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YS/T 514.10-2009 English PDF

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YS/T 514.10-2009: Methods for chemical analysis of high titanium slag and rutile. Part 10: Determination of carbon content. High frequency infrared absorption method
Status: Valid

YS/T 514.10: Evolution and historical versions

Standard IDContents [version]USDSTEP2[PDF] delivered inStandard Title (Description)StatusPDF
YS/T 514.10-2009English139 Add to Cart 2 days [Need to translate] Methods for chemical analysis of high titanium slag and rutile. Part 10: Determination of carbon content. High frequency infrared absorption method Valid YS/T 514.10-2009
YS/T 514.10-2006English199 Add to Cart 2 days [Need to translate] Methods for chemical analysis of high-titanium slag and rutile The diphenylcarbazide photometric method for the determination of chromium sesquioxide content Obsolete YS/T 514.10-2006

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Basic data

Standard ID YS/T 514.10-2009 (YS/T514.10-2009)
Description (Translated English) Methods for chemical analysis of high titanium slag and rutile. Part 10: Determination of carbon content. High frequency infrared absorption method
Sector / Industry Nonferrous Metallurgy Industry Standard (Recommended)
Classification of Chinese Standard H14;D42
Classification of International Standard 77.120.90
Word Count Estimation 4,411
Date of Issue 2009-12-04
Date of Implementation 2010-06-01
Older Standard (superseded by this standard) YS/T 514.4-2006
Regulation (derived from) MIIT [2009] No. 66
Issuing agency(ies) Ministry of Industry and Information Technology
Summary The standard provides: high titanium slag, rutile determination of carbon content. This standard applies to high titanium slag, rutile determination of the carbon content. Measuring range: 0. 0010% to 3. 50 %.

YS/T 514.10-2009: Methods for chemical analysis of high titanium slag and rutile. Part 10: Determination of carbon content. High frequency infrared absorption 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 high titanium slag and rutile.Part 10. Determination of carbon content.High frequency infrared absorption method ICS 77.120.90 H14 People's Republic of China Nonferrous Metals Industry Standard Replacing YS/T 514.4-2006 High titanium slag and rutile chemical analysis Part 10. Determination of carbon contents Frequency infrared absorption method Posted 2009-12-04 2010-06-01 implementation Ministry of Industry and Information Technology of the People's Republic of China released

Foreword

YS/T 514 "high titanium slag and rutile chemical analysis method" is divided into 10 parts. --- Part 1. Determination of titanium dioxide content of ammonium ferric sulfate titration; --- Part 2. Determination of total iron content of dichromate method; --- Part 3. Determination of sulfur content of high frequency infrared absorption method; --- Part 4. Determination of the amount of silica weighing method, the molybdenum blue spectrophotometric method; --- Part 5. aluminum oxide content - EDTA titration; --- Part 6. Determination of a manganese oxide content by flame atomic absorption spectrometry; --- Part 7. calcium oxide, magnesium oxide content - Flame atomic absorption spectrometry; --- Part 8. Determination of the amount of phosphorus antimony molybdenum blue spectrophotometric method; --- Part 9. calcium oxide, magnesium oxide, manganese oxide, phosphorus, chromium oxide and vanadium pentoxide content - Inductively coupled plasma Daughters emission spectrometry; --- Part 10. Determination of the amount of carbon frequency infrared absorption method. This section YS/T 514 Part 10. The partial replacement of YS/T 514.4-2006 "high titanium slag and rutile chemical analysis of combustion - coulometric method for the determination of carbon content." This portion of YS/T 514.4-2006 compared to the main changes are as follows. --- Changed the measurement method by combustion - coulometric method for modifying the high frequency infrared absorption method; --- Measured by the scope of 0.010% ~ 0.500% revised to 0.0010% to 3.50%. --- Increasing the repeatability limit and quality assurance and control provisions. The non-ferrous metal part by the National Standardization Technical Committee and centralized. This section is responsible for drafting unit. Zunyi Titanium Co., Ltd., China Nonferrous Metals Industry Standards and Metrology Institute for Quality. Participated in the drafting of this section. Jinchuan Group Co., Ltd. Fushun Titanium. The main drafters of this section. Li Hua, Liu Shu Huai, Qinjun Rong Zhuang Jun, LI Xian Chao, Luo Lin. This part of the standard replaces the previous editions are. --- GB/T 4102.4-1983; --- YS/T 514.4-2006. High titanium slag and rutile chemical analysis Part 10. Determination of carbon contents Frequency infrared absorption method

1 Scope

YS/T 514 This part provides high titanium slag and rutile measured carbon content. This section applies to high titanium slag and rutile measured carbon content. Measurement range. 0.0010% to 3.50%.

2 principle of the method

Sample in the presence of a suitable amount of flux, which leads to oxygen in a high frequency induction furnace combustion. Carbon in a sample of a gas (CO and CO2) released in the form, and with the oxygen carrier gas through the catalyst is oxidized to CO2. When air flows through the CO2 infrared detection pool pool, pool detected by measuring The amount of energy change detector to a concentration of CO2.

3 Reagents and materials

3.1 tungsten particles. particle size of 0.4mm ~ 0.8mm, carbon content < 0.001%. 3.2 Magnesium Perchlorate. reagent grade, particle size of 0.7mm ~ 1.2mm, to absorb moisture. 3.3 platinized silica gel. 3.4 Oxygen. volume fraction ≥99.5%. 3.5 fiber cotton. 3.6 porcelain crucible. 25mm × 25mm or 24mm × 24mm, prior to use in a muffle furnace 1000 ℃ burning 2h. 3.7 Standard sample. carbon content 0.0010% to 3.50%.

4 Instrument

High-frequency infrared carbon and sulfur analyzer.

5 Sample

5.1 Sample size should be less than 90μm. 5.2 Sample required at 105 ℃ ~ 110 ℃ drying 2h, placed in a desiccator to cool to room temperature. 5.3 the sample should have oil, grease and other contaminants. Step 6 Analysis 6.1 Switch on the instrument, preheat 10min after viewing the relevant instrument parameters, confirm the determination to meet the requirements of the instrument. 6.2 Weigh 1.5g of tungsten particles (3.1), placed in a crucible (3.6), the determination is repeated more than four times, setting a blank after completion. 6.3 0.1g weighed (accurate to 0.001 g of) standard samples (3.7), placed in a crucible (3.6) was added 1.5g tungsten particles (3.1) uniformly covered In the standard surface, were measured. More than four times repeated measurements, carried out after the standard setting. 6.4 0.1g weighed (accurate to 0.001 g of) sample (5) placed in a crucible (3.6) was added 1.5g tungsten particles (3.1) evenly covering the sample The surface was measured. Repeat 2 more times measured and averaged.

7 precision

7.1 Repeatability Found two independent test results obtained under repeatability conditions within the average range given below, these two test results

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