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infrared absorption method high-frequency induction furnace combustion high induction furnace combustion introductionthis standard absorption analysis composite oxide cylindrical milling cutters interactive mail access protocol water distributor
YS/T 1058-2015 in English

YS/T 1058-2015 in English

VALID

Methods for chemical analysis of nickel, cobalt, manganese trielement composite oxide. Determination of sulfur contents. Infrared absorption method after high induction furnace combustion

  • Issued on:2015-04-30
  • Implemented on:2015-10-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $120.00
$117.00
Standard No: YS/T 1058-2015
Document status: VALID
Title in English: Methods for chemical analysis of nickel, cobalt, manganese trielement composite oxide. Determination of sulfur contents. Infrared absorption method after high induction furnace combustion
Title in Chinese: 镍、钴、锰三元素复合氧化物化学分析方法 硫量的测定 高频感应炉燃烧红外吸收法
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 1~3 business days
Issued on: 2015-04-30
Implemented on: 2015-10-01
Professional Classification: YS-Non-ferrous Metal
Related Keywords: infrared absorption method
high-frequency induction furnace combustion
high induction furnace combustion introductionthis standard
absorption analysis
composite oxide
Related Topics: ys/t 1075.8-2015
ys/t 1050.2-2015
wb/t 1058
ys/t 1075.4-2015
ga/t 1058
ys/t 1028.2-2015
ys/t 1028.5-2015
ys t 1075.4 2015
ys/t 1028.1-2015
Manganese element analysis
Cobalt Tetroxide Chemical Analysis Method Content of Magnetic Foreign Matter
Manganese element analysis
ys/t1050.2-2015
Infrared of Inorganic Elements
Inorganic element infrared
The infrared absorption peak of cobalt
Cobalt Tetroxide Infrared Absorption Peak
Cobalt infrared absorption peak
Infrared elements
Infrared Inorganic Elements
Cobalt infrared absorption
Organic Cobalt Infrared Absorption
Infrared Absorption of Cobalt Oxygen
ys/t1017-2015
Cobalt disulfide infrared
Infrared absorption peak cobalt tetroxide
ys/t1064-2015
The infrared absorption peak of cobalt oxide
Oxycobalt infrared peak
Infrared Absorption Peak of Cobalt Element
cobalt sulfide infrared
ys t 1028.1 2015
Sulfur infrared peak
cobalt infrared
Three element analysis method
Oxidation of cobalt sulfide
Determination method of manganese element
Determination of elements by combustion method
Determination of elements by combustion method
Analysis method of manganese element
Infrared cobalt sulfide
Cobalt sulfide + infrared
cobalt sulfide infrared
Infrared analysis of cobalt sulfide
Infrared analysis of cobalt sulfide
Element infrared absorption peak
Infrared sulfur peak
Cobalt infrared absorption peak
Nickel Furnace
Cobalt sulfide UV absorption
Chemical Analysis Method of Cobalt Oxide
UV absorption of manganese oxides
cobalt oxide infrared
Sulfur uptake
Sulfur Infrared
Combustion method for determination of elements
Cobalt Analysis
Determination of Sulfur Content by Chemical Analysis Method of High Nickel Matte Combustion-Medium
Cobalt Analysis
Compounds with strong near-infrared absorption
Cobalt-based high-temperature alloy element analysis method
Nitrogen oxide measurement method infrared ultraviolet chemiluminescence
How to detect chemical elements
Elemental analysis and corresponding detection
Chemical element detection methods
High frequency furnace acceptance
Chemical analysis methods for trace elements
Methods for measuring chemical elements in leaves
Synthesis method of manganese trioxide
Combustion method elemental analysis test
Method for determination of plant manganese absorption
High temperature oxidation element analysis
High temperature oxidation elements
ys/t3503-2015

本标准规定了镍、钴、锰三元素复合氧化物中硫量的测定方法。
本标准适用于镍、钴、锰三元素复合氧化物中硫量的测定。测定范围:0.005%~0.50%;


Introduction

This standard specifies a method for determining sulfur content in a composite oxide containing nickel, cobalt, and manganese using high-frequency induction furnace combustion infrared absorption analysis. It outlines the necessary reagents, equipment, and procedures for sample preparation, combustion, and measurement. The method is applicable to the determination of sulfur in materials where sulfur exists in various forms. The standard provides detailed steps for calibration, measurement conditions, and data processing to ensure accurate and reliable results. It is designed to be used by laboratories involved in the analysis of such materials, offering a standardized approach to ensure consistency and precision in sulfur content determination.

*** Please note: This description may not be accurate, please refer to the official documentation.

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