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The role of spectral analysis

The role of spectral analysis, Total:500 items.

In the international standard classification, The role of spectral analysis involves: Non-ferrous metals, Products of non-ferrous metals, Testing of metals, Iron and steel products, Analytical chemistry, Optics and optical measurements, Fibre optic communications, Electronic components in general, Medical equipment, Metalliferous minerals, Fuels, Nuclear energy engineering, Air quality, Ferrous metals, Non-destructive testing, Vocabularies, Products of the chemical industry, Lubricants, industrial oils and related products, Surface treatment and coating, Environmental protection, Paint ingredients, Ferroalloys, Coals, Inorganic chemicals, METALLURGY, Optoelectronics. Laser equipment, Petroleum products in general, Paints and varnishes, Fruits. Vegetables, Character sets and information coding, Special measuring equipment for use in telecommunications, Water quality, Refractories, Pharmaceutics, Laboratory medicine, Cutting tools, Natural gas, Corrosion of metals, Medical sciences and health care facilities in general, Semiconducting materials, Manufacturing processes in the rubber and plastics industries, Animal feeding stuffs, Cereals, pulses and derived products, Standardization. General rules, Fertilizers, General methods of tests and analysis for food products, Thermodynamics and temperature measurements.


ZA-SANS, The role of spectral analysis

Professional Standard - Non-ferrous Metal, The role of spectral analysis

  • YS/T 82-2006 Basis platinum as spectral analysis
  • YS/T 83-2006 Basis palladium as spectral analysis
  • YS/T 84-2006 Basis iridum as spectral analysis
  • YS/T 85-2006 Basis rhodium as spectral analysis
  • YS/T 82-1994 Platinum substrates for spectroscopic analysis
  • YS/T 83-1994 Palladium Matrix for Spectroscopic Analysis
  • YS/T 84-1994 Iridium matrix for spectroscopic analysis
  • YS/T 85-1994 Rhodium Matrix for Spectroscopic Analysis
  • YS/T 558-2009 Methods for emission spectrum analysis of molybdenum
  • YS/T 559-2009 Methods for emission spectrum analysis of tungsten
  • YS/T 558-2006 Molybdenum Emission Spectroscopy Analysis Method
  • YS/T 559-2006 Tungsten Emission Spectroscopy Analysis Method
  • YS/T 361-2006 Determination of trace impurities in purity platinum by atomic emission spectrometric
  • YS/T 362-2006 Determination of trace impurities in purity palladium by atomic emission spectrometric
  • YS/T 363-2006 Determination of trace impurities in purity rhodium by atomic emission spectrometric
  • YS/T 364-2006 Determination of trace impurities in purity iridium by atomic emission spectrometric
  • YS/T 361-1994 Emission Spectral Analysis of Impurity Elements in Pure Platinum
  • YS/T 362-1994 Emission spectrum analysis of impurity elements in pure palladium
  • YS/T 363-1994 Emission spectrum analysis of impurity elements in pure rhodium
  • YS/T 364-1994 Emission Spectral Analysis of Impurity Elements in Pure Iridium
  • YS/T 365-2006 Determination of trace impurities in high purity palladium by atomic emission spectrometric
  • YS/T 365-1994 Emission Spectrum Analysis of Impurity Elements in High Purity Platinum
  • YS/T 536.7-2009 Methods for chemical analysis of bismuth.Determination of arsenic content.Atomic fluorescence spectrometric method
  • YS/T 536.11-2009 Methods for chemical analysis of bismuth.Determination of mercury content.Atomic fluorescence spectrometric method
  • YS/T 555.4-2009 Methods for chemical analysis of molybdenum concentrate.Determination of tin content.Atomic fluorescence spectrometry

National Metrological Verification Regulations of the People's Republic of China, The role of spectral analysis

  • JJG 1035-2022 Communication Spectrum Analyzer
  • JJG 1035-2008 Verification Regulation of Optical Spectrum Analyzers in Telecommunication
  • JJG 955-2000 Verification Regulation of Special Analysis Microdensitimeters

工业和信息化部, The role of spectral analysis

  • YS/T 84-2020 Iridium matrix for spectroscopic analysis
  • YS/T 82-2020 Platinum matrix for spectroscopic analysis
  • YS/T 83-2020 Palladium matrix for spectroscopic analysis
  • YS/T 85-2020 Rhodium matrix for spectroscopic analysis
  • YB/T 4997-2022 Rules for the use of calibration and quality control charts in spectrochemical analysis
  • SJ/T 1543-2020 Spectral analysis method of nickel and nickel alloys for electric vacuum devices

RO-ASRO, The role of spectral analysis

  • STAS 11464-1980 IRON AND STEEL Spectrochemical analysis
  • STAS 2015/2-1985 CAST IRONS AND STEELS Sampling and samples prcparation for spectral analysis
  • STAS 1776/14-1978 LEAD Emission spectral analysis with direct reading
  • STAS 12368-1985 Modifier alloys for cast irons SPECTROGRAPHIC ANALYSIS BY EMISSION
  • STAS 10837/1-1977 SELENIUM General specifications for chemical and spectral analysis
  • STAS 1776/1-1978 LEAD General specifications for carrying out chemical and spectral analysis
  • STAS SR 13314-1995 Chemical analysis of ferrous materials. Operational guidelines for the application of flame atomic absorption spectrometry in standard methods for the chemical analysis of iron and steel
  • STAS 10274/1-1983 Solid fuels ASH ANALYSIS General directions for spectral and chemical analysis carrying out
  • STAS 11564-1982 RAPID STEELS FOR TOOLS Spectrographic analysis in emission

American Society for Testing and Materials (ASTM), The role of spectral analysis

  • ASTM E1086-94(2005) Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Stainless Steel by the Point-to-Plane Excitation Technique
  • ASTM B953-13 Standard Practice for Sampling Magnesium and Magnesium Alloys for Spectrochemical Analysis
  • ASTM F2381-10 Standard Test Method for Evaluating Trans-Vinylene Yield in Irradiated Ultra-High-Molecular-Weight Polyethylene Fabricated Forms Intended for Surgical Implants by Infrared Spectroscopy
  • ASTM E1329-10 Standard Practice for Verification and Use of Control Charts in Spectrochemical Analysis
  • ASTM D1946-90(2006) Standard Practice for Analysis of Reformed Gas by Gas Chromatography
  • ASTM E402-95 Standard Test Method for Spectrographic Analysis of Uranium Oxide (U3O8)by Gallium Oxide-Carrier Technique
  • ASTM E718-80 Method for Spectrographic Analysis of Cartridge Brass
  • ASTM E1086-08 Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Stainless Steel by the Point-to-Plane Excitation Technique
  • ASTM C791-83(2000) Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Boron Carbide
  • ASTM E996-94(1999) Standard Practice for Reporting Data in Auger Electron Spectroscopy and X-ray Photoelectron Spectroscopy
  • ASTM E1508-98 Standard Guide for Quantitative Analysis by Energy-Dispersive Spectroscopy
  • ASTM E1508-12 Standard Guide for Quantitative Analysis by Energy-Dispersive Spectroscopy
  • ASTM E1508-12a Standard Guide for Quantitative Analysis by Energy-Dispersive Spectroscopy
  • ASTM E1508-98(2003) Standard Guide for Quantitative Analysis by Energy-Dispersive Spectroscopy
  • ASTM E1508-98(2008) Standard Guide for Quantitative Analysis by Energy-Dispersive Spectroscopy
  • ASTM E1508-12a(2019) Standard guide for quantitative analysis using energy dispersive spectroscopy
  • ASTM E716-94(2002) Standard Practices for Sampling Aluminum and Aluminum Alloys for Spectrochemical Analysis
  • ASTM E716-16(2021)e2 Standard Practices for Sampling and Sample Preparation of Aluminum and Aluminum Alloys for Determination of Chemical Composition by Spark Atomic Emission Spectrometry
  • ASTM E1277-02 Standard Test Method for Chemical Analysis of Zinc-5% Aluminum-Mischmetal Alloys by ICP Emission Spectrometry
  • ASTM E1277-08 Standard Test Method for Chemical Analysis of Zinc-5 % Aluminum-Mischmetal Alloys by ICP Emission Spectrometry
  • ASTM D5381-93(2003) Standard Guide for X-Ray Fluorescence (XRF) Spectroscopy of Pigments and Extenders
  • ASTM D5381-93(1998) Standard Guide for X-Ray Fluorescence (XRF) Spectroscopy of Pigments and Extenders
  • ASTM E406-81(1996) Standard Practice for Using Controlled Atmospheres in Spectrochemical Analysis
  • ASTM E1999-99e1 Standard Test Method for Analysis of Cast Iron Using Optical Emission Spectrometry
  • ASTM E1999-99(2004) Standard Test Method for Analysis of Cast Iron Using Optical Emission Spectrometry
  • ASTM E539-11 Standard Test Method for Analysis of Titanium Alloys by X-Ray Fluorescence Spectrometry
  • ASTM E1085-09 Standard Test Method for Analysis of Low-Alloy Steels by X-Ray Fluorescence Spectrometry
  • ASTM E634-96 Standard Practice for Sampling of Zinc and Zinc Alloys for Optical Emission Spectrometric Analysis
  • ASTM E2465-19 Standard Test Method for Analysis of Ni-Base Alloys by X-ray Fluorescence Spectrometry
  • ASTM E1835-14 Standard Test Method for Analysis of Nickel Alloys by Flame Atomic Absorption Spectrometry
  • ASTM D1946-90(2015)e1 Standard Practice for Analysis of Reformed Gas by Gas Chromatography
  • ASTM E1010-84(2004) Standard Practice for Preparation of Disk Specimens of Steel and Iron for Spectrochemical Analysis by Remelting
  • ASTM E1010-09 Standard Practice for Preparation of Disk Specimens of Steel and Iron for Spectrochemical Analysis by Remelting
  • ASTM E1010-84(2000) Standard Practice for Preparation of Disk Specimens of Steel and Iron for Spectrochemical Analysis by Remelting
  • ASTM E1329-00 Standard Practice for Verification and Use of Control Charts in Spectrochemical Analysis
  • ASTM E1329-00(2005) Standard Practice for Verification and Use of Control Charts in Spectrochemical Analysis
  • ASTM C696-11 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Uranium Dioxide Powders and Pellets
  • ASTM E716-10 Standard Practices for Sampling and Sample Preparation of Aluminum and Aluminum Alloys for Determination of Chemical Composition by Spectrochemical Analysis
  • ASTM D7941/D7941M-23 Standard Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM E634-05 Standard Practice for Sampling of Zinc and Zinc Alloys for Optical Emission Spectrometric Analysis
  • ASTM E1621-94(1999) Standard Guide for X-Ray Emission Spectrometric Analysis
  • ASTM E1621-22 Standard Guide for Elemental Analysis by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM E1252-98(2007) Standard Practice for General Techniques for Obtaining Infrared Spectra for Qualitative Analysis
  • ASTM E2056-04(2010) Standard Practice for Qualifying Spectrometers and Spectrophotometers for Use in Multivariate Analyses, Calibrated Using Surrogate Mixtures
  • ASTM E2056-04(2016) Standard Practice for Qualifying Spectrometers and Spectrophotometers for Use in Multivariate Analyses, Calibrated Using Surrogate Mixtures
  • ASTM E406-81(2003) Standard Practice for Using Controlled Atmospheres in Spectrochemical Analysis
  • ASTM E2209-02(2006)e1 Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E1251-04 Test Method for Analysis of Aluminum and Aluminum Alloys by Atomic Emission Spectrometry
  • ASTM E2209-02 Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E2224-22 Standard Guide for Forensic Analysis of Fibers by Infrared Spectroscopy
  • ASTM E2224-23 Standard Guide for Forensic Analysis of Fibers by Infrared Spectroscopy
  • ASTM E2465-11e1 Standard Test Method for Analysis of Ni-Base Alloys by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM E2209-02(2006)e2 Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E1251-17a Test Method for Analysis of Aluminum and Aluminum Alloys by Atomic Emission Spectrometry
  • ASTM E2224-23a Standard Guide for Forensic Analysis of Fibers by Infrared Spectroscopy
  • ASTM E406-81(2012) Standard Practice for Using Controlled Atmospheres in Spectrochemical Analysis
  • ASTM E2105-00(2016) Standard Practice for General Techniques of Thermogravimetric Analysis (TGA) Coupled With Infrared Analysis (TGA/IR)
  • ASTM D7941/D7941M-14 Standard Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM E1257-93(2003) Standard Guide for Evaluating Grinding Materials Used for Surface Preparation in Spectrochemical Analysis
  • ASTM E539-19 Standard Test Method for Analysis of Titanium Alloys by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM D7940-21 Standard Practice for Analysis of Liquefied Natural Gas (LNG) by Fiber-Coupled Raman Spectroscopy
  • ASTM E1097-03 Standard Guide for Direct Current Plasma Emission Spectrometry Analysis
  • ASTM E1252-98 Standard Practice for General Techniques for Obtaining Infrared Spectra for Qualitative Analysis
  • ASTM E1252-98(2002) Standard Practice for General Techniques for Obtaining Infrared Spectra for Qualitative Analysis
  • ASTM E1252-98(2021) Standard Practice for General Techniques for Obtaining Infrared Spectra for Qualitative Analysis
  • ASTM E1252-98(2013)e1 Standard Practice for General Techniques for Obtaining Infrared Spectra for Qualitative Analysis
  • ASTM E634-96(2001) Standard Practice for Sampling of Zinc and Zinc Alloys for Optical Emission Spectrometric Analysis
  • ASTM B953-07 Standard Practice for Sampling Magnesium and Magnesium Alloys for Spectrochemical Analysis
  • ASTM E2224-02 Standard Guide for Forensic Analysis of Fibers by Infrared Spectroscopy
  • ASTM E716-94(1998) Standard Practices for Sampling Aluminum and Aluminum Alloys for Spectrochemical Analysis
  • ASTM E3047-16 Standard Test Method for Analysis of Nickel Alloys by Spark Atomic Emission Spectrometry
  • ASTM B953-21 Standard Practice for Sampling Magnesium and Magnesium Alloys for Spectrochemical Analysis
  • ASTM E1999-18 Standard Test Method for Analysis of Cast Iron by Spark Atomic Emission Spectrometry
  • ASTM E1999-23 Standard Test Method for Analysis of Cast Iron by Spark Atomic Emission Spectrometry
  • ASTM E2224-23ae1 Standard Guide for Forensic Analysis of Fibers by Infrared Spectroscopy
  • ASTM D1946-90(2011) Standard Practice for Analysis of Reformed Gas by Gas Chromatography
  • ASTM D5671-95(2011) Standard Practice for Polishing and Etching Coal Samples for Microscopical Analysis by Reflected Light
  • ASTM E607-90(1996) Standard Test Method for Optical Emission Spectrometric Analysis of Aluminum and Aluminum Alloys by the Point-to-Plane Technique, Nitrogen Atmosphere
  • ASTM E607-02 Standard Test Method for Atomic Emission Spectrometric Analysis Aluminum Alloys by the Point to Plane Technique Nitrogen Atmosphere
  • ASTM E60-98(2004) Standard Practice for Analysis of Metals, Ores, and Related Materials by Molecular Absorption Spectrometry
  • ASTM E60-98 Standard Practice for Analysis of Metals, Ores, and Related Materials by Molecular Absorption Spectrometry
  • ASTM E539-07 Standard Test Method for X-Ray Fluorescence Spectrometric Analysis of 6Al-4V Titanium Alloy
  • ASTM E2465-11 Standard Test Method for Analysis of Ni-Base Alloys by Wavelength-Dispersive X-Ray Fluorescence Spectrometry
  • ASTM E1085-22 Standard Test Method for Analysis of Low-Alloy Steels by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM E2465-13 Standard Test Method for Analysis of Ni-Base Alloys by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM D6247-98(2004) Standard Test Method for Analysis of Elemental Content in Polyolefins By X-Ray Fluorescence Spectrometry
  • ASTM D7940-14 Standard Practice for Analysis of Liquefied Natural Gas 40;LNG41; by Fiber-Coupled Raman Spectroscopy
  • ASTM E60-11 Standard Practice for Analysis of Metals, Ores, and Related Materials by Spectrophotometry
  • ASTM C809-94(2000) Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Aluminum Oxide and Aluminum Oxide-Boron Carbide Composite Pellets
  • ASTM D7343-18 Standard Practice for Optimization, Sample Handling, Calibration, and Validation of X-ray Fluorescence Spectrometry Methods for Elemental Analysis of Petroleum Products and Lubricants
  • ASTM D7343-20 Standard Practice for Optimization, Sample Handling, Calibration, and Validation of X-ray Fluorescence Spectrometry Methods for Elemental Analysis of Petroleum Products and Lubricants
  • ASTM D7343-12(2017) Standard Practice for Optimization, Sample Handling, Calibration, and Validation of X-ray Fluorescence Spectrometry Methods for Elemental Analysis of Petroleum Products and Lubricants
  • ASTM E1621-13 Standard Guide for Elemental Analysis by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM E1504-11 Standard Practice for Reporting Mass Spectral Data in Secondary Ion Mass Spectrometry (SIMS)
  • ASTM C791-19 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Boron Carbide
  • ASTM E1251-07 Standard Test Method for Analysis of Aluminum and Aluminum Alloys by Atomic Emission Spectrometry
  • ASTM C1001-00 Standard Test Method for Radiochemical Determination of Plutonium in Soil by Alpha Spectroscopy
  • ASTM C1001-05 Standard Test Method for Radiochemical Determination of Plutonium in Soil by Alpha Spectroscopy
  • ASTM E220-86(1996)e1 Standard Test Method for Calibration of Thermocouples By Comparison Techniques

Korean Agency for Technology and Standards (KATS), The role of spectral analysis

  • KS D 1681-2003 Method for emission spectrochemica1 analysis of aluminium ingot
  • KS D 1684-2008 Methods for emission spectrographic analysis of magnesium ingot
  • KS D 1682-2008 Methods for emission spectrochemical analysis of lead ingot
  • KS D 2086-2004 Method for atomic emission spectrometric analysis of titanium
  • KS D ISO 3815:2011 Zinc and zinc alloys-Spectrographic analysis
  • KS D 2558-1995 Method for emission spectrographic analysis of tantalum
  • KS D 2710-2019 Methods for X-ray fluorescence spectrometric analysis of ferroniobium
  • KS D 1655-2008(2019) Method for X-ray fluorescence spectrometric analysis of iron and steel
  • KS D ISO 3816-2002(2006) Zinc ingots-Selection and preparation of samples for spectrographic analysis
  • KS I ISO 20552:2021 Workplace air — Determination of mercury vapour —Method using gold-amalgam collection and analysis by atomic absorption spectrometry or atomic fluorescence spectrometry
  • KS I ISO 20552:2010 Workplace air-Determination of mercury vapour-Method using gold-amalgam collection and analysis by atomic absorption spectrometry or atomic fluorescence spectrometry
  • KS D 2569-2005 Methods for ICP emission spectrometric analysis of tantalum
  • KS D 2568-2008 Tantalum-Method for atomic absorption spectrometric analysis
  • KS D 2569-2016 Methods for ICP emission spectrometric analysis of tantalum
  • KS D 2569-2016(2021) Methods for ICP emission spectrometric analysis of tantalum
  • KS D 2518-2015 Methods for photoelectric emission spectrochemical analysis of cadmium metal
  • KS D 1655-1993 Method for X-Ray Fluorescence Spectrometric Analysis of Iron and Steel
  • KS M 0017-1995 General rules for X-ray fluorescence spectrometric analysis
  • KS D 1898-2019 Copper alloys —Methods for X-ray fluorescence spectrometric analysis
  • KS D 1650-2008(2018) General rules for photoelectric emission spectrochemical analysis of metal materials
  • KS D 1680-2008 General rules for photographic emission spectrochemical analysis of metal materials
  • KS M 0012-2009(2019) General rules for molecular absorptiometric analysis
  • KS I ISO 20552-2010(2016) Workplace air - Determination of mercury vapour - Method using gold-amalgam collection and analysis by atomic absorption spectrometry or atomic fluorescence spectrometry
  • KS D 1686-2011(2021) Method for x-ray fluorescence spectrometric analysis of ferroalloys
  • KS D ISO 22309-2011(2016) Microbeam analysis-Quantitative analysis using energy-dispersive spectrometry(EDS)
  • KS D 1659-2008 Methods for atomic absorption spectrophotometric analysis of iron and steel
  • KS D 2086-1993 Methods for emission spectrochemical analysis of titanium
  • KS C 6918-1995(2020) Test methods of fiber-optic spectrum analyzer
  • KS D 1684-2008(2018) Methods for emission spectrographic analysis of magnesium ingot
  • KS D 2086-2019 Methods for atomic emission spectrometric analysis of titanium
  • KS D ISO 22309-2011(2021) Microbeam analysis-Quantitative analysis using energy-dispersive spectrometry(EDS)
  • KS D 1899-2003 Methods for emission spectrochemical analysis of electrolytic cathode copper
  • KS D 1683-1993 Method for emission spectrochemical analysis of silver ingot
  • KS D 1681-2018 Method for emission spectrochemical analysis of aluminium ingot
  • KS E 3076-2017 Methods for X-ray fluorescence spectrometric analysis of silica stone and silica sand
  • KS D 1650-2008 General rules for photoelectric emission spectrochemical analysis of metal materials
  • KS E 3076-2022 Methods for X-ray fluorescence spectrometric analysis of silica stone and silica sand
  • KS D 2597-1996(2021) Method for X-ray fluorescence spectrometric analysis of zirconium and zirconium alloys
  • KS D ISO 3816:2011 Zinc ingots-Selection and preparation of samples for spectrographic analysis
  • KS D 1685-1993 Methods for emission spectrochemical analysis of zinc metal
  • KS D 1658-1993 Emission-spectroscopic analysis for carbon steel and low alloy steel
  • KS D 1658-2003(2016) Emission-spectroscopic analysis for carbon steel and low alloy steel
  • KS D 1687-2007 Emission-spectroscopic analysis for pig iron and cast iron
  • KS D ISO 17973-2011(2021) Surface chemical analysis-Medium-resolution Auger electron spectrometers-Calibration of energy scales for elemental analysis
  • KS E 3075-2002 Method for X-ray fluorescence spectrometric analysis of limestone and dolomite
  • KS D 1852-2015 Methods for photoelectric emission spectrochemical analysis of aluminium and aluminium alloys
  • KS D 1852-2020 Methods for optical emission spectrochemical analysis of aluminium and aluminium alloys
  • KS D 1673-2007 Methods for inductively coupled plasma emission spectrochemical analysis of steel
  • KS D 1680-2008(2018) General rules for photographic emission spectrochemical analysis of metal materials
  • KS D ISO 3815-1:2021 Zinc and zinc alloys — Part 1: Analysis of solid samples by optical emission spectrometry
  • KS D ISO 18118:2005 Surface chemical analysis-Auger electron spectroscopy and X-ray photoelectron spectroscopy-Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials
  • KS E 3075-2017 Method for X-ray fluorescence spectrometric analysis of limestone and dolomite
  • KS D 1686-2011(2016) Method for x-ray fluorescence spectrometric analysis of ferroalloys
  • KS E 3075-2022 Method for X-ray fluorescence spectrometric analysis of limestone and dolomite
  • KS D ISO 3815-1-2006(2016) Zinc and zinc alloys-Part 1:Analysis of solid samples by optical emission spectrometry
  • KS D ISO 22489:2012 Microbeam analysis-Electron probe microanalysis-Quantitative point analysis for bulk specimens using wavelength-dispersive x-ray spectroscopy
  • KS D ISO 22489:2018 Microbeam analysis — Electron probe microanalysis — Quantitative point analysis for bulk specimens using wavelength dispersive x-ray spectroscopy
  • KS D ISO 17973:2011 Surface chemical analysis-Medium-resolution Auger electron spectrometers-Calibration of energy scales for elemental analysis
  • KS L ISO 26845:2012 Chemical analysis of refractories-General requirements for wet chemical analysis, atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry methods
  • KS D 1652-2007 Iron and steel-Method for spark discharge atomic emission spectrometric analysis
  • KS D 1929-2009 Methods for emission spectrochemical analysis of die casting zinc alloy
  • KS D 1929-1993 Methods for Emission Spectrochemical Analysis of Die Casting Zinc Alloy
  • KS D 1679-2008 Methods for atomic absorption spectrometric analysis of aluminium and aluminium alloys
  • KS D 1899-1993 Methods for emission spectrochemical analysis of electrolytic cathode copper
  • KS D ISO 3817-2003(2008) Zinc alloy ingots-Selection and preparation of samples for spectrographic analysis
  • KS D ISO 15472:2003 Surface chemical analysis-X-ray photoelectron spectrometers-Calibration of energy scales
  • KS D 2597-1996(2016) Method for X-ray fluorescence spectrometric analysis of zirconium and zirconium alloys
  • KS M ISO 78-4:2010 Layouts for standards-Part 4:Standard for atomic absorption spectrometric analysis
  • KS D ISO 22309:2011 Microbeam analysis-Quantitative analysis using energy-dispersive spectrometry(EDS)

RU-GOST R, The role of spectral analysis

  • GOST 9816.4-1984 Technical tellurium. Method of spectral analysis
  • GOST 16273.1-1985 Technical selenium. Method of spectral analysis
  • GOST 12645.8-1982 Indium. Method of chemical and spectral analysis for the determination of tin
  • GOST 16273.0-1985 Technical selenium. General requirements for method of spectral analysis
  • GOST 16274.1-1977 Bismuth. Method of spectrochemical analysis
  • GOST 9717.2-1982 Copper. Method of spectral analysis of metal standart specimens with photographic registration of spectrum
  • GOST 20997.0-1981 Thallium. General requirements for methods of spectral analysis
  • GOST 23201.0-1978 Alumina. General requirements for methods of spectral analysis
  • GOST 11884.15-1982 Tungsten concentrate. General requirements for methods of spectrum analysis
  • GOST 33405-2015 Testing of chemicals of environmental hazard. Determination of the UV-VIS absorption spectral by spectrophotometric method
  • GOST 30508-1997 Lead concentrates. Method of spectrum analysis
  • GOST 20068.1-1979 Tinless bronze. Method of spectral analysis of metal standard specimens with spectrum photographic record
  • GOST 20068.2-1979 Tinless bronze. Method of spectral analysis of metal standard specimens with spectrum photo-electric record
  • GOST R ISO 20552-2011 Workplace air. Determination of mercury vapour. Method using gold-amalgam collection and analysis by atomic absorption spectrometry or atomic fluorescence spectrometry
  • GOST 33438-2015 Juice products. Determination of proline by spectrophotometric method
  • GOST 20068.3-1979 Tinless bronze. Method of spectral analysis of oxide standard specimens with spectrum photographic record
  • GOST 31870-2012 Drinking water. Determination of elements content by atomic spectrometry methods
  • GOST 27981.3-1988 Copper of high purity. Method of emission-spectral analysis with photoelectric registration of spectrum / Note: To be replaced by GOST 31382 (2009).
  • GOST 9717.1-1982 Copper. Method of spectral analysis of metal standart specimens with photoelectrical registration of spectrum / Note: To be replaced by GOST 31382 (2009).
  • GOST 9519.0-1982 Lead-calcium bearing alloys. General requirements for methods of spectral analysis
  • GOST 23116.0-1983 Cadmium of high purity. General requirements for methods of spectral analysis

British Standards Institution (BSI), The role of spectral analysis

  • BS EN 62129:2006 Calibration of optical spectrum analyzers
  • BS ISO 22489:2007 Microbeam analysis - Electron probe microanalysis - Quantitative point analysis for bulk specimens using wavelength-dispersive X-ray spectroscopy
  • BS ISO 22489:2016 Microbeam analysis. Electron probe microanalysis. Quantitative point analysis for bulk specimens using wavelength dispersive X-ray spectroscopy
  • BS ISO 11938:2012 Microbeam analysis. Electron probe microanalysis. Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • BS ISO 20552:2007 Workplace air - Determination of mercury vapour - Method using gold-amalgam collection and analysis by atomic absorption spectrometry or atomic fluorescence spectrometry
  • PD ISO/TS 18507:2015 Surface chemical analysis. Use of Total Reflection X-ray Fluorescence spectroscopy in biological and environmental analysis
  • BS PD ISO/TS 18507:2015 Surface chemical analysis. Use of Total Reflection X-ray Fluorescence spectroscopy in biological and environmental analysis
  • BS ISO 14707:2015 Surface chemical analysis. Glow discharge optical emission spectrometry (GD-OES). Introduction to use
  • BS ISO 14707:2000 Surface chemical analysis - Glow discharge optical emission spectrometry (GD-OES) - Introduction to use
  • BS ISO 16962:2017 Surface chemical analysis. Analysis of zinc- and/or aluminium-based metallic coatings by glow-discharge optical-emission spectrometry
  • BS ISO 18554:2016 Surface chemical analysis. Electron spectroscopies. Procedures for identifying, estimating and correcting for unintended degradation by X-rays in a material undergoing analysis by X-ray photoelectron spectroscopy
  • BS ISO 11938:2013 Microbeam analysis. Electron probe microanalysis. Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • BS ISO 11505:2012 Surface chemical analysis. General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry
  • BS 3727-20:1966 Methods for the analysis of nickel for use in electronic tubes and valves - Spectrographic method
  • BS ISO 22029:2013 Microbeam analysis. EMSA/MAS standard file format for spectral-data exchange
  • BS EN ISO 3815-1:2005 Zinc and zinc alloys - Analysis of solid samples by optical emission spectrometry
  • BS ISO 18118:2005 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials
  • BS ISO 17470:2014 Microbeam analysis. Electron probe microanalysis. Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • BS ISO 17973:2003 Surface chemical analysis - Medium-resolution Auger electron spectrometers - Calibration of energy scales for elemental analysis
  • BS ISO 19087:2018 Workplace air. Analysis of respirable crystalline silica by Fourier-Transform Infrared spectroscopy
  • BS EN 10315:2006 Routine method for analysis of high alloy steel by X-ray fluorescence spectrometry (XRF) by using a near by technique
  • BS EN 10315:2006(2010) Routine method for analysis of high alloy steel by X-ray fluorescence spectrometry (XRF) by using a near by technique
  • DD ISO/TS 13473-4:2008 Characterization of pavement texture by use of surface profiles. Spectral analysis of texture profiles
  • DD ENV 12908-1998 Lead and lead alloys. Analysis by optical emission spectrometry (OES) with spark excitation
  • BS EN 61280-1-1:1998 Optical fibre amplifiers.Basic spectrum analyzers - Transmitter output optical power measurement for single-mode optical fibre cable
  • BS 5766-3:1999 Methods for analysis of animal feeding stuffs. Determination of phosphorus content (spectrometic method)
  • BS EN 15948:2020 Cereals. Determination of moisture and protein. Method using Near-Infrared Spectroscopy in whole kernels
  • BS EN ISO 23913:2009 Water quality - Determination of Chromium(VI) - Method using flow analysis (FIA and CFA) and spectrometric detection
  • DD ENV 13800-2000 Lead and lead alloys. Analysis by flame atomic absorption spectromerty (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), without separation of the lead matrix
  • BS ISO 11505:2013 Surface chemical analysis. General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry
  • BS ISO 24417:2022 Surface chemical analysis. Analysis of metallic nanolayers on iron based substrates by glow-discharge optical-emission spectrometry

Professional Standard - Electron, The role of spectral analysis

  • SJ 2656-1986 Mothod of tungsten spectral analysis
  • SJ 2657-1986 Mothod of molybdeuum spectral analysis
  • SJ/Z 1544-1979 Method for spectral analysis of Nickel-- Tungsten-Magnesium alloy
  • SJ/Z 3206.5-1989 Treatment methods for sensitized plate and film photograph for chemical analysis using spectrum
  • SJ/Z 3206.6-1989 Shapes and dimensions of graphite electrode for emision spectrum
  • SJ/Z 3206.7-1989 Geneeral rules for preparation and sampling sample for emission spectrum analysis
  • SJ/Z 3206.3-1989 Instrument and its performance requirements for determination of emision spectrum
  • SJ/Z 3206.1-1989 General requirements for laboratories involved with determination of emision spectrum
  • SJ/Z 3206.2-1989 Laser source and its performance requirements for determination of emision spectrum
  • SJ 1543-1988 Method for spectral analysis of Nickel and Nickel aloy for vacuum tubes
  • SJ/T 10553-2021 Method of emission specthchemical analysis of impurities in ZrO2 for use in electron ceramics
  • SJ/T 10552-2021 Method of emission specthchemical analysis of impurities in TiO2 for use in electron ceramics
  • SJ/T 10552-1994 Method of emission specthochemical analysis of impurities in TiO2 for use in electron ceramics
  • SJ/T 10553-1994 Method of emission spectrochemical analysis of impurities in ZrO2 for use in electron ceramics

International Electrotechnical Commission (IEC), The role of spectral analysis

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, The role of spectral analysis

  • GB/T 5123-1985 Nickel--Method of spectral analysis
  • GB/Z 42520-2023 Guidelines for X-ray fluorescence spectrometric laboratory practice for the analysis of iron ores
  • GB/T 16599-1996 Methods for emission spectrum analysis of molybdenum
  • GB/T 16600-1996 Methods for emission spectrum analysis of tungsten
  • GB/T 42360-2023 Total Reflection X-ray Fluorescence Spectroscopic Analysis of Water for Surface Chemical Analysis
  • GB/T 11170-1989 Method for photoelectric emission spectroscopic analysis of stainless steel
  • GB/T 8156.10-1987 Aluminium fluoride for industrial use--Determination of sulphur content--X-ray fluorescence spectrometric method
  • GB/T 29559-2013 Surface chemical analysis.Analysis of zinc and/or aluminium based metallic coatings by glow discharge optical emission spectrometry
  • GB/T 29057-2023 Practice for evaluating polycrystalline silicon rods by zone fusion pulling and spectroscopic analysis
  • GB/T 29057-2012 Practice for evaluation of polocrystalline silicon rods by float-zone crystal growth and spectroscopy
  • GB/T 4325.3-2013 Methods for chemical analysis of molybdenum.Part 3:Determination of bismuth content.Atomic fluorescence spectrometry
  • GB/T 4325.4-2013 Methods for chemical analysis of molybdenum.Part 4:Determination of tin content.Atomic fluorescence spectrometry
  • GB/T 4325.5-2013 Methods for chemical analysis of molybdenum.Part 5:Determination of antimony content.Atomic fluorescence spectrometry
  • GB/T 4325.6-2013 Methods for chemical analysis of molybdenum.Part 6:Determination of arsenic content.Atomic fluorescence spectrometry
  • GB/T 8151.15-2005 Methods for chemical analysis of zinc concentrates-Determination of mercury content-Atomic fluorescence spectrometry method
  • GB/T 8152.11-2006 Methods for chemical analysis of lead concentrates. Determination of mercury content. Atomic fluorescence spectrometer method
  • GB/T 8152.5-2006 Methods for chemical analysis of lead concentrates. Determination of arsenic content. Atomic fluorescence spectrometer method

Danish Standards Foundation, The role of spectral analysis

  • DS/EN 62129/Corr. 1:2007 Calibration of optical spectrum analyzers
  • DS/EN 62129:2006 Calibration of optical spectrum analyzers
  • DS/CEN/TR 10354:2012 Chemical analysis of ferrous materials - Analysis of ferro-silicon - Determination of Si and Al by X-ray fluorescence spectrometry
  • DS/EN 10315:2006 Routine method for analysis of high alloy steel by X-ray Fluorescence Spectrometry (XRF) by using a near by technique

IN-BIS, The role of spectral analysis

Japanese Industrial Standards Committee (JISC), The role of spectral analysis

  • JIS C 6192:2008 Calibration of optical spectrum analyzers
  • JIS H 1691:1968 Method for spectrochemical analysis of tantalum
  • JIS H 1183:2007 Method for emission spectrochemical analysis of silver bullion
  • JIS H 1630:1995 Method for atomic emission spectrometric analysis of titanium
  • JIS H 1630:1975 Method for atomic emission spectrometric analysis of titanium
  • JIS H 1305:2005 Method for optical emission spectrochemical analysis of aluminium and aluminium alloys
  • JIS Z 2611:1977 General rules for photoelectric emission spectrochemical analysis of metal materials
  • JIS K 0214:2006 Technical terms for analytical chemistry (Chromatography part)
  • JIS K 0214:2013 Technical terms for analytical chemistry (Chromatography part)
  • JIS H 1123:1995 Method for photoelectric emission spectrochemical analysis of lead metal
  • JIS H 1163:1991 Method for photoelectric emission spectrochemical analysis of cadmium metal
  • JIS H 1292:1997 Method for X-ray fluorescence spectrometric analysis of copper and copper alloys
  • JIS H 1113:2022 Method for photoelectric emission spectrochemical analysis of zinc metal
  • JIS H 1303:1976 Method for emission spectrochemical analysis of aluminium ingot
  • JIS H 1322:1976 Method for emission spectrochemical analysis of magnesium ingot
  • JIS K 0190:2010 Microbeam analysis -- Electron probe microanalysis -- Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • JIS H 1669:1990 Method for X-ray fluorescence spectrometric analysis of zirconium alloys
  • JIS H 1103:1995 Method for photoelectric emission spectrochemical analysis of electrolytic cathode copper
  • JIS H 1560:2016 Method for photoelectric emission spectrochemical analysis of die casting zinc alloys
  • JIS G 1351:1987 Method for X-ray fluorescence spectrometric analysis of ferroalloys
  • JIS K 0150:2009 Surface chemical analysis -- Analysis of zinc- and/or aluminium-based metallic coatings by glow-discharge optical-emission spectrometry
  • JIS G 1251:1976 Emission-spectroscopic analysis for pig iron and cast iron
  • JIS C 6183:1992 Test methods of fiber-optic spectrum analyzer
  • JIS H 1305:1976 Method for photoelectric emission spectrochemical analysis of aluminium and aluminium alloy
  • JIS Z 2612:1977 General rules for photographic emission spectrochemical analysis of metal materials
  • JIS K 0121:1993 General rules for atomic absorption spectrochemical analysis
  • JIS K 0165:2011 Surface chemical analysis -- Medium-resolution Auger electron spectrometers -- Calibration of energy scales for elemental analysis
  • JIS H 1291:1977 Method for atomic absorption spectrochemical analysis of copper and copper alloys
  • JIS H 1306:1999 Methods for atomic absorption spectrometric analysis of aluminium and aluminium alloys
  • JIS K 0167:2011 Surface chemical analysis -- Auger electron spectroscopy and X-ray photoelectron spectroscopy -- Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials
  • JIS T 0306:2002 Analysis of state for passive film formed on metallic biomaterials by X-ray photoelectron spectroscopy
  • JIS K 0147-1:2017 Surface chemical analysis -- Vocabulary -- Part 1: General terms and terms used in spectroscopy
  • JIS K 0111:1983 General rules for polarographic analysis
  • JIS G 1252:1975 Emission-spectroscopic analysis for carbon steel and low alloy steel
  • JIS K 0189:2013 Microbeam analysis.Electron probe microanalysis.Determination of experimental parameters for wavelength dispersive X-ray spectroscopy

Standard Association of Australia (SAA), The role of spectral analysis

  • AS 2134.2:1999 Recommended practice for chemical analysis by atomic absorption spectrometry - Graphite furnace spectrometry
  • AS 2134.3:1994 Recommended practice for chemical analysis by atomic absorption spectrometry - Vapour generation atomic absorption spectrometry
  • AS 2134.1:1999 Recommended practice for chemical analysis by atomic absorption spectrometry - Flame atomic absorption spectrometry
  • AS 3641.1:1999 Recommended practice for atomic emission spectrometric analysis - Principles and techniques
  • AS 2347:1998 Zinc and zinc alloys - Sampling for chemical and spectrochemical analysis
  • AS 3741:1990 Recommended practice for chemical analysis by ion chromatography
  • AS ISO 19319:2006 Surface chemical analysis - Augur electron spectroscopy and X-ray photoelectron spectroscopy - Determination of lateral resolution, analysis area and sample area viewed by the analyser
  • AS 2612:1997 Aluminium and aluminium alloys - Sampling for chemical and spectrochemical analysis
  • AS 2534:1997 Lead and lead alloys - Sampling for chemical and spectrochemical analysis
  • AS 3641.2:1999 Recommended practice for atomic emission spectrometric analysis - Inductively coupled plasma excitation

International Organization for Standardization (ISO), The role of spectral analysis

  • ISO/TS 15338:2020 Surface chemical analysis — Glow discharge mass spectrometry — Operating procedures
  • ISO 3816:1976 Zinc ingots; Selection and preparation of samples for spectrographic analysis
  • ISO 24417:2022 Surface chemical analysis — Analysis of metallic nanolayers on iron based substrates by glow-discharge optical-emission spectrometry
  • ISO 3817:1976 Zinc alloy ingots; Selection and preparation of samples for spectrographic analysis
  • ISO/TS 18507:2015 Surface chemical analysis - Use of Total Reflection X-ray Fluorescence spectroscopy in biological and environmental analysis
  • ISO 22309:2006 Microbeam analysis - Quantitative analysis using energy-dispersive spectrometry (EDS)
  • ISO 16962:2017 Surface chemical analysis - Analysis of zinc- and/or aluminium-based metallic coatings by glow-discharge optical-emission spectrometry
  • ISO 18554:2016 Surface chemical analysis - Electron spectroscopies - Procedures for identifying, estimating and correcting for unintended degradation by X-rays in a material undergoing analysis by X-ray photoelectron spectroscopy
  • ISO 17470:2004 Microbeam analysis - Electron probe microanalysis - Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • ISO 11938:2012 Microbeam analysis - Electron probe microanalysis - Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • ISO 16962:2005 Surface chemical analysis - Analysis of zinc- and/or aluminium-based metallic coatings by glow-discharge optical-emission spectrometry
  • ISO/TS 25138:2010 Surface chemical analysis - Analysis of metal oxide films by glow-discharge optical-emission spectrometry
  • ISO 22029:2012 Microbeam analysis - EMSA/MAS standard file format for spectral-data exchange
  • ISO 18118:2004 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials
  • ISO 18118:2015 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials
  • ISO 22489:2006 Microbeam analysis - Electron probe microanalysis - Quantitative point analysis for bulk specimens using wavelength-dispersive X-ray spectroscopy
  • ISO 22489:2016 Microbeam analysis - Electron probe microanalysis - Quantitative point analysis for bulk specimens using wavelength dispersive X-ray spectroscopy
  • ISO 17973:2016 Surface chemical analysis - Medium-resolution Auger electron spectrometers - Calibration of energy scales for elemental analysis
  • ISO 17973:2002 Surface chemical analysis - Medium-resolution Auger electron spectrometers - Calibration of energy scales for elemental analysis
  • ISO 19087:2018 Workplace air - Analysis of respirable crystalline silica by Fourier-Transform Infrared spectroscopy
  • ISO 4802-2:2010 Glassware - Hydrolytic resistance of the interior surfaces of glass containers - Part 2: Determination by flame spectrometry and classification
  • ISO 4802-2:2016 Glassware - Hydrolytic resistance of the interior surfaces of glass containers - Part 2: Determination by flame spectrometry and classification
  • ISO 20552:2007 Workplace air - Determination of mercury vapour - Method using gold-amalgam collection and analysis by atomic absorption spectrometry or atomic fluorescence spectrometry
  • ISO 14707:2015 Surface chemical analysis - Glow discharge optical emission spectrometry (GD-OES) - Introduction to use
  • ISO 14707:2000 Surface chemical analysis - Glow discharge optical emission spectrometry (GD-OES) - Introduction to use
  • ISO 14707:2021 Surface chemical analysis - Glow discharge optical emission spectrometry (GD-OES) - Introduction to use
  • ISO 17054:2010 Routine method for analysis of high alloy steel by X-ray fluorescence spectrometry (XRF) by using a near-by technique
  • ISO 13424:2013 Surface chemical analysis — X-ray photoelectron spectroscopy — Reporting of results of thin-film analysis
  • ISO/CD 16094-2 Water quality — Analysis of plastics in water — Part 2: Method using vibrational spectroscopy
  • ISO 3815-1:2005 Zinc and zinc alloys - Part 1: Analysis of solid samples by optical emission spectrometry
  • ISO 78-4:1983 Layouts for standards; Part 4: Standard for atomic absorption spectrometric analysis
  • ISO 11505:2012 Surface chemical analysis - General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry
  • ISO 22309:2011 Microbeam analysis - Quantitative analysis using energy-dispersive spectrometry (EDS) for elements with an atomic number of 11 (Na) or above
  • ISO/FDIS 18115-1 Surface chemical analysis — Vocabulary — Part 1: General terms and terms used in spectroscopy
  • ISO 18115-1:2023 Surface chemical analysis — Vocabulary — Part 1: General terms and terms used in spectroscopy

VN-TCVN, The role of spectral analysis

  • TCVN 6061-2009 Beer.Determination of colour by spectrophotometric method
  • TCVN 5270-2008 Honey.Determination of hydroxymetylfurfural by spectrophotometric method

GOSTR, The role of spectral analysis

  • GOST 9717.2-2018 Copper. Method of spectral analysis by metal standard specimens with photographic registration of spectrum

Professional Standard - Ferrous Metallurgy, The role of spectral analysis

  • YB/T 4144-2006 Establish and control working curve rules for spectrochemical analysis
  • YB/T 4142-2006 Statistical rules for processing spectral analysis data

Association Francaise de Normalisation, The role of spectral analysis

  • NF A01-811:1975 Zinc ingots. Selection and preparation of samples for spectrographic analysis.
  • NF A07-510:1971 Analysis of non-alloyed aluminium by emission spectrography.
  • NF A07-515:1971 Analysis of aluminium copper alloys by emission spectrography.
  • NF A07-822:1954 Analyse chimique des alliages de zinc pour coulée sous pression - Dosage spectrographique de l'étain
  • NF A07-500:1979 Analysis of aluminium and its alloys by emission spectrometry.
  • NF A07-830:1973 Zinc for galvanizing purposes. Technical specification for emission spectral analysis.
  • NF X21-071:2011 Surface Chemical Analysis - X-ray photoelectron Spectroscopy - Guidelines for analysis.
  • NF A01-810:1975 Zinc alloy ingots. Selection and preparation of samples for spectrographic analysis.
  • NF A06-001:1979 Analysis of light metals by spectrography. Processing of test results. Statistical interpretation.
  • NF ISO 14707:2006 Analyse chimique des surfaces - Spectrométrie d'émission optique à décharge luminescente - Introduction à son emploi
  • FD A08-300:2021 Analyse chimique des aciers et des fontes - Elaboration et emploi de méthodes d'analyse par spectrométrie d'absorption atomique dans la flamme
  • NF X21-013*NF ISO 11938:2012 Microbeam analysis - Electron probe microanalysis - Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy.
  • NF X21-006:2007 Microbeam analysis - Electron probe microanalysis - Quantitative point analysis for bulk specimens using wavelength-dispersive X-ray spectroscopy.
  • NF A07-520:1971 Analysis of aluminium silicon and aluminium-silicon-copper alloys by emission spectrography.
  • NF C93-846-1*NF EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1 : optical spectrum analyzers
  • NF X21-004*NF ISO 22309:2012 Microbeam analysis - Quantitative analysis using energy-dispersive spectrometry (EDS) for elements with an atomic number of 11 (Na) or above.
  • NF A06-377*NF EN 10315:2006 Routine method for analysis of high alloy steel by X-ray fluorescence spectrometry (XRF) by using a near by technique.
  • NF X21-002:2007 Microbeam analysis - Electron probe microanalysis - Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy.
  • XP A06-379-1999 Guidelines for the preparation of standard routine methods with wavelength-dispersive X-ray fluorescence spectrometry.
  • NF X21-054*NF ISO 17973:2006 Surface chemical analysis - Medium-resolution Auger electron spectrometers - Calibration of energy scales for elemental analysis.
  • NF X06-904:1992 Vocabulary of random signals-Spectral analysis of continuous signals
  • NF X21-053*NF ISO 14707:2006 Surface chemical analysis - Glow discharge optical emission spectrometry (GD-OES) - Introduction to use
  • NF A11-103:1977 Chemical analysis of ferroniobium. Determination of niobium by X ray fluorescence spectrometry.
  • NF ISO 11938:2012 Analyse par microfaisceaux - Analyse par microsonde électronique (microsonde de Castaing) - Méthodes d'analyse par cartographie élémentaire en utilisant la spectrométrie à dispersion de longueur d'onde
  • NF A06-840-1*NF EN ISO 3815-1:2005 Zinc and zinc alloys - Part 1 : analysis of solid samples by optical emission spectrometry
  • FD A06-326*FD CEN/TR 10354:2011 Chemical analysis of ferrous materials - Analysis of ferro-silicon - Determination of Si and Al in ferro-silicon by X-ray fluorescence spectrometry
  • NF U44-145:1984 FERTILIZERS AND SOILS CONDITIONERS. DETERMINATION OF MAGNESIUM BY ATOMIC ABSORPTION SPECTROMETRIC METHOD.
  • A08-652:1994 Chemical analysis of titanium and titanium alloys. Rules to be followed for plasma emission spectrometrie analysis.
  • NF V03-003:2001 Foodstuffs - Detection of irradiated food containing cellulose by ESR spectroscopy
  • NF V03-003:1997 FOODSTUFFS. DETECTION OF IRRADIATED FOOD CONTAINING CELLULOSE. METHOD BY ESR SPECTROSCOPY. (EUROPEAN STANDARD EN 1787).
  • NF A08-001:1979 Analyse chimique des métaux et alliages légers - Application de la spectrométrie d'absorption atomique à l'analyse de l'aluminium, du magnésium et de leurs alliages

KR-KS, The role of spectral analysis

  • KS I ISO 20552-2021 Workplace air — Determination of mercury vapour —Method using gold-amalgam collection and analysis by atomic absorption spectrometry or atomic fluorescence spectrometry
  • KS D 1658-2003(2016)(英文版) Emission-spectroscopic analysis for carbon steel and low alloy steel
  • KS D ISO 3815-1-2021 Zinc and zinc alloys — Part 1: Analysis of solid samples by optical emission spectrometry
  • KS D ISO 17054-2018(2023) Routine method for analysis of high alloy steel by X-ray fluorescence spectrometry (XRF) by using a near-by technique
  • KS D ISO 22489-2018 Microbeam analysis — Electron probe microanalysis — Quantitative point analysis for bulk specimens using wavelength dispersive x-ray spectroscopy

Lithuanian Standards Office , The role of spectral analysis

  • LST EN 62129-2006 Calibration of optical spectrum analyzers (IEC 62129:2006)
  • LST EN 62129-2006/AC-2007 Calibration of optical spectrum analyzers (IEC 62129:2006)
  • LST EN 10315-2006 Routine method for analysis of high alloy steel by X-ray Fluorescence Spectrometry (XRF) by using a near by technique

German Institute for Standardization, The role of spectral analysis

  • DIN EN 62129:2007 Calibration of optical spectrum analyzers (IEC 62129:2006); German version EN 62129:2006
  • DIN 51820-1:1989 Testing of lubricants; analysis of greases by infrared spectrometry; taking and evaluating an infrared spectrum
  • DIN 51820:2013-12 Testing of lubricants - Analysis of greases by infrared spectrometer - Recording and interpretation of an infrared spectrum / Note: Applies in conjunction with DIN 51451 (2004-09).
  • DIN 51451:2020-02 Testing of petroleum products and related products - Analysis by infrared spectrometry - General working principles
  • DIN 51451:2004 Testing of petroleum products and related products - Analysis by infrared spectrometry - General working principles
  • DIN 51451:2020 Testing of petroleum products and related products - Analysis by infrared spectrometry - General working principles
  • DIN 51820:2013 Testing of lubricants - Analysis of greases by infrared spectrometer - Recording and interpretation of an infrared spectrum
  • DIN 55673:2000 Paints, varnishes and their raw materials - Analysis by near infrared spectrometry - General working principles
  • DIN 55673:2017 Paints, varnishes and their raw materials - Analysis by near infrared spectrometry - General working principles
  • DIN 55673:2017-04 Paints, varnishes and their raw materials - Analysis by near infrared spectrometry - General working principles
  • DIN EN 10315:2006 Routine method for analysis of high alloy steel by X-ray Fluorescence Spectrometry (XRF) by using a near by technique; German version EN 10315:2006
  • DIN EN ISO 3815-1:2005-08 Zinc and zinc alloys - Part 1: Analysis of solid samples by optical emission spectrometry (ISO 3815-1:2005); German version EN ISO 3815-1:2005
  • DIN ISO 11505:2018-02 Surface chemical analysis - General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry (ISO 11505:2012)
  • DIN ISO 22029:2014-05 Microbeam analysis - EMSA/MAS standard file format for spectral-data exchange (ISO 22029:2012)
  • DIN EN ISO 3815-1:2005 Zinc and zinc alloys - Part 1: Analysis of solid samples by optical emission spectrometry (ISO 3815-1:2005); German version EN ISO 3815-1:2005
  • DIN EN 62129 Berichtigung 1:2008 Calibration of optical spectrum analyzers (IEC 62129:2006); German version EN 62129:2006, Corrigendum to DIN EN 62129:2007-01; German version CENELEC-Cor. :2006 to EN 62129:2006

国家能源局, The role of spectral analysis

  • SY/T 7433-2018 Composition analysis of natural gas using laser Raman spectroscopy
  • SH/T 0940-2016 Test methods for analyzing in-service lubricants using specific four-in-one testers (atomic emission spectrometry, infrared spectroscopy, viscosity and laser particle counter)

中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会, The role of spectral analysis

  • GB/T 32997-2016 Surface chemical analysis—General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry
  • GB/T 35309-2017 Practice for evaluation of granular polysilicon by melter-zoner and spectroscopies

IEC - International Electrotechnical Commission, The role of spectral analysis

  • PAS 62129-2004 Calibration of optical spectrum analyzers (Edition 1.0;: 2006)

CZ-CSN, The role of spectral analysis

International Commission on Illumination (CIE), The role of spectral analysis

  • CIE 148-2002 ACTION SPECTROSCOPY OF SKIN WITH TUNABLE LASERS

NL-NEN, The role of spectral analysis

  • NEN 6302-1980 Test methods for vegetable and animal oils and fats - Preparation of methyl esters for gaschromatography and infrared spectrophotometry

AT-ON, The role of spectral analysis

  • ONORM M 6609-1993 Water analysis - Determination of the inhibitory effect of waste water on the light emission of Photobacterium phosphoreum

North Atlantic Treaty Organization Standards Agency, The role of spectral analysis

BE-NBN, The role of spectral analysis

  • NBN P 32-016-1977 Zinc ingots - Selection and preparation of aamples for spectrographic analysis
  • NBN P 32-017-1977 Zinc alloy ingots - Selection and preparation of samples for spectrographic analysis
  • NBN T 01-104-1984 Layouts. for standards - Standard for atomic absorption-spectrometric analysis.

Indonesia Standards, The role of spectral analysis

  • SNI 13-4694-1998 Composition analysis of coal ash by atomic absorption spectrometry

Professional Standard - Aviation, The role of spectral analysis

  • HB/Z 206-1991 Specification for sampling of specimens for spectroscopic analysis of steel and superalloys
  • HB/Z 208-1991 Specification for sampling of test samples for spectroscopic analysis of nonferrous metal materials

Professional Standard - Forestry, The role of spectral analysis

  • LY/T 2053-2012 Standard method for near infrared qualitative analysis of Wood
  • LY/T2053-2012 Standard method for mear infrarde qualitative analysis of wood

International Telecommunication Union (ITU), The role of spectral analysis

Group Standards of the People's Republic of China, The role of spectral analysis

  • T/CPCIF 0185-2022 Rapid analysis method of automobile diesel fuels— Near infrared spectrometry
  • T/CPCIF 0184-2022 Rapid analysis method of motor vehicle gasoline— Near infrared spectrometry
  • T/CNIA 0109-2021 General rules for the application of laser-induced breakdown spectroscopy for the analysis of non-ferrous metal materials

European Committee for Standardization (CEN), The role of spectral analysis

  • EN 10315:2006 Routine method for analysis of high alloy steel by X-ray Fluorescence Spectrometry (XRF) by using a near by technique
  • DD ENV 12908-1997 Lead and lead alloys - Analysis by Optical Emission Spectrometry (OES) with spark excitation
  • PD CEN/TR 10354:2011 Chemical analysis of ferrous materials - Analysis of ferro-silicon - Determination of Si and Al by X-ray fluorescence spectrometry

European Committee for Electrotechnical Standardization(CENELEC), The role of spectral analysis

  • EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1: Optical spectrum analyzers

ES-UNE, The role of spectral analysis

  • UNE-EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1: Optical spectrum analyzers (Endorsed by AENOR in July of 2016.)

YU-JUS, The role of spectral analysis

  • JUS C.A1.360-1977 Methods for chemical analysis of zine and zine alloys. Determination of group of elements - spectrographic analysis
  • JUS C.A1.343-1979 Methods for chemical analysis of zine and zine albys. Zine alioy ingots - selection and preparation of samples for spectrographic anatysis
  • JUS C.A1.650-1987 Methodes of chemical analysis of silver. Determination of impurities contents. Spectrographic metod".

PL-PKN, The role of spectral analysis

  • PN H04155-09-1986 Chemical analysis of silica raw materials and refractory products Method spectrographic

国家市场监督管理总局、中国国家标准化管理委员会, The role of spectral analysis

  • GB/T 41074-2021 Microbeam analysis—Method of specimen preparation for analysis of general powders using WDS and EDS
  • GB/T 36401-2018 Surface chemical analysis—X-ray photoelectron spectroscopy—Reporting of results of thin-film analysis
  • GB/T 38386-2019 Gas analysis—Determination of oxynitride in gases—The method of Cavity Ring-Down Spectroscopy

American Bureau of Shipping , The role of spectral analysis

  • ABS 125-2004 GUIDANCE NOTES ON SPECTRAL-BASED FATIGUE ANALYSIS FOR VESSELS (FOR THE 慡FA?OF 慡FA (years)?CLASSIFICATION NOTATION)
  • ABS 104-2010 GUIDE FOR SPECTRAL-BASED FATIGUE ANALYSIS FOR FLOATING PRODUCTION, STORAGE AND OFFLOADING (FPSO) INSTALLATIONS

AENOR, The role of spectral analysis

  • UNE-EN 10315:2007 Routine method for analysis of high alloy steel by X-ray Fluorescence Spectrometry (XRF) by using a near by technique

Professional Standard - Energy, The role of spectral analysis

  • NB/SH/T 0940-2016 Test method for the analysis of in-use lubricants using a specific 4-in-1 tester (Atomic Emission Spectroscopy, Infrared Spectroscopy, Viscosity and Laser Particle Counter)

IT-UNI, The role of spectral analysis

  • UNI 7726-1977 Chemical analysis of ferrous materials. Determination of antimony in steel. Spectrophotometric method with brillant green.

NATO - North Atlantic Treaty Organization, The role of spectral analysis

  • AFLP-7017-2016 SPECTOMETRIC ANALYSIS OF AIRCRAFT ENGINE LUBRICANTS (ED A@ Ver 1; To obtain please contact your national Defense Standardization Office or the NATO Standardization Office website: http:/ so.nato.int so@ Phone: +32 (0)2 – 707 5556@ email: nso@nso.nato.int.




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