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Database: 365,228(8 Aug 2026)

peak area method

peak area method, Total:29 items.

The international standard classification for "peak area method" includes: Surface active agents .

The Chinese standard classification for "peak area method" includes: Basic standards and general methods for chemical additive , Petroleum products in general .


Professional Standard - Petrochemical Industry

  • SH/T 0571-1993 Determination method for zeolite surface area in catalyst

Professional Standard - Energy

  • NB/SH/T 0571-2021 Standard test method for determining microspore volume and zeolite area of a catalyst

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

Taiwan Provincial Standard of the People's Republic of China

American Society for Testing and Materials (ASTM)

  • ASTM D7214-07a Standard Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM D7214-07 Standard Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM D7214-07a(2012) Standard Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM D7214-06 Standard Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM D7214-07a(2019) Standard Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM D7214-20 Standard Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM RR-D02-1591 2005 D7214-Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM D7214-22 Standard Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM D7214-23 Standard Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM RR-D02-1623 2007 D7214-Test Method for Determination of the Oxidation of Used Lubricants by FT-IR Using Peak Area Increase Calculation
  • ASTM D3663-99 Standard Test Method for Surface Area of Catalysts and Catalyst Carriers
  • ASTM D1993-03(2008) Standard Test Method for Precipitated Silica-Surface Area by Multipoint BET Nitrogen Adsorption
  • ASTM D1993-03 Standard Test Method for Precipitated Silica-Surface Area by Multipoint BET Nitrogen Adsorption
  • ASTM RR-D32-1009 1984 D4365-Test Method for Determining Micropore Volume and Zeolite Area of a Catalyst
  • ASTM D1993-03(2013) Standard Test Method for Precipitated Silica-Surface Area by Multipoint BET Nitrogen Adsorption
  • ASTM RR-D32-1006 1983 D3663-Standard Test Method for Surface Area of Catalysts
  • ASTM RR-D32-1031 1992 D3663-Standard Test Method for Surface Area of Catalysts
  • ASTM D4365-13 Standard Test Method for Determining Micropore Volume and Zeolite Area of a Catalyst
  • ASTM D4365-95(2008) Standard Test Method for Determining Micropore Volume and Zeolite Area of a Catalyst

GSO

  • BH GSO ISO 19950:2022 Aluminium oxide primarily used for the production of aluminium — Determination of alpha alumina content — Method using X-ray diffraction net peak areas
  • GSO ISO 19950:2021 Aluminium oxide primarily used for the production of aluminium — Determination of alpha alumina content — Method using X-ray diffraction net peak areas

British Standards Institution (BSI)

  • BS ISO 19950:2015 Aluminium oxide primarily used for the production of aluminium. Determination of alpha alumina content. Method using X-ray diffraction net peak areas

International Organization for Standardization (ISO)

  • ISO 19950:2015 Aluminium oxide primarily used for the production of aluminium - Determination of alpha alumina content - Method using X-ray diffraction net peak areas

SCC

Standard Association of Australia (SAA)

  • AS 2879.4:1991 Alumina - Determination of specific surface area by nitrogen adsorption