ZH

RU

ES

Solvent peaks in chromatographic analysis

Solvent peaks in chromatographic analysis, Total:68 items.

In the international standard classification, Solvent peaks in chromatographic analysis involves: Paint ingredients, Wastes, Test conditions and procedures in general, Analytical chemistry, Petroleum products in general, Milk and milk products, Nuclear energy engineering, Pesticides and other agrochemicals, Air quality.


German Institute for Standardization, Solvent peaks in chromatographic analysis

  • DIN 53174-2:1992 Solvents for paints, varnishes and similar coating materials; methods of analysis for solvent mixtures; gas chromatographic method
  • DIN 55685:2009 Solvents for paints and varnishes - Alcohols - Gas chromatographic determination of the degree of purity
  • DIN 55683:1994 Solvents for paints and varnishes - Determination of the solvents in coating materials containing organic solvents only - Gaschromatographic method
  • DIN 55688:2006 Solvents for paints and varnishes - Ethylene glycol ethers - Gas chromatographic determination of the degree of purity
  • DIN 55689:2006 Solvents for paints and varnishes - Propylene glycol ethers - Gas chromatographic determination of the degree of purity
  • DIN 51405:2004 Testing of mineral oil hydrocarbons, similar liquids and solvents for paints and varnishes - Analysis by gas chromatography - General working principles
  • DIN 10473:1997 Determination of acid soluble -lactoglobulin content of heat-treated milk - Reversed phase, high performance liquid chromatographic method
  • DIN 51405:2004-01 Testing of mineral oil hydrocarbons, similar liquids and solvents for paints and varnishes - Analysis by gas chromatography - General working principles
  • DIN EN ISO 15366-1:2016-07 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 1: Samples containing plutonium in the microgram ra...
  • DIN EN ISO 15366-2:2016-07 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 2: Samples containing plutonium and uranium in the ...

American Society for Testing and Materials (ASTM), Solvent peaks in chromatographic analysis

  • ASTM D3271-87(2006) Standard Practice for Direct Injection of Solvent-Reducible Paints Into a Gas Chromatograph for Solvent Analysis
  • ASTM D3271-87(1993)e1 Standard Practice for Direct Injection of Solvent-Reducible Paints Into a Gas Chromatograph for Solvent Analysis
  • ASTM D5830-22 Standard Test Method for Solvents Analysis in Hazardous Waste Using Gas Chromatography
  • ASTM D5830-95(2006) Standard Test Method for Solvents Analysis in Hazardous Waste Using Gas Chromatography
  • ASTM D5830-14 Standard Test Method for Solvents Analysis in Hazardous Waste Using Gas Chromatography
  • ASTM D3271-87(2001) Standard Practice for Direct Injection of Solvent-Reducible Paints Into a Gas Chromatograph for Solvent Analysis
  • ASTM D3271-87(2012) Standard Practice for Direct Injection of Solvent-Reducible Paints Into a Gas Chromatograph for Solvent Analysis
  • ASTM D5830-95(2001) Standard Test Method for Solvents Analysis in Hazardous Waste Using Gas Chromatography
  • ASTM D5830-95 Standard Test Method for Solvents Analysis in Hazardous Waste Using Gas Chromatography
  • ASTM D6806-02(2017) Standard Practice for Analysis of Halogenated Organic Solvents and Their Admixtures by Gas Chromatography
  • ASTM D6806-02(2022) Standard Practice for Analysis of Halogenated Organic Solvents and Their Admixtures by Gas Chromatography

GOSTR, Solvent peaks in chromatographic analysis

  • GOST R 57828-2017 Halogenated organic solvents and their admixtures. Gas chromatography method of analysis

Association Francaise de Normalisation, Solvent peaks in chromatographic analysis

  • NF T73-289*NF EN 14667:2005 Surface active agents - Determination of low boiling solvents in liquid formulations - Gas chromatographic method
  • NF M60-421:2000 Nuclear energy - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and dilution analysis by solvent chromatography.
  • NF X43-272-1*NF ISO 16200-1:2001 Workplace air quality - Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography - Part 1 : pumped sampling method.
  • NF ISO 16200-1:2001 Qualité de l'air des lieux de travail - Échantillonnage et analyse des composés organiques volatils par désorption au solvant/chromatographie en phase gazeuse - Partie 1 : méthode d'échantillonnage par pompage
  • NF EN ISO 15366-1:2016 Technologie du combustible nucléaire - Séparation et purification chimiques de l'uranium et du plutonium dans les solutions d'acide nitrique par extraction chromatographique par solvant pour les mesures isotopiques et les analyses par dilution isot...
  • NF EN ISO 15366-2:2016 Technologie du combustible nucléaire - Séparation et purification chimiques de l'uranium et du plutonium dans les solutions d'acide nitrique par extraction chromatographique par solvant pour les mesures isotopiques et les analyses par dilution isot...
  • NF M60-421-1*NF EN ISO 15366-1:2016 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 1 : samples containing plutonium in the microgram rang
  • NF M60-421-1:2015 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 1 : samples containing plutonium in the microgram rang
  • NF M60-421-2*NF EN ISO 15366-2:2016 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 2 : samples containing plutonium and uranium in the na
  • NF M60-421-2:2015 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 2 : samples containing plutonium and uranium in the na

Canadian General Standards Board (CGSB), Solvent peaks in chromatographic analysis

TH-TISI, Solvent peaks in chromatographic analysis

  • TIS 2489.2-2010 Standard test method for thinner.part 2: solvent composition analysis by gas chromatograph

European Committee for Standardization (CEN), Solvent peaks in chromatographic analysis

  • PD CEN/TR 16468:2013 Food analysis - Determination of pesticide residues by GC-MS - Retention times@ mass spectrometric parameters and detector response information
  • EN ISO 15366-2:2016 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 2: Samples containing plutonium and uranium in the nan

Korean Agency for Technology and Standards (KATS), Solvent peaks in chromatographic analysis

  • KS I ISO 16200-2:2006 Workplace air quality-Sampling and analysis of volatile organiccompounds by solvent desorption/gas chromatography-Part 2:Diffusive sampling method
  • KS I ISO 16200-2-2006(2017) Workplace air quality-Sampling and analysis of volatile organiccompounds by solvent desorption/gas chromatography-Part 2:Diffusive sampling method
  • KS I ISO 16200-2:2021 Workplace air quality — Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography —Part 2: Diffusive sampling method
  • KS I ISO 16200-1:2019 Workplace air quality ― Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography ―Part 1: Pumped sampling method
  • KS I ISO 16200-1:2008 Workplace air quality-Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography-Part 1:Pumped sampling method

International Organization for Standardization (ISO), Solvent peaks in chromatographic analysis

  • ISO 16200-2:2000 Workplace air quality - Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography - Part 2: Diffusive sampling method
  • ISO 16200-1:2001 Workplace air quality - Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography - Part 1: Pumped sampling method
  • ISO 15366-2:2014 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 2: Samples containing plutonium and uranium in the nan

British Standards Institution (BSI), Solvent peaks in chromatographic analysis

  • BS ISO 16200-1:2001 Workplace air quality. Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography - Pumped sampling method
  • BS ISO 16200-2:2000 Workplace air quality. Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography - Diffusive sampling method
  • BS ISO 16200-2:2004 Workplace air quality - Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography - Diffusive sampling method
  • BS ISO 16200-1:2004 Workplace air quality - Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography - Pumped sampling method
  • BS EN ISO 15366-1:2016 Nuclear fuel technology. Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Samples containing plutonium in the microgram…
  • BS EN ISO 15366-2:2016 Nuclear fuel technology. Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Samples containing plutonium and uranium in the…
  • BS ISO 15366-2:2014 Nuclear fuel technology. Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography. Samples containing plutonium and uranium in the nanogram rang
  • BS ISO 15366-1:2014 Nuclear fuel technology. Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography. Samples containing plutonium in the microgram range and urani

Japanese Industrial Standards Committee (JISC), Solvent peaks in chromatographic analysis

  • JIS A 1968:2005 Indoor air -- Sampling and analysis of volatile organic compounds by solvent desorption/capillary gas chromatography -- Pumped sampling
  • JIS A 1968:2015 Indoor air -- Sampling and analysis of volatile organic compounds by solvent desorption/capillary gas chromatography -- Pumped sampling
  • JIS A 1969:2005 Indoor air -- Sampling and analysis of volatile organic compounds by solvent desorption/capillary gas chromatography -- Diffusive sampling
  • JIS A 1969:2015 Indoor air -- Sampling and analysis of volatile organic compounds by solvent desorption/capillary gas chromatography -- Diffusive sampling

未注明发布机构, Solvent peaks in chromatographic analysis

  • BS ISO 16200-2:2000(2004) Workplace air quality — Sampling and analysis of volatile organic compounds by solvent desorption / gas chromatography — Part 2 : Diffusive sampling method
  • BS ISO 16200-1:2001(2004) Workplace air quality — Sampling and analysis of volatile organic compounds by solvent desorption / gas chromatography — Part 1 : Pumped sampling method

VN-TCVN, Solvent peaks in chromatographic analysis

  • TCVN 6134-2009 Soil quality.Solvent extractable nonvolatile compounds by high performance liquid omatography/thermospray/mass spectrometry (HPLC/TS/MS) or ultraviolet (UV) detection

KR-KS, Solvent peaks in chromatographic analysis

  • KS I ISO 16200-2-2021 Workplace air quality — Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography —Part 2: Diffusive sampling method
  • KS I ISO 16200-1-2019 Workplace air quality ― Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography ―Part 1: Pumped sampling method

PL-PKN, Solvent peaks in chromatographic analysis

  • PN Z04211-02-1989 Air purity protection Tests for 1,1,1-trichloroethane, freon 11 and white spirit in mixtures Determination of 1,1,1-trichloroethane, freon 11 and- white spirit in work places by gas chromatography

ES-UNE, Solvent peaks in chromatographic analysis

  • UNE 81586:2020 Workplace exposure. Determination of organic vapours in air. Active sampling on activated charcoal tubes, desorption with solvent and analysis by gas chromatography.
  • UNE-EN ISO 15366-1:2016 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 1: Samples containing plutonium in the microgram ra...
  • UNE-EN ISO 15366-2:2016 Nuclear fuel technology - Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography - Part 2: Samples containing plutonium and uranium in the ...

Standard Association of Australia (SAA), Solvent peaks in chromatographic analysis

  • AS 2986.1:2003 Workplace air quality - Sampling and anlysis of volatile organic compounds by solvent desorption/gas chromatography - Pumped sampling method
  • AS 2986.2:2003 Workplace air quality - Sampling and anlysis of volatile organic compounds by solvent desorption/gas chromatography - Diffusive sampling method

Lithuanian Standards Office , Solvent peaks in chromatographic analysis

  • LST ISO 16200-1:2003 Workplace air quality. Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography. Part 1: Pumped sampling method (idt ISO 16200-1:2001)




Copyright ©2007-2023 ANTPEDIA, All Rights Reserved