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Field methane detection

Field methane detection, Total:121 items.

In the international standard classification, Field methane detection involves: Air quality, Mining equipment, Alarm and warning systems, Linear and angular measurements, Occupational safety. Industrial hygiene, Biology. Botany. Zoology, Astronomy. Geodesy. Geography, Rubber, Coals, Water quality, Fuels, Vocabularies, Electrical equipment for working in special conditions, Analytical chemistry, Metalliferous minerals, Sugar. Sugar products. Starch, Petroleum products in general, Natural gas, Raw materials for rubber and plastics, General methods of tests and analysis for food products, FOOD TECHNOLOGY, Measurement of volume, mass, density, viscosity.


National Metrological Verification Regulations of the People's Republic of China, Field methane detection

  • JJG(煤炭) 11-1998 Verification Regulation of Methane-Oxygen Detector
  • JJG(煤炭) 12-1998 Verification Regulation of Methane-Carbon Monoxide Detector
  • JJG 677-1996 Verification Regulation of Interference Type Methane Measuring Device
  • JJG(煤炭) 06-1996 Verification Regulation of The Measure for Interference Type Methane Measuring Device
  • JJG 678-1996 Verification Regulation of Catelysis Combustion Type Methane Measuring Device
  • JJG 678-2007 Catalysis Combustion Iype Methane Measuring Device
  • JJG(煤炭) 5-1988 Verification rules for methane detectors based on the principle of light interference
  • JJG 1040-2008 Verification Regulation of Digital Measuring Device for Optical Interference Methane Detector
  • JJG(煤炭) 4-1988 Verification rules for catalytic combustion principle methane detector

Korean Agency for Technology and Standards (KATS), Field methane detection

  • KS E 4090-2013 Portable type methane gas detector
  • 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 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
  • KS I ISO 14965:2022 Air quality — Determination of total non-methane organic compounds — Cryogenic preconcentration and direct flame ionization detection method
  • KS C IEC 61779-3:2003 Electrical apparatus for the detection and measurement of flammable gases- Part 3:Performance requirements for groupⅠapparatus indicating a volume fraction up to 100% methane in air

Professional Standard-Safe Production, Field methane detection

  • AQ 6209-2007 Digital methane detecting and alarm miner's lamp
  • AQ/T 6209-2007 Digital methane detection and alarm miner's lamp
  • AQ 6202-2006 Coal mina carrier catalytic element for methane detection
  • AQ/T 6202-2006 Carrier catalytic element for coal mine methane detection
  • AQ 6207-2007 Portable Carrier Catalytic methane alarm detector
  • AQ/T 6207-2007 Portable carrier catalytic methane detection and alarm instrument

Military Standard of the People's Republic of China-General Armament Department, Field methane detection

  • GJB 533.31-1991 Detection method of air components in submarine cabin 2-Determination of methylpentane, heptane, methylcyclohexane, octane, nonane and decane content chromatography/mass spectrometry
  • GJB 533.31A-2021 Methods for detection of air components in submarine cabins - Part 31: Determination of the contents of 2-methylpentane, heptane, methylcyclohexane, octane, nonane and decane by chromatography/mass spectrometry
  • GJB 533.26-1988 Detection methods for 45 components of submarine cabin air. Determination of methanol, ethanol, acetaldehyde, and methylene chloride content by gas chromatography.
  • GJB 533.28-1988 Detection methods for 45 components of submarine cabin air. Determination of benzene, toluene, ethylbenzene, xylene, and 1,2-dichloroethane content by gas chromatography.
  • GJB 533.22-1988 Detection method for 45 components of submarine cabin air. Determination of hydrogen, oxygen, nitrogen and methane content by gas chromatography.
  • GJB 533.29-1988 Detection method for 45 components of submarine cabin air. Determination of Freon-11, chloroform, and carbon tetrachloride content by gas chromatography.

Group Standards of the People's Republic of China, Field methane detection

  • T/NMRJ 005-2023 Specification for detection and inspection of laser methane sensors for mining
  • T/CIPR 117-2023 Internet of Things Valve Well Methane Detection Alarm Device

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Field methane detection

  • GB/T 13486-2014 Portable heating catalytic methane alarm detector
  • GB 13486-2014 Portable heating catalytic methane alarm detector
  • GB 13486-2000 Portable heating catalytic methane alarm detector
  • GB/T 18932.18-2003 Method for the determination of hydroxymethylfurfural in honey-HPLC-UV detection method

Professional Standard - Coal, Field methane detection

  • MT 281-1994 Carrier catalytic element for coal mine methane detection

Guangdong Provincial Standard of the People's Republic of China, Field methane detection

  • DB44/T 2400-2022 Technical regulations for monitoring the wild population of Chinese pangolin

邯郸市, Field methane detection

Professional Standard - Commodity Inspection, Field methane detection

  • SN/T 2933-2011 Methods for the detection of chloroform, benzene, carbon tetrachloride, chloropicrin, nitrobenzene and dichlorotoluene in cosmetics

Professional Standard - Environmental Protection, Field methane detection

  • HJ 1012-2018 Ambient air and stationary source emission--Specifications and test procedures for total hydrocarbons, methane and nonmethane hydrocarbons portable monitoring instrument
  • HJ 1013-2018 Technical requirements and detection methods for continuous monitoring system of non-methane total hydrocarbons in waste gas from stationary pollution sources

Beijing Provincial Standard of the People's Republic of China, Field methane detection

  • 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

AENOR, Field methane detection

  • UNE 22301:1992 APPARATUS FOR THE DETECTION AND MEASUREMENT OF METHANE TO 5% IN UNDERGROUND MINES.
  • 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 77251:2003 Air quality -- Determination of total non-methane organic compounds -- Cryogenic preconcentration and direct flame ionization detection method.

German Institute for Standardization, Field methane detection

  • DIN 18723-2:1990 Field procedure for precision testing of surveying instruments; levels
  • DIN 18723-3:1990 Field procedure for precision testing of surveying instruments; theodolites
  • DIN 18723-7:1990 Field procedure for precision testing of surveying instruments; gyroscopes
  • DIN 18723-4:1990 Field procedure for precision testing of surveying instruments; optical distance measuring instruments
  • DIN 18723-1:1990 Field procedure for precision testing of surveying instruments; general information
  • DIN 18723-5:1990 Field procedure for precision testing of surveying instruments; plumbing instruments
  • DIN 18723-6:1990 Field procedure for precision testing of surveying instruments; electro-optical distance measuring instruments for short ranges
  • DIN 51422-1:1989 Testing of mineral oil hydrocarbons and similar liquids; determination of the grade of purity by gas-chromatography; n-heptane, iso-octane and toluene
  • DIN 51422-2:2004-09 Testing of mineral products - Determination of grade of purity by gaschromatography - Part 2: Cetane and 1-Methyl-naphthaline
  • 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 51422-2:2004 Testing of mineral products - Determination of grade of purity by gaschromatography - Part 2: Cetane and 1-Methyl-naphthaline
  • DIN EN 12396-3:2000 Non-fatty foods - Determination of dithiocarbamate and thiuram disulfide residues - Part 3: UV-spectrometric xanthogenate method; German version EN 12396-3:2000

Shandong Provincial Standard of the People's Republic of China, Field methane detection

  • 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

国家质量监督检验检疫总局, Field methane detection

  • SN/T 4906-2017 Determination of alkylphenol disulfide in rubber by liquid chromatography-ultraviolet detection method

Guizhou Provincial Standard of the People's Republic of China, Field methane detection

  • DB52/T 1213-2017 Code for safety inspection of in-use optical interferometric methane detectors in coal mines

Association of German Mechanical Engineers, Field methane detection

  • VDI 2466 Blatt 2-2008 Gaseous emission measurement - Measurement of methane - Automatic method - Flame ionisation detector (FID)
  • VDI 3481 Blatt 4-2007 Gaseous emission measurement - Measurement of the concentrations of total organic carbon and methane carbon using the flame ionisation detector (FID)
  • VDI 2459 Blatt 1-2000 Gaseous emission measurement - Determination of carbon monoxide concentration using flame ionisation detection after reduction to methane

American Society for Testing and Materials (ASTM), Field methane detection

  • ASTM D8028-17 Standard Test Method for Measurement of Dissolved Gases Methane, Ethane, Ethylene, and Propane by Static Headspace Sampling and Flame Ionization Detection (GC/FID)
  • ASTM E878-12 Standard Test Method for Determination of Titanium in Iron Ores and Related Materials by Diantipyrylmethane Ultraviolet Spectrophotometry
  • ASTM E878-20 Standard Test Method for Determination of Titanium in Iron Ores and Related Materials by Diantipyrylmethane Ultraviolet Spectrophotometry
  • ASTM E878-01 Standard Test Method for Determination of Titanium in Iron Ores and Related Materials by Diantipyrylmethane Untraviolet Spectrometry
  • ASTM E878-96 Standard Test Method for Determination of Titanium in Iron Ores and Related Materials by Diantipyrylmethane Untraviolet Spectrometry
  • ASTM E878-01(2005) Standard Test Method for Determination of Titanium in Iron Ores and Related Materials by Diantipyrylmethane Ultraviolet Spectrometry
  • ASTM E878-11 Standard Test Method for Determination of Titanium in Iron Ores and Related Materials by Diantipyrylmethane Ultraviolet Spectrometry
  • ASTM D5953M-96(2001) Standard Test Method for Determination of Non-Methane Organic Compounds (NMOC) in Ambient Air Using Cryogenic Preconcentration and Direct Flame Ionization Detection Method (Metric)
  • ASTM D5953M-23 Standard Test Method for Determination of Non-methane Organic Compounds (NMOC) in Ambient Air Using Cryogenic Preconcentration and Direct Flame Ionization Detection
  • ASTM D5953M-96 Standard Test Method for Determination of Non-Methane Organic Compounds (NMOC) in Ambient Air Using Cryogenic Preconcentration and Direct Flame Ionization Detection Method (Metric)
  • ASTM D5953M-96(2009) Standard Test Method for Determination of Non-Methane Organic Compounds (NMOC) in Ambient Air Using Cryogenic Preconcentration and Direct Flame Ionization Detection Method (Metric)
  • ASTM D5953M-16 Standard Test Method for Determination of Non-methane Organic Compounds (NMOC) in Ambient Air Using Cryogenic Preconcentration and Direct Flame Ionization Detection

Association Francaise de Normalisation, Field methane detection

  • NF EN ISO 25140:2010 Émissions de sources fixes - Méthode automatique pour la détermination de la concentration en méthane par détection à ionisation de flamme (FID)
  • 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).
  • NF C23-579-35-1*NF EN 60079-35-1:2011 Explosive atmospheres - Part 35-1 : caplights for use in mines susceptible to firedamp - General requirements - Construction and testing in relation to the risk of explosion.

RU-GOST R, Field methane detection

  • GOST R ISO 25140-2017 Stationary source emissions. Automatic method for the determination of the methane concentration using flame ionisation detection
  • GOST R 52137-2003 Electrical apparatus for the detection and measurement of flammable gases. Part 2. Performance requirements for group I apparatus indicating a volume fraction up to 5 % methane in air
  • GOST R 52138-2003 Electrical apparatus for the detection and measurement of flammable gases. Part 3. Performance requirements for group I apparatus indicating a volume fraction up to 100 % methane in air

Danish Standards Foundation, Field methane detection

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

KR-KS, Field methane detection

European Committee for Standardization (CEN), Field methane detection

  • EN 252:1989 Field Test Method for Determining the Relative Protection Effectiveness of a Wood Preservative in Ground Contact

International Organization for Standardization (ISO), Field methane detection

  • ISO 14965:2000 Air quality - Determination of total non-methane organic compounds - Cryogenic preconcentration and direct flame ionization detection method
  • ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
  • ISO/CD 2620 Analysis of natural gas — Biomethane — Determination of VOCs by thermal desorption gas chromatography with flame ionization and/or mass spectrometry detectors
  • ISO/DIS 2620:2023 Analysis of natural gas — Biomethane — Determination of VOCs by thermal desorption gas chromatography with flame ionization and/or mass spectrometry detectors

HU-MSZT, Field methane detection

Lithuanian Standards Office , Field methane detection

  • 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)

Professional Standard - Chemical Industry, Field methane detection

  • HG/T 2686-1995 Determination of Trace Hydrogen, Oxygen, Methane, Carbon Monoxide in Inert Gases Gas Chromatography with Zirconia Detector

British Standards Institution (BSI), Field methane detection

  • BS EN ISO 25140:2010 Stationary source emissions. Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
  • BS 6020-3:1982 Instruments for the detection of combustible gases - Specification for safety and performance requirements for Group I instruments reading up to 100% methane
  • BS EN 12341:1999 Air quality - Determination of the PM10 fraction of suspended particulate matter - Reference method and field test procedure to demonstrate reference equivalence of measurement methods
  • BS EN 50056:1991 Specification for electrical apparatus for the detection and measurement of combustible gases. Performance requirements for Group I apparatus indicating up to 100 % (V/V) methane
  • BS EN 12396-3:2000 Non-fatty foods - Determination of dithiocarbamate and thiuram disulfide residues - UV spectrometric xanthogenate method
  • BS 6020-2:1981 Instruments for the detection of combustible gases - Specification for safety and performance requirements for Group I instruments reading up to 5% methane in air
  • BS EN 50055:1991 Electrical apparatus for the detection and measurement of combustible gases. Performance requirements for Group I apparatus indicating up to 5 % (V/V) methane in air
  • BS EN 50055:1999 Electrical apparatus for the detection and measurement of combustible gases. Performance requirements for Group I apparatus indicating up to 5 % (V/V) methane in air
  • BS EN 50056:1999 Electrical apparatus for the detection and measurement of combustible gases. Performance requirements for Group I apparatus indicating up to 100% (V/V) methane in air
  • BS EN 61779-2:2000 Electrical apparatus for the detection and measurement of flammable gases - Performance requirements for group I apparatus indicating a volume fraction up to 5% methane in the air
  • BS EN 61779-3:2000 Electrical apparatus for the detection and measurement of flammable gases - Performance requirements for group I apparatus indicating a volume fraction up to 100% methane in air

Heilongjiang Provincial Standard of the People's Republic of China, Field methane detection

  • DB23/T 2077-2018 Determination of sodium dodecylbenzenesulfonate in water by high performance liquid chromatography separation with ultraviolet detection

SE-SIS, Field methane detection

  • SIS SS-EN 50 055-1992 Electrical apparatusfor the detection and measurement ofcombustible gases - Performance requirements for Group I apparatus indicating upto5% (v/v) methane in air
  • SIS SS-EN 50 056-1992 Electrical apparatus for the detection and measurement of combustible gases — Performance requireménts for Group I apparatus indicating up to 100 % (v/v) methane

Fujian Provincial Standard of the People's Republic of China, Field methane detection

  • 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

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, Field methane detection

  • GB/T 35772-2017 Rapid detection of phthalate esters in polyvinyl chloride products—Infra-red spectrometric method

国家能源局, Field methane detection

  • SY/T 7657.2-2021 Determination of natural gas using photoacoustic spectroscopy-infrared spectroscopy-fuel cell combined method Part 2: Determination of methane content by photoacoustic spectroscopy

Professional Standard - Agriculture, Field methane detection

  • 313药典 三部-2020 Biological Activity-Potency Determination Method 3502 Hepatitis A Inactivated Vaccine Relative Potency Test Method in Vitro
  • 265药典 四部-2015 3500 Biological Activity-Potency Determination Method 3502 Hepatitis A Inactivated Vaccine Relative Potency Test Method in Vitro
  • 260药典 四部-2020 3500 Biological Activity-Potency Determination Method 3502 Hepatitis A Inactivated Vaccine Relative Potency Test Method in Vitro
  • 284药典 三部-2015 Biological Activity-Potency Determination Method 3502 Hepatitis A Inactivated Vaccine Relative Potency Test Method in Vitro General Rules 120

BE-NBN, Field methane detection

  • NBN-EN 50055-1993 Electrical apparatus for the detection and measurement of combustible gases. Performance requirements for Group I apparatus indicating up to 5 % (v/v) methane in air
  • NBN-EN 50056-1993 Electrical apparatus for the detection and measurement of combustible gases. Performance requirements for Group I apparatus indicating up to 100 % (v/v) methane in air

YU-JUS, Field methane detection

  • JUS F.S3.138-1982 Testing (Quantitative analysis) mixtures of fibres. Binary mixtures of triacetate and certain other fibres. Dichloromethane method
  • JUS F.S3.138/1-1992 Testing (Quantitative analysis) of fibres mixtures. Binary mixtures of triacetate and certain other fibres. Dichloromethane method. Amendments

CENELEC - European Committee for Electrotechnical Standardization, Field methane detection

  • EN 61779-3:2000 Electrical Apparatus for the Detection and Measurement of Flammable Gases - Part 3: Performance Requirements for Group I Apparatus Indicating a Volume Fraction Up to 100% Methane in Air

Hebei Provincial Standard of the People's Republic of China, Field methane detection

  • DB13/T 5189.3-2020 Detection of Hazardous Components in Natural Plant Extracts Part 3: Determination of Residues of 5 Organic Solvents, n-Hexane, Acetone, Ethyl Acetate, Methanol and Ethanol




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