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Infrared absorption peak analysis

Infrared absorption peak analysis, Total:234 items.

In the international standard classification, Infrared absorption peak analysis involves: Analytical chemistry, Ferroalloys, Products of the chemical industry, Testing of metals, Ferrous metals, Non-ferrous metals, Nuclear energy engineering, Semiconducting materials, Metalliferous minerals, Education, Iron and steel products, Powder metallurgy, Protection against crime, Vocabularies, Glass, Air quality, Power stations in general, Non-metalliferous minerals, Water quality, Edible oils and fats. Oilseeds.


Association Francaise de Normalisation, Infrared absorption peak analysis

  • NF X20-301:1978 Gas analysis by absorption of a non dispersive infra-red radiation beam.
  • NF X20-361:1976 Gas analysis. Determination of carbon monoxide by absorption of a non dispersive infra-red radiation beam.
  • NF A06-726:1992 Analyse chimique du cuivre - Dosage du soufre - Méthode par absorption dans l'infrarouge après combustion dans un four à induction.
  • NF T75-122:1982 ESSENTIAL OILS. OILS OF CITRUS. DETERMINATION OF CD VALUE BY ULTRAVIOLET SPECTROPHOTOMETRIC ANALYSIS.
  • NF A06-386-2:2003 Unalloyed steel - Determination of low carbon content - Part 2 : infrared absorption method after combustion in an induction furnace (with preheating).
  • NF A06-386-2*NF EN ISO 15349-2:2021 Unalloyed steel - Determination of low carbon content - Part 2 : infrared absorption method after combustion in an induction furnace (with preheating)

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Infrared absorption peak analysis

  • GB/T 8705.1-1988 Methods for chemical analysis of ferrophosphorus--The infrared absorption method for the determination of carbon content
  • GB/T 8705.3-1988 Methods for chemical analysis of ferrophosphorus--The infrared absorption method for the determination of carbon content
  • GB/T 5687.8-1988 Methods for chemical analysis of ferro-chromium--The infrared absorption method for the determination of sulfur content
  • GB/T 4701.8-1988 Methods for chemical analysis of ferrotitanium--The infrared absorption method for the determination of carbon content
  • GB/T 5059.9-1988 Methods for chemical analysis of ferromolybdenum--The infrared absorption method for the determination of sulfur content
  • GB/T 4333.10-1990 Methods for chemical analysis of ferrosilicon--The infrared absorption method for the determination of carbon content
  • GB/T 7731.10-1988 Methods for chemical analysis of ferrotungsten--The infrared absorption method for the determination of carbon content
  • GB/T 4701.10-1988 Methods for chemical analysis of ferrotitanium--The infrared absorption method for the determination of sulfur content
  • GB/T 5059.7-1988 Methods for chemical analysis of ferromolybdenum--The infrared absorption method for the determination of carbon content
  • GB/T 5687.5-1988 Methods for chemical analysis of ferro-chromium--The infrared absorption method for the determination of carbon content
  • GB/T 7731.12-1988 Methods for chemical analysis of ferrotungsten--The infrared absorption method for the determination of sulfur content
  • GB/T 8654.8-1988 Methods for chemical analysis of manganese metal--The infrared absorption method for the determination of carbon content
  • GB/T 8654.10-1988 Methods for chemical analysis of manganese metal--The infrared absorption method for the determination of sulfur content
  • GB/T 4702.14-1988 Methods for chemical analysis of chromium metal--The infrared absorption method for the determination of carbon content
  • GB/T 4702.16-1988 Methods for chemical analysis of chromium metal--The infrared absorption method for the determination of sulfur content
  • GB 4702.14-1988 Metal Chromium Chemical Analysis Method Infrared Absorption Method Determination of Carbon Content
  • GB/T 4700.5-1998 Methods for chemical analysis of calcium-silicon The infrared absorption method for the determination of carbon content
  • GB/T 5686.5-1988 Methods for chemical analysis of silicomanganese alloy--The infrared absorption method for the determination of carbon content
  • GB/T 5686.7-1988 Methods for chemical analysis of silicomanganese alloy--The infrared absorption method for the determination of sulfur content
  • GB/T 4699.6-1988 Methods for chemical analysis of silicochromium--The infrared absorption method for the determination of sulfur content
  • GB/T 4699.4-1988 Methods for chemical analysis of silicochromium The infrared absorption method for the determination of carbon content
  • GB/T 6150.4-2008 Methods for chemical analysis of tungsten concentrates.Determination of sulfur content .The high frequency-infrared absorption method
  • GB/T 14849.6-2014 Methods for chemical analysis of silicon metal.Part 6:Determination of carbon.Infrared absorption method
  • GB/T 8647.9-1988 Nickel--Determination of sulphur content--Infra-red absorption method after high frequency induction furnace combustion
  • GB/T 8647.10-1988 Nickel--Determination of carbon content--Infra-red absorption method after high frequency induction furnace combustion
  • GB/T 4324.27-2012 Methods for chemical analysis of tungsten.Part 27:Determination of carbon content.High frequency combustion -infrared absorption method
  • GB/T 8704.1-1997 Methods for chemical analysis of ferrovandium. The infrared absorption method and the gasometric method for the determination of carbon content
  • GB/T 7730.8-2000 Methods for chemical analysis of ferromanganese and blast furnace ferromanganese The infrared absorption method for the determination of sulfur content
  • GB/T 8647.8-2006 The methods for chemical analysis of nickel. Determination of sulphur content. Infra-red absorption method after high frequency induction furnace combustion
  • GB/T 8647.9-2006 The methods for chemical analysis of nickel. Determination of carbon content. Infra-red absorption method after high frequency induction furnace combustion
  • GB/T 7730.5-2000 Methods for chemical analysis of ferromanganese and blast furnace ferromanganese The infrared absorption method for the determination of carbon content
  • GB/T 26416.5-2010 Chemical analysis methods of dysprosium ferroalloy.Part 5: Determination of oxygen content.Impulse-infrared conductance absorption method
  • GB/T 20975.26-2013 Methods for chemical analysis of aluminium and aluminium alloys.Part 26:Determination of carbon content.Infrared absorption method
  • GB/T 20975.26-2013(英文版) Methods for chemical analysis of aluminium and aluminium alloys—Part 26:Determination of carbon content—Infrared absorption method
  • GB/T 8704.3-1997 Methods for chemical analysis of ferrovanadium. The infrared absorption method and the combustion neutralization titration method for the determination of sulfur content
  • GB/T 4325.21-2013 Methods for chemical analysis of molybdenum.Part 21:Determination of carbon content and sulfur content.High frequency combustion-infrared absorption method
  • GB/T 3260.9-2013 Methods for chemical analysis of tin.Part 9:Determination of sulphur content.Infra-red absorption method after high frequency induction furnace combustion
  • GB/T 26416.7-2023 Chemical Analysis Methods of Rare Earth Ferroalloys Part 7: Determination of Carbon and Sulfur Content by High Frequency-Infrared Absorption Method
  • GB/T 26416.5-2022 Chemical analysis method for rare earth ferroalloy—Part 5: Determination of oxygen content—Impulse-infrared absorption method
  • GB/T 4325.25-2013 Methods for chemical analysis of molybdenum.Part 25:Determination of hydrogen content.Inert gas fusion infrared absorption method/thermal conductivity method
  • GB/T 4324.25-2012 Methods for chemical analysis of tungsten.Part 25:Determination of oxygen content.Pulse heating inert gas fusion -infrared absorption method
  • GB/T 24369.1-2009 Characterization of gold nanorods.Part 1:UV-Vis-NIR absorption spectroscopy
  • GB/T 4700.7-1998 Methods for chemical analysis of calcium-silicon The infrared absorption method and the combustion-potassium iodate titration method for the determination of sulfur content
  • GB/T 11261-1989 Methods for chemical analysis of high carbon chromium bearing steel--The pulse heating inert gas fusion-infra-red absorption method for the determination of oxygen content
  • GB/T 4324.23-2012 Methods for chemical analysis of tungsten.Part 23:Determination of sulfur content.The combustion-conductometric titration and high frequency combustion-infrared absorption method
  • GB/T 4325.23-2013 Methods for chemical analysis of molybdenum.Part 23:Determination of oxygen and nitrogen contents.Inert gas fusion-infrared absorption and thermal conductivity method
  • GB/T 1819.10-2004 Methods for chemical analysis of tin concentrates Determination of sulphur content-The high frequency infrared absorption method and the combustion potassium iodate titrimetric method
  • GB/T 32561.4-2022 Measuring methods for chalcogenide infrared optical glass—Part 4: Coefficient of optical absorption
  • GB/T 6150.4-2023 Methods of chemical analysis of tungsten concentrates-Part 4: Determination of sulfur content by high-frequency induction infrared absorption method and combustion-iodometric method
  • GB/T 12690.1-2002 Chemical analysis methods for non-RE impurity of rare earth metals and their oxides-Determination of carbon and sulfur contents--High frequency-infrared absorption method
  • GB/T 12690.13-1990 Neodymium and samarium--Determination of carbon content--High frequency--Infrared absorption method
  • GB/T 19267.1-2008 Physical and chemical examination of trace evidence in forensic sciences.Part 1:Infrared absorption spectrometry
  • GB/T 19267.1-2003 Physical and chemical examination of trace evidence in forensic sciences--Part 1: Infrared absorption spectrometry
  • GB/T 12690.1-2015 Chemical analysis methods for non-rare earth impurity of rare earth metals and their oxides.Part 1: Determination of carbon and sulfur contents.High frequency-infrared absorption method
  • GB/T 12690.1-2022 Chemical analysis methods for non-rare earth impurities of rare earth metals and their oxides—Part 1:Determination of carbon and sulfur contents—High frequency-infrared absorption method
  • GB/T 12690.4-2003 Chemical analysis methods for non-rare earth impurities of rare earth metals and their oxides Determination of oxygen and nitrogen content Impulse-infrared and impulse-thermal conductance absorption method
  • GB/T 8570.6-2010 Determination of liquefied anhydrous ammonia.Part 6:Oil content.Gravimetric and infra-red methods
  • GB/T 20126-2006 Unalloyed Steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (With preheating)
  • GB/T 3286.7-2014 Methods for chemical analysis of limestone and dolomite.Part 7:The determination of sulphur content. The pipe furnace combustion iodic acid potassium titration method,the high frequency combustion with infrared absorption method and the barium sulfate gra

Professional Standard - Ferrous Metallurgy, Infrared absorption peak analysis

  • YB/T 5339-2006 Ferrophosphorus Chemical Analysis Method Infrared Absorption Method Determination of Carbon Content
  • YB/T 5341-2006 Ferrophosphorus Chemical Analysis Method Infrared Absorption Method Determination of Sulfur Content
  • YB/T 191.7-2001 Methods for chemical analysis of chromium ores----The infrared absorption method for the determination of sulfur content
  • YB/T 109.6-1997 Methods for chemical analysis of barium-silicon the infrared absorption method for the determination of carbon content
  • YB/T 109.7-1997 Methods for chemical analysis of barium-silicon the infrared absorption method for the derermination of sulfur content
  • YB/T 5316-2006 Calcium silicon alloy chemical analysis method Infrared absorption method for determination of carbon content
  • YB/T 178.6-2000 Methods for chemical analysis silicon-aluminium alloy and silicon-barium-aluminium alloy.The infrared absorption method for the determination of carbon content
  • YB/T 5317-2006 Calcium silicon alloy chemical analysis method infrared absorption method and combustion potassium iodate titration method for determination of sulfur content
  • YB/T 190.7-2001 Methods for chemical analysis of continuous casting mold powder The gas-volumetric method after combustion and the infrared absorption method for the determination of carbon content
  • YB/T 4419.1-2014 Metallized pellet by rotary hearth furnace.Determination of carbon and sulfur content.Infrared absorption method after combustion in an induction furnace
  • YB/T 190.6-2001 Methods for chemical analysis of continuous casting mold powder The gas-volumetric method after combustion and the infrared absorption method for the determination of dissociation carbon content

Henan Provincial Standard of the People's Republic of China, Infrared absorption peak analysis

  • DB41/T 1050-2015 Ferrosilicon Chemical Analysis Method Infrared Absorption Method for Determination of Sulfur Content

Korean Agency for Technology and Standards (KATS), Infrared absorption peak analysis

  • KS D ISO 15349-1-2005(2015) Unalloyed steel-Determination of low carbon content-Part 1:Infrared absorption method after combustion in an electric resistance furnace(by peak separation)
  • KS D ISO 7526-2012(2017) Nickel, ferronickel and nickel alloys-Determination of sulfur content-Infra-red absorption method after induction furnace combustion
  • KS D ISO 7524-2012(2017) Nickel, ferronickel and nickel alloys-Determination of carbon content-Infra-red absorption method after induction furnace combustion
  • KS A ISO 9889:2012 Determination of carbon content in uranium dioxide powder and sintered pellets-Resistance furnace combustion-Titrimetric/coulometric/infrared absorbtion method
  • KS D ISO 15349-2:2003 Unalloyed steel-Determination of low carbon content-Part 2:Infrared absorption method after combustion in an induction furnace (with preheating)
  • KS D ISO 15349-3-2005(2015) Unalloyed steel-Determination of low carbon content-Part 3:Infrared absorption method after combustion in an electric resistance furnace(with preheating)
  • KS D ISO 15349-2-2003(2018) Unalloyed steel-Determination of low carbon content-Part 2:Infrared absorption method after combustion in an induction furnace (with preheating)
  • KS D ISO 15349-3:2005 Unalloyed steel-Determination of low carbon content-Part 3:Infrared absorption method after combustion in an electric resistance furnace(with preheating)
  • KS D ISO 15349-1:2005 Unalloyed steel-Determination of low carbon content-Part 1:Infrared absorption method after combustion in an electric resistance furnace(by peak separation)

Professional Standard - Nuclear Industry, Infrared absorption peak analysis

  • EJ/T 746-1992 Infrared Absorption Method for Heavy Water Concentration Analysis in Primary Circuit of Heavy Water Research Reactor

Professional Standard - Electron, Infrared absorption peak analysis

  • SJ 20744-1999 General rule of infrared absorption spectral analysis for the impurity concentration in semiconductor materials

Professional Standard - Non-ferrous Metal, Infrared absorption peak analysis

  • YS/T 426.7-2000 Method for chemical analysis of antimony-beryllium pellets.Determination of carbon content.High frequency-infrared absorption method
  • YS/T 514.3-2009 Methods for chemical analysis of high-titanium slag and rutile.Part 3:Determination of sulfur content.High frequency infrared absorption method
  • YS/T 514.10-2009 Methods for chemical analysis of high-titanium slag and rutile.Part 10:Determination of carbon content.High frequency infrared absorption method
  • YS/T 281.20-2011 Methods for chemical analysis of cobalt.Part 20:Determination of oxide content.Impulse infrared absorption
  • YS/T 281.14-1994 Cobalt - Determination of sulphur content - Infra-red absorption method after high frequency induction furnace combustion
  • YS/T 281.15-1994 Cobalt - Determination of carbon content - Infra-red absorption method after high frequency induction furnace combustion
  • YS/T 820.16-2012 Methods for chemical analysis of laterite nickel ores.Part 16:Determination of carbon and sulfur content.High frequency combustion with infrared absorption spectrometry
  • YS/T 575.24-2009 Method for chemical analysis of aluminum ores.Part 24:Determination of carbon content and sulfur content.Infrared absorption method
  • YS/T 710.3-2009 Method for chemical analysis of cobalt oxide.Part 3:Determination of sulphur content.High frequency combustion-infrared absorption method
  • YS/T 1028.4-2015 Methods for chemical analysis of lithium iron phosphate.Part 4:Determination of carbon content.High frequency combustion with infrared absorption method
  • YS/T 861.4-2013 Methods for chemical analysis of niobium-titanium alloy.Part 4:Determination of carbon content.The high-frequency infrared absorption method
  • YS/T 281.13-2011 Methods for chemical analysis of cobalt.Part 13:Determination of sulphur content.Infra-red absorption method after high frequency induction furnace combustion
  • YS/T 281.14-2011 Methods for chemical analysis of cobalt.Part 14:Determination of carbon content.Infra-red absorption method after high frequency induction furnace combustion
  • YS/T 1047.4-2015 Methods for chemical analysis of copper magnetite.Part 4:Determination of sulfur content.High frequency combustion with infrared absorption method
  • YS/T 861.2-2013 Methods for chemical analysis of niobium-titanium alloy.Part 2:Determination of oxygen and nitrogen content.Inert gas fusion infrared/thermal conductivity method
  • YS/T 904.5-2013 Methods for chemical analysis of iron-chromium-aluminum fiber.Part 5:Determination of carbon and sulfur content.High-frequency infrared absorption method
  • YS/T 1605.12-2023 Methods for chemical analysis of roasted molybdenum concentrate— Part 12:Determination of carbon and sulfur contents — High frequency combustion infrared absorption method
  • YS/T 1075.6-2015 Methods for chemical analysis of vanadium-aluminium and molybdenum-aluminium master alloys.Part 6:Determination of carbon content.High frequency combustion infrared absorption method
  • YS/T 953.9-2014 Methods for chemical analysis of fire smelting nickel substrate material.Part 9:Determination of carbon and sulfur contents.Infrared absorption method after high frequency combustion
  • YS/T 539.13-2009 Methods for chemical analysis of nickel base alloy powder.Part 13:Determination of oxygen content.The pulse heating inert gas fusion-infrared absorption method
  • YS/T 1058-2015 Nickel, cobalt, manganese three-element composite oxide chemical analysis method Determination of sulfur content High-frequency induction furnace combustion infrared absorption method
  • YS/T 820.18-2012 Methods for chemical analysis of laterite nickel ores.Part 18:Determination of mercury conten.Cold atomic absorption spectrometry
  • YS/T 820.15-2012 Methods for chemical analysis of laterite nickel ores.Part 15:Determination of cadmium content.Flame atomic absorption spectrometry
  • YS/T 820.1-2012 Methods for chemical analysis of laterite nickel ores.Part 1:Determination of nikel content.Flame atomic absorption spectrometry
  • YS/T 820.5-2012 Methods for chemical analysis of laterite nickel ores.Part 5:Determination of cobalt content.Flame atomic absorption spectrometry
  • YS/T 820.6-2012 Methods for chemical analysis of laterite nickel ores.Part 6:Determination of copper content.Flame atomic absorption spectrometry
  • YS/T 820.12-2012 Methods for chemical analysis of laterite nickel ores.Part 12:Determination of manganese content.Flame atomic absorption spectrometry
  • YS/T 820.13-2012 Methods for chemical analysis of laterite nickel ores.Part 13:Determination of lead content.Flame atomic absorption spectrometry
  • YS/T 820.14-2012 Methods for chemical analysis of laterite nickel ores.Part 14:Determination of zinc content.Flame atomic absorption spectrometry
  • YS/T 820.7-2012 Methods for chemical analysis of laterite nickel ores.Part 7:Determination of calcium and magnesium content.Flame atomic absorption spectrometry
  • YS/T 514.6-2009 Methods for chemical analysis of high-titanium slag and rutile.Part 6:Determination of manganese monoxide content.Flame atomic absorption spectrometry
  • YS/T 514.7-2009 Methods for chemical analysis of high-titanium slag and rutile.Part 7:Determination of calcium oxide and magnesium oxide content.Flame atomic absorption spectrometry

工业和信息化部, Infrared absorption peak analysis

  • YS/T 1550.4-2022 Methods for chemical analysis of beryllium alloys Part 4: Determination of carbon content by infrared absorption method
  • YS/T 540.3-2018 Methods for chemical analysis of vanadium Part 3: Determination of carbon content High frequency combustion infrared absorption method
  • YS/T 540.7-2018 Methods for chemical analysis of vanadium Part 7: Determination of oxygen content Inert gas fusion infrared absorption method
  • YS/T 1550.5-2022 Methods for chemical analysis of beryllium alloys Part 5: Determination of oxygen content Inert gas fusion infrared absorption method
  • YS/T 1562.4-2022 Methods for chemical analysis of tungsten-copper alloys Part 4: Determination of carbon content High-frequency combustion infrared absorption method
  • YS/T 424.4-2022 Methods for chemical analysis of titanium diboride powder Part 4: Determination of carbon content High-frequency combustion infrared absorption method
  • XB/T 622.5-2017 Methods for chemical analysis of rare earth hydrogen storage alloys Part 5: Determination of carbon content High frequency combustion infrared absorption method
  • XB/T 622.6-2017 Methods for chemical analysis of rare earth hydrogen storage alloys Part 6: Determination of oxygen content Pulse heating infrared absorption method
  • YS/T 1563.5-2022 Methods for chemical analysis of molybdenum-rhenium alloys Part 5: Determination of carbon and sulfur content High-frequency combustion infrared absorption method
  • YS/T 1525-2022 Chemical analysis methods for nickel-platinum alloys, determination of oxygen and nitrogen content, pulse-infrared absorption method and thermal conductivity detection method
  • YS/T 1585.4-2022 Methods for chemical analysis of silver-tungsten alloys Part 4: Determination of carbon content High-frequency induction furnace combustion infrared absorption method
  • YS/T 1057.5-2022 Methods for chemical analysis of cobalt tetroxide Part 5: Determination of carbon content High-frequency combustion-infrared absorption spectrometry
  • YS/T 1509.2-2021 Chemical analysis method of silicon-carbon composite anode materials Part 2: Determination of carbon content High-frequency heating infrared absorption method
  • YS/T 1489.7-2021 Methods for chemical analysis of cobalt-chromium-tungsten alloy powders Part 7: Determination of carbon content High-frequency combustion infrared absorption method
  • YS/T 424.5-2022 Methods for chemical analysis of titanium diboride powder Part 5: Determination of oxygen content Pulse heating inert gas melting-infrared absorption method
  • YS/T 1563.7-2022 Methods for chemical analysis of molybdenum-rhenium alloys Part 7: Determination of hydrogen content Inert gas melting-infrared absorption method and thermal conductivity method
  • YS/T 1115.9-2016 Methods for chemical analysis of copper ores and tailings Part 9: Determination of sulfur content High-frequency infrared absorption method and combustion-potassium iodate titration method
  • YS/T 1563.6-2022 Methods for chemical analysis of molybdenum-rhenium alloys Part 6: Determination of oxygen and nitrogen content Inert gas melting-infrared absorption method and thermal conductivity method
  • YS/T 1489.8-2021 Methods for chemical analysis of cobalt-chromium-tungsten alloy powders Part 8: Determination of oxygen content Pulse heating inert gas melting-infrared absorption method

Japanese Industrial Standards Committee (JISC), Infrared absorption peak analysis

  • JIS G 1239:2014 Iron and steel -- Determination of oxygen -- Infrared absorption method after fusion under inert gas
  • JIS G 1211-4 AMD 1:2013 Iron and steel.Determination of carbon content.Part 4: Infrared absorption method after combustion in a furnace with preheating or peak separating (Amendment 1)
  • JIS G 1211-4 AMD 2:2017 Iron and steel -- Determination of carbon content -- Part 4: Infrared absorption method after combustion in a furnace with preheating or peak separating (Amendment 2)
  • JIS G 1211-4:2011 Iron and steel -- Determination of carbon content -- Part 4: Infrared absorption method after combustion in a furnace with preheating or peak separating
  • JIS G 1211-3:2018 Iron and steel -- Determination of carbon -- Part 3: Infrared absorption method after combustion
  • JIS G 1211-3:2011 Iron and steel -- Determination of carbon content -- Part 3: Infrared absorption method after combustion
  • JIS G 1215-4:2018 Iron and steel -- Determination of sulfur -- Part 4: Infrared absorption method after combustion in an induction furnace
  • JIS G 1211-3 AMD 1:2013 Iron and steel.Determination of carbon content.Part 3: Infrared absorption method after combustion (Amendment 1)
  • JIS G 1211-3 AMD 2:2017 Iron and steel -- Determination of carbon content -- Part 3: Infrared absorption method after combustion (Amendment 2)
  • JIS G 1215-4:2010 Iron and steel -- Determination of sulfur content -- Part 4: Infrared absorption method after combustion in an induction furnace
  • JIS G 1215-4 AMD 2:2017 Iron and steel -- Determination of sulfur content -- Part 4: Infrared absorption method after combustion in an induction furnace (Amendment 2)
  • JIS G 1215-4 AMD 1:2015 Iron and steel -- Determination of sulfur content -- Part 4: Infrared absorption method after combustion in an induction furnace (Amendment 1)

Professional Standard - Rare Earth, Infrared absorption peak analysis

  • XB/T 614.3-2011 Chemical analysis method of gadolinium-magnesium alloy.Part 3:Determination of carbon content.High frequency-infrared absorption method
  • XB/T 617.6-2014 Chemical analysis methods of neodymium iron boron alloy.Part 6:Determination of carbon content.High frequency-infrared absorption method
  • XB/T 601.9-1993 Lanthanum hexaboride chemical analysis method Determination of carbon content by high frequency induction combustion infrared absorption method
  • XB/T 610.3-2015 Chemical analysis methods for samarium-cobalt permanent magnet alloy.Part 3: Determination of oxygen content.Impulse-infrared absorption method
  • XB/T 610.3-2007 Chemical analysis methods for samarium cobalt permanent magnet alloy powder- Determination of oxygen content- Impulse-infrared absorption method
  • XB/T 601.4-2008 Chemical analysis methods of lanthanum boride.Determination of carbon content.High frequency induced combustion infrared ray absorbs method
  • XB/T 617.7-2014 Chemical analysis methods for neodymium iron boron alloy.Part 7:Determination of oxygen and nitrogen contents.Impulse-infrared and impulse-thermal conductance absorption method

Professional Standard - Aviation, Infrared absorption peak analysis

  • HB 5297.22-2001 Titanium Alloy Chemical Analysis Method High Frequency Induction Heating-Infrared Absorption Method Determination of Carbon Content
  • HB 5220.3-1995 High-frequency Induction Heating-Infrared Absorption Method for Chemical Analysis of Superalloys Determination of Carbon Content
  • HB 5220.6-1995 High-frequency induction heating-infrared absorption method for chemical analysis of superalloys Determination of sulfur content
  • HB 5220.3-2008 Methods for chemical analysis of super alloys. Part 3: Determination of carbon content by high frequency induction combustion-infrared absorption method
  • HB 5220.6-2008 Methods for chemical analysis of superalloys.Part 6:Determination of sulfur content by high frequency induction combustion-infrared absorption method

Group Standards of the People's Republic of China, Infrared absorption peak analysis

  • T/QAS 081.1-2023 Chemical Analysis of Polymetallic Minerals Part 1: Determination of Carbon and Sulfur by High Frequency Combustion Infrared Absorption Method
  • T/CSTM 00660.1-2023 Methods for chemical analysis of titanium carbide slag— Part 1:Determination of free carbon content—High frequency combustion with infrared absorption method
  • T/CWAN 0029.2-2021 Chemical analysis methods of nickel-based welding materials Part 2: Determination of carbon and sulfur content by infrared absorption method of high-frequency induction furnace combustion
  • T/CIC 401-2021 High temperature non-dispersive infrared absorption method for detection of inorganic harmful gas factors in waste gas from fixed pollution sources in metallurgical industry

American Society for Testing and Materials (ASTM), Infrared absorption peak analysis

  • ASTM D2357-11 Standard for Qualitative Classification of Surfactants by Infrared Absorption
  • ASTM D2357-74(1995)e1 Standard for Qualitative Classification of Surfactants by Infrared Absorption
  • ASTM D2357-74(2003) Standard for Qualitative Classification of Surfactants by Infrared Absorption
  • ASTM D2357-11(2016) Standard for Qualitative Classification of Surfactants by Infrared Absorption
  • ASTM E1915-05 Standard Test Methods for Analysis of Metal Bearing Ores and Related Materials by Combustion Infrared Absorption Spectrometry
  • ASTM E1915-99 Standard Test Method for Analysis of Metal Bearing Ores and Related Materials by Combustion Infrared Absorption Spectrometry
  • ASTM E1915-01 Standard Test Methods for Analysis of Metal Bearing Ores and Related Materials by Combustion Infrared Absorption Spectrometry
  • ASTM E1915-07a Standard Test Methods for Analysis of Metal Bearing Ores and Related Materials by Combustion Infrared-Absorption Spectrometry
  • ASTM E1915-07 Standard Test Methods for Analysis of Metal Bearing Ores and Related Materials by Combustion Infrared-Absorption Spectrometry
  • ASTM E204-98 Standard Practices for Identification of Material by Infrared Absorption Spectroscopy, Using the ASTM Coded Band and Chemical Classification Index
  • ASTM E204-98(2002) Standard Practices for Identification of Material by Infrared Absorption Spectroscopy, Using the ASTM Coded Band and Chemical Classification Index
  • ASTM E204-98(2007) Standard Practices for Identification of Material by Infrared Absorption Spectroscopy, Using the ASTM Coded Band and Chemical Classification Index

Standard Association of Australia (SAA), Infrared absorption peak analysis

  • AS/NZS 1050.16:1994 Methods for the analysis of iron and steel - Determination of sulfur content - Infrared absorption method after combustion in an induction furnace

Jiangxi Provincial Standard of the People's Republic of China, Infrared absorption peak analysis

  • DB36/T 815-2014 Determination of Hydrogen Content by Pulse Heating-Infrared Absorption Method for Chemical Analysis of SmCo Permanent Magnetic Alloy Powder

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, Infrared absorption peak analysis

  • GB/T 13747.24-2017 Methods for chemical analysis of zirconium and zirconium alloys—Part 24:Determination of carbon content—Infrared absorption method after high frequency combustion
  • GB/T 10574.12-2017 Methods for chemical analysis of tin-lead solders—Part 12:Determination of sulfur content—High frequency combustion with infrared absorption method
  • GB/T 13747.21-2017 Methods for chemical analysis of zirconium and zirconium alloys—Part 21:Determination of hydrogen content—Inert gas fusion-infrared absorption or thermal conductivity method
  • GB/T 13747.22-2017 Methods for chemical analysis of zirconium and zirconium alloys—Part 22:Determination of oxygen and nitrogen contents—Inert gas fusion-infrared absorption and thermal conductivity method
  • GB/T 1819.10-2017 Methods for chemical analysis of tin concentrates—Part 10: Determination of sulfur content—High frequency combustion with infrared absorption method and potassium iodate titrimetric method

Professional Standard - Geology, Infrared absorption peak analysis

  • DZ/T 0279.25-2016 Methods of Analysis of Regional Geochemical Samples Part 25: Combustion for Carbon Determination - Infrared Absorption Spectroscopy

Professional Standard - Education, Infrared absorption peak analysis

  • JY/T 0570-2020 General rules for ultraviolet and visible absorption spectrometry

Professional Standard - Public Safety Standards, Infrared absorption peak analysis

  • GA/T 823.2-2009 Analysis method for paint fragment.Part 2:Infrared absorption spectrometry

Professional Standard - Environmental Protection, Infrared absorption peak analysis

  • HJ/T 71-2001 Water quality-Determination of total organic carbon-Nondispersive infrared absorption method
  • HJ 501-2009 Water quality.Determination of total organic carbon.Combustion oxidation nondispersive infrared absorption method
  • HJ 692-2014 Stationary source emission.Determination of nitrogen oxides.Non-dispersive infrared absorption method
  • HJ 870-2017 Stationary source emission - Determination of carbon dioxide - Non-dispersive infrared absorption method
  • HJ 629-2011 Stationary source emission.dtermination of sulphur dioxide.Non-dispersive infrared absorption method

British Standards Institution (BSI), Infrared absorption peak analysis

  • BS 6200-3.28.2:1990 Sampling and analysis of iron, steel and other ferrous metals. Methods of analysis. Determination of sulphur. Steel and cast iron: infra-red absorption method after combustion in an induction furnace
  • BS ISO 19087:2018 Workplace air. Analysis of respirable crystalline silica by Fourier-Transform Infrared spectroscopy
  • BS 6783-5:1986 Sampling and analysis of nickel, ferronickel and nickel alloys - Method for determination of carbon in nickel, ferronickel and nickel alloys by infra-red absorption after induction furnace combustion
  • BS 6200 SubSec.3.28.2:1990 Sampling and analysis of iron, steel and other ferrous metals. Methods of analysis. Determination of sulphur. Steel and cast iron: infra-red absorption method after combustion in an induction furnace
  • 20/30387751 DC BS EN ISO 15349-2. Unalloyed steel. Determination of low carbon content. Part 2. Infrared absorption method after combustion in an induction furnace (with preheating)

国家市场监督管理总局、中国国家标准化管理委员会, Infrared absorption peak analysis

  • GB/T 37186-2018 Gas analysis—Determination of sulfur dioxide and nitrogen oxides—Ultraviolet differential optical absorption spectroscopy
  • GB/T 4333.7-2019 Ferrosilicon—Determination of sulfur content—Infrared absorption method and chromatographic separation-barium sulfate gravimetric method
  • GB/T 12690.4-2021 Chemical analysis methods for non-rare earth impurities of rare earth metals and their oxides—Part 4: Determination of oxygen and nitrogen contents—Impulse-infrared absorption and impulse-thermal conductivity method

Professional Standard - Commodity Inspection, Infrared absorption peak analysis

  • SN/T 3323.2-2012 Mill scale.Part 2:Determination of sulfur content.High frequency combustion infrared absorption method
  • SN/T 3321.2-2013 Limestone and dolomite.Part 2:Determination of carbon and sulfur content.High frequency combustion with infrared absorption method
  • SN/T 0481.8-2010 Methods for inspection of bauxite for export.Part 8:Determination of sulfur content.High frequency combustion-infrared absorption method
  • SN/T 2763.2-2012 Chemical analysis of laterite nickel ore.Part 2:Determination of nickel and cobalt content.Flame atomic absorption spectrometry
  • SN/T 2763.5-2013 Chemical analysis of nickel laterite ore.Part 5:Determination of copper,zinc and chrome content.Flame atomic absorption spectrometry

German Institute for Standardization, Infrared absorption peak analysis

  • DIN EN ISO 15349-2:2003 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating) (ISO 15349-2:1999); German version EN ISO 15349-2:2003
  • DIN 50438-2:1982 Testing of materials for semiconductor technology; determination of impurty content in silicon by infrared absorption; carbon
  • DIN EN ISO 15349-2:2023-02 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating) (ISO 15349-2:2021); German version EN ISO 15349-2:2021
  • DIN EN ISO 15349-2:2023 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating) (ISO 15349-2:2021)
  • DIN 50449-2:1998 Testing of materials for semiconductor technology - Determination of impurity content in semiconductors by infrared absorption - Part 2: Boron in gallium arsenide

International Organization for Standardization (ISO), Infrared absorption peak analysis

  • ISO 19087:2018 Workplace air - Analysis of respirable crystalline silica by Fourier-Transform Infrared spectroscopy
  • ISO 9889:1994 Determination of carbon content in uranium dioxide powder and sintered pellets - Resistance furnace combustion - Titrimetric/coulometric/infrared absorption method
  • ISO 15349-2:1999 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating)
  • ISO 15349-2:2021 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating)
  • ISO/TR 15349-3:1998 Unalloyed steel - Determination of low carbon content - Part 3: Infrared absorption method after combustion in an electric resistance furnace (with preheating)
  • ISO/TR 15349-1:1998 Unalloyed steel - Determination of low carbon content - Part 1: Infrared absorption method after combustion in an electric resistance furnace (by peak separation)
  • ISO 29441:2010 Water quality - Determination of total nitrogen after UV digestion - Method using flow analysis (CFA and FIA) and spectrometric detection

Professional Standard - Electricity, Infrared absorption peak analysis

  • DL/T 502.28-2006 Analytical methods of steam and water in power plants Part 28: Determination of organic matter (Ultraviolet spectrophotometry)

FI-SFS, Infrared absorption peak analysis

RU-GOST R, Infrared absorption peak analysis

  • GOST R ISO 19087-2021 Workplace air. Analysis of respirable crystalline silica by Fourier-Transform Infrared spectroscopy
  • GOST R ISO 15349-2-2017 Unalloyed steel. Determination of low carbon content. Part 2. Infrared absorption method after combustion in induction furnace (with preheating)

U.S. Air Force, Infrared absorption peak analysis

Danish Standards Foundation, Infrared absorption peak analysis

  • DS/ISO 15349-2:2021 Unalloyed steel – Determination of low carbon content – Part 2: Infrared absorption method after combustion in an induction furnace (with preheating)
  • DS/EN ISO 15349-2:2003 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating)
  • DS/EN ISO 15349-2:2021 Unalloyed steel – Determination of low carbon content – Part 2: Infrared absorption method after combustion in an induction furnace (with preheating) (ISO 15349-2:2021)

IT-UNI, Infrared absorption peak analysis

  • UNI EN ISO 15349-2:2021 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating)

ES-UNE, Infrared absorption peak analysis

  • UNE-EN ISO 15349-2:2022 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating) (ISO 15349-2:2021)

Lithuanian Standards Office , Infrared absorption peak analysis

  • LST EN ISO 15349-2:2021 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating) (ISO 15349-2:2021)
  • LST EN ISO 15349-2:2004 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating) (ISO 15349-2:1999)
  • LST 1645-2000/1K-2005 Swede rape and turnip rape seeds. Determination of moisture and volatile matter and oil and proteins content. Near infra-red light molecule absorption spectrometric method
  • LST 1645-2000 Swede rape and turnip rape seeds. Determination of moisture and volatile matter and oil and proteins content. Near infra-red light molecule absorption spectrometric method

AENOR, Infrared absorption peak analysis

  • UNE-EN ISO 15349-2:2006 Unalloyed steel - Determination of low carbon content - Part 2: Infrared absorption method after combustion in an induction furnace (with preheating) (ISO 15349-2:1999)




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