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Database: 365,228(8 Aug 2026)

Infrared carbon sulfur meter does not burn

Infrared carbon sulfur meter does not burn, Total:166 items.

The international standard classification for "Infrared carbon sulfur meter does not burn" includes: Iron ores , Ferrous metals in general , Other non-ferrous metals and their alloys , Chromium ores , Semiconducting materials , Ferroalloys , Metalliferous minerals , Powder metallurgy , Nickel, chromium and their alloys , Chemical analysis of metals .

The Chinese standard classification for "Infrared carbon sulfur meter does not burn" includes: Iron ore , Steel and iron alloy analysis method , Rare refractory metals and their compounds , Chrome ore , Elemental semiconductor material , Basic standard and general method , Powder metallurgy analysis method , Heavy metals and their alloys analysis method .


Group Standards of the People's Republic of China

  • 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/HNNMIA 87-2023 Determination of organic matter content in soil and sediments - High frequency infrared carbon-sulfur analyzer method
  • T/CMES 08006-2020 Determination of Sulfur Content in Carburizers High Frequency Combustion Infrared Absorption Method
  • T/CMES 08005-2020 Determination of Carbon and Sulfur Content in Ferrochromium Nitride High Frequency Combustion Infrared Absorption Method

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

  • GB/T 29652-2013 Direct reduced iron—Determination of carbon and sulfur—High frequency combustion with infrared absorption method
  • 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 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 5059.9-2008 Ferromolybdenum - Determination of sulfur content - The infrared absorption method and the combustion-iodate volumetric method
  • GB/T 6730.61-2022 Iron ores—Determination of carbon and sulfur content—High frequency combustion with infrared absorption method
  • GB/T 21931.2-2008 Nickel ferronickel and nickel alloys - Determination of sulfur content - Infrared absorption method after induction furnace combustion
  • GB/T 6730.61-2005 Iron ores - Determination of carbon and sulfur content - High frequency combustion with infrared absorption method
  • GB/T 4702.16-2008 Chromium metal - Determination of sulfur content - Infrared absorption method and combustion-neutralization titration method
  • GB/T 223.85-2009 Steel and iron—Determination of sulfur content—Infrared absorption method after combustion in an induction furnace
  • GB/T 7731.12-2008 Ferrotungsten - Determination of sulfur content - Infrared absorption method and combustion titration method
  • GB/T 42275-2022 Hardmetals—Determination of total carbon content—High frequency combustion infrared absorption or thermal conductivity method
  • GB/T 21931.1-2008 Nickel ferronickel and nickel alloys - Determination of carbon content - Infrared absorption method after induction furnace combustion
  • GB/T 4701.10-2008 Ferrotitanium - Determination of sulfur content - Infrared absorption method and combustion-neutralization titration method
  • GB/T 24224-2009 Chromium ores—Determination of sulfur content—Combustion-neutralization titration method,combustion-potassium iodate titration method and combustion-infrared absorption method
  • GB/T 32573-2016 Silicon powder―Determination of total carbon content―Infrared absorption method after combustion in an induction furnace
  • GB/T 8704.3-2009 Ferrovanadium—Determination of sulfur content—The infrared absorption method and the combustion-neutralization titration method
  • GB/T 20123-2006 Steel and iron—Determination of total carbon and sulfur content Infrared absorption method after combustion in an induction furnace (routine method)

工业和信息化部

  • HG/T 5594-2019 Determination of carbon and sulfur in petroleum refining catalysts - High frequency combustion with infrared absorption method
  • YB/T 5316-2016 Calcium silicon alloy-Determination of carbon content- High-frequency combustion infrared absorption method
  • YS/T 1563.5-2022 Methods for chemical analysis of molybdenum rhenium alloy-Part 5:Determination of carbon and sulfur contents-High frequency combustion with infrared absorption method
  • YB/T 4908.5-2021 Vanadium-aluminum alloy——Determination of carbon and sulfur content——High frequency induction combustion-infrared absorption method

Sichuan Provincial Standard of the People's Republic of China

  • DB51/T 2042-2015 Determination of Carbon and Sulfur Content in Vanadium Aluminum Alloys High Frequency Induction Combustion-Infrared Absorption Method

Professional Standard - Customs

  • HS/T 29-2010 Quantitative analysis of the content of carbon in carbon fiber method by high frequency infrared carbon sulphur analyzer

Professional Standard - Commodity Inspection

  • SN/T 4363-2015 Determinatin of sulfur content in copper concentrate - High frequency combustion with infrared absorption method
  • SN/T 2638.3-2012 Determination of sulfur content in manganese ores for import and export - High temperature combustion infrared absorption method
  • SN/T 3321.2-2013 Limestone and dolomite―Part2:Determination of carbon and sulfur content―High frequency combustion with infrared absorption method
  • SN/T 3469.3-2013 Determination of sulfur content in import copper matte and sintered copper material. High frequency combustion with infrared absorption method
  • SN/T 2413-2010 Determination of total carbon and sulfur contents of silicon metal for import and export—Infrared absorption spectromentry
  • SN/T 3598-2013 Determination of sulfur content in pyrites ore―High frequency combustion with infrared absorption method
  • SN/T 4366-2015 Determination of sulfur content in gold ore-High frequency combustion with infrared absorption method

Professional Standard - Nuclear Industry

  • EJ/T 20142-2016 Determination of carbon in nuclear-grade plutonium dioxide powder by high frequency combustion-infrared detection
  • EJ/T 20166-2018 Determination of carbon and sulfur content in reprocessed uranium trioxide powder by high frequency combustio-infrared detection
  • EJ/T 1164-2002 Determination of sulfur content in uranium dioxide powder - Infrared absorption method after combustion in an induction furnace

Professional Standard - Non-ferrous Metal

  • 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 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 281.14-1994 Cobalt -- Determination of sulphur content -- Infra-red absorption method after high frequency induction furnace combustion
  • 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 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

Professional Standard - Geology

  • DZ/T 0394.2-2022 Methods for chemical analysis of uranium ores Part 2: Determination of carbon and sulfur contents High frequency combustion-infrared absorption

Professional Standard - Environmental Protection

  • HJ 695-2014 Soil - Determination of organic carbon - Combustion oxidation nondispersive infrared absorption method
  • 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

海关总署

  • SN/T 5250-2020 Determination of sulfur content in mineral products - High frequency combustion with infrared absorption method

Henan Provincial Standard of the People's Republic of China

  • DB41/T 1569-2018 Determination of Fixed Carbon Content in Graphite Ore High Frequency Combustion Infrared Absorption Method

Professional Standard - Ferrous Metallurgy

  • 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 5317-2016 Calcium silicon alloy-Determination of sulfur content-High frequency combustion with infrared absorption method and the combustion- potassium iodate titration method

未注明发布机构

  • DIN EN ISO 7526 E:2019-09 Determination of nickel, iron and sulfur content by induction furnace post-combustion infrared absorption method (draft)
  • JIS G 1211-3 AMD 1:2024 Iron and steel -- Determination of carbon -- Part 3: Infrared absorption method after combustion (Amendment 1)

未注明发布机构

  • JIS G 1211-3 AMD 1:2024 Iron and steel -- Determination of carbon -- Part 3: Infrared absorption method after combustion (Amendment 1)
  • DIN EN ISO 7526 E:2019-09 Determination of nickel, iron and sulfur content by induction furnace post-combustion infrared absorption method (draft)

Professional Standard - Building Materials

Qinghai Provincial Standard of the People's Republic of China

  • DB63/T 1612-2017 Chemical analysis method for fixed carbon in carbonate-containing graphite ore Nitric acid treatment High-frequency infrared carbon-sulfur analyzer method

Korean Agency for Technology and Standards (KATS)

  • KS E ISO 9686-2011(2021) Direct reduced iron-Determination of carbon and/or sulfur-High-frequency combustion method with infrared measurement
  • KS E ISO 9686-2011(2016) Direct reduced iron-Determination of carbon and/or sulfur-High-frequency combustion method with infrared measurement
  • KS E ISO 9686-2021 Direct reduced iron-Determination of carbon and/or sulfur-High-frequency combustion method with infrared measurement
  • KS E ISO 9686:2011 Direct reduced iron-Determination of carbon and/or sulfur-High-frequency combustion method with infrared measurement
  • KS E ISO 4689-3:2006 Iron ores-Determination of sulfur content-Part 3:Combustion/infrared method
  • KS D ISO 15350-2023 Steel and iron-Determination of total carbone and sulfur content-Infrared absorption method after combustion in an induction furnace(routine method)
  • KS E ISO 4689-3:2017 Iron ores-Determination of sulfur content-Part 3:Combustion/infrared method
  • KS D ISO 15350-2003(2018) Steel and iron-Determination of total carbone and sulfur content-Infrared absorption method after combustion in an induction furnace(routine method)
  • KS E ISO 4689-3:2022 Iron ores ― Determination of sulfur content ― Part 3: Combustion/infrared method
  • KS D ISO 15350:2003 Steel and iron-Determination of total carbone and sulfur content-Infrared absorption method after combustion in an induction furnace(routine method)
  • KS D ISO 4935-2022 Steel and iron-Determination of total sulphur content-Infrared absorption method after combustion in an induction furnace
  • KS D ISO 4935-2002(2022) Steel and iron-Determination of total sulphur content-Infrared absorption method after combustion in an induction furnace
  • KS D ISO 4935-2002(2017) Steel and iron-Determination of total sulphur content-Infrared absorption method after combustion in an induction furnace
  • KS D ISO 4935:2002 Steel and iron-Determination of total sulphur content-Infrared absorption method after combustion in an induction furnace
  • KS D ISO 9556:2001 Steel and iron-Determination of total carbon content-Infrared absorption method after combustion in an induction furnace
  • KS D ISO 9556-2001(2016) Steel and iron-Determination of total carbon content-Infrared absorption method after combustion in an induction furnace
  • KS D ISO 9556:2021 Steel and iron — Determination of total carbon content — Infrared absorption method after combustion in an induction furnace
  • KS D ISO 13902:2002 Steel and iron-Determination of high sulfur content-Infrared absorption method after combustion in an induction furnace
  • KS D ISO 10719-2006(2016) Steel and iron-Determination of non-combined carbon content-Infrared absorption method after combustion in an induction furnace

British Standards Institution (BSI)

  • PD ISO/TR 9686:2017 Direct reduced iron. Determination of carbon and/or sulfur. High-frequency combustion method with infrared measurement
  • BS ISO 9686:2006 Direct reduced iron - Determination of carbon and/or sulfur - High-frequency combustion method with infrared measurement
  • BS PD ISO/TR 9686:2017 Direct reduced iron. Determination of carbon and/or sulfur. High-frequency combustion method with infrared measurement
  • BS ISO 4689-3:2015 Iron ores. Determination of sulfur content. Combustion/infrared method
  • BS ISO 4689-3:2017 Iron ores. Determination of sulfur content. Combustion/infrared method
  • BS ISO 4689-3:2004 Iron ores - Determination of sulfur content - Combustion/infrared method
  • BS EN ISO 15350:2010 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method)
  • BS EN ISO 15350:2001 Steel and iron. Determination of total carbon and sulfur content. Infrared absorption method after combustion in an induction furnace (routine method)
  • BS EN ISO 9556:2001(2009) Steel and iron — Determination oftotal carbon content — Infrared absorption method after combustion in an induction furnace
  • BS EN ISO 7526:2020 Ferronickels. Determination of sulfur content. Infrared absorption method after induction furnace combustion
  • BS ISO 13093:2023 Titanium and titanium alloys. Determination of carbon. Infrared absorption method after combustion in an induction furnace
  • BS ISO 7524:2020 Ferronickels. Determination of carbon content. Infrared absorption method after induction furnace combustion

GSO

  • BH GSO ISO 9686:2016 Direct reduced iron -- Determination of carbon and/or sulfur -- High-frequency combustion method with infrared measurement
  • GSO ISO 9686:2013 Direct reduced iron -- Determination of carbon and/or sulfur -- High-frequency combustion method with infrared measurement
  • GSO ISO 15350:2013 Steel and iron -- Determination of total carbon and sulfur content -- Infrared absorption method after combustion in an induction furnace (routine method)
  • GSO ISO 4689-3:2013 Iron ores -- Determination of sulfur content -- Part 3: Combustion/infrared method
  • OS GSO ISO 4689-3:2013 Iron ores -- Determination of sulfur content -- Part 3: Combustion/infrared method
  • OS GSO ISO 4935:2015 Steel and iron -- Determination of sulfur content -- Infrared absorption method after combustion in an induction furnace
  • OS GSO ISO 13902:2014 Steel and iron -- Determination of high sulfur content -- Infrared absorption method after combustion in an induction furnace
  • GSO ISO 13902:2014 Steel and iron -- Determination of high sulfur content -- Infrared absorption method after combustion in an induction furnace
  • OS GSO ISO 9556:2015 Steel and iron -- Determination of total carbon content -- Infrared absorption method after combustion in an induction furnace
  • GSO ISO 4935:2015 Steel and iron -- Determination of sulfur content -- Infrared absorption method after combustion in an induction furnace
  • BH GSO ISO 13902:2016 Steel and iron -- Determination of high sulfur content -- Infrared absorption method after combustion in an induction furnace
  • GSO ISO 7526:2013 Nickel, ferronickel and nickel alloys -- Determination of sulfur content -- Infra-red absorption method after induction furnace combustion
  • GSO ISO 9556:2015 Steel and iron -- Determination of total carbon content -- Infrared absorption method after combustion in an induction furnace

International Organization for Standardization (ISO)

  • ISO/TR 9686:2017 Direct reduced iron - Determination of carbon and/or sulfur - High-frequency combustion method with infrared measurement
  • ISO 9686:2006 Direct reduced iron - Determination of carbon and/or sulfur - High-frequency combustion method with infrared measurement
  • ISO 9686:1992 Direct reduced iron; determination of carbon and/or sulfur content; high frequency combustion method with infrared measurement
  • ISO 15350:2000 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method)
  • ISO 4689-3:2004 Iron ores - Determination of sulfur content - Part 3: Combustion/infrared method
  • ISO 4689-3:2017 Iron ores - Determination of sulfur content - Part 3: Combustion/infrared method
  • ISO 4689-3:2015 Iron ores - Determination of sulfur content - Part 3: Combustion/infrared method
  • ISO/PRF 13093:1972 Titanium and titanium alloys — Determination of carbon — Infrared absorption method after combustion in an induction furnace
  • ISO 13093:2023 Titanium and titanium alloys — Determination of carbon — Infrared absorption method after combustion in an induction furnace
  • ISO 4935:1989 Steel and iron; determination of sulfur content; infrared absorption method after combustion in an induction furnace
  • ISO 4935:1990 Steel and iron; determination of sulfur content; infrared absorption method after combustion in an induction furnace
  • ISO 7526:2020 Ferronickels — Determination of sulfur content — Infrared absorption method after induction furnace combustion
  • ISO 7524:2020 Ferronickels — Determination of carbon content — Infrared absorption method after induction furnace combustion
  • ISO 13902:1997 Steel and iron - Determination of high sulfur content - Infrared absorption method after combustion in an induction furnace

KR-KS

  • KS D ISO 15350-2003(2023) Steel and iron-Determination of total carbone and sulfur content-Infrared absorption method after combustion in an induction furnace(routine method)
  • KS E ISO 4689-3-2022 Iron ores ― Determination of sulfur content ― Part 3: Combustion/infrared method
  • KS E ISO 4689-3-2017 Iron ores-Determination of sulfur content-Part 3:Combustion/infrared method
  • KS D ISO 9556-2021 Steel and iron — Determination of total carbon content — Infrared absorption method after combustion in an induction furnace
  • KS D ISO 7526-2022 Ferronickels — Determination of sulfur content — Infrared absorption method after induction furnace combustion
  • KS D ISO 7524-2022 Ferronickels — Determination of carbon content — Infrared absorption method after induction furnace combustion

Association Francaise de Normalisation

  • NF A06-558*NF EN ISO 15350:2010 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method).
  • NF EN ISO 7526:2020 Ferronickels - Determination of sulfur content - Infrared absorption method after combustion in an induction furnace
  • NF A10-621*NF EN ISO 7526:2020 Ferronickels - Determination of sulfur content - Infrared absorption method after induction furnace combustion
  • NF A06-391*NF EN ISO 9556:2001 Steel and iron - Determination of total carbon content - Infrared absorption method after combustion in an induction furnace
  • NF A54-106*NF ISO 7524:2020 Ferronickels - Determination of carbon content - Infrared absorption method after induction furnace combustion
  • NF A06-367*NF EN 24935:1992 Steel and iron. Determination of sulfur content. Infrared absorption method after combustion in an induction furnace.
  • NF ISO 7524:2020 Ferronickels - Determination of carbon content - Infrared absorption method after combustion in an induction furnace

Universal Oil Products Company (UOP)

  • UOP 703-2009 Carbon on Catalysts by Induction Furnace Combustion and Infrared Detection

SCC

  • BS ISO 15350:2001 Steel and iron. Determination of total carbon and sulfur content. Infrared absorption method after combustion in an induction furnace (routine method)
  • DANSK DS/EN ISO 15350:2010 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method)
  • AENOR UNE-EN ISO 15350:2011 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method) (ISO 15350:2000)
  • DANSK DS/ISO 4935:1993 Steel and iron - Determination of sulfur content - Infrared absorption method after combustion in an induction furnace
  • DANSK DS/ISO 7526:2020 Ferronickels – Determination of sulfur content – Infrared absorption method after induction furnace combustion
  • NS-EN ISO 15350:2010 Steel and iron — Determination of total carbon and sulfur content — Infrared absorption method after combustion in an induction furnace (routine method) (ISO 15350:2000)
  • DANSK DS/EN 24935:1993 Steel and iron - Determination of sulfur content - Infrared absorption method after combustion in an induction furnace
  • DANSK DS/EN ISO 9556:2001 Steel and iron - Determination of total carbon content - Infrared absorption method after combustion in an induction furnace
  • 09/30210423 DC BS EN ISO 15350. Steel and iron. Determination of total carbon and sulfur content. Infrared absorption method after combustion in an induction furnace (routine method)
  • NS-EN ISO 7526:2020 Ferronickels — Determination of sulfur content — Infrared absorption method after induction furnace combustion (ISO 7526:2020)
  • DANSK DS/EN ISO 7526:2020 Ferronickels – Determination of sulfur content – Infrared absorption method after induction furnace combustion (ISO 7526:2020)
  • AENOR UNE-EN 24935:1993 Steel and iron - Determination of sulfur content - Infrared absorption method after combustion in an induction furnace (ISO 4935:1989)

American Society for Testing and Materials (ASTM)

  • ASTM UOP703-98 Carbon on Catalysts by Induction Furnace Combustion and Infrared Detection
  • ASTM UOP864-89 Sulfur in Organic and Inorganic Materials by Combustion and IR Detection
  • ASTM C1865-18 Standard Test Method for The Determination of Carbon and Sulfur Content in Plutonium Oxide Powder by the Direct Combustion-Infrared Spectrophotometer
  • ASTM D7573-09 Standard Test Method for Total Carbon and Organic Carbon in Water by High Temperature Catalytic Combustion and Infrared Detection
  • ASTM UOP703-09 Carbon on Catalysts by Induction Furnance Combustion and Infrared Detection

German Institute for Standardization

  • DIN EN ISO 15350:2010-08 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method) (ISO 15350:2000); German version EN ISO 15350:2010
  • DIN EN ISO 9556:2002-04 Steel and iron - Determination of total carbon content - Infrared absorption method after combustion in an induction furnace (ISO 9556:1989); German version EN ISO 9556:2001
  • DIN EN ISO 7526:2020-06 Ferronickels - Determination of sulfur content - Infrared absorption method after induction furnace combustion (ISO 7526:2020); German version EN ISO 7526:2020
  • DIN EN 24935:1992 Determination of sulfur content of steel and iron by infrared absorption spectroscopy after combustion in an induction furnace (ISO 4935:1989); german version EN 24935:1991
  • DIN EN ISO 21789:2020-06 Ferronickels - Determination of sulfur content - Infrared absorption method after induction furnace combustion (ISO 7526:2020); German version EN ISO 7526:2020

Danish Standards Foundation

  • DS/EN ISO 15350:2010 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method)
  • DS/ISO 4935:1993 Steel and iron - Determination of sulfur content - Infrared absorption method after combustion in an induction furnace
  • DS/EN ISO 9556:2001 Steel and iron - Determination of total carbon content - Infrared absorption method after combustion in an induction furnace
  • DS/EN 24935:1993 Steel and iron. Determination of sulfur content. Infrared absorption method after combustion in an induction furnace

Japanese Industrial Standards Committee (JISC)

  • 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

European Committee for Standardization (CEN)

  • EN ISO 15350:2010 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method) (ISO 15350:2000)
  • EN ISO 7526:2020 Ferronickels - Determination of sulfur content - Infrared absorption method after induction furnace combustion (ISO 7526:2020)

VN-TCVN

  • TCVN 4654-3-2009 Iron ores.Determination of sulphur content.Part 3: Combustion/infrared method

ES-UNE

  • UNE-EN ISO 7526:2020 Ferronickels - Determination of sulfur content - Infrared absorption method after induction furnace combustion (ISO 7526:2020) (Endorsed by Asociación Española de Normalización in May of 2020.)

Lithuanian Standards Office

  • LST EN ISO 15350:2010 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method) (ISO 15350:2000)

AENOR

  • UNE-EN ISO 15350:2011 Steel and iron - Determination of total carbon and sulfur content - Infrared absorption method after combustion in an induction furnace (routine method) (ISO 15350:2000)

SE-SIS

  • SIS SS-EN 24 935-1992 Steel and iron — Determination of sulfur content — Infrared absorption method after combustion in an induction furnace

RU-GOST R

  • GOST 34211-2017 Petroleum products. Determination of sulfur by high temperature combustion and detection by infrared (IR) radiation or thermal conductivity (TCD)
  • GOST R ISO 9686-2009 Direct reduced iron. Determination of carbon and/or sulfur content. Method of infrared spectroscopy after sample burning in induction furnace

YU-JUS

  • JUS C.A1.703-1987 Nickel metal, ferronickel and nickel alloys. Determination of carbon content. Infra-red absorption met-hod after induction fumace combustion