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Inorganic mercury in ambient air

Inorganic mercury in ambient air, Total:67 items.

In the international standard classification, Inorganic mercury in ambient air involves: Air quality, Vocabularies, Quality, Analytical chemistry, Nuclear energy engineering, Radiation protection, Radiation measurements, Ceramics, Rotating machinery, Refrigerating technology.


Korean Agency for Technology and Standards (KATS), Inorganic mercury in ambient air

  • KS B 5643-2003 Continuous analyzers for oxidants in ambient air
  • KS B 5645-2008 Automatic moniters for suspended particulate matter in ambient air
  • KS I ISO 17733-2005(2016) Workplace air-Determination of mercury and inorganic mercury compounds-Method by cold-vapour atomic absorption spectrometry or atomic fluorescence spectrometry
  • KS I ISO 17733:2021 Workplace air — Determination of mercury and inorganic mercury compounds — Method by cold-vapour atomic absorption spectrometry or atomic fluorescence spectrometry
  • KS L ISO 15733:2018 Fine ceramics(advanced ceramics, advanced technical ceramics) — Mechanical properties of ceramic composites at ambient temperature in air atmospheric pressure — Determination of tensile properties

Fujian Provincial Standard of the People's Republic of China, Inorganic mercury in ambient air

  • DB35/T 895-2009 Determination of Methmercury, Ethylmercury and Inorganic Mercury in Environmental Samples by High Performance Liquid Chromatography-Inductively Coupled Plasma Spectrometry (HPLC-ICP-MS)

KR-KS, Inorganic mercury in ambient air

  • KS I ISO 17733-2021 Workplace air — Determination of mercury and inorganic mercury compounds — Method by cold-vapour atomic absorption spectrometry or atomic fluorescence spectrometry
  • KS L ISO 15733-2018 Fine ceramics(advanced ceramics, advanced technical ceramics) — Mechanical properties of ceramic composites at ambient temperature in air atmospheric pressure — Determination of tensile properties

Association Francaise de Normalisation, Inorganic mercury in ambient air

  • NF ISO 17733:2016 Air des lieux de travail - Détermination du mercure et des composés inorganiques de mercure - Méthode par spectrométrie d'absorption atomique ou spectrométrie de fluorescence atomique de la vapeur froide
  • NF EN 16909:2017 Air ambiant - Mesurage du carbone élémentaire (EC) et du carbone organique (OC) prélevés sur filtre
  • FD X43-032*FD CEN/TR 17554:2021 Ambient air - Application of EN 16909 for the determination of elemental carbon (EC) and organic carbon (OC) in PM10 and PMcoarse
  • NF M60-766:2004 Nuclear energy - Measurement of radioactivity in the enviromment - Air - Radon 222 : methods for integrated measurement of the average volumic activity of radon in the atmospheric environment, with a passive collection and an deferred analysis.
  • FD CEN/TR 17554:2021 Air ambiant - Application de la norme EN 16909 pour le dosage du carbone élémentaire (EC) et du carbone organique (OC) dans les fractions PM10 et PMgrossière
  • NF B43-356:2006 Advanced technical ceramics - Mechanical properties of ceramic composites at high temperature in air at atmospheric pressure - Determination of fatigue properties at constant amplitude.
  • NF EN ISO 14593:2005 Qualité de l'eau - Évaluation en milieu aqueux de la biodégradabilité aérobie ultime des composés organiques - Méthode par analyse du carbone inorganique dans des récipients hermétiquement clos (Essai au CO2 dans l'espace de tête)
  • XP ISO/TS 21361:2019 Nanotechnologies - Méthode de quantification des concentrations dans l'air de noir de carbone et de silice amorphe à l'échelle nanométrique dans un environnement de fabrication industrielle contenant des mélanges de poussières
  • NF EN ISO 16641:2016 Mesurage de la radioactivité dans l'environnement - Air - Radon 220 : méthode de mesure intégrée pour la détermination de l'activité volumique moyenne avec des détecteurs passifs solides de traces nucléaires
  • NF M60-773:2014 Measurement of radioactivity in the environment - Air - Radon 220 : integrated measurement methods for the determination of the average activity concentration using passive solid-state nuclear track detectors
  • NF B43-356*NF EN ISO 17142:2016 Fine ceramics (advanced ceramics, advanced technical ceramics) - Mechanical properties of ceramic composites at high temperature in air at atmospheric pressure - Determination of fatigue properties at constant amplitude

Association of German Mechanical Engineers, Inorganic mercury in ambient air

  • VDI 2267 Blatt 9-2002 Determination of suspended particulates matter in ambient air - Measurement of the mass concentration of mercury - Sampling by sorption as amalgam and determination by atomic fluorescense spectrometry (AFS) with cold vapour technique
  • VDI 2267 Blatt 8-2000 Determination of suspended particles in ambient air - Measurement of the mass concentration of mercury - Sampling by sorption as amalgam and determination by atomic absorption spectrometry (AAS) with cold vapour technique
  • VDI 3492-2004 Indoor air measurement - Ambient air measurement - Measurement of inorganic fibrous particles - Scanning electron microscopy method
  • VDI 3492-2013 Indoor air measurement - Ambient air measurement - Measurement of inorganic fibrous particles - Scanning electron microscopy method
  • VDI 4220-2011 Quality assurance - Requirements on bodies for the determination of air pollutants at stationary sources and in ambient air
  • VDI 3857 Blatt 2-2014 Assessment values for accumulation of substances in grass cultures caused by ambient air pollution - Orientation values for maximum background levels of selected inorganic air pollutants
  • VDI 2267 Blatt 7-1988 Chemical analysis of particulates in ambient air; determination of thallium and its inorganic compounds as part of the dust precipitation by atomic absorption spectrometry
  • VDI 2100 Blatt 6-2010 Determination of gaseous compounds in ambient air - Determination of indoor air pollutants - Gas chromatographic determination of organic compounds - Practical instructions for the determination of the measurement uncertainty
  • VDI 3957 Blatt 14-2005 Biological measuring techniques for the determination and evaluation of effects of air pollutants on plants (bioindication) - Phytotoxic effect of inorganic fluorides in ambient air - Method of standardised gladiolus exposure
  • VDI 2100 Blatt 2-2010 Determination of gaseous compounds in ambient air - Determination of indoor air pollutants - Gas chromatographic determination of organic compounds - Active sampling by accumulation on activated charcoal - Solvent extraction
  • VDI 2100 Blatt 3-2011 Determination of gaseous compounds in ambient air - Determination of indoor air pollutants - Gas chromatographic determination of organic compounds - Active sampling by accumulation on adsorbents - Thermal desorption
  • VDI 2100 Blatt 5-2007 Determination of gaseous compounds in ambient air - Determination of indoor air pollutants - Gas chromatographic determination of organic compounds - Determination of volatile organic compounds, especially ozone precursors

Standard Association of Australia (SAA), Inorganic mercury in ambient air

Professional Standard - Environmental Protection, Inorganic mercury in ambient air

  • HJ 830-2017 Ambient air -Determination of inorganic elements in ambient particle matter- Wavelength dispersive X-ray fluorescence spectroscopy (WD-XRF) method
  • HJ 829-2017 Ambient air -Determination of inorganic elements in ambient particle matter- Energy dispersive X-ray fluorescence spectroscopy (ED-XRF) method
  • HJ 920-2017 Emergency Monitoring of Inorganic Harmful Gases in Ambient Air with Portable Fourier Transform Infrared Instrument
  • HJ 1004-2018 Determination of organic acids (acetic acid, formic acid and oxalic acid) in ambient air precipitation by ion chromatography

British Standards Institution (BSI), Inorganic mercury in ambient air

  • BS PD CEN/TR 17554:2020 Ambient air. Application of EN 16909 for the determination of elemental carbon (EC) and organic carbon (OC) in PM10 and PMcoarse
  • BS ISO 14966:2002 Ambient air - Determination of numerical concentration of inorganic fibrous particles - Scanning electron microscopy method
  • 18/30375050 DC BS ISO 14966. Ambient air. Determination of numerical concentration of inorganic fibrous particles. Scanning electron microscopy method
  • BS ISO 14965:2000 Ambient air. Determination of total non-methane organic compounds. Cryogenic preconcentration and direct flame ionization detection method
  • BS EN ISO 16641:2016 Measurement of radioactivity in the environment. Air. Radon 220: Integrated measurement methods for the determination of the average activity concentration using passive solid-state nuclear track detectors
  • PD ISO/TS 21361:2019 Nanotechnologies. Method to quantify air concentrations of carbon black and amorphous silica in the nanoparticle size range in a mixed dust manufacturing environment
  • BS ISO 17142:2014 Fine ceramics (advanced ceramics, advanced technical ceramics). Mechanical properties of ceramic composites at high temperature in air at atmospheric pressure. Determination of fatigue properties at constant amplitude
  • BS EN 16440-1:2015 Testing methodologies of refrigerating devices for insulated means of transport. Mechanical cooling device with forced air circulation evaporator with or without heating device

International Organization for Standardization (ISO), Inorganic mercury in ambient air

  • ISO 14966:2019 Ambient air — Determination of numerical concentration of inorganic fibrous particles — Scanning electron microscopy method
  • ISO 14966:2002 Ambient air - Determination of numerical concentration of inorganic fibrous particles - Scanning electron microscopy method
  • ISO 14966:2002/cor 1:2007 Ambient air - Determination of numerical concentration of inorganic fibrous particles - Scanning electron microscopy method; Technical Corrigendum 1
  • ISO/TS 21361:2019 Nanotechnologies — Method to quantify air concentrations of carbon black and amorphous silica in the nanoparticle size range in a mixed dust manufacturing environment
  • ISO 16641:2014 Measurement of radioactivity in the environment - Air - Radon 220: Integrated measurement methods for the determination of the average activity concentration using passive solid-state nuclear track detectors
  • ISO 17142:2014 Fine ceramics (advanced ceramics, advanced technical ceramics) - Mechanical properties of ceramic composites at high temperature in air at atmospheric pressure - Determination of fatigue properties at constant amplitude

国家市场监督管理总局、中国国家标准化管理委员会, Inorganic mercury in ambient air

  • GB/T 35097-2018 Microbeam analysis—Scanning electron microscopy with energy dispersive X-ray spectrosmetry—Determination of numberical concentration of inorganic fibrous particles in ambient air

IT-UNI, Inorganic mercury in ambient air

  • UNI CEN/TR 17554-2021 Ambient air - Application of EN 16909 for the determination of elemental carbon (EC) and organic carbon (OC) in PM10 and PMcoarse

European Committee for Standardization (CEN), Inorganic mercury in ambient air

  • PD CEN/TR 17554:2020 Ambient air - Application of EN 16909 for the determination of elemental carbon (EC) and organic carbon (OC) in PM10 and PMcoarse
  • CEN/TR 17554:2020 Ambient air - Application of EN 16909 for the determination of elemental carbon (EC) and organic carbon (OC) in PM10 and PMcoarse
  • prEN ISO 29461-7:2021 Air filter intake systems for rotary machinery - Test methods - Part 7: Filter element endurance test in fog and mist environments (ISO/DIS 29461-7:2021)
  • EN 16440-1:2015 Testing methodologies of refrigerating devices for insulated means of transport - Part 1: Mechanical cooling device with forced air circulation evaporator with or without heating device

German Institute for Standardization, Inorganic mercury in ambient air

  • DIN CEN/TR 17554:2021-05 Ambient air - Application of EN 16909 for the determination of elemental carbon (EC) and organic carbon (OC) in PM10 and PMcoarse; German version CEN/TR 17554:2020
  • DIN CEN/TR 17554:2021 Ambient air - Application of EN 16909 for the determination of elemental carbon (EC) and organic carbon (OC) in PM10 and PMcoarse; German version CEN/TR 17554:2020

Danish Standards Foundation, Inorganic mercury in ambient air

  • DS/CEN/TR 17554:2020 Ambient air – Application of EN 16909 for the determination of elemental carbon (EC) and organic carbon (OC) in PM10 and PMcoarse

RTCA - RTCA@ Inc., Inorganic mercury in ambient air

  • RTCA DO-339-2012 Aircraft Derived Meteorological Data via Data Link for Wake Vortex@ Air Traffic Management and Weather Applications – Operational Services and Environmental Definition (OSED)

US-CFR-file, Inorganic mercury in ambient air

  • CFR 40-85.515-2014 Protection of Environment. Part85:Control of air pollution from mobile sources. Section85.515:Exemption provisions for intermediate age vehicles/engines.

ES-UNE, Inorganic mercury in ambient air

  • UNE-EN ISO 16641:2016 Measurement of radioactivity in the environment - Air - Radon 220: Integrated measurement methods for the determination of the average activity concentration using passive solid-state nuclear track detectors (ISO 16641:2014)

AT-ON, Inorganic mercury in ambient air

  • OENORM EN ISO 29461-7:2021 Air filter intake systems for rotary machinery - Test methods - Part 7: Filter element endurance test in fog and mist environments (ISO/DIS 29461-7:2021)

American Society for Testing and Materials (ASTM), Inorganic mercury in ambient air

  • 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




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