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Database: 365,228(8 Aug 2026)

Flame Ion Detection

Flame Ion Detection, Total:76 items.

The international standard classification for "Flame Ion Detection" includes: Other standards related to optics and optical measurements , Phenols .

The Chinese standard classification for "Flame Ion Detection" includes: chromatograph , General organic chemicals , Fuel oil .


Professional Standard - Machinery

  • JB/T 9361-1999 Test method for flame ionization detector of gas chromatography

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

  • GB/T 32193-2015 Standard practice for testing flame ionization detectors used in gas or supercritical fluid chromatography
  • GB 20077663-T-604 Flame ionization detector test method for gas chromatography/supercritical fluid chromatography
  • GB/T 45372-2025 Determination of phenols in liquid products from coal chemical industry—Comprehensive two dimensional gas chromatography-mass spectrometry/hydrogen flame ionization detector

Professional Standard - Commodity Inspection

  • SN/T 3695.1-2014 Determination of mirex in electrical and electronic products - Part 1: Gas chromatography - Method by flame ionization detector

Professional Standard - Petrochemical Industry

  • SH/T 0720-2002 Standard test method for determination of oxygenates in gasoline by gas chromatography and oxygen selective flame ionization detection

Shandong Provincial Standard of the People's Republic of China

  • DB37/T 4078-2020 Continuous monitoring of volatile organic compounds in ambient air by gas chromatography-hydrogen flame ionization detector/mass spectrometry detector

Fujian Provincial Standard of the People's Republic of China

  • DB35/T 1913-2020 Determination of non-methane total hydrocarbons in exhaust gas from stationary pollution sources Portable catalytic oxidation-hydrogen flame ionization detector method

Swedish Institute for Standards

  • SS-ISO 14965:2000 Air quality - Determination of total non-methane organic compounds - Cryogenic preconcentration and direct flame ionization detection method
  • ASTM E594-11 Standard Practice for Testing Flame Ionization Detectors Used in Gas or Supercritical Fluid Chromatography
  • SS-EN 17057:2018 Automotive fuels and fat and oil derivates - Determination of saturated monoglycerides content in Fatty Acid Methyl Esters (FAME) - Method by GC-FID
  • SS-EN 12619:2013 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method
  • SS-EN ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID) (ISO 25140:2010)

Association Francaise de Normalisation

  • NF X43-328:1999 Stationary source emissions. Determination of the mass concentration of total gaseous organic carbon at low concentrations in flue gases. Continuous flame ionisation detector method.
  • NF EN ISO 25140:2010 Emissions from stationary sources - Automatic method for the determination of methane concentration by flame ionization detection (FID)
  • NF EN 12619:2013 Emissions from stationary sources - Determination of total organic carbon mass concentration - Continuous flame ionization detector method
  • NF T90-124:2019 Water quality - Determination of the volatile hydrocarbon index - Head-space gas chromatographic method with flame ionisation detector
  • NF X43-353*NF EN ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID).

Association of German Mechanical Engineers

  • VDI 2466 Blatt 2-2007 Messen gasfoermiger Emissionen - Messen von Methan - Automatisches Verfahren - Flammenionisationsdetektor (FID)
  • VDI 2466 Blatt 2-2008 Gaseous emission measurement - Measurement of methane - Automatic method - Flame ionisation detector (FID)
  • VDI 3481 Blatt 1-1975 Messung gasfoermiger Emissionen; Messen der Kohlenwasserstoff-Konzentration; Flammen-Ionisations-Detektor (FID)
  • VDI 3483 BLATT 1-1979 Measuring gaseous emissions; measuring the sum of organic substances with a flame ionization detector (FID); basics
  • VDI 3860 Blatt 3-2011 Measurement of landfill gas - Measurement of surface emissions using the flame ionisation detector (FID)
  • VDI 3481 BLATT 4-2007 Measuring gaseous emissions — Measuring the concentrations of total C and methane C using the flame ionization detector (FID)
  • VDI 3481 Blatt 4-2004 Gaseous emission measurement - Measurement of the concentrations of total organic carbon and methane carbon using the flame ionisation detector (FID)
  • VDI 3481 BLATT 4-2007 Measuring gaseous emissions — Measuring the concentrations of total C and methane C using the flame ionization detector (FID)
  • VDI 2459 BLATT 1-2000 Measuring gaseous emissions — Measuring carbon monoxide concentration using a flame ionization detector after reduction to methane
  • VDI 3483 BLATT 1-1979 Measuring gaseous emissions; measuring the sum of organic substances with a flame ionization detector (FID); basics
  • VDI 2459 BLATT 1-2000 Measuring gaseous emissions — Measuring carbon monoxide concentration using a flame ionization detector after reduction to methane
  • VDI 3481 BLATT 3-1995 Measuring gaseous emissions — Measuring volatile organic compounds, especially solvents, using the flame ionization detector (FID)
  • VDI 2459-1-00 Gas emission measurements Carbon monoxide concentration determination method (by reduction to methane using flame ionization detector)

American Society for Testing and Materials (ASTM)

  • ASTM D7423-09 Standard Test Method for Determination of Oxygenates in C2, C3, C4, and C5 Hydrocarbon Matrices by Gas Chromatography and Flame Ionization Detection
  • ASTM E594-96 Standard Practice for Testing Flame Ionization Detectors Used in Gas or Supercritical Fluid Chromatography
  • ASTM E594-96(2019) Standard Practice for Testing Flame Ionization Detectors Used in Gas or Supercritical Fluid Chromatography
  • ASTM UOP990-11 Organic Analysis of Distillate by Comprehensive Two-Dimensional Gas Chromatography with Flame Ionization Detection
  • ASTM D5599-17 Standard Test Method for Determination of Oxygenates in Gasoline by Gas Chromatography and Oxygen Selective Flame Ionization Detection
  • ASTM D5599-18 Standard Test Method for Determination of Oxygenates in Gasoline by Gas Chromatography and Oxygen Selective Flame Ionization Detection
  • ASTM RR-D02-1359 1995 D5599-Standard Test Method for Determination of Oxygenates in Gasoline by Gas Chromatography and Oxygen Selective Flame Ionization Detection
  • ASTM RR-D02-1340 1994 D5599-Standard Test Method for Determination of Oxygenates in Gasoline by Gas Chromatography and Oxygen Selective Flame Ionization Detection

CZ-CSN

  • CSN 83 4741-1984 Air pollution prevention. Emission measurement of organic compounds. FID method for continuous measurement of the sum of hydrocarbons.

PL-PKN

  • PN Z04207-03-1990 Air punty protection Tests for mercaptans Determination of ethyl mercaptan n work places by gas chromatography ith flame ionization detection
  • PN Z04207-04-1992 Air purity protection Tests for mercaptans Determination of methyl mercaptan n work places by gas chromatography with flame ionization detection

Korean Agency for Technology and Standards (KATS)

  • KS I ISO 25140-2012(2017) Stationary source emissions-Automatic method for the determination of the methane concentration using flame ionization detection(FID)
  • KS I ISO 25140-2022 Stationary source emissions — Automatic method for the determination of the methane concentration using flame ionization detection(FID)
  • KS I ISO 25140:2022 Stationary source emissions — Automatic method for the determination of the methane concentration using flame ionization detection(FID)
  • KS I ISO 14965:2007 Air quality-Determination of total non-methane organic compounds-Cryogenic preconcentration and direct flame ionization detection method
  • KS I ISO 14965:2017 Air quality-Determination of total non-methane organic compounds-Cryogenic preconcentration and direct flame ionization detection method

Gosstandart of Russia

  • GOST R ISO 25140-2017 Stationary source emissions. Automatic method for the determination of the methane concentration using flame ionisation detection
  • GOST 33900-2016 Gasoline. Determination of oxygenates content by gas chromatography method with oxygen selective flame ionization detection
  • GOST R 56867-2016 Hydrocarbons C2-C5. Determination of oxygenates by gas chromatography using a flame ionization detector

US-CFR-file

  • CFR 40-1065.260-2014 Protection of Environment. Part1065:Engine-testing procedures. Section1065.260:Flame-ionization detector.
  • CFR 40-1065.267-2014 Protection of Environment. Part1065:Engine-testing procedures. Section1065.267:Gas chromatograph with a flame ionization detector.

Danish Standards Foundation

  • DS/EN ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
  • DANSK DS/EN ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
  • DS/EN 12619:2013 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method
  • DANSK DS/EN 12619:2013 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method

Ente Nazionale Italiano di Unificazione

  • UNI EN ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
  • UNI EN 12619:2013 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method
  • EC 1-2013 UNI EN 12619:2013 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method

International Organization for Standardization (ISO)

  • ISO 14965:2000 Air quality - Determination of total non-methane organic compounds - Cryogenic preconcentration and direct flame ionization detection method
  • ISO 14965 Air quality - Determination of total non-methane organic compounds - Cryogenic preconcentration and direct flame ionization detection method

Spanish Association for Standardization (UNE)

  • UNE-EN ISO 25140:2011 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID) (ISO 25140:2010)
  • UNE-EN 12619:2013 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method
  • UNE 77251:2003 Air quality -- Determination of total non-methane organic compounds -- Cryogenic preconcentration and direct flame ionization detection method.

Universal Oil Products Company (UOP)

  • UOP 990-2011 Organic Analysis of Distillate by Comprehensive Two-Dimensional Gas Chromatography with Flame Ionization Detection

German Institute for Standardization

  • DIN EN 12619:1999 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method
  • DIN EN 12619:2013-04 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method; German version EN 12619:2013
  • DIN EN ISO 25140:2010-12 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID) (ISO 25140:2010); German version EN ISO 25140:2010
  • DIN EN 12619:1999-09 Determination of the mass concentration of total gaseous organic carbon at low concentrations in flue gases - Continuous flame ionisation detector method

Standards Norway

  • NS-EN ISO 25140:2010 Stationary source emissions — Automatic method for the determination of the methane concentration using flame ionisation detection (FID) (ISO 25140:2010)
  • NS-EN 12619:2013 Stationary source emissions — Determination of the mass concentration of total gaseous organic carbon — Continuous flame ionisation detector method

Lithuanian Standards Office

  • LST EN ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID) (ISO 25140:2010)

British Standards Institution (BSI)

  • 08/30142566 DC BS EN ISO 25140. Stationary source emissions. Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
  • BS EN ISO 25140:2010 Stationary source emissions. Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
  • 11/30238654 DC BS EN 12619. Stationary source emissions. Determination of the mass concentration of total gaseous organic carbon. Continuous flame ionisation detector method

European Committee for Standardization (CEN)

  • EN ISO 20122:2024 Vegetable oils - Determination of mineral oil saturated hydrocarbons (MOSH) and mineral oil aromatic hydrocarbons (MOAH) with online-coupled high performance liquid chromatography-gas chromatography-flame ionization detection (HPLC-GC-FID) analysis - Meth