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Potential Oxidation Peak Potential

Potential Oxidation Peak Potential, Total:106 items.

In the international standard classification, Potential Oxidation Peak Potential involves: Water quality, Soil quality. Pedology, Analytical chemistry, Edible oils and fats. Oilseeds, Electricity. Magnetism. Electrical and magnetic measurements, Surface treatment and coating, Thermodynamics and temperature measurements, Products of the chemical industry, Corrosion of metals, Iron and steel products, Metrology and measurement in general, Testing of metals, Ferrous metals, Petroleum products in general, Jewellery, IT terminal and other peripheral equipment, Plastics, Natural gas, Construction materials.


American Society for Testing and Materials (ASTM), Potential Oxidation Peak Potential

  • ASTM D1498-93 Standard Practice for Oxidation-Reduction Potential of Water
  • ASTM D1498-00 Standard Practice for Oxidation-Reduction Potential of Water
  • ASTM G59-97 Standard Test Method for Conducting Potentiodynamic Polarization Resistance Measurements
  • ASTM D1498-07 Standard Test Method for Oxidation-Reduction Potential of Water
  • ASTM G59-97e1 Standard Test Method for Conducting Potentiodynamic Polarization Resistance Measurements
  • ASTM G59-97(2009) Standard Test Method for Conducting Potentiodynamic Polarization Resistance Measurements
  • ASTM G5-12 Standard Reference Test Method for Making Potentiostatic and Potentiodynamic Anodic Polarization Measurements
  • ASTM G59-97(2014) Standard Test Method for Conducting Potentiodynamic Polarization Resistance Measurements
  • ASTM E230/E230M-17 Standard Specification for Temperature-Electromotive Force (emf) Tables for Standardized Thermocouples
  • ASTM E230/E230M-11e1 Standard Specification and Temperature-Electromotive Force (emf) Tables for Standardized Thermocouples
  • ASTM E230-98 Standard Specification and Temperature-Electromotive Force (EMF) Tables for Standardized Thermocouples
  • ASTM E230-98e1 Standard Specification and Temperature-Electromotive Force (EMF) Tables for Standardized Thermocouples
  • ASTM E230-03 Standard Specification and Temperature-Electromotive Force (EMF) Tables for Standardized Thermocouples
  • ASTM E230/E230M-12 Standard Specification and Temperature-Electromotive Force (emf) Tables for Standardized Thermocouples
  • ASTM E230/E230M-11 Standard Specification and Temperature-Electromotive Force (emf) Tables for Standardized Thermocouples
  • ASTM B764-04(2009) Standard Test Method for Simultaneous Thickness and Electrode Potential Determination of Individual Layers in Multilayer Nickel Deposit (STEP Test)
  • ASTM D4251-89(2009) Standard Test Method for Active Matter in Anionic Surfactants by Potentiometric Titration
  • ASTM E1899-02 Standard Test Method for Hydroxyl Groups Using Reaction with p-Toluenesulfonyl Isocyanate (TSI) and Potentiometric Titration with Tetrabutylammonium Hydroxide
  • ASTM E1899-08 Standard Test Method for Hydroxyl Groups Using Reaction with p-Toluenesulfonyl Isocyanate (TSI) and Potentiometric Titration with Tetrabutylammonium Hydroxide
  • ASTM G61-86(2003)e1 Standard Test Method for Conducting Cyclic Potentiodynamic Polarization Measurements for Localized Corrosion Susceptibility of Iron-, Nickel-, or Cobalt-Based Alloys
  • ASTM G61-86(2003) Standard Test Method for Conducting Cyclic Potentiodynamic Polarization Measurements for Localized Corrosion Susceptibility of Iron-, Nickel-, or Cobalt-Based Alloys
  • ASTM G61-86(1998) Standard Test Method for Conducting Cyclic Potentiodynamic Polarization Measurements for Localized Corrosion Susceptibility of Iron-, Nickel-, or Cobalt-Based Alloys
  • ASTM G61-86(2014) Standard Test Method for Conducting Cyclic Potentiodynamic Polarization Measurements for Localized Corrosion Susceptibility of Iron-, Nickel-, or Cobalt-Based Alloys
  • ASTM G61-86(2018) Standard Test Method for Conducting Cyclic Potentiodynamic Polarization Measurements for Localized Corrosion Susceptibility of Iron-, Nickel-, or Cobalt-Based Alloys

Danish Standards Foundation, Potential Oxidation Peak Potential

  • DS 239:1984 Chloride. Potentiometric method
  • DS/EN 10071:2013 Chemical analysis of ferrous materials - Determination of manganese in steels and irons - Electrometric titration method
  • DS/EN 31427:1994 Determination of silver in silver jewellery alloys-Volumetric(potentiometric)method using potassium bromide

Association Francaise de Normalisation, Potential Oxidation Peak Potential

  • NF X31-557*NF ISO 11271:2003 Soil quality - Determination of redox potential - Field method.
  • NF T60-273:2009 Animal and vegetable fats and oils - Determination of peroxide value - Potentiometric end-point determination.
  • NF T60-273*NF EN ISO 27107:2010 Animal and vegetable fats and oils - Determination of peroxide value - Potentiometric end-point determination
  • NF T90-082*NF EN ISO 15682:2001 Water quality - Determination of chloride by flow analysis (CFA and FIA) and photometric or potentiometric detection
  • NF A05-326*NF EN ISO 12732:2008 Corrosion of metals and alloys - Electrochemical potentiokinetic reactivation measurement using the double loop method (based on Cihal's method)
  • NF P18-310-14*NF EN 480-14:2006 Admixtures for concrete, mortar and grout - Test methods - Part 14 : determination of the effect on corrosion susceptibility of reinforcing steel by potentiostatic electro-chemical test.

German Institute for Standardization, Potential Oxidation Peak Potential

  • DIN ISO 11271:2003 Soil quality - Determination of redox potential - Field method (ISO 11271:2002)
  • DIN IEC 60746-5:1996 Expression of performance of electrochemical analyzers - Part 5: Oxidation-reduction potential or redox potential (IEC 60746-5:1992)
  • DIN EN ISO 12732:2008 Corrosion of metals and alloys - Electrochemical potentiokinetic reactivation measurement using the double loop method (based on Cihal's method) (ISO 12732:2006); German version EN ISO 12732:2008
  • DIN 51796:2010 Testing of liquid mineral hydrocarbons - Determination of mercaptan sulfur content - Potentiometric method
  • DIN EN ISO 27107:2009 Animal and vegetable fats and oils - Determination of peroxide value - Potentiometric end-point determination (ISO 27107:2008); German version EN ISO 27107:2008
  • DIN EN ISO 27107:2010 Animal and vegetable fats and oils - Determination of peroxide value - Potentiometric end-point determination (ISO 27107:2008, corrected version 2009-05-15); German version EN ISO 27107:2010
  • DIN EN ISO 6326-3:1998 Natural gas - Determination of sulfur compounds - Part 3: Determination of hydrogen sulfide, mercaptan sulfur and carbonyl sulfide sulfur by potentiometry (ISO 6326-3:1989); German version EN ISO 6326-3:1997

International Electrotechnical Commission (IEC), Potential Oxidation Peak Potential

  • IEC 60746-5:1992 Expression of performance of electrochemical analyzers; part 5: oxidation-reduction potential or redox potential

International Organization for Standardization (ISO), Potential Oxidation Peak Potential

  • ISO 11271:2002 Soil quality - Determination of redox potential - Field method
  • ISO 2376:1972 Anodization (anodic oxidation) of aluminium and its alloys; Insulation check by measurement of breakdown potential
  • ISO 27107:2008 Animal and vegetable fats and oils - Determination of peroxide value - Potentiometric end-point determination
  • ISO 23052:2020 Anodizing of aluminium and its alloys — Test method for chemical resistance of anodic oxidation coatings on aluminium and its alloys using electromotive force apparatus
  • ISO 12732:2006 Corrosion of metals and alloys - Electrochemical potentiokinetic reactivation measurement using the double loop method (based on Cihal's method)
  • ISO 15682:2000 Water quality - Determination of chloride by flow analysis (CFA and FIA) and photometric or potentiometric detection
  • ISO 6326-3:1989 Natural gas; determination of sulfur compounds; part 3: determination of hydrogen sulfide, mercaptan sulfur and carbonyl sulfide sulfur by potentiometry

Korean Agency for Technology and Standards (KATS), Potential Oxidation Peak Potential

  • KS I ISO 11271:2006 Soil quality-Determination of redox potential-Field method
  • KS I ISO 11271:2016 Soil quality-Determination of redox potential-Field method
  • KS D ISO 17475:2008 Corrosion of metals and alloys-Electrochemical test methods-Guidelines for conducting potentiostatic and potentiodynamic polarization measurements
  • KS D ISO 17475:2017 Corrosion of metals and alloys-Electrochemical test methods-Guidelines for conducting potentiostatic and potentiodynamic polarization measurements
  • KS M ISO 6227:2002 Chemical products for industrial use-General method for determination of chloride ions-Potentiometric method
  • KS M ISO 6227:2017 Chemical products for industrial use — General method for determination of chloride ions — Potentiometric method
  • KS I ISO 15682:2006 Water quality-Determination of chloride by flow analysis(CFA and FIA) and photometric or potentiometric detection
  • KS I ISO 6326-3:2006 Natural gas-Determination of sulfur compounds-Part 3:Determination of hydrogen sulfide, mercaptan sulfur and carbonyl sulfide sulfur by potentiometry

RU-GOST R, Potential Oxidation Peak Potential

  • GOST R ISO 27107-2010 Animal and vegetable fats and oils. Determination of peroxide value by potentiometric end-point determination
  • GOST ISO 1279-2015 Essential oils. Method for determination of carbonyl value. Potentiometric methods using hydroxylammonium chloride
  • GOST 8.639-2014 State system for ensuring the uniformity of measurements. Measuring electrodes for oxidation - reduction potential determination (ORP). Verification procedure

FI-SFS, Potential Oxidation Peak Potential

  • SFS 3027 E-1976 In the event of any differences in interpretation of this standard the Finnish version shall take precedence over this translation.

British Standards Institution (BSI), Potential Oxidation Peak Potential

  • BS EN ISO 27107:2010 Animal and vegetable fats and oils - Determination of peroxide value - Potentiometric end-point determination
  • BS ISO 27107:2008 Animal and vegetable fats and oils - Determination of peroxide value - Potentiometric end-point determination
  • BS ISO 1279:2001 Essential oils - Determination of carbonyl value - Potentiometric methods using hydroxylammonium chloride
  • 19/30371190 DC BS ISO 23052. Anodizing of aluminium and its alloy. Test methods of chemical resistance of anodic oxidation coatings on aluminium and its alloys using electromotive force apparatus
  • BS EN ISO 17475:2006 Corrosion of metals and alloys. Electrochemical test methods. Guidelines for conducting potentiostatic and potentiodynamic polarization measurements
  • BS EN ISO 17475:2008 Corrosion of metals and alloys - Electrochemical test methods - Guidelines for conducting potentiostatic and potentiodynamic polarization measurements
  • BS EN ISO 12732:2008 Corrosion of metals and alloys - Electrochemical potentiokinetic reactivation measurement using the double loop method (based on Cihal's method)
  • BS 6068 Sec.2.10:1984 Water quality. Physical, chemical and biochemical methods. Determination of ammonium: potentiometric method
  • BS ISO 13756:1997 Determination of silver in silver jewellery alloys - Volumetric (potentiometric) method using sodium chloride or potassium chloride
  • BS ISO 13756:1998 Determination of silver in silver jewellery alloys - Volumetric (potentiometric) method using sodium chloride or potassium chloride
  • BS ISO 13756:2015 Jewellery. Determination of silver in silver jewellery alloys. Volumetric (potentiometric) method using sodium chloride or potassium chloride
  • BS EN 480-14:2006 Admixtures for concrete, mortar and grout - Test methods - Determination of the effect on corrosion susceptibility of reinforcing steel by potentiostatic electro-chemical test
  • BS EN ISO 182-3:2000 Plastics - Determination of the tendency of compounds and products based on vinyl chloride homopolymers and copolymers to evolve hydrogen chloride and any other acidic products at elevated temperatures - Conductometric method
  • BS EN ISO 182-4:2000 Plastics - Determination of the tendency of compounds and products based on vinyl chloride homopolymers and copolymers to evolve hydrogen chloride and any other acidic products at elevated temperatures - Potentiometric method
  • BS EN ISO 182-3:1993 Plastics. Determination of the tendency of compounds and products based on vinyl chloride homopolymers and copolymers to evolve hydrogen chloride and any other acidic products at elevated temperatures. Conductometric method

TR-TSE, Potential Oxidation Peak Potential

  • TS 2393-1976 ANODIZATION (ANODIC OXIDATION) OF ALUMINI?M AND ITS ALLOYS INSULATION CHECK BY MEASUREMENT OF BREAKDOWN POTENTIAL

YU-JUS, Potential Oxidation Peak Potential

  • JUS H.G8.079-1983 Reagents. SOdium chloride. Measurement of pH. Potentiometric method
  • JUS H.G8.430-1990 Reagents. Potassium iodide. Measurement of pH. Potentiometric method
  • JUS H.G8.100-1984 Reagents. Potassium chloride. Measurementof pH Potentiometric method
  • JUS H.G8.260-1987 Reagents. Barium chloride dihydrste. Measurement ofpH. Potentiometric method
  • JUS H.G8.179-1983 Reagents. Potassium dicyanoaurate (I). Determination of copper content. Potentiometric method
  • JUS H.G8.366-1989 Reagents. Nlckel(II) chloride hexahydrate. Measurement of pH. Potentiometrlc method
  • JUS H.P8.049-1985 Testing of pesticides. s-Triazines. Determination ofchloride content. Potenciometrk method
  • JUS H.G8.177-1983 Reagents. Potassium dicyanoaurate (i). Determination of free cyanide content. Potentiometric method
  • JUS H.B8.631-1981 Sulphuric acid and oleum for industri/al use. Determination of chlorides content. Potentiometric method

European Committee for Standardization (CEN), Potential Oxidation Peak Potential

  • EN ISO 27107:2008 Animal and vegetable fats and oils - Determination of peroxide value - Potentiometric end-point determination
  • EN ISO 27107:2010 Animal and vegetable fats and oils - Determination of peroxide value - Potentiometric end-point determination (ISO 27107:2008, corrected version 2009-05-15)
  • EN 10071:2012 Chemical analysis of ferrous materials - Determination of manganese in steels and irons - Electrometric titration method
  • EN ISO 12732:2008 Corrosion of metals and alloys - Electrochemical potentiokinetic reactivation measurement using the double loop method (based on Cihal's method)
  • EN ISO 182-4:2000 Plastics - Determination of the tendency of compounds and products based on vinyl chloride homopolymers and copolymers to evolve hydrogen chloride and any other acidic products at elevated temperatures - Part 4: Potentiometric method (ISO 182-4:1993)
  • EN ISO 15682:2001 Water Quality - Determination of Chloride by Flow Analysis (CFA and FIA) and Photometric or Potentiometric Detection
  • EN ISO 6326-3:1997 Natural Gas - Determination of Sulfur Compounds - Part 3: Determination of Hydrogen Sulfide, Mercaptan Sulfur and Carbonyl Sulfide Sulfur by Potentiometry

NL-NEN, Potential Oxidation Peak Potential

  • NEN 6578-1985 Rain water - Potentiometric determination of total inorganic fluoride content
  • NEN 6589-1990 Rainwater- Potentiometric determination of total inorganic fluoride content by flow injection analysis

American National Standards Institute (ANSI), Potential Oxidation Peak Potential

  • ANSI/ASTM E230:2012 Specification and Temperature-Electromotive Force (EMF) Tables for Standardized Thermocouples
  • ANSI/SCTE 137-4-2010 Edge Resource Manager Interface for Modular Cable Modem Termination Systems

ZA-SANS, Potential Oxidation Peak Potential

  • SANS 5224:2006 Chloride content of soap products (potentiometric method)

Japanese Industrial Standards Committee (JISC), Potential Oxidation Peak Potential

  • JIS G 0580:2003 Method of electrochemical potentiokinetic reactivation ratio measurement for stainless steels

BE-NBN, Potential Oxidation Peak Potential

  • NBN T 04-133-1983 Higher alcohols for industrial use - Determination of car-boiiyl compounds content - Potentiometric method
  • NBN T 04-308-1983 Urea for industrial use - Measurement of the variation of pH in the presence of formaldehyde - Potentiometric method
  • NBN T 04-307-1983 Urea for industrial use - Determination of the puffer confficent - Potentiometric method
  • NBN T 02-207-1984 Chemical products for industrial use - General method for determination of chloride ions - Potentiometric method
  • NBN T 03-443-1983 Cryolite, natural and artificial, and aluminium fluoride for industrial use - Determination of water content - Electrometrie method
  • NBN-EN 10071-1992 Chemical analysis of ferrous materials. Determination of manganese in steels and irons. Electrometric titration method

Lithuanian Standards Office , Potential Oxidation Peak Potential

  • LST EN 10071-2013 Chemical analysis of ferrous materials - Determination of manganese in steels and irons - Electrometric titration method

AENOR, Potential Oxidation Peak Potential

  • UNE-EN 10071:2012 Chemical analysis of ferrous materials - Determination of manganese in steels and irons - Electrometric titration method




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