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nanotracer analysis

nanotracer analysis, Total:85 items.

In the international standard classification, nanotracer analysis involves: Physics. Chemistry, Inorganic chemicals, Analytical chemistry, Materials for the reinforcement of composites, Optical equipment, Vocabularies, Medical equipment, Products of the chemical industry, Testing of metals, Character sets and information coding, Paper and board, Air quality.


British Standards Institution (BSI), nanotracer analysis

  • BS PD ISO/TS 11308:2020 Tracked Changes. Nanotechnologies. Characterization of carbon nanotube samples using thermogravimetric analysis
  • PD ISO/TS 11308:2020 Nanotechnologies. Characterization of carbon nanotube samples using thermogravimetric analysis
  • BS DD ISO/TS 11308:2011 Nanotechnologies. Characterization of single-wall carbon nanotubes using thermogravimetric analysis
  • PD CEN ISO/TS 21362:2021 Nanotechnologies. Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • PD ISO/TS 23690:2023 Nanotechnologies. Multiwall carbon nanotubes. Determination of carbon impurity content by thermogravimetric analysis
  • BS PD CEN ISO/TS 12025:2015 Nanomaterials. Quantification of nano-object release from powders by generation of aerosols
  • PD IEC TS 62607-9-1:2021 Nanomanufacturing. Key control characteristics. Traceable spatially resolved nano-scale stray magnetic field measurements. Magnetic force microscopy
  • PD ISO/TR 14187:2020 Surface chemical analysis. Characterization of nanostructured materials
  • PD CEN ISO/TS 21357:2023 Tracked Changes. Nanotechnologies. Evaluation of the mean size of nano-objects in liquid dispersions by static multiple light scattering (SMLS)
  • BS DD ISO/TS 11251:2010 Nanotechnologies. Characterization of volatile components in single-wall carbon nanotube samples using evolved gas analysis/gas chromatograph-mass spectrometry
  • DD ISO/TS 10798:2011 Nanotechnologies. Characterization of single-wall carbon nanotubes using scanning electron microscopy and energy dispersive X-ray spectrometry analysis
  • PD ISO/TS 11251:2019 Nanotechnologies. Characterization of volatile components in single-wall carbon nanotube samples using evolved gas analysis/gas chromatograph-mass spectrometry
  • BS ISO 24417:2022 Surface chemical analysis. Analysis of metallic nanolayers on iron based substrates by glow-discharge optical-emission spectrometry
  • BS ISO 1762:2019 Tracked Changes. Paper, board, pulps and cellulose nanomaterials. Determination of residue (ash content) on ignition at 525 °C
  • BS PD ISO/TR 23173:2021 Surface chemical analysis. Electron spectroscopies. Measurement of the thickness and composition of nanoparticle coatings
  • PD ISO/TR 23173:2021 Surface chemical analysis. Electron spectroscopies. Measurement of the thickness and composition of nanoparticle coatings
  • BS ISO 2144:2019 Tracked Changes. Paper, board, pulps and cellulose nanomaterials. Determination of residue (ash content) on ignition at 900 °C
  • BS DD ISO/TS 10798:2011 Nanotechnologies. Characterization of single-wall carbon nanotubes using scanning electron microscopy and energy dispersive X-ray spectrometry analysis
  • 21/30405786 DC BS ISO 24417. Surface chemical analysis. Analysis of metallic nanolayers on iron based substrates by glow-discharge optical-emission spectrometry

American Society for Testing and Materials (ASTM), nanotracer analysis

  • ASTM E2834-12(2018) Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Nanoparticle Tracking Analysis (NTA)
  • ASTM E2834-12(2022) Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Nanoparticle Tracking Analysis (NTA)
  • ASTM E2834-12 Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Nanoparticle Tracking Analysis (NTA)
  • ASTM E2524-08 Standard Test Method for Analysis of Hemolytic Properties of Nanoparticles
  • ASTM E2524-22 Standard Test Method for Analysis of Hemolytic Properties of Nanoparticles
  • ASTM E2524-08(2013) Standard Test Method for Analysis of Hemolytic Properties of Nanoparticles
  • ASTM E290-22 Standard Test Methods for Bend Testing of Material for Ductility
  • ASTM E2909-13 Standard Guide for Investigation/Study/Assay Tab-Delimited Format for Nanotechnologies (ISA-TAB-Nano): Standard File Format for the Submission and Exchange of Data on Nanomaterials and Characterizations
  • ASTM D8526-23 Standard Test Method for Analytical Procedure Using Transmission Electron Microscopy for the Determination of the Concentration of Carbon Nanotubes and Carbon Nanotube-containing Particles in Ambient

GOSTR, nanotracer analysis

  • PNST 307-2018 Nanotechnologies. Single-wall carbon nanotubes. Characterization using thermogravimetric analysis
  • GOST 34445-2018 Nanomaterials. Nanostructured oxide magnesium. Technical requirements and test (analysis) methods
  • GOST 34444-2018 Nanomaterials. Nanostructured hydroxide magnesium. Technical requirements and test (analysis) methods

Danish Standards Foundation, nanotracer analysis

  • DS/ISO/TS 11308:2012 Nanotechnologies - Characterization of single-wall carbon nanotubes using thermogravimetric analysis
  • DS/ISO/TS 21362:2020 Nanotechnologies – Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • DS/CEN ISO/TS 21362:2021 Nanotechnologies – Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)
  • DS/ISO/TS 11251:2011 Nanotechnologies – Characterization of volatile components in single-wall carbon nanotube samples using evolved gas analysis/gas chromatograph-mass spectrometry
  • DS/ISO/TS 10798:2011 Nanotechnologies - Charaterization of single-wall carbon nanotubes using scanning electron microscopy and energy dispersive X-ray spectrometry analysis

International Organization for Standardization (ISO), nanotracer analysis

  • ISO/TS 11308:2020 Nanotechnologies — Characterization of carbon nanotube samples using thermogravimetric analysis
  • ISO/TS 11308:2011 Nanotechnologies - Characterization of single-wall carbon nanotubes using thermogravimetric analysis
  • ISO/TS 23690:2023 Nanotechnologies — Multiwall carbon nanotubes — Determination of carbon impurity content by thermogravimetric analysis
  • ISO/TS 21362:2018 Nanotechnologies — Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • ISO/TR 14187:2011 Surface chemical analysis - Characterization of nanostructured materials
  • ISO/TR 14187:2020 Surface chemical analysis — Characterization of nanostructured materials
  • ISO/TS 11251:2010 Nanotechnologies - Characterization of volatile components in single-wall carbon nanotube samples using evolved gas analysis/gas chromatograph-mass spectrometry
  • ISO/TS 10798:2011 Nanotechnologies - Charaterization of single-wall carbon nanotubes using scanning electron microscopy and energy dispersive X-ray spectrometry analysis
  • ISO/TS 11251:2019 Nanotechnologies — Characterization of volatile components in single-wall carbon nanotube samples using evolved gas analysis/gas chromatograph-mass spectrometry
  • ISO 18516:2019 Surface chemical analysis — Determination of lateral resolution and sharpness in beam based methods with a range from nanometres to micrometres
  • ISO/TR 23173:2021 Surface chemical analysis - Electron spectroscopies - Measurement of the thickness and composition of nanoparticle coatings
  • ISO 24417:2022 Surface chemical analysis — Analysis of metallic nanolayers on iron based substrates by glow-discharge optical-emission spectrometry

European Committee for Standardization (CEN), nanotracer analysis

  • EN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)

IT-UNI, nanotracer analysis

  • UNI CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation

Association Francaise de Normalisation, nanotracer analysis

  • XP T16-222*XP CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • XP CEN ISO/TS 21362:2021 Nanotechnologies - Analyse des nano-objets par fractionnement par couplage flux-force asymétrique et à force centrifuge
  • FD T16-203:2011 Nanotechnologies - Characterization of single-wall carbon nanotubes using scanning electron microscopy and energy dispersive X-ray spectrometry analysis

ES-UNE, nanotracer analysis

  • UNE-CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018) (Endorsed by Asociación Española de Normalización in May of 2021.)

Professional Standard - Chemical Industry, nanotracer analysis

PH-BPS, nanotracer analysis

  • PNS ISO 19007:2021 Nanotechnologies - In vitro MTS assay for measuring the cytotoxic effect of nanoparticles
  • PNS ISO/TS 11308:2021 Nanotechnologies - Characterization of carbon nanotube samples using thermogravimetric analysis

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, nanotracer analysis

  • GB/T 36065-2018 Nanotechnologies—Analysis of amorphous carbon, ash and volatile of carbon nanotubes—Thermogravimetry
  • GB/T 34916-2017 Nanotechnologies—Multi-walled carbon nanotubes—Determination of amorphous carbon content by thermogravimetric analysis
  • GB/T 33498-2017 Surface chemical analysis—Characterization of nanostructured materials

AT-ON, nanotracer analysis

  • ONR CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)

Lithuanian Standards Office , nanotracer analysis

  • LST CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)

German Institute for Standardization, nanotracer analysis

  • DIN CEN ISO/TS 21362:2021-07 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018); German version CEN ISO/TS 21362:2021
  • DIN CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018); German version CEN ISO/TS 21362:2021
  • DIN ISO 18516:2020-11 Surface chemical analysis - Determination of lateral resolution and sharpness in beam based methods with a range from nanometers to micrometers (ISO 18516:2019); Text in English

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, nanotracer analysis

  • GB/T 18735-2014 Microbeam analysis.General guide for the specification of nanometer thin reference materials for analytical transmission electron microscope (AEM/EDS)
  • GB/T 18735-2002 General specification of nanometer thin standard specimen for analytical transmission electron microscopy(AEM/EDS)
  • GB/T 29189-2012 Thermo gravimetric analysis(TGA) for determination of oxidation temperature and ash content of carbon nanotubes
  • GB/T 38531-2020 Microbeam analysis—Computed tomography (CT) method for micro- and nano-pore structure analysis in tight rock samples

International Electrotechnical Commission (IEC), nanotracer analysis

  • IEC TS 62607-9-1:2021 Nanomanufacturing - Key control characteristics - Part 9-1: Traceable spatially resolved nano-scale stray magnetic field measurements - Magnetic force microscopy
  • IEC TS 62565-4-2:2018 Nanomanufacturing - Material specifications - Part 4-2: Luminescent nanomaterials - Detail specification for general lighting and display applications
  • IEC TS 62607-6-19:2021 Nanomanufacturing - Key control characteristics - Part 6-19: Graphene-based material - Elemental composition: CS analyser, ONH analyser

Group Standards of the People's Republic of China, nanotracer analysis

  • T/JPMA 008-2020 The technical specification practices of medicinal nano-sized iron oxide tracers labeling clinical grade human umbilical cord mesenchymal stem cells
  • T/CI 085-2022 Technical standards for acquisition, processing, transmission, storage and analysis of portable nanopore sequencing data

Korean Agency for Technology and Standards (KATS), nanotracer analysis

  • KS C IEC TS 62565-4-2:2021 Nanomanufacturing — Material specifications — Part 4-2:Luminescent nanomaterials — Detail specification for general lighting and display applications
  • KS D 2711-2008 Evaluation of carbon nanotube soots and non-carbon content-Thermogravimetric analysis
  • KS D 2711-2008(2018) Evaluation of carbon nanotube soots and non-carbon content-Thermogravimetric analysis
  • KS I ISO 28439:2013 Workplace atmospheres ― Characterization of ultrafine aerosols/ nanoaerosols ― Determination of the size distribution and number concentration using differential electrical mobility analysing systems

KR-KS, nanotracer analysis

  • KS C IEC TS 62565-4-2-2021 Nanomanufacturing — Material specifications — Part 4-2:Luminescent nanomaterials — Detail specification for general lighting and display applications
  • KS D 2711-2008(2023) Evaluation of carbon nanotube soots and non-carbon content-Thermogravimetric analysis

IEC - International Electrotechnical Commission, nanotracer analysis

  • TS 62565-4-2-2018 Nanomanufacturing – Material specifications – Part 4-2: Luminescent nanomaterials – Detail specification for general lighting and display applications (Edition 1.0)

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., nanotracer analysis

  • ASHRAE AB-10-021-2010 System Analysis of MPCM Slurry Enhanced with Carbon Nanotubes as Heat Transfer Fluid

国家市场监督管理总局、中国国家标准化管理委员会, nanotracer analysis

  • GB/T 38114-2019 Nanotechnologies—Quantitative analysis of the surface oxygen functional groups on graphene materials—Chemical titration method

RU-GOST R, nanotracer analysis

  • GOST R ISO 28439-2015 Workplace atmospheres. Characterization of ultrafine aerosols/nanoaerosols. Determination of the size distribution and number concentration using differential electrical mobility analysing systems




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