrode method---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 beryllium concentrate and beryl.Part 5. Determination of fluorine content.Ion selective electrode method ICS 73.060 D43 People's Republic of China Nonferrous Metals Industry Standard Replacing YS/T 254.5-1994 Beryllium ore, beryl chemical analysis Part 5. Determination of the amount of fluorine Ion Selective Electrode Part 5. Determinationoffluorinecontent- Issued on. 2011-12-20 2012-07-01 implementation Ministry of Industry and Information Technology of the People's Republic of China released ForewordYS/T 254 "of beryllium ore, beryl chemical analysis method" is divided into seven parts. --- Part 1. Determination of the amount of beryllium oxide phosphate gravimetric method; --- Part 2. iron oxide contents - EDTA titration sulfosalicylic acid spectrophotometric method; --- Part 3. Determination of phosphorus content Molybdovanadophosphoric acid spectrophotometry; --- Part 4. Determination of the amount of lithium oxide flame atomic absorption spectrometry; --- Part 5. Determination of the amount of fluorine ion selective electrode method; --- Part 6. Determination of calcium oxide content by flame atomic absorption spectrometry; --- Part 7. moisture content - Gravimetric method. This section YS/T 254 Part 5. The partial replacement of YS/T 254.5-1994 "beryllium ore, beryl chemical analysis methods ion selective electrode method for the determination of fluorine content" (formerly GB/T 5870.5-1986). Section compared with YS/T 254.5-1994 The main changes are as follows. --- The Tiron salicylic acid and sulfo formulated separately; use 'sulfosalicylic acid solution "instead of" hydrochloric acid "on the pH value into Line regulation; and "added 10mL Tiron - sulfosalicylic acid solution ionic strength adjustment, the acidity of hydrochloric acid and hydrogen Sodium adjusted pH7.5 "to" join 5mL Tiron, 5mL sulfosalicylic acid solution, the pH meter with sodium hydroxide And sulfosalicylic acid solution was adjusted to pH7.5 "; --- Molten sample before an operation to "The sample was placed on the iron crucible, 4g of sodium hydroxide was added to get rid of water placed on a hot plate, Then covered with 1g sodium peroxide "; --- On the "working curve drawing" method and calculation formula has been modified; --- Increased repeatability terms; --- Text format has been re-edited, an increase of quality assurance and control provisions. The non-ferrous metal part by the National Standardization Technical Committee (SAC/TC243) centralized. This section is drafted. Hunan Nonferrous Metal Research Institute, Xinjiang Institute of Nonferrous Metals, Hunan Nonferrous Metals Group Co., Ltd. Shuikoushan. The main drafters of this section. Tanping Sheng, Li Qingchun, Bing, Zhou Chi, Pangwen Lin, Guan Yuzhen, Wang Hongchuan, Xie Yi Bin, Huang Haibo. This part of the standard replaces the previous editions are. --- GB/T 5870.5-1986, YS/T 254.5-1994. Beryllium ore, beryl chemical analysis Part 5. Determination of the amount of fluorine Ion Selective Electrode1 ScopeThis section YS/T 254 provisions of the beryllium ore, beryl determination of fluorine content. This section applies to beryllium ore, beryl determination of fluorine in. Determination range of 0.050% to 5.00%.2 principle of the methodSample with sodium hydroxide - regulating liquid molten sodium peroxide decomposition to Tiron and sulfosalicylic acid as ionic strength, at pH7.5 with fluorine Determination of the amount of fluorine ion selective electrode. Aluminum, beryllium fluoride seriously interfere with the determination. Under assay conditions, it can eliminate the interference of 10mg and 15mg aluminum beryllium oxide.3 Reagents3.1 sodium peroxide. 3.2 sodium hydroxide. 3.3 Sodium hydroxide solution (200g/L). 3.4 Sodium hydroxide solution (20g/L). 3.5 Tiron (150g/L). Weigh 75g Tiron in 250mL beaker, add water, heating cooling dissolved, moved 500mL volumetric flask, dilute to volume, and mix. 3.6 sulfosalicylic acid solution (400g/L). known in the 250mL beaker, dissolved in water to take 200g sulfosalicylic acid solution, transferred 500mL volumetric flask, dilute with water to volume, and mix. 3.7 fluoro standard stock solution. Weigh 2.2102g pre-bake 2h at 105 ℃ ~ 110 ℃ and placed in the dryer to cool to room temperature Sodium fluoride (excellent pure), placed in a beaker, dissolved in water and transferred to 1000mL volumetric flask, dilute to the mark with water, mix and transferred to dry, clean Net of plastic bottles saved. This solution is equivalent to 1.0mg 1mL fluorine. 3.8 fluoro standard solution. Pipette 50.00mL fluoro standard solution (3.7), placed in 500mL volumetric flask, dilute to the mark with water, mix, shift Into dry, clean plastic bottles saved. This solution is equivalent to 0.1mg 1mL fluorine. 3.9 fluoro standard solution. Pipette 50.00mL fluoro standard solution (3.8) into 500mL volumetric flask, dilute to the mark with water, mix, shift Into dry, clean plastic bottles saved. 1mL of this solution is equivalent to 0.01mg fluorine.4 Instrument4.1 pH meter. accuracy 0.02pH. 4.2 ion meter or a digital voltmeter. Accuracy ± 0.1mV. 4.3 magnetic stirrer. 4.4 FISE. 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