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ftir spectrum analysis peak

ftir spectrum analysis peak, Total:360 items.

The international standard classification for "ftir spectrum analysis peak" includes: Chemical analysis , Other standards related to analytical chemistry , Natural gas , Other non-ferrous metals and their alloys , Copper and copper alloys , Non-ferrous metals , Testing of metals , Optics and optical measurements , Nickel, chromium and their alloys , Particle size analysis. sieving , Aluminium and aluminium alloys , Analytical chemistry in general , Woodworking machines , Chemical laboratories. Laboratory equipment , Other iron and steel products .

The Chinese standard classification for "ftir spectrum analysis peak" includes: Basic standards and general methods , Organic chemicals in general , Optical instrument in general , Natural gas , Precious metals and their alloys , Heavy metals and their alloys analysis method , Rare metals and their alloys analysis method , Optical Measurement , chromatograph , Technical Management , Sieving, Sieve Plate and Sieve Screen , Electrochemical, thermochemistry and optical profile type analyzer , Basic standards and general methods , Beneficiation reagent , Petroleum geology exploration .


国家市场监督管理总局、中国国家标准化管理委员会

  • GB/T 6040-2019 General rules for infrared analysis
  • GB/T 37969-2019 Standard guidelines for near infrared qualitative analysis
  • GB/T 41072-2021 Surface chemical analysis - Electron spectroscopies - Guidelines for ultraviolet photoelectron spectroscopy analysis
  • GB/T 39540-2020 Fast determination of shale gas composition—Laser Raman spectroscopy
  • GB/T 41073-2021 Surface chemical analysis―Electron spectroscopies―Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy

Taiwan Provincial Standard of the People's Republic of China

  • CNS 14341-1999 Optical spectrum analyzer
  • CNS 14896-14-2005 Titanium - Method for atomic emission spectrometric analysis
  • CNS 9706-1984 General Rules for Photoelectric Emission Spectrochemical Analysis of Iron and Steel
  • CNS 12126-1987 Method of Chemical Analysis by Atomic Absorption Spectrophotometry for Copper and Copper Alloys
  • CNS 10005-1984 General Rules for Photoelectric Emission Spectrochemical Analysis of Metallic Materials
  • CNS 9705-1984 General Rules for Emission-Spectroscopic Analysis of Iron and Steel
  • CNS 10503-1984 Emission-Spectroscopic Analysis for Pig Iron and Cast Iron
  • CNS 11206-2002 Iron and steel─Methods for atomic absorption spectrometric analysis
  • CNS 14896.14-2005 Titanium - Method for atomic emission spectrometric analysis
  • CNS 12416-1988 Genenral Rules for Emission Spectroscopic Analysis
  • CNS 11209-1995 General Rules for Chemical Analysis by Atomic Absorption Spectrophotometry
  • CNS 11071-1984 Emission-Spectroscopic Analysis for Carbon Steel and Low Alloy Steel
  • CNS 12416-2006 General rules for atomic emission spectrometry
  • CNS 10006-1984 Method for Photoelectric Emission Spectrochemical Analysis of Iron And Steel
  • CNS 13388-1994 Methods for Inductively Coupled Plasma Emission Spectrochemical Analysis of Steel
  • CNS 13921-1997 Method of atomic emission spectrophotoelectric analysis for die casting zinc alloy

未注明发布机构

工业和信息化部

Professional Standard - Non-ferrous Metal

National Metrological Verification Regulations of the People's Republic of China

Professional Standard - Education

Professional Standard - Electron

  • SJ 2656-1986 Method for defermination of Tungsten by spectrometry
  • SJ/Z 3206.11-1989 General rules for analysis of quantities of emision spectrum
  • SJ 2657-1986 Mothod of molybdeuum spectral analysis
  • SJ/Z 1544-1979 Method for spectral analysis of Nickel- Tungsten-Magnesium alloy

General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 5871-1986 Method for spectrographic analysis of aluminium and its alloys
  • GB/T 19627-2005 Particle size analysis--Photon correlation spectroscopy
  • GB/T 9259-1988 Terminology of emission spectochemical analysis
  • GB/T 25481-2010 On-line ultraviolet/visible spectrum analyzer
  • GB/T 11170-1989 Method for photoelectric emission spectroscopic analysis of stainless steel
  • GB/T 16599-1996 Methods for emission spectrum analysis of molybdenum
  • GB/T 42360-2023 Surface chemical analysis―Total reflection X-ray fluorescence analysis of water
  • GB/T 32199-2015 Standard practice for general techniques for obtaining infrared spectra for qualitative analysis
  • GB/T 5123-1985 Nickel-Method of spectral analysis
  • GB/T 28893-2012 Surface Chemical Analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Methods used to determine peak intensities and information required when reporting results
  • GB/T 16600-1996 Methods for emission spectrum analysis of tungsten
  • GB/T 28893-2024 Surface chemical analysis—Auger electron spectroscopy and X-ray photoelectron spectroscopy—Methods used to determine peak intensities and information required when reporting results
  • GB/T 15337-2008 General rules for atomic absorption spectrometric analysis
  • GB/T 30704-2014 Surface chemical analysis―X-ray photoelectron spectroscopy―Guidelines for analysis
  • GB/T 6040-2002 General rules for infrared analysis
  • GB/T 15337-1994 General rules for atomic absorption spectrometric analysis

Group Standards of the People's Republic of China

Professional Standard - Ferrous Metallurgy

  • YB/T 4177-2008 Determination of chemical composition in slag by X-ray fluorescence spectrometry

Professional Standard - Commodity Inspection

  • SN/T 2785-2011 Methods for Analysis of Zinc and Zinc Alloys - Optical Emission Spectrometry
  • SN/T 2786-2011 Method for Analysis of Magnesium and Magnesium Alloys - Optical Emission Spectrometry
  • SN/T 3914-2014 General rules for infrared spectrometer in minerals

Guangdong Provincial Standard of the People's Republic of China

  • DB44/T 1602-2015 Analysis Method of Stone Composition--X-ray Fluorescence Spectrometry

Professional Standard - Agriculture

  • SN/T 5566-2023 General rules of analytical method for laser micro-Raman spectrum
  • GB/T 43968-2024 General rules for high performance liquid chromatography-atomic fluorescence spectrometry analysis method

国家能源局

  • SY/T 7433-2018 Analysis of natural gas composition—Laser Raman spectroscopy

Shaanxi Provincial Standard of the People's Republic of China

  • DB61/T 1161-2018 Natural Gas Composition Analysis Laser Raman Spectroscopy Marshal

Professional Standard - Chemical Industry

  • HG/T 2954~2955-2008 Standard writing format for atomic absorption spectroscopic analysis method Standard writing format for molecular absorption spectroscopic analysis method

Professional Standard - Energy

  • NB/T 11287-2023 Fluorescence spectrum analysis methods for shale organic macerals

Association Francaise de Normalisation

  • NF ISO 19702:2016 Guidelines for the Analysis of Gases and Vapors in Fire Effluents by Fourier Transform Infrared Spectroscopy (FTIR)
  • NF ISO 10640:2011 Plastiques - Méthodologie d'évaluation du photovieillissement des polymères par spectroscopie IRTF et UV/visible
  • NF C93-845:2006 Calibration of optical spectrum analyzers.
  • NF X70-102*NF ISO 19702:2016 Guidance for sampling and analysis of toxic gases and vapours in fire effluents using Fourier transform infrared (FTIR) spectroscopy
  • NF X43-350*NF EN 15483:2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • NF A06-590:2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis.
  • NF X21-058:2006 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Methods used to determine peak intensities and information required when reporting results.
  • NF X11-672:1996 Particle size analysis. Photon correlation spectroscopy.
  • NF A07-510X2:1975 ANALYSIS OF NON-ALLOYED ALUMINIUM BY EMISSION SPECTROGRAPHY.
  • NF A06-840:1998 Zinc and zinc alloys. Optical emission spectrometric analysis.
  • NF A07-510:1971 Analysis of non-alloyed aluminium by emission spectrography.
  • NF EN 15483:2009 Ambient air quality - Measurements of ambient air near the ground using Fourier transform spectroscopy (FTIR)
  • NF T51-182*NF ISO 10640:2011 Plastics - Methodology for assessing polymer photoageing by FTIR and UV/visible spectroscopy.
  • NF A07-515:1971 Analysis of aluminium copper alloys by emission spectrography.
  • NF A07-500:1979 Analysis of aluminium and its alloys by emission spectrometry.

GSO

  • BH GSO ISO 19830:2017 Surface chemical analysis -- Electron spectroscopies -- Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy
  • GSO ISO 19830:2016 Surface chemical analysis -- Electron spectroscopies -- Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy
  • BH GSO ISO 13321:2016 Particle size analysis -- Photon correlation spectroscopy
  • GSO ISO 13321:2013 Particle size analysis -- Photon correlation spectroscopy
  • BH GSO ISO 20903:2016 Surface chemical analysis -- Auger electron spectroscopy and X-ray photoelectron spectroscopy -- Methods used to determine peak intensities and information required when reporting results
  • BH GSO ISO 19618:2022 Fine ceramics (advanced ceramics, advanced technical ceramics) — Measurement method for normal spectral emissivity using blackbody reference with an FTIR spectrometer
  • GSO ISO 19618:2021 Fine ceramics (advanced ceramics, advanced technical ceramics) — Measurement method for normal spectral emissivity using blackbody reference with an FTIR spectrometer
  • GSO ISO 20903:2013 Surface chemical analysis -- Auger electron spectroscopy and X-ray photoelectron spectroscopy -- Methods used to determine peak intensities and information required when reporting results
  • GSO ISO 11938:2015 Microbeam analysis -- Electron probe microanalysis -- Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • GSO ISO 10810:2013 Surface chemical analysis -- X-ray photoelectron spectroscopy -- Guidelines for analysis
  • OS GSO ISO 10810:2013 Surface chemical analysis -- X-ray photoelectron spectroscopy -- Guidelines for analysis
  • BH GSO ISO 10810:2016 Surface chemical analysis -- X-ray photoelectron spectroscopy -- Guidelines for analysis

British Standards Institution (BSI)

  • BS ISO 19830:2015 Surface chemical analysis. Electron spectroscopies. Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy
  • BS ISO 20903:2011 Surface chemical analysis. Auger electron spectroscopy and X-ray photoelectron spectroscopy. Methods used to determine peak intensities and information required when reporting results
  • BS EN 15483:2008 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • 23/30456286 DC BS ISO 19702. Sampling and analysis of toxic gases and vapours in fire effluents using Fourier Transform Infrared (FTIR) spectroscopy
  • PD ISO/TS 21397:2021 FTIR analysis of fire effluents in cone calorimeter tests
  • BS EN 62129:2006 Calibration of optical spectrum analyzers
  • BS ISO 19618:2017 Fine ceramics (advanced ceramics, advanced technical ceramics). Measurement method for normal spectral emissivity using blackbody reference with an FTIR spectrometer
  • BS PD ISO/TS 21397:2021 FTIR analysis of fire effluents in cone calorimeter tests
  • BS EN 12019:1998 Zinc and Zinc Alloys - Optical Emission Spectrometric Analysis
  • BS EN 14726:2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis
  • 24/30469712 DC BS ISO 19618 Fine ceramics (advanced ceramics, advanced technical ceramics). Measurement method for normal spectral emissivity using blackbody reference with an FTIR spectrometer
  • BS ISO 20903:2019 Surface chemical analysis. Auger electron spectroscopy and X-ray photoelectron spectroscopy. Methods used to determine peak intensities and information required when reporting results
  • BS ISO 13424:2013 Surface chemical analysis. X-ray photoelectron spectroscopy. Reporting of results of thin-film analysis
  • BS DD ISO/TS 25138:2011 Surface chemical analysis. Analysis of metal oxide films by glow-discharge optical-emission spectrometry
  • PD ISO/TS 15338:2020 Surface chemical analysis. Glow discharge mass spectrometry. Operating procedures
  • BS ISO 10810:2019 Surface chemical analysis. X-ray photoelectron spectroscopy. Guidelines for analysis
  • BS EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments. Optical spectrum analyzers

International Organization for Standardization (ISO)

  • ISO 19830:2015 Surface chemical analysis - Electron spectroscopies - Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy
  • ISO/DIS 19702:2023 Sampling and analysis of toxic gases and vapours in fire effluents using Fourier Transform Infrared (FTIR) spectroscopy
  • ISO/CD 19702 Sampling and analysis of toxic gases and vapours in fire effluents using Fourier Transform Infrared (FTIR) spectroscopy
  • ISO 10640:2011 Plastics - Methodology for assessing polymer photoageing by FTIR and UV/visible spectroscopy
  • ISO 19702:2015 Guidance for sampling and analysis of toxic gases and vapours in fire effluents using Fourier Transform Infrared (FTIR) spectroscopy
  • ISO 20903:2006 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Methods used to determine peak intensities and information required when reporting results
  • ISO 20903:2019 Surface chemical analysis — Auger electron spectroscopy and X-ray photoelectron spectroscopy — Methods used to determine peak intensities and information required when reporting results
  • ISO 13321:1996 Particle size analysis - Photon correlation spectroscopy
  • ISO 3815:1976 Zinc and zinc alloys; Spectrographic analysis
  • ISO 19618:2017 Fine ceramics (advanced ceramics, advanced technical ceramics) - Measurement method for normal spectral emissivity using blackbody reference with an FTIR spectrometer
  • ISO/TS 21397:2021 FTIR analysis of fire effluents in cone calorimeter tests
  • ISO 20903:2011 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Methods used to determine peak intensities and information required when reporting results

U.S. Air Force

RO-ASRO

Lithuanian Standards Office

  • LST EN 15483-2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • LST EN 14726-2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis
  • LST EN 62129-2006/AC-2007 Calibration of optical spectrum analyzers (IEC 62129:2006)
  • LST EN 62129-2006 Calibration of optical spectrum analyzers (IEC 62129:2006)

Korean Agency for Technology and Standards (KATS)

  • KS C 2375-2006(2016) Analytical method of polychlorinated biphenyls(PCBs)by gas chromatography peak pattern comparison
  • KS C 2375-2021 Analytical method of polychlorinated biphenyls(PCBs)by gas chromatography peak pattern comparison
  • KS D 1682-2008 Methods for emission spectrochemical analysis of lead ingot
  • KS M 0028-2009(2019) General rules for light emission spectrochemical analysis
  • KS D 1681-2003 Method for emission spectrochemica1 analysis of aluminium ingot
  • KS D 1653-1991 Method of spectrochemica analysis
  • KS D 1684-2008 Methods for emission spectrographic analysis of magnesium ingot
  • KS C 6918-2020 Test methods of fiber-optic spectrum analyzer
  • KS C 6918-1995 Test methods of fiber-optic spectrum analyzer
  • KS D ISO 3815-2011 Zinc and zinc alloys-Spectrographic analysis
  • KS D 2518-2005 Methods for photoelectric emission spectrochemical analysis of cadmium metal
  • KS D 2086-2004 Method for atomic emission spectrometric analysis of titanium
  • KS D 2518-1982 Methods for photoelectric emission spectrochemical analysis of cadmium metal
  • KS D ISO 3815-2002(2006) Zinc and zinc alloys-Spectrographic analysis
  • KS M 0028-2019 General rules for light emission spectrochemical analysis
  • KS D 2558-1995 Method for emission spectrographic analysis of tantalum
  • KS C 2375-2006 Analytical method of polychlorinated biphenyls(PCBs)by gas chromatography peak pattern comparison
  • KS D 1654-1993 General Rules for X-ray Fluorescence Spectrometric Analysis of Iron and Steel
  • KS D 1654-2003(2016) General rules for X-ray fluorescence spectrometric analysis of iron and steel
  • KS D ISO 3815:2011 Zinc and zinc alloys-Spectrographic analysis
  • KS D 2553-2015 Tantalum-Method for atomic absorption spectrometric analysis
  • KS D 2710-2019 Methods for X-ray fluorescence spectrometric analysis of ferroniobium
  • KS D 1682-2020 Method for photoelectric emission spectrochemical analysis of lead metal
  • KS D 1654-2021 General rules for X-ray fluorescence spectrometric analysis of iron and steel
  • KS D 1682-1993 Methods for emission spectrochemical analysis of lead ingot
  • KS D 1684-1993 Methods for emission spectrographic analysis of magnesium ingot
  • KS D 1684-1985 Methods for emission spectrographic analysis of magnesium ingot
  • KS D 2518-2015 Methods for photoelectric emission spectrochemical analysis of cadmium metal
  • KS D 1898-2019 Copper alloys —Methods for X-ray fluorescence spectrometric analysis
  • KS D 2569-2021 Methods for ICP emission spectrometric analysis of tantalum
  • KS D 2569-2016(2021) Methods for ICP emission spectrometric analysis of tantalum
  • KS D 1655-1993 Method for X-Ray Fluorescence Spectrometric Analysis of Iron and Steel
  • KS D 2553-2015(2020) Tantalum-Method for atomic absorption spectrometric analysis
  • KS E 3030-2007(2012) Atomic absorption spectrochemical analysis for iron ores
  • KS E 3030-1982 Atomic absorption spectrochemical analysis for iron ores
  • KS D 1680-2008 General rules for photographic emission spectrochemical analysis of metal materials
  • KS M 0017-2020 General rules for X-ray fluorescence spectrometric analysis
  • KS M 0017-1995 General rules for X-ray fluorescence spectrometric analysis
  • KS D 1655-2019 Method for X-ray fluorescence spectrometric analysis of iron and steel
  • KS D 2568-2008 Tantalum-Method for atomic absorption spectrometric analysis
  • KS L 3316-1998 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS L 3316-1988 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS D 2568-2019 Tantalum-Method for atomic absorption spectrometric analysis
  • KS D 2569-2016 Methods for ICP emission spectrometric analysis of tantalum
  • KS D 2553-2020 Tantalum-Method for atomic absorption spectrometric analysis
  • KS D 2569-2005 Methods for ICP emission spectrometric analysis of tantalum
  • KS M 0012-2009(2019) General rules for molecular absorptiometric analysis
  • KS L 3316-2014(2019) Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS D 2086-1993 Methods for emission spectrochemical analysis of titanium
  • KS D 1686-2011(2021) Method for x-ray fluorescence spectrometric analysis of ferroalloys
  • KS M 0016-2010(2020) General rules for atomic absorption spectrochemical analysis
  • KS L 3316-2014 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS L 3316-2019 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS D 1686-2021 Method for x-ray fluorescence spectrometric analysis of ferroalloys
  • KS D 2518-2015(2020) Methods for photoelectric emission spectrochemical analysis of cadmium metal
  • KS D 1681-1993 Method for emission spectrochemical analysis of aluminium ingot

SCC

BR-ABNT

ZA-SANS

RU-GOST R

AENOR

  • UNE-EN 15483:2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • UNE-EN 14726:2006 Aluminum and aluminium alloys. Chemical analysis. Guideline for spark optical emission spectometric analysis

Danish Standards Foundation

European Committee for Standardization (CEN)

  • CEN EN 62129-2006 Calibration of optical spectrum analyzers
  • EN 15483:2008 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • CEN EN 62129-2006_ Calibration of optical spectrum analyzers
  • PREN 14726-2003 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis
  • EN 14726:2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis
  • CEN EN 14726-2005 Aluminium and aluminium alloys — Chemical analysis — Guideline for spark optical emission spectrometric analysis
  • EN 12019:1997 Zinc and Zinc Alloys - Optical Emission Spectrometric Analysis

German Institute for Standardization

  • DIN EN 15483:2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy; English version of DIN EN 15483:2009-02
  • DIN EN 15483:2009-02 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy; German version EN 15483:2008
  • DIN ISO 13321:2004 Particle size analysis - Photon correlation spectroscopy (ISO 13321:1996)
  • DIN 51009:2013-11 Optical atomic spectral analysis - Principles and definitions
  • DIN EN 62129:2007 Calibration of optical spectrum analyzers (IEC 62129:2006); German version EN 62129:2006
  • DIN 51009:2001 Optical atomic spectral analysis - Principles and definitions
  • DIN 51009:2013 Optical atomic spectral analysis - Principles and definitions
  • DIN EN 14726:2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis; English version of DIN EN 14726:2005

American Society for Testing and Materials (ASTM)

  • ASTM C1441-99 Standard Test Method for the Analysis of Refrigerant 114, Plus Other Carbon-Containing and Fluorine-Containing Compounds in Uranium Hexafluoride via Fourier-Transform Infrared (FTIR) Spectroscopy
  • ASTM C1441-13 Standard Test Method for the Analysis of Refrigerant 114, Plus Other Carbon-Containing and Fluorine-Containing Compounds in Uranium Hexafluoride via Fourier-Transform Infrared (FTIR) Spectroscopy
  • ASTM E996-94(1999) Standard Practice for Reporting Data in Auger Electron Spectroscopy and X-ray Photoelectron Spectroscopy
  • ASTM E718-80 Method for Spectrographic Analysis of Cartridge Brass
  • ASTM C1441-04 Standard Test Method for the Analysis of Refrigerant 114, Plus Other Carbon-Containing and Fluorine-Containing Compounds in Uranium Hexafluoride via Fourier-Transform Infrared (FTIR) Spectroscopy
  • ASTM C791-83(2000) Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Boron Carbide

International Electrotechnical Commission (IEC)

IN-BIS

  • IS 7658-1975 Spectral analysis method of aluminum
  • IS 2271-1967 Recommended methods for platinum spectroscopic analysis
  • IS 11035-1984 Spectral analysis method for processing aluminum alloys

Japanese Industrial Standards Committee (JISC)

  • JIS C 6192:2008 Calibration of optical spectrum analyzers
  • JIS G 1256:1997 Iron and steel -- Method for X-ray fluorescence spectrometric analysis
  • JIS M 8205:2000 Iron ores -- X-ray fluorescence spectrometric analysis
  • JIS H 1123:2021 Method for photoelectric emission spectrochemical analysis of lead metal
  • JIS H 1183:2007 Method for emission spectrochemical analysis of silver bullion
  • JIS H 1691:1968 Method for spectrochemical analysis of tantalum
  • JIS R 2216:2005 Methods for X-ray fluorescence spectrometric analysis of refractory products
  • JIS H 1630:1995 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 8826:2005 Particle size analysis -- Photon correlation spectroscopy
  • JIS H 1630:1975 Method for atomic emission spectrometric analysis of titanium
  • JIS G 1351:2006 Ferroalloys -- Method of X-ray fluorescence spectrometric analysis
  • JIS H 1123:1995 Method for photoelectric emission spectrochemical analysis of lead metal
  • JIS H 1683:2002 Tantalum -- Method for atomic absorption spectrometric analysis
  • JIS G 1256 AMD 1:2010 Iron and steel -- Method for X-ray fluorescence spectrometric analysis (Amendment 1)
  • JIS K 0214:2006 Technical terms for analytical chemistry (Chromatography part)
  • JIS G 1202:1975 General rules on emission-spectroscopic analysis for iron and steel
  • JIS G 1257:1994 Iron and steel -- Methods for atomic absorption spectrometric analysis
  • JIS H 1631:2008 Titanium alloys -- Method for X-ray fluorescence spectrometric analysis
  • JIS K 0214:2013 Technical terms for analytical chemistry (Chromatography part)
  • JIS C 6183-1:2019 Optical spectrum analyzers -- Part 1: Test methods
  • JIS H 1163:1991 Method for photoelectric emission spectrochemical analysis of cadmium metal
  • JIS H 1287:2015 Nickel and nickel alloys -- Methods for X-ray fluorescence spectrometric analysis

CEN - European Committee for Standardization

  • EN 14726:2019 Aluminium and aluminium alloys - Determination of the chemical composition of aluminium and aluminium alloys by spark optical emission spectrometry

Standard Association of Australia (SAA)

  • AS 4549.1:1999 Particle size analysis - Photon correlation spectroscopy

SAE - SAE International

  • SAE J2992-2020 FTIR Gas Analyzer Performance Evaluation / Qualification for Automotive Testing
  • SAE J2992-2015 FTIR Gas Analyzer Performance Evaluation / Qualification for Automotive Testing

GOSTR

  • GOST 9716.2-1979 Copper-zinc alloys. Method spectral analysis of metal standard spesimens with photoelectric registration of spectrum
  • GOST 9717.2-2018 Copper. Method of spectral analysis by metal standard specimens with photographic registration of spectrum
  • GOST 9716.3-1979 Copper-zinc alloys. Method of spectral analysis of oxide spesimens with photographic registration of spectrum

VDI - Verein Deutscher Ingenieure

  • VDI 4211-2016 Remote sensing - Atmospheric measurements using passive FTIR spectroscopy - Emission and ambient air measurements

BE-NBN

CZ-CSN

  • CSN 42 0600 Cast.3-1975 Antimony of high parity. Methods of chemical and spectral analysis. Delermmation of arsenic by photomotric metod
  • CSN 42 0600 Cast.5-1975 Antimony of high purity. Methods of chemical and spectral analysis. Dctermination of silver, bismuth. copper, iron. nickel, lead. and tin by spectral method
  • CSN 42 0600 Cast.2-1975 Antimony of high purity. Methods of chemical and spectral analysis. Preparation of the sample
  • CSN 42 1211-1986 The sampling of technical iron for spectrometric and chemical analysis

AASHTO - American Association of State Highway and Transportation Officials

The American Road & Transportation Builders Association

(U.S.) Ford Automotive Standards