Sign In |Help & Support
ALL SECTORS
  • ALL SECTORS
  • GB(National Standard)
  • CB(Shipping)
  • CECS(Engineering Construction)
  • CJ(Urban Construction)
  • CY(News and Publication)
  • DB(Provincial Standard)
  • DL(Electricity & Power)
  • DZ(Geology & Mineralogy)
  • FZ(Spinning & Textile)
  • GA(Public Security)
  • HB(Aviation)
  • HG(Chemical Industry)
  • HJ(Environmental Protection)
  • JB(Machinery)
  • JC(Building Materials)
  • JG(Building & Construction)
  • JJ(Metering)
  • JT(Highway & Transportation)
  • LY(Forestry)
  • MT(Coal)
  • NB(Energy)
  • NY(Agriculture)
  • QB(Light Industry)
  • QC(Automobile & Vehicle)
  • QJ(Aerospace)
  • SH(Petrochemical)
  • SJ(Electronics)
  • SL(Water Resources)
  • SN(Commodity Inspection)
  • SY(Oil & Gas)
  • TB(Railway & Train)
  • YB(Ferrous Metallurgy)
  • YC(Tobacco)
  • YD(Telecommunication)
  • YY(Medical Device)
Database: 365,228(8 Aug 2026)

Spectral analysis of carbon materials

Spectral analysis of carbon materials, Total:381 items.

The international standard classification for "Spectral analysis of carbon materials" includes: Other non-ferrous metals and their alloys , Materials for aluminium production , Copper and copper alloys , Non-ferrous metals , Advanced ceramics , Chemical analysis , Refractories , Semiconducting materials , Nickel, chromium and their alloys , Particle size analysis. sieving , Aluminium and aluminium alloys , Analytical chemistry in general , Photographic paper, films and cartridges , Chemical analysis of metals , Connecting devices .

The Chinese standard classification for "Spectral analysis of carbon materials" includes: Precious metals and their alloys , Carbon material , Heavy metals and their alloys analysis method , Rare metals and their alloys analysis method , Technical Management , Fireproof material in general , Special ceramics , Basic standards and general methods , Special refractory , Semimetal and semiconductor material in general , Sieving, Sieve Plate and Sieve Screen , Metallochemistry analysis method in general , Electrochemical, thermochemistry and optical profile type analyzer , Basic standards and general methods for photosensitive material , Siliceous refractory , Basic standards and general methods , Basic standard and general method on forestry , Electrician alloy parts , chromatograph .


Taiwan Provincial Standard of the People's Republic of China

  • CNS 12416-2006 General rules for atomic emission spectrometry
  • CNS 14896-14-2005 Titanium - Method for atomic emission spectrometric analysis
  • CNS 10006-1984 Method for Photoelectric Emission Spectrochemical Analysis of Iron And Steel
  • CNS 14896.14-2005 Titanium - Method for atomic emission spectrometric analysis
  • CNS 12416-1988 Genenral Rules for Emission Spectroscopic Analysis
  • CNS 11071-1984 Emission-Spectroscopic Analysis for Carbon Steel and Low Alloy Steel
  • CNS 12788-1990 Method of X-ray Fluorescence Spectrometric Analysis of Refractory Bricks and Refractory Mortars
  • CNS 14341-1999 Optical spectrum analyzer
  • CNS 10005-1984 General Rules for Photoelectric Emission Spectrochemical Analysis of Metallic Materials

Professional Standard - Non-ferrous Metal

  • YS/T 83-1994 Palladium Matrix for Spectroscopic Analysis
  • YSBS 31111-2022 Standard sample for spectral analysis of 35 carbon steel
  • YS/T 631-2007 Methods for analysis of zinc-the optical emission spectrometry
  • YS/T 82-2006 Basis platinum as spectral analysis
  • YS/T 85-2006 Basis rhodium as spectral analysis
  • YS/T 558-2006 Methods for emission spectrum analysis of molybdenum
  • YSBS 31213-2022 Standard sample for spectral analysis of high carbon chromium bearing steel GCr15
  • YSBS 13127-2022 Standard sample for spectral analysis of carbon steel Q250HDb for nuclear power
  • YS/T 82-1994 Platinum substrates for spectroscopic analysis
  • YS/T 85-1994 Rhodium Matrix for Spectroscopic Analysis
  • YS/T 84-1994 Iridium matrix for spectroscopic analysis
  • YSBS 35127-2022 Standard sample for spectral analysis of high carbon steel 82B
  • YS/T 63.16-2006 Carbonaceous materials used in the production of aluminium?Part 16:Analysis using an X-ray fluorescence method
  • YSBS 31105-2022 50# carbon steel standard sample for spectral analysis
  • YSBS 31402-2022 Standard sample for spectral analysis of carbon tool steel T10A
  • YS/T 558-2009 Methods for emission spectrum analysis of molybdenum
  • YSBS 31106-2022 30# carbon steel standard sample for spectral analysis
  • YS/T 84-2006 Basis iridium as spectral analysis
  • YS/T 559-2009 Methods for emission spectrum analysis of tungsten
  • YS/T 83-2006 Basis palladium as spectral analysis

Professional Standard - Electron

  • SJ 20744-1999 General rule of infrared absorption spectral analysis for the impurity concentration in semiconductor materials
  • SJ/Z 3206.13-1989 General rules for emision spectrum analysis for semiconductor materials
  • SJ 2657-1986 Mothod of molybdeuum spectral analysis
  • SJ/Z 3206.12-1989 General rules for emission spectrum analysis for vacuum materials
  • SJ 2656-1986 Method for defermination of Tungsten by spectrometry

未注明发布机构

  • DIN EN 10211:1996 Chemical analysis of ferrous materials – Determination of titanium in steel and iron — Flame atomic absorption spectrometric method
  • DIN 55673 E:2016-11 Paints, varnishes and their raw materials - Analysis by near infrared spectrometry - General working principles
  • ASTM RR-C26-1012 2003 C0791-Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Boron Carbide
  • ASTM RR-C26-1000 1976 C0791-Methods for Chemical, Mass Spectrometric, Spectrochemical Analysis of Nuclear-Grade Boron Carbide
  • DIN 51079-1:1991 Testing of ceramic materials - Chemical analysis of silicon carbide used as raw material and as constituent in materials - Part 1: Decomposition with sodium carbonate and boric acid

国家市场监督管理总局、中国国家标准化管理委员会

  • GB/T 21114-2019 Refractories—Chemical analysis by X-ray fluorescence(XRF)—Fused cast-bead method
  • GB/T 41072-2021 Surface chemical analysis - Electron spectroscopies - Guidelines for ultraviolet photoelectron spectroscopy analysis
  • GB/T 36402-2018 Thermal analysis-mass spectrometry coupling method for ceramics materials

Professional Standard - Aviation

  • HB/Z 208-1991 Specification for sampling of test samples for spectroscopic analysis of nonferrous metal materials

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

  • GB/T 5123-1985 Nickel-Method of spectral analysis
  • GB/T 19627-2005 Particle size analysis--Photon correlation spectroscopy
  • GB/T 14265-1993 rule of chemical analysis for hydrogen, oxygen, nitrogen, carbon and sulfur in metals materials
  • GB/T 16555-2008 Chemical analysis of refractories containing carbon and silicon carbide or nitride
  • GB/T 10557-1989 Method for determination of spectral sensitivity of photographic materials
  • GB 10557-1989 Method for Determination of Spectral Sensitivity of Photosensitive Materials
  • GB/T 13245-1991 Refractories containing carbon--Determination of the total carbon--Combustion gravimetric method
  • GB/T 43612-2023 Collection of metallographs on defects in silicon carbide crystal materials
  • GB/T 16555.2-1996 Chemical analysis for silicon carbide refractories--Determination of silicon carbide--Gas volumetric method
  • GB/T 16555.1-1996 Chemical analysis for silicon carbide refractories--Determination of silicon carbide--Absorb gravimetric method
  • GB/T 16599-1996 Methods for emission spectrum analysis of molybdenum
  • GB/T 9259-1988 Terminology of emission spectochemical analysis
  • GB/T 7603-1987 Determination of the aromatic carbon content in mineral insulating oils by infrared spectrum method
  • GB/T 21114-2007 Chemical analysis of refractory products by XRF—Fused cast bead method
  • GB/T 42360-2023 Surface chemical analysis―Total reflection X-ray fluorescence analysis of water
  • GB/T 25481-2010 On-line ultraviolet/visible spectrum analyzer
  • GB/T 5871-1986 Method for spectrographic analysis of aluminium and its alloys

Guangdong Provincial Standard of the People's Republic of China

  • DB44/T 1078-2012 Laser Diffraction Method for Particle Size Analysis of Ceramic Raw Materials
  • DB44/T 1602-2015 Analysis Method of Stone Composition--X-ray Fluorescence Spectrometry

Group Standards of the People's Republic of China

  • T/CNIA 0109-2021 General rules for the application of laser-induced breakdown spectroscopy for the analysis of non-ferrous metal materials
  • T/SPSTS 029-2023 Thermogravimetric analysis of amorphous carbon content in graphene materials
  • T/CEMIA 035-2023 Test method of photoluminescence spectrum for materials used in organic light emitting diode (OLED) display- Fluorescence spectrometry(FS)
  • T/QGCML 4229-2024 Spectral multi-source data analysis software

Liaoning Provincial Standard of the People's Republic of China

  • DB21/T 2070-2013 Chemical Analysis of Aluminosilicate Refractories by Atomic Absorption Spectrometry
  • DB21/T 2079-2013 Polyvinyl chloride (PVC) cable material analysis - infrared spectroscopy

Professional Standard - Forestry

  • 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

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

  • GB/T 16555-2017 Chemical analysis of refractories containing carbon and silicon carbide or nitride
  • GB/T 34333-2017 Refractory products--Determination by inductively coupled plasma atomic emission spectrometry(ICP-AES)
  • GB/T 14265-2017 General rule of chemical analysis for hydrogen, oxygen, nitrogen, carbon and sulfur in metallic materials

Professional Standard - Machinery

  • JB/T 7778.2-1995 Method for chemical analysis of silver tungsten carbide electrical contact materials - Determination of nickel content by dimethylglyoxime luminescence photometry
  • JB/T 7778.2-2008 Test methods for chemical analysis of silver-tungsten carbide electric contact material-Part2:Determintion of nickel content

工业和信息化部

  • YS/T 83-2020 Palladium matrix for spectral analysis
  • YS/T 1509.1-2021 Methods for chemical analysis of silicon-carbon composite anode materials Part 1: Determination of silicon content by gravimetric and spectrophotometric methods
  • YS/T 82-2020 Platinum matrix for spectral analysis
  • YS/T 85-2020 Rhodium matrix for spectral analysis
  • YS/T 84-2020 Iridium matrix for spectral analysis

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

Professional Standard - Education

Korean Agency for Technology and Standards (KATS)

  • KS D 1680-2008 General rules for photographic emission spectrochemical analysis of metal materials
  • KS D 1657-1981 Analysis method of photoelectric emission spectrochemical analysis of metal materials
  • KS D 1650-1993 General rules for photoelectric emission spectrochemical analysis of metal materials
  • KS D 1650-2008 General rules for photoelectric emission spectrochemical analysis of metal materials
  • KS D 1680-1993 General rules for photographic emission spectrochemical analysis of metal materials
  • KS D 1658-2021 Emission-spectroscopic analysis for carbon steel and low alloy steel
  • 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 M ISO 12980:2004 Carbonaceous materials used in the production of aluminium-Green coke and calcined coke for electrodes-Analysis using an X-ray fluorescence method
  • KS M ISO 12980:2013 Carbonaceous materials used in the production of aluminium-Green coke and calcined coke for electrodes-Analysis using an X-ray fluorescence method
  • KS D 1658-2003 Emission-spectroscopic analysis for carbon steel and low alloy steel
  • KS L 3410-1995 Chemical analysis for high purity carbon materials
  • KS D 1650-2008(2018) General rules for photoelectric emission spectrochemical analysis of metal materials
  • KS L 3410-2010 Chemical analysis for highly purity graphite materials
  • KS L 3410-2015 Chemical analysis for highly purity graphite materials
  • KS L 3416-2021 Methods for chemical analysis of refractories containing carbon and/or silicon-carbide
  • KS L 3416-2006 Methods for chemical analysis of refractories containing carbon and/or silicon-carbide
  • KS L 3416-2016 Methods for chemical analysis of refractories containing carbon and/or silicon-carbide
  • KS L 3416-2016(2021) Methods for chemical analysis of refractories containing carbon and/or silicon-carbide
  • KS L ISO 26845-2012(2017) Chemical analysis of refractories-General requirements for wet chemical analysis, atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry methods
  • KS L ISO 26845-2012(2022) Chemical analysis of refractories-General requirements for wet chemical analysis, atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry methods
  • KS D 1680-2008(2018) General rules for photographic emission spectrochemical analysis of metal materials
  • KS L ISO 26845-2022 Chemical analysis of refractories-General requirements for wet chemical analysis, atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry methods
  • 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 M ISO 12980-2004(2009) Carbonaceous materials used in the production of aluminium-Green coke and calcined coke for electrodes-Analysis using an X-ray fluorescence method
  • KS D 1684-2008 Methods for emission spectrographic analysis of magnesium ingot
  • KS D 1653-1991 Method of spectrochemica 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 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 C 6918-2020 Test methods of fiber-optic spectrum analyzer
  • KS D 1813-2003(2018) Chemical analysis of ferrous materials determination of lead in steels-Flame atomic absorption spectrometric method
  • KS C 6918-1995 Test methods of fiber-optic spectrum analyzer
  • KS D 2518-2005 Methods for photoelectric emission spectrochemical analysis of cadmium metal
  • KS D ISO 3815-2011 Zinc and zinc alloys-Spectrographic analysis
  • 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 1813-2023 Chemical analysis of ferrous materials determination of lead in steels-Flame atomic absorption spectrometric method
  • 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 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

RU-GOST R

(U.S.) Ford Automotive Standards

Japanese Industrial Standards Committee (JISC)

  • JIS Z 2611:1977 General rules for photoelectric emission spectrochemical analysis of metal materials
  • JIS G 1252:1975 Emission-spectroscopic analysis for carbon steel and low alloy steel
  • JIS Z 2612:1977 General rules for photographic emission spectrochemical analysis of metal materials
  • JIS R 2011:2007 Methods for chemical analysis of refractories containing carbon and/or silicon-carbide
  • JIS R 2011:1998 Methods for chemical analysis of refractories containing carbon and/or silicon-carbide
  • JIS T 0306:2002 Analysis of state for passive film formed on metallic biomaterials by X-ray photoelectron spectroscopy
  • JIS C 6192:2008 Calibration of optical spectrum analyzers
  • 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 G 1256:1997 Iron and steel -- Method for X-ray fluorescence spectrometric analysis

KR-KS

RO-ASRO

  • STAS 11607-1981 LOW AND MEDIUM ALLOYED CARBON STEELS Spectrographic analysis
  • STAS 1706/17-1971 CUPPER speelrochemical analysis
  • STAS 11464-1980 IRON AND STEEL Spectrochemical analysis
  • STAS 10274/1-1983 Solid fuels ASH ANALYSIS General directions for spectral and chemical analysis carrying out
  • STAS 5177-1981 EMISSION SPECTROGRAPHICAL ANALYSIS Terminology
  • STAS SR 13313-1995 Chemical analysis of ferrous materials. Recommendation for the drafting of standard methods of analysis employing flame atomic absorption spectrometry for the chemical analysis of iron and steel
  • STAS 9281/1-1973 SILICON CARB1DI- HEFRACTOIUES General directions for carrying out chemical analysis.
  • STAS SR EN 10177-1994 Chemical analysis of ferrous materials. Deternnination of calcium in steels. Flame atomic absorption spectrometric method
  • STAS SR EN 10179-1994 Chemicat analysis of ferrous materials - Determination of nitrogen (trace amounts) in steel - Spectrophotometric method

PL-PKN

  • PN H04155-09-1986 Chemical analysis of silica raw materials and refractory products Method spectrographic
  • PN H04157-1986 Refractory materials Chemical analysis of silicon carbide and silicon carbide containing products
  • PN EN 10181-1992 Chemical analysis of ferrous materials. Determination of lead in steels. Flame atomic absorption spectrometric method
  • PN EN 10177-1993 Chemical analysis of ferrous materials Determination of calcium in steels Flame atomie absorption spectrometric method

British Standards Institution (BSI)

  • BS 6043-2.4:2000 Methods of sampling and test for carbonaceous materials used in aluminium manufacture. Electrode coke. Analysis by X-ray fluorescence spectroscopy
  • BS 1902-9.2:1987 Methods of testing refractory materials - Chemical analysis by instrumental methods - Analysis of silica refractories by X-ray fluorescence
  • 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 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 PD CEN/TR 10362:2014 Chemical analysis of ferrous materials. Determination of selenium in steels. Electrothermal atomic absorption spectrometric method
  • BS EN ISO 26845:2008 Chemical analysis of refractories - General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods
  • BS EN ISO 26845:2009 Chemical analysis of refractories. General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods
  • BS EN 62129:2006 Calibration of optical spectrum analyzers
  • BS EN ISO 26845:2008(2009) Chemical analysis of refractories — General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP - AES) methods
  • BS EN ISO 15192:2021 Soil and waste. Determination of Chromium(VI) in solid material by alkaline digestion and ion chromatography with spectrophotometric detection
  • BS EN 10177:2019 Chemical Analysis of Ferrous Materials Determination of Calcium in Steels Flame Atomic Absorption Spectrometric Method
  • BS EN 12019:1998 Zinc and Zinc Alloys - Optical Emission Spectrometric Analysis

GOSTR

  • GOST R 57987-2017 Polymer composites. Infrared spectroscopy. Multivariate quantitative analysis
  • GOST R 57970-2017 Carbon composites. Carbon composites reinforced with carbon fiber. Classification

American Society for Testing and Materials (ASTM)

  • ASTM C791-83(2000) Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Boron Carbide
  • ASTM C571-81(1990) Methods for Chemical Analysis of Carbon and Carbon-Ceramic Refractories
  • ASTM E1257-93(2003) Standard Guide for Evaluating Grinding Materials Used for Surface Preparation in Spectrochemical Analysis
  • ASTM C809-13 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Aluminum Oxide and Aluminum Oxide-Boron Carbide Composite Pellets
  • ASTM C809-94(2007) Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Aluminum Oxide and AluminumOxide-Boron Carbide Composite Pellets
  • ASTM E415-99a Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Carbon and Low-Alloy Steel
  • ASTM C791-19 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Boron Carbide
  • ASTM E415-08 Standard Test Method for Atomic Emission Vacuum Spectrometric Analysis of Carbon and Low-Alloy Steel
  • ASTM D5381-93(1998) Standard Guide for X-Ray Fluorescence (XRF) Spectroscopy of Pigments and Extenders
  • ASTM D5381-93(2003) Standard Guide for X-Ray Fluorescence (XRF) Spectroscopy of Pigments and Extenders
  • ASTM C791-12 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Boron Carbide
  • ASTM E415-99a(2005) Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Carbon and Low-Alloy Steel
  • 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 C791-04 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Boron Carbide
  • ASTM E1257-93(2008) Standard Guide for Evaluating Grinding Materials Used for Surface Preparation in Spectrochemical Analysis
  • ASTM E1257-93(1998)e1 Standard Guide for Evaluating Grinding Materials Used for Surface Preparation in Spectrochemical Analysis
  • ASTM C791-11 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Boron Carbide
  • ASTM C809-19 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Aluminum Oxide and Aluminum Oxide-Boron Carbide Composite Pellets
  • ASTM E415-21 Standard Test Method for Atomic Emission Vacuum Spectrometric Analysis of Carbon and Low-Alloy Steel
  • ASTM E1257-16 Standard Guide for Evaluating Grinding Materials Used for Surface Preparation in Spectrochemical Analysis
  • ASTM E1009-95(2000) Standard Practice for Evaluating an Optical Emission Vacuum Spectrometer to Analyze Carbon and Low-Alloy Steel
  • ASTM C1605-04(2014) Standard Test Methods for Chemical Analysis of Ceramic Whiteware Materials Using Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM C697-04 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Plutonium Dioxide Powders and Pellets

European Committee for Standardization (CEN)

  • CEN/TR 10354:2011 Chemical analysis of ferrous materials - Analysis of ferro-silicon - Determination of Si and Al by X-ray fluorescence spectrometry
  • PD CEN/TR 10354:2011 Chemical analysis of ferrous materials - Analysis of ferro-silicon - Determination of Si and Al by X-ray fluorescence spectrometry
  • CEN EN 62129-2006 Calibration of optical spectrum analyzers
  • prEN 10201-1988 Chemical analysis of ferrous materials; determination of silicon in steel and iron; flame atomic absoption spectrometric method
  • PD CEN/TR 10353:2011 Chemical analysis of ferrous materials - Analysis of ferro-silicon - Determination of Al, Ti and P by inductively coupled plasma optical emission spectrometry
  • 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/TR 10362:2014 Chemical analysis of ferrous materials - Determination of selenium in steels - Electrothermal atomic absorption spectrometric method
  • EN 10177:1989 Chemical Analysis of Ferrous Materials Determination of Calcium in Steels Flame Atomic Absorption Spectrometric Method
  • EN ISO 15192:2021 Soil and waste - Determination of Chromium(VI) in solid material by alkaline digestion and ion chromatography with spectrophotometric detection (ISO 15192:2021)
  • PD CEN/TR 10362:2014 Chemical analysis of ferrous materials - Determination of selenium in steels - Electrothermal atomic absorption spectrometric method
  • EN 10188:1989 Chemical Analysis of Ferrous Materials Determination of Chromium in Steels and Irons Flame Atomic Absorption Spectrometic Method

SCC

  • DANSK DS/CEN/TR 10354:2011 Chemical analysis of ferrous materials - Analysis of ferro-silicon - Determination of Si and Al by X-ray fluorescence spectrometry
  • SN-CEN/TR 10354:2011 Chemical analysis of ferrous materials — Analysis of ferro-silicon — Determination of Si and Al by X-ray fluorescence spectrometry
  • BS PD CEN/TR 10354:2011 Chemical analysis of ferrous Materials. Analysis of ferro-silicon. Determination of Si and Al by X-ray fluorescence spectrometry
  • AS 2134:1978 Code of practice for the chemical analysis of materials by flame atomic absorption spectroscopy
  • BS 6617-2:1987 Determination of decarburization in steel-Methods for determining decarburization by chemical and spectrographic analysis techniques
  • BS EN 61290-1-1:1998 Optical spectrum analyzer
  • NS 4783:1988 Water analysis — Metal content of biological material determined by atomic absorption spectrometry
  • AS CK18:1970 Code of recommended practice for chemicla analysis of materials by atomic absorption spectroscopy
  • NS-EN 10200:1991 Chemical analysis of ferrous materials — Determination of boron in steel — Spectrophotometric analysis
  • BS PD IEC PAS 62129:2004 Calibration of optical spectrum analyzers
  • CEI EN 62129:2006 Calibration of optical spectrum analyzers
  • DIN 55673 E:2016 Draft Document - Paints, varnishes and their raw materials - Analysis by near infrared spectrometry - General working principles
  • SN-CR 10321:2003 Chemical analysis of ferrous materials — Recommendations for the drafting of standard methods of analysis employing flame atomic absorption spectrometry for the chemical analysis of iron and steel
  • DANSK DS/EN 62129:2006 Calibration of optical spectrum analyzers
  • SN-CEN/TR 10362:2014 Chemical analysis of ferrous materials — Determination of selenium in steels — Electrothermal atomic absorption spectrometric method
  • AENOR UNE 36320-1:1989 Chemical analysis of ferrous materials - Determination of calcium in steels - Flame atomic absorption spectrometric method
  • NS-EN 10177:1989 Chemical analysis of ferrous materials — Determination of calcium in steels — Flame atomic absorption spectrometric method
  • DANSK DS/CEN/TR 10362:2014 Chemical analysis of ferrous materials - Determination of selenium in steels - Electrothermal atomic absorption spectrometric method
  • AENOR UNE 36339-1:1989 Chemical analysis of ferrous materials - Determination of lead in steels - Flame atomic absorption spectrometric method
  • NS-EN 10181:1989 Chemical analysis of ferrous materials — Determination of lead in steels — Flame atomic absorption spectrometric method
  • SN-CEN/TR 10353:2011 Chemical analysis of ferrous materials — Analysis of ferro-silicon — Determination of Al, Ti and P by inductively coupled plasma optical emission spectrometry
  • UNE-EN 12019:1998 ZINC AND ZINC ALLOYS. OPTICAL EMISSION SPECTROMETRIC ANALYSIS.
  • NS-EN 10136:1989 Chemical analysis of ferrous materials — Determination of nickel in steels and irons — Flame atomic absorption spectrometric method
  • DANSK DS/EN ISO 26845:2008 Chemical analysis of refractories - General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods
  • BS 1121B:1953 Spectrographic analysis of low alloy steel
  • BS PD CEN/TR 10353:2011 Chemical analysis of ferrous materials. Analysis of ferro-silicon. Determination of Al, Ti and P by inductively coupled plasma optical emission spectrometry
  • NS-EN 10188:1989 Chemical analysis of ferrous materials — Determination of chromium in steels and irons — Flame atomic absorption spectrometric method
  • AENOR UNE 36326-1:1989 Chemical analysis of ferrous materials - Determination of nickel in steels and irons - Flame atomic absorption spectrometric method
  • NS-EN 10211:1995 Chemical analysis of ferrous materials — Determination of titanium in steel and iron — Flame atomic absorption spectrometric method
  • AENOR UNE 36324-1:1991 Chemical analysis of ferrous materials - Determination of chromium in steels and irons - Flame atomic absorption spectrometric method
  • BS 3156-4:1969 Analysis of fuel gases-Gas chromatographic analysis
  • NS-EN ISO 26845:2008 Chemical analysis of refractories — General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods (ISO 26845:2008)
  • BS 3156-11.1.2:1997 Analysis of fuel gases. Methods for non-manufactured gases. Hydrocarbons and inert gases. Extended analysis by gas chromatographic method
  • VDI/VDE 2631 BLATT 11-2020 Shape measurement technology - spectral analysis (Fourier analysis, harmonic analysis)

Standard Association of Australia (SAA)

  • AS 4392.2:1997 Heavy mineral sands - Analysis by wavelength dispersive X-ray fluorescence spectrometry - Zircon materials
  • AS 4549.1:1999 Particle size analysis - Photon correlation spectroscopy
  • AS ISO 18118:2006 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

IT-UNI

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

AT-ON

  • ONORM M 6608-1996 Water analysis - Determination of hydrocarbons by infrared spectrometry

Danish Standards Foundation

  • 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 62129:2006 Calibration of optical spectrum analyzers
  • DS/EN 62129/Corr. 1:2007 Calibration of optical spectrum analyzers
  • DS/EN ISO 26845:2008 Chemical analysis of refractories - General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods
  • DS/EN 10136:1989 Chemical analysis of ferrous materials - Determination of nickel in steels and irons - Flame atomic absorption spectrometric method
  • DS/EN 10200:1993 Chemical analysis of ferrous materials. Determination of boron in steel. Spectrophotometric method

Association Francaise de Normalisation

  • NF B49-418:1970 Chemical analysis of refractory materials (high). Silica materials, siliceous fireclay and fireclay materials. Determination of lithium, potassium and sodium (flame photometric method).
  • 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 B49-421:1990 Refractory products. Chemical analysis of aluminous, siliceous, silicon carbide, carbon and metallic silicon refractory products.
  • NF C93-845:2006 Calibration of optical spectrum analyzers.
  • NF EN ISO 26845:2008 Analyse chimique des matériaux réfractaires - Exigences générales pour les méthodes d'analyse chimique par voie humide, par spectrométrie d'absorption atomique (AAS) et par spectrométrie d'émission atomique avec plasma induit par haute fréq...
  • NF B49-401*NF ISO 16169:2018 Preparation of silicon carbide and similar materials for analysis by ISO 12677 X-ray fluorescence (XRF) - Fused cast-bead method
  • NF B40-672*NF EN ISO 26845:2008 Chemical analysis of refractories . General requirements for wet chemicals analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods
  • NF A06-590:2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis.
  • NF X31-171:2011 Soil quality - Determination of chromium(VI) in solid material by alkaline digestion and ion chromatography with spectrophotometric detection.
  • NF U44-145:1984 FERTILIZERS AND SOILS CONDITIONERS. DETERMINATION OF MAGNESIUM BY ATOMIC ABSORPTION SPECTROMETRIC METHOD.
  • NF X11-672:1996 Particle size analysis. Photon correlation spectroscopy.
  • NF A08-361:1989 Chemical analysis of ferrous materials. Determination of calcium in steels. Flame atomic absorption spectrometric method.
  • NF ISO 16169:2018 Preparation of silicon carbide and similar materials for X-ray fluorescence (XRF) analysis according to ISO 12677 - Fused bead method
  • NF A07-510X2:1975 ANALYSIS OF NON-ALLOYED ALUMINIUM BY EMISSION SPECTROGRAPHY.

German Institute for Standardization

  • 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 51079-1:2004 Testing of ceramic materials - Chemical analysis of silicon carbide used as raw material and as constituent in materials - Part 1: Decomposition with sodium carbonate and boric acid
  • DIN EN 10178:1990 Chemical analysis of ferrous materials; determination of niobium in steels; spectrophotometric method; german version EN 10178:1989
  • DIN 51075-3:1982 Testing of ceramic materials; chemical analysis of silicon carbide; determination of the total carbon content
  • DIN ISO 13321:2004 Particle size analysis - Photon correlation spectroscopy (ISO 13321:1996)
  • DIN 51088:2007 Testing of ceramic raw and basic materials - Determination of mass fractions of metallic trace impurities in silicon carbide powders and granular silicon carbides by optical emission spectrometry and excitation in the DC arc
  • DIN EN ISO 26845:2008-06 Chemical analysis of refractories - General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods (ISO 26845:2008); German version EN ISO 26845:2008
  • DIN ISO 12980:2006 Carbonaceous materials used in the production of aluminium - Green coke and calcined coke for electrodes - Analysis using an X-ray fluorescence method (ISO 12980:2000)

U.S. Air Force

SE-SIS

  • SIS SS-EN 10 184-1990 Chemical analysis of ferrous materials — Determination of phosfor in steels and irons — Spectrophotometric method
  • SIS SS 02 81 87-1986 Metal content of biological material determined by atomic absorption spectrometry — Digestion
  • SIS SS-EN 10 177-1989 Chemical analysis of ferrous materials — Determination of calcium in steels — Flame atomic absorption spectrometric method
  • SIS SS-EN 10 181-1989 Chemical analysis of ferrous materials — Determination of lead in steels — Flame atomic absorption spectrometric method
  • SIS SS-EN 10 188-1990 Chemical analysis of ferrous materials — Determination of chromium in steels and irons — Flame atomic absorption spectro- metric method

CZ-CSN

BR-ABNT

ZA-SANS

NO-SN

  • NS 4783-1988 Water analysis - Metal content of biological material determined by atomic absorption spectrometry

US-FCR

GSO

  • GSO ISO 26845:2015 Chemical analysis of refractories -- General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods
  • BH GSO ISO 13321:2016 Particle size analysis -- Photon correlation spectroscopy
  • GSO ISO 13321:2013 Particle size analysis -- Photon correlation spectroscopy
  • BH GSO ISO 26845:2017 Chemical analysis of refractories -- General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods

YU-JUS

  • JUS B.D8.240-1982 Refractories. Chemical analysis silicon carbide production and raw materials

International Organization for Standardization (ISO)

  • ISO 12980:2000 Carbonaceous materials used in the production of aluminium - Green coke and calcined coke for electrodes - Analysis using an X-ray fluorescence method
  • 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 16169:2018 Preparation of silicon carbide and similar materials for analysis by ISO 12677 X-ray fluorescence (XRF) - Fused cast-bead method
  • 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 13321:1996 Particle size analysis - Photon correlation spectroscopy
  • 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 3815:1976 Zinc and zinc alloys; Spectrographic analysis
  • ISO 26845:2008 Chemical analysis of refractories - General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods
  • ISO/CD 16094-2 Water quality — Analysis of plastics in water — Part 2: Method using vibrational spectroscopy
  • ISO 15192:2021 Soil and waste - Determination of Chromium(VI) in solid material by alkaline digestion and ion chromatography with spectrophotometric detection
  • ISO 15192:2010 Soil quality - Determination of chromium(VI) in solid material by alkaline digestion and ion chromatography with spectrophotometric detection
  • ISO 9406:1995 Carbonaceous materials for the production of aluminium - Green coke - Determination of volatile matter content by gravimetric analysis
  • ISO 9406:1988 Carbonaceous materials for the production of aluminium; green coke; determination of volatile matter content by gravimetric analysis

CEN - European Committee for Standardization

  • PREN 12698-2005 Chemical analysis of nitride bonded silicon carbide refractories
  • EN 14726:2019 Aluminium and aluminium alloys - Determination of the chemical composition of aluminium and aluminium alloys by spark optical emission spectrometry

International Electrotechnical Commission (IEC)

IN-BIS

AENOR

  • UNE 36339-1:1989 Chemical analysis of ferrous materials - Determination of lead in steels - Flame atomic absorption spectrometric method
  • UNE 36320-1:1989 Chemical analysis of ferrous materials - Determination of calcium in steels - Flame atomic absorption spectrometric method
  • UNE 36326-1:1989 Chemical analysis of ferrous materials - Determination of nickel in steels and irons - Flame atomic absorption spectrometric method

Lithuanian Standards Office

  • LST EN 10181-2000 Chemical analysis of ferrous materials - Determination of lead in steels - Flame atomic absorption spectrometric method
  • LST EN 10177-2000 Chemical analysis of ferrous materials - Determination of calcium in steels - Flame atomic absorption spectrometric method
  • LST EN ISO 14719:2012 Chemical analysis of refractory material glass and glazes - Determination of Fe2+ and Fe3+ by the spectral photometric method with 1,10-phenanthroline (ISO 14719:2011)
  • LST EN 10136-2000 Chemical analysis of ferrous materials - Determination of nickel in steels and irons - Flame atomic absorption spectrometric method

UNKNOWN

  • YB 4077-91 Chemical analysis method for aluminum carbonaceous refractory materials EDTA volumetric method.
  • YB 4077-1991 Chemical analysis method for aluminum carbonaceous refractory materials EDTA volumetric method.

ES-AENOR

  • UNE 36-331 Pt.1-1989 Chemical analysis of materials in the steel industry. Determination of niobium in steel. Spectrophotometry