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copper alloys plasma emission spectrometry determination method plasma atomic emission spectromertric method scopethis part copper high-frequency dielectric heating equipment quality indicators items indicator range potassium iodate content chelator introductionthis standard
GB/T 5121.27-2008 in English

GB/T 5121.27-2008 in English

VALID

Methods for chemical analysis of copper and copper alloys - Part 27:The inductively coupled plasma atomic emission spectromertric method

  • Issued on:2008-06-17
  • Implemented on:2008-12-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $140.00
$136.00
Standard No: GB/T 5121.27-2008
Document status: VALID
Title in English: Methods for chemical analysis of copper and copper alloys - Part 27:The inductively coupled plasma atomic emission spectromertric method
Title in Chinese: 铜及铜合金化学分析方法 第27部分:电感耦合等离子体原子发射光谱法
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 1~3 business days
Issued on: 2008-06-17
Implemented on: 2008-12-01
ICS Classification: 77.120.30-Copper and copper alloys
Chinese Classification: H13-Heavy metals and their alloys analysis method
Professional Classification: GB-National Standard
Related Keywords: copper alloys
plasma emission spectrometry determination method
plasma atomic emission
spectromertric method scopethis part
copper
Related Topics: inductive coupling
atomic emission
atomic emission spectrometry
inductive coupling
Inductively Coupled Plasma
plasma ashing
atomic emission spectrometry
Atomic Emission Spectrometry Atomization
Atomization and plasmaization,
plasma atom
Coupled inductor
Inductive coupling+
atomic coupling
How to use inductive coupling
Plasma zero-dimensional analysis
Inductively Coupled Plasma Optical Radiation Spectroscopy
Inductively Coupled Plasma
Plasma emission spectroscopy copper
Inductive coupling standard
Atomic Emission Spectroscopy and Inductively Coupled Plasma Emission Spectroscopy
inductively coupled plasma atomic emission spectrometer
Part 27 Inductively Coupled Plasma Atomic Emission Spectrometry
plasma coupling
icp plasma emission spectroscopic analysis
Copper ion + device
Inductively Coupled Plasma-Atomic Emission Spectrometry
Mass spectrum molecular weight more than 27
Copper ions in
plasma atomic emission spectrometry
Title 7 Atomic Emissions
bulk atomic emission spectrometry
Coupled inductor
maldi ionization method
bulk atom
atom+body
Inductively Coupled Plasma Atomic Emission Spectroscopy Operation
copper chloride ion
coupled plasma
Inductively Coupled Plasma
copper ion iron
Inductively Coupled Plasma-Atomic Emission Spectrometry
Atomic Light + Copper
Inductively Coupled Plasma Optical Emission Spectrometer Method
Mass spectrum molecular weight more than 27
Inductively Coupled Plasma Atoms
Inductively Coupled Plasma-Atomic Emission Spectrometry
Copper Ion UV Spectrum
Inductively Coupled Plasma-Atomic Emission Spectrometry
"Atomic Emission Spectroscopy"
plasma processing method
Coupled atoms
Copper Atomic Emission Spectroscopy
inductive plasma atoms
copper iron ion
Ferromanganese Inductively Coupled Plasma Atomic Emission Spectroscopy
Copper ion Nickel ion
Compound Small Molecule Analysis
Inductively Coupled Plasma Emission Spectroscopy Protocol
Atomization of copper ions
atomic emission?
Inductively Coupled Plasma Mass Spectrometry
Inductively Coupled Plasma Atomic Emission
GB/T 5121.27
GB/t+5121.27
Copper and Copper Alloy Analytical Methods Photoemission Spectroscopy
Copper alloy chemical analysis method
GB/T 5121.27
GB/T 5121.27-2008
CuTiTantalum Inductively Coupled Plasma Mass Spectrometry
Siemens chemiluminescence
Model ICAP-6300 Coupled Plasma Atom
YS/T482 Analysis method for copper and copper alloys Photoelectric emission spectrometry
Molecular ionization method
method of ionizing molecules
Copper ion valence state analysis
Corresponding wavelength of metal ion inductive coupling
Principles of plasma emission spectroscopy
Atomization methods for atomic emission spectroscopy
Principles and methods of electron diffraction
How to test copper ions
Copper and copper alloy analysis method photoelectric emission spectrometry latest version
Explain the development of electrochemical methods in separation
National standard test method for divalent copper ions - spectrophotometry
Protoplast fusion method and principle
Blood copper ion detection method
The principle and production method of ionized water
Chemical analysis methods for copper and copper alloys
Electronic nose analysis method
Protoplast fusion methods and principles
Copper ion assay
European standard copper alloy analysis method
Copper measurement using inductively coupled plasma spectrometer
Small Molecule Analysis Method Development Linear Range
Protoplast isolation methods and their advantages and disadvantages
Separation method of brass compounds
Ion detection electrochemical method
Methods for isolating protozoa
Small molecule analytical method development
Exosome isolation and purification methods
Protoplast isolation method university textbook
Electronic nose analysis method?
Methods and principles of protoplast fusion

《GB/T 5121.27-2008铜及铜合金化学分析方法 第27部分:电感耦合等离子体原子发射光谱法》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。
本部分规定了铜及铜合金中磷、银、铋、锑、砷、铁、镍、铅、锡、硫、锌、锰、镉、硒、碲、铝、硅、钴、钛、镁、铍、锆、铬、硼、汞25个素的电感耦合等离子发射光谱测定方法。本部分适用于铜及铜合金中磷、银、铋、锑、砷、铁、镍、铅、锡、硫、锌、锰、镉、硒、碲、铝、钴、钛、镁、铍、锆、铬、硼、汞素含量的多素同时测定,也适用于其中一个素的独立测定。


Scope

This part specifies the phosphorus, silver, bismuth, antimony, arsenic, iron, nickel, lead, tin, sulfur, zinc, manganese, cadmium, selenium, tellurium, aluminum, silicon, cobalt, titanium, magnesium, beryllium in copper and copper alloys , zirconium, chromium, boron, mercury 25 elements of inductively coupled plasma emission spectrometry determination method. This part applies to phosphorus, silver, bismuth, antimony, arsenic, iron, nickel, lead, tin, sulfur, zinc, manganese, cadmium, selenium, tellurium, aluminum, silicon, cobalt, titanium, magnesium, beryllium in copper and copper alloys , zirconium, chromium, boron, mercury element content simultaneous determination of multiple elements, also suitable for independent determination of one of the elements. The determination range of each element is shown in Table 1.

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