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Adsorption pore size

Adsorption pore size, Total:21 items.

The international standard classification for "Adsorption pore size" includes: Particle size analysis. sieving .

The Chinese standard classification for "Adsorption pore size" includes: Sieving, Sieve Plate and Sieve Screen , Petroleum geology exploration .


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

  • GB/T 21650.3-2011 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption—Part 3:Analysis of micropores by gas adsorption
  • GB/T 21650.2-2008 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Part 2: Analysis of mesopores and macropores by gas adsorption

Professional Standard - Energy

  • NB/T 14008-2021 Analysis of full-scale pore size distribution of shale-Method combined by mercury porosimetry and gas adsorption
  • NB/T 14008-2015 Analysis of full-scale pore size distribution of shale both by mercury porosimetry and adsorption

Universal Oil Products Company (UOP)

  • UOP 821-1981 Automated Micro Pore Size Distribution of Porous Substances by Nitrogen Adsorption and/or Desorption Using a Micromeritics Analyzer
  • UOP 964-2011 Surface Area, Pore Volume, Average Pore Diameter, and Pore Size Distribution of Porous Materials by Nitrogen Adsorption
  • UOP 425-1986 Surface Area, Pore Volume and Porosity Diameter of Porous Substances by Nitrogen Adsorption

British Standards Institution (BSI)

  • BS ISO 15901-2:2006 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption-Analysis of mesopores and macropores by gas adsorption
  • BS ISO 15901-2:2007 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Analysis of mesopores and macropores by gas adsorption
  • BS ISO 15901-2:2006(2007) Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Analysis of mesopores and macropores by gas adsorption
  • 04/30116586 DC ISO 15901-2. Pore size distribution and porosimetry of materials. Evaluation by mercury posimetry and gas adsorption. Part 2. Analysis of meso-pores and macro-pores by gas adsorption
  • BS ISO 15901-2:2022 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Analysis of nanopores by gas adsorption

Kingdom of Bahrain Testing and Metrology Directorate

  • BH GSO ISO 15901-3:2016 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption -- Part 3: Analysis of micropores by gas adsorption
  • BH GSO ISO 15901-2:2016 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption -- Part 2: Analysis of mesopores and macropores by gas adsorption

International Organization for Standardization (ISO)

  • ISO 15901-2:2006 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Part 2: Analysis of mesopores and macropores by gas adsorption
  • ISO 15901-3:2007 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Part 3: Analysis of micropores by gas adsorption
  • ISO 15901-2:2022 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption — Part 2: Analysis of nanopores by gas adsorption

American Society for Testing and Materials (ASTM)

  • ASTM UOP964-11 Surface Area, Pore Volume, Average Pore Diameter, and Pore Size Distribution of Porous Materials by Nitrogen Adsorption
  • ASTM UOP425-86 Surface Area, Pore Volume and Pore Diameter of Porous Substances by Nitrogen Adsorption

Korean Agency for Technology and Standards (KATS)

  • KS A ISO 15901-2-2024 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption — Part 2: Analysis of nanopores by gas adsorption

Danish Standards Foundation

  • DANSK DS/ISO 15901-2:2022 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption – Part 2: Analysis of nanopores by gas adsorption