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spectrophptometric method scopethis part zinc concentrates generation-atomic fluorescence spectrometry method chemical analysis safety specification luminous fibers scopethis part signal transformers scopethis part
GB/T 8151.13-2012 in English

GB/T 8151.13-2012 in English

VALID

Methods for chemical analysis of zinc concentrates—Part 13:Determination of germanium content—Hydride generation-atomic fluorescence spectrometry and the phenyl fluorone spectrophptometric method

  • Issued on:2012-12-31
  • Implemented on:2013-10-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $180.00
$175.00
Standard No: GB/T 8151.13-2012
Document status: VALID
Title in English: Methods for chemical analysis of zinc concentrates—Part 13:Determination of germanium content—Hydride generation-atomic fluorescence spectrometry and the phenyl fluorone spectrophptometric method
Title in Chinese: 锌精矿化学分析方法 第13部分:锗量的测定 氢化物发生-原子荧光光谱法和苯芴酮分光光度法
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 1~3 business days
Issued on: 2012-12-31
Implemented on: 2013-10-01
Superseding: GB/T 8151.13-2000 Methods for chemical analysis of zinc concentrates - Determination of germanium content
ICS Classification: 77.120.60-Lead, zinc, tin and their alloys
Chinese Classification: H13-Heavy metals and their alloys analysis method
Professional Classification: GB-National Standard
Related Keywords: spectrophptometric method scopethis part
zinc concentrates
generation-atomic fluorescence spectrometry
method
chemical analysis
Related Topics: Atomic Fluorescence Spectroscopy
Hydride generation
Germanium Zinc Concentrate
Spectrophotometric Benzene
Chemiluminescence
Methods for chemical analysis of tellurium - Part 1 Determination of bismuth content - Hydride generation - atomic fluorescence spectrometry
Spectrophotometer spectrum measurement
Methods for Chemical Analysis of Lead Concentrates Part 13
Spectrophotometry + Benzene +
Hydride Generation Atomic Fluorescence Spectrometry
biochemical spectrum
Germanium Oxide Spectrum
Fluorescence analysis and chemical analysis
Fluorescence spectrophotometry
benzofluorenone spectrophotometry
Germanium hydride
Fluorenone spectrum
Fluorescence Spectrophotometry Benzene
biological chemiluminescence
Fluorescence analysis of biomolecules
Spectrophotometer wavelength
Chemifluorescence
Fluorescence and chemical spectroscopy
Biotechnology Fluorescence Analysis
Hydride Generation Atomic Fluorescence Instrument
mineral spectrum
Spectrophotometry + Benzene
Fluorescent analysis of biomolecules
Compound fluorescence spectrum
Measuring principle of fluorescence analysis
What does fluorescence analysis measure?
Hydride Atomic Fluorescence Spectrophotometry
Atomic Fluorescence and Hydride Atomic Fluorescence
hydride atomic fluorescence spectrophotometry
Spectral Mineral Composition
Hydride generation-atomic fluorescence spectrometry
Hydride Generation - Atomic Fluorescence
Hydride generation-atomic fluorescence spectrometry
autofluorescence of organisms
Hydride atomic fluorescence and atomic fluorescence
Hydride atomic fluorescence spectrometer
Molecular Fluorescence Spectrometry
Hydride atomic fluorescence spectrometry and atomic fluorescence spectrometry
biological spectroscopy
Atomic Fluorescence and Hydrides
What does fluorescence analysis measure?
GB/T8151.13-2012
Hydride generation atomic fluorescence spectrometry and hydride
gb/t8151.13
bioluminescence spectroscopy
Hydride Atomic Fluorescence Analysis
Arsine Hydride Atomic Fluorescence Spectrophotometry
Hydride Atomic Fluorescence Spectrometry
Hydride atomic fluorescence and atomic fluorescence
Atomic Fluorescence and
Principle of Fluorescence Photometry
The principle of luminescence
Molecular fluorescence analysis method
Fluorescent Molecular Components
atomic fluorescence and
Fluorescence produces the original
Chemiluminescence
Principle of Fluorescence Spectrophotometry
concentration solution fluorescence
Fluorescence spectrophotometry
biochemical spectrum
Chemiluminescence window period
Organic germanium
Methods of Fluorescence Analysis
bioluminescence spectroscopy
Atomic Fluorescence Hydride
Atomic Fluorescence and Atomic Fluorescence Spectrophotometry
Photoluminescence analysis method
Chemifluorescence
Hydride atomic fluorescence
Hydride Generation - Atomic Fluorescence and Hydrides
Spectrophotometer wavelength
Benzene standard spectrophotometry
Spectrophotometry and Chromatography
Molecular Fluorescence Spectrometry
Chemiluminescence and Bioluminescence
Chemiluminescence and Bioluminescence
Atomic Fluorescence Spectroscopy and Occurrence Spectroscopy
How to Analyze Fluorescence Spectrum
Hydride Atomic Fluorescence Chromatography
Fluorescence analysis measures light
chemiluminescence luminescence
Molecular Fluorescence Photometry
Fluorescence and Spectrophotometry
Fluorescent solution concentration
Chemiluminescence measuring cell
hydride generation atomization method
The difference between fluorescence spectrophotometry and spectrophotometry
Hydride Generation Atomic Fluorescence Spectrophotometry
germanium atomic fluorescence
fluorescent biomolecules
Germanium hydride
Hydride atomic fluorescence spectrometry and atomic fluorescence
Chemiluminescence
Is atomic fluorescence spectrometry the same as atomic fluorescence
atomic fluorescent hydride
Atomic Fluorescence Spectrometry Quantitative Analysis Method
How to Atomize Atom Fluorescent Hydride
Fluorometric assay method
bioluminescence and chemiluminescence
The principle of bioluminescence
Principle of bioluminescence
Molecular Fluorescence Photometry
Atomic Fluorescent Zinc
Biochemical pre-spectral and post-spectral
Biochemical pre-spectroscopy and post-spectroscopy
biomolecular fluorescence
Principle of bioluminescence
fluorescent molecular biology
Fluorescence Spectrometry Concentration
Hydride method and fluorescence method
Atomic Spectrophotometry vs Spectrophotometry
bioluminescence or chemiluminescence
mineral spectrum
GB/T 8151.13
GB/T 8151.13-2000
GB/T 8151.13-2012
GB/8151.13-2012
Electrochemiluminescence detector principle
The difference between chemiluminescence and fluorescence is
What is the difference between bioluminescence and chemiluminescence?
Siemens chemiluminescence
Photoluminescence bioluminescence electrochemiluminescence
Are immunofluorescence and chemiluminescence the same?
The difference between optical paths of fluorescence spectrometer and spectrophotometer
The principle of red shift in fluorescence spectrum
Error Analysis of Vitamin Determination by Fluorescence Method
Absorption phenomena of fluorescence, phosphorescence and chemiluminescence
Fluorescence analysis methods can be used for substances
Fluorescence analysis method principle
Chemiluminescence signal detection method
Quantitative standard curve requirements for fluorescence spectrophotometry
Analytical Methods in Molecular Biology
Analysis method of direct chemiluminescence of dummy esters
Principle of determination method for benzene series
Applicable scope of fluorescence molecular spectroscopy methods
Is fluorescence spectrum a test and analysis method?
Protoplast dual fluorescence method
Advantages and Disadvantages of Fluorescence Analysis Methods
Chemiluminescence sample loading method
IVD luminescence method
Several reaction methods of chemiluminescence
Mecon Bioluminescence Methodology
Advantages of Fluorescence Analysis Methods
The ways in which hydrides are generated are
Disadvantages of fluorescence analysis methods
Synthesis and purification method of fluorescent quantitative primers
Guangguang
Advantages of Molecular Fluorescence Analysis
Molecular fluorescence analysis methods are widely used
Qualitative and quantitative methods of fluorescence analysis

《GB/T 8151.13-2012锌精矿化学分析方法 第13部分:锗量的测定 氢化物发生-原子荧光光谱法和苯芴酮分光光度法》由TC243(全国有色金属标准化技术委员会)归口,TC243SC2(全国有色金属标准化技术委员会重金属分会)执行,主管部门为中国有色金属工业协会。


Scope

This part of GB/T 8151 specifies the method for the determination of germanium in zinc concentrates. This part is applicable to the determination of germanium in zinc concentrates. The range of method 1: 0.000 50%~0.10%; the range of method 2: 0.000 50%~0.10%,

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