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Advantages and Disadvantages of Hydrogen Flame Ionization Detector

Advantages and Disadvantages of Hydrogen Flame Ionization Detector, Total:45 items.

The international standard classification for "Advantages and Disadvantages of Hydrogen Flame Ionization Detector" includes: Transport exhaust emissions , Cadmium, cobalt and their alloys , Bases , Other standards related to optics and optical measurements , Ambient atmospheres .

The Chinese standard classification for "Advantages and Disadvantages of Hydrogen Flame Ionization Detector" includes: Piston type internal combustion engine and other power equipment in general , Heavy metals and their alloys analysis method , Inorganic acid and alkali , chromatograph , Analysis methods for toxic substances in atmosphere , Fuel oil .


Group Standards of the People's Republic of China

  • T/GZTPA 0010-2021 Gas Chromatography Hydrogen Flame Ionization Method for Detection of Soluble Sugar in Guizhou Tea
  • T/ZSZJX 010-2023 Ambient air-Determination of 104 volatile organic compounds Collected in canisters and analyzed by gas chromatography-hydrogen flameionization detector/mass spectrometry
  • T/SDZDH 001-2020 Calibration method of portable volatile organic compound hydrogen flame ionization analyzer
  • T/ZZB 1574-2020 Portable explosion-proof analyzer for volatile organic gas (hydrogen flame ionization detector)

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

  • GB/T 11200.3-1989 Membrane process sodium hydroxide; Determination of calcium contents-Flame atomic absorption method
  • GB/T 8220.7-1998 Methods for chemical analysis of bismuth--Determination of arsenic content--Ion exchange separation-hydride generation-flame atomic absorption spectrophtometric method
  • GB/T 32193-2015 Standard practice for testing flame ionization detectors used in gas or supercritical fluid chromatography
  • GB/T 8193-1987 Diesel engine emissions-Determination of total hydrocarbons-Hydrogen flame ionization method(HFID)

Professional Standard - Machinery

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
  • SN/T 2005.3-2006 Determination of polybromobiphenyls and polybromobiphenyl in electrical and electronic equipment - Part 3: GC-FID method

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

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
  • DB37/T 3922-2020 Determination of total hydrocarbons, methane and non-methane total hydrocarbons in exhaust gas from stationary pollution sources Portable catalytic oxidation-hydrogen flame ionization detector method
  • DB37/T 4434-2021 Ambient air—Determination of 57 kinds of ozone precursor compounds—Collected inspecially-prepared canisters and analyzed by gas chromatography-flame ionization detector/mass spectrometer

Beijing Provincial Standard of the People's Republic of China

  • DB11/T 1367-2016 Determination of methane/total hydrocarbons/non-methane total hydrocarbons in exhaust gas from stationary pollution sources Portable hydrogen flame ionization detector method

National Metrological Technical Specifications of the People's Republic of China

  • JJF(石化) 033-2020 Calibration Specification for Portable Volatile Organic Compounds Leak Detector (Hydrogen Flame Ion Method)
  • JJF(石化)033-2020 Calibration Specification for Portable Volatile Organic Compounds Leak Detector (Hydrogen Flame Ion Method)

Professional Standard - Non-ferrous Metal

  • YS/T 536.7-2006 Bismuth Chemical Analysis Method Ion Exchange Separation-Hydride Generation-Flame Atomic Absorption Spectrometry Determination of Arsenic

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

未注明发布机构

  • ASTM RR-D02-1827 2016 D7423-Test Method for Determination of Oxygenates in C2, C3, C4, and C5 Hydrocarbon Matrices by Gas Chromatography and Flame Ionization Detection

VDI - Verein Deutscher Ingenieure

  • VDI 3481 Blatt 1-1975 Messung gasfoermiger Emissionen; Messen der Kohlenwasserstoff-Konzentration; Flammen-Ionisations-Detektor (FID)
  • VDI 2466 Blatt 2-2007 Messen gasfoermiger Emissionen - Messen von Methan - Automatisches Verfahren - Flammenionisationsdetektor (FID)

RU-GOST R

  • GOST R 56867-2016 Hydrocarbons C2-C5. Determination of oxygenates by gas chromatography using a flame ionization detector
  • GOST R 57975.1-2017 Associated oil gas. Determination of composition by gas chromatography method. Part 1. Determination of hydrocarbons C1-C8+ and inorganic gases content by flame ionization detector and thermal conductivity detector

American Society for Testing and Materials (ASTM)

  • ASTM D7675-11 Standard Test Method for Test Method for the Determination of Total Hydrocarbons in Hydrogen by FID Based Total Hydrocarbon (THC) Analyzer
  • ASTM E594-96 Standard Practice for Testing Flame Ionization Detectors Used in Gas or Supercritical Fluid Chromatography

Association Francaise de Normalisation

  • NF T90-124:2019 Water quality - Determination of the volatile hydrocarbon index - Head-space gas chromatographic method with flame ionisation detector
  • NF EN 12619:2013 Emissions from stationary sources - Determination of total organic carbon mass concentration - Continuous flame ionization detector method
  • 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).

SCC

  • VDI 3481 BLATT 3-1995 Measuring gaseous emissions — Measuring volatile organic compounds, especially solvents, using the flame ionization detector (FID)
  • VDI 3483 BLATT 1-1979 Measuring gaseous emissions; measuring the sum of organic substances with a flame ionization detector (FID); basics
  • VDI 3481 BLATT 4-2007 Measuring gaseous emissions — Measuring the concentrations of total C and methane C using the flame ionization detector (FID)
  • 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)

Association of German Mechanical Engineers

  • VDI 2466 Blatt 2-2008 Gaseous emission measurement - Measurement of methane - Automatic method - Flame ionisation detector (FID)
  • VDI 3860 Blatt 3-2011 Measurement of landfill gas - Measurement of surface emissions using the flame ionisation detector (FID)

Standard Association of Australia (SAA)

  • AS 4625:2005 Electronic flame safeguards and flame detectors

UNKNOWN

  • GB 20077663-T-604 Flame ionization detector test method for gas chromatography/supercritical fluid chromatography

US-CFR-file

  • CFR 40-1065.260-2014 Protection of Environment. Part1065:Engine-testing procedures. Section1065.260:Flame-ionization detector.

CZ-CSN

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

British Standards Institution (BSI)

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

YU-JUS

  • JUS H.G8.417-1991 Reagents. Sodium hvdroxide. Determination of zine, calcium, magnesirun and potassium contents. Flame atomic absorption metho?