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Process photometric analysis

Process photometric analysis, Total:173 items.

The international standard classification for "Process photometric analysis" includes: Optics and optical measurements , Aluminium and aluminium alloys , Particle size analysis. sieving , Application of statistical methods , Chemical analysis .

The Chinese standard classification for "Process photometric analysis" includes: Chemical Measurement , Optical Measurement , Heavy metals and their alloys , Sieving, Sieve Plate and Sieve Screen , Electron optics and other physical optics instrument , Mathematics , Basic standards and general methods .


National Metrological Verification Regulations of the People's Republic of China

未注明发布机构

  • SAE J1739-202101 Potential Failure Mode and Effects Analysis in Design (Design FMEA), Potential Failure Mode and Effects Analysis in Manufacturing and Assembly Processes (Process FMEA)
  • DIN ISO 11505 E:2017-09 Surface chemical analysis - General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry
  • SAE AS13004-201708 Process Failure Mode and Effects Analysis (PFMEA) and Control Plans

Group Standards of the People's Republic of China

  • T/CEC 5010-2019 Guide of calculation and analysis for hydraulic transient process of pumped storage power stations

Professional Standard - Military and Civilian Products

  • WJ 2255-1994 Verification Regulations for Photoelectric Gloss Meter
  • WJ 2256-1994 Verification rules for automatic recording spectrophotometer

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

  • GB/T 15445.4-2006 Representation of results of particle size analysis - Part 4: Characterization of a classification process
  • GB/T 6987.31-2001 Aluminium and aluminium alloys-Determination of copper content-Hydrogen peroxide spectrophotometric method

Professional Standard - Machinery

国家市场监督管理总局、中国国家标准化管理委员会

  • GB/T 40681.6-2021 Statistical methods in monitoring process capability and performance—Part 6:Process capability statistics for characteristics following a multivariate normal distribution

Professional Standard - Geology

  • DZ/T 0064.31-2021 Methods of analysis of groundwater quality - Part 31: Determination of manganese content Ammonium persulfate spectrophotometric method

Professional Standard - Aviation

  • HB 5220.13-1995 Method for chemical analysis of superalloys Potassium periodate absorptiometry for determination of manganese content

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

  • GB/T 32997-2016 Surface chemical analysis―General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry

German Institute for Standardization

  • DIN 58960-1:1988-05 Photometers for analytical tests; used physical-chemical basic processes
  • DIN 58960-1:1988 Photometers for analytical tests; used physical-chemical basic processes
  • DIN ISO 11505:2018-02 Surface chemical analysis - General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry (ISO 11505:2012)
  • DIN ISO 11505:2018 Surface chemical analysis - General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry (ISO 11505:2012)
  • DIN 58960-3:1988-05 Photometers for analytical tests; concepts for characterisation of technical properties for absorption photometers
  • DIN 58960-3:1988 Photometers for analytical tests; concepts for characterisation of technical properties for absorption photometers
  • DIN 58960-2:1997 Photometer for analytical tests - Part 2: Technical design; classification, components, concepts
  • DIN 58960-2:1997-05 Photometer for analytical tests - Part 2: Technical design; classification, components, concepts
  • DIN 45631:1991-03 Procedure for calculating loudness level and loudness / Note: To be amended by DIN 45631/A1 (2008-01).
  • DIN 66165-2:1987 Particle size analysis; sieve analysis; procedure

AT-ON

  • ONORM M 6613-2001 Water analysis - Photometric determination of aluminium
  • ONORM M 6610-2000 Water analysis - Photometric determination of dissolved silicate
  • ONORM M 6262-1982 Water analysis, determination of arsenic, spectrophotometric method Analyse des eaux, dosage de l'arsenic, methode spectrophotometrique

TR-TSE

  • TS 752-1969 CHEMICAL ANALYSIS OF ZINC PHOTOMETRIC DETERMINATION OF IRON

US-FCR

GSO

  • GSO ISO 17974:2014 Surface chemical analysis -- High-resolution Auger electron spectrometers -- Calibration of energy scales for elemental and chemical-state analysis
  • GSO ISO 16065-1:2014 Pulps -- Determination of fibre length by automated optical analysis -- Part 1: Polarized light method
  • BH GSO ISO 11505:2017 Surface chemical analysis -- General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry
  • GSO ASTM E958:2021 Standard Practice for Estimation of the Spectral Bandwidth of Ultraviolet-Visible Spectrophotometers
  • OS GSO ISO 16065-2:2014 Pulps -- Determination of fibre length by automated optical analysis -- Part 2: Unpolarized light method
  • BH GSO ASTM E958:2022 Standard Practice for Estimation of the Spectral Bandwidth of Ultraviolet-Visible Spectrophotometers
  • OS GSO ISO 11505:2015 Surface chemical analysis -- General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry
  • GSO ISO 16065-2:2014 Pulps -- Determination of fibre length by automated optical analysis -- Part 2: Unpolarized light method

Association Francaise de Normalisation

  • NF A06-410:1976 Chemical analysis of lead. Spectrophotometric determination of antimony.
  • NF A06-408:1979 Chemical analysis of lead. Spectrophotometric determination of arsenic.
  • NF A06-588:1970 Chemical analysis of aluminium. Spectrophotometric determination of vanadium.
  • NF A10-813:1972 Chemical analysis of ferro-tungsten. Spectrophotometric determination of tin.
  • NF A06-612:1976 Chemical analysis of magnesium. Spectrophotometric determination of copper.
  • NF A06-401:1975 Chemical analysis of lead. Spectrophotometric determination of copper.
  • NF A06-404:1975 Chemical analysis of lead. Spectrophotometric determination of bismuth.
  • NF A10-954:1972 Chemical analysis of ferro-vanadium. Spectrophotometric determination of phosphorus.
  • NF A06-405:1974 Chemical analysis of lead. Spectrophotometric determination of bismuth.
  • NF A06-087:1966 Chemical analysis of manganese ores. Spectrophotometric determination of cobalt.
  • NF A06-103:1969 Chemical analysis of manganese ores. Spectrophotometric determination of phosphorus.
  • NF A10-904:1972 Chemical analysis of ferro-vanadium. Spectrophotometric determination of phosphorus.
  • NF A21-104:1976 Chemical analysis of chromium ores. Determination of phosphorus. Spectrophotometric method.
  • NF A06-827:1968 Chemical analysis of zinc alloys. Spectrophotometric determination of titanium.
  • NF C46-251-6*NF EN 61207-6:2015 Expression of performance of gas analyzers - Part 6 : photometric analyzers
  • NF A06-107:1970 Chemical analysis of manganese ores. Spectrophotometric determination of copper.
  • NF A06-823:1967 Chemical analysis of zinc alloys. Spectrophotometric determination of iron.
  • NF A10-404:1986 Chemical analysis of ferro-chromium. Determination of phosphorus content. Spectrophotometric method.
  • NF A06-094:1962 Chemical analysis of manganese ores. Spectrophotometric determination of titanium.
  • NF A06-095:1966 Chemical analysis of manganese ores. Spectrophotometric determination of vanadium.
  • NF A10-504:1986 Chemical analysis of silico-chromium. Determination of phosphorus content. Spectrophotometric method.
  • NF C46-256:1994 Expression of performance of gas analysers. Part 6 : photometric analyzers.
  • NF A10-204:1986 Chemical analysis of ferro-manganese. Determination of phosphorus content. Spectrophotometric method.
  • NF A06-303:1962 Chemical analysis of steel and cast iron. Spectrophotometric determination of manganese.
  • NF T20-002:1966 Standard plan for methods of chemical analysis by flame emission spectrophotometry.
  • NF A10-104:1986 Chemical analysis of ferro-silicon. Determination of phosphorus content. Spectrophotometric method.
  • NF A06-563:1971 Chemical analysis of aluminium alloys. Spectrophotometric determination of antimony
  • NF A06-716:1970 Chemical analysis of copper and copper alloys. Spectrophotometric determination of manganese.
  • NF A06-613:1976 Chemical analysis of magnesium and magnesium alloys. Spectrophotometric determination of copper.
  • NF A06-717:1983 Chemical analysis of copper and copper alloys. Spectrophotometric determination of arsenic.
  • NF A06-576:1966 Chemical analysis of aluminium and aluminium alloys. Spectrophotometric determination of manganese.
  • NF A06-802:1971 Chemical analysis of zinc and its alloys. Spectrophotometric determination of tin.
  • NF A06-622:1984 Chemical analysis of magnesium and magnesium alloys. Spectrophotometric determination of manganese.
  • NF A06-714:1968 Chemical analysis of copper and its alloys. Spectrophotometric determination of aluminium.
  • NF A06-568:1971 Chemical analysis of aluminium and aluminium alloys. Spectrophotometric determination of tin.
  • NF A06-584:1984 Chemical analysis of aluminium and aluminium alloys. Spectrophotometric determination of berrylium.
  • NF A06-571:1964 Chemical analysis of aluminium and aluminium alloys. Spectrophotometric determination of iron.
  • NF A10-304:1986 Chemical analysis of silico-manganese. Determination of phosphorus content. Spectrophotometric method.
  • NF A06-606:1984 Chemical analysis of magnesium and magnesium alloys. Spectrophotometric determination of iron.
  • NF A06-574:1966 Chemical analysis of aluminium and aluminium alloys. Spectrophotometric determination of titanium
  • NF A06-569:1972 Chemical analysis of aluminium and aluminium alloys. Spectrophotometric determination of tin.
  • NF A06-586:1965 Chemical analysis of aluminium and aluminium alloys. Spectrophotometric determination of boron.
  • NF A06-616:1981 Chemical analysis of magnesium and magnesium alloys. Spectrophotometric determination of nickel.
  • NF A06-583:1984 Chemical analysis of aluminium and aluminium alloys. Spectrophotometric determination of bismuth.
  • NF A06-582:1959 Chemical analysis of aluminium and aluminium alloys. Colorimetric determination of zirconium.
  • NF A06-624:1984 Chemical analysis of magnesium and magnesium alloys. Spectrophotometric determination of zirconium.
  • NF A06-713:1970 Chemical analysis of copper and its alloys. Spectrophotometric determination of silicon.
  • NF X11-660:1983 Granulométrie - Analyse granulométrique par microscopie optique - Généralités sur le microscope.
  • NF A06-089:1966 Chemical analysis of manganese ores. Spectrophotometric and volumetric determination of chromium.
  • NF A06-313:1987 Chemical analysis of steel and cast iron. Determination of titanium content. Spectrophotometric method.
  • NF A06-804:1968 Chemical analysis of zinc and its alloys. Spectrophotometric determination of cadmium.
  • NF A06-323:1987 Chemical analysis of steels. Determination of nitrogen content. Molecular absorption spectrophotometric method.
  • NF T01-035:1979 Molecular absorption spectrophotometry. Spectrophotometers and photometers. Record card. Standard layout.
  • NF T20-253:1968 Chemical analysis of hydrochloric, nitric and sulphuric acids. Spectrophotometric determination of iron.
  • NF A06-800:1968 Chemical analysis of zinc and its alloys. Spectrophotometric determination of copper (cuprazon method).
  • NF ISO 9276-4:2001 Representation of data obtained by particle size analysis - Part 4: characterization of a sorting process

CZ-CSN

  • CSN 42 1211-1986 The sampling of technical iron for spectrometric and chemical analysis
  • CSN 35 6535-1983 Electronic measuring instruments. Succesive process spectra analyzers. Nomenclature of pnrameters
  • CSN 42 0600 Cast.3-1975 Antimony of high parity. Methods of chemical and spectral analysis. Delermmation of arsenic by photomotric metod

American Society for Testing and Materials (ASTM)

  • ASTM D4583-95(1999) Standard Practice for Carbon Black-Calculation of Process Indexes From an Analysis of Process Control Data
  • ASTM D4583-95(2019) Standard Practice for Carbon Black—Calculation of Process Indexes From an Analysis of Process Control Data
  • ASTM E925-83(1994)e1 Standard Practice for Monitoring the Calibration of Ultraviolet-Visible Spectrophotometers whose Spectral Slit Width does not Exceed 2 nm
  • ASTM E2056-04 Standard Practice for Qualifying Spectrometers and Spectrophotometers for Use in Multivariate Analyses, Calibrated Using Surrogate Mixtures
  • ASTM D4583-21 Standard Practice for Carbon Black—Calculation of Process Indexes From an Analysis of Process Control Data
  • ASTM E925-09 Standard Practice for Monitoring the Calibration of Ultraviolet-Visible Spectrophotometers whose Spectral Slit Width does not Exceed 2 nm
  • ASTM E925-02 Standard Practice for Monitoring the Calibration of Ultraviolet-Visible Spectrophotometers whose Spectral Slit Width does not Exceed 2 nm
  • ASTM E925-09(2022) Standard Practice for Monitoring the Calibration of Ultraviolet-Visible Spectrophotometers whose Spectral Bandwidth does not Exceed 2 nm
  • ASTM D7808-12 Standard Practice for Determining the Site Precision of a Process Stream Analyzer on Process Stream Material
  • ASTM E925-09(2014) Standard Practice for Monitoring the Calibration of Ultraviolet-Visible Spectrophotometers whose Spectral Bandwidth does not Exceed 2 nm

American Petroleum Institute (API)

NL-NEN

  • NEN 6651-1992 Water - Photometric determination of the content of dissolved chloride by continuous flow analysis

SCC

  • DIN ISO 11505 E:2017 Draft Document - Surface chemical analysis - General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry (ISO 11505:2012); Text in German and English
  • BS ISO 9276-4:2001 Representation of results of particle size analysis. Characterization of a classification process
  • AS 3753:1990 Recommended practice for chemical analysis by ultraviolet/visible spectrophotometry
  • AS A174:1969 Method for spectrophotometric analysis of cement
  • UNE 84170:1983 OIL OF LEMON. ULTRA-VIOLET SPECTROPHOTO METRIC ANALYSIS
  • AWWA WQTC52892 Statistical Analysis and Reporting of Rapid Gravity Filter Turbidity Data
  • BS PD ISO/TR 11462-4:2022 Guidelines for implementation of statistical process control (SPC)-Reference data sets for measurement process analysis software validation

International Organization for Standardization (ISO)

  • ISO 11505:2012 Surface chemical analysis - General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry
  • ISO 8130-13:2019 Coating powders — Part 13: Particle size analysis by laser diffraction
  • ISO 9276-4:2001 Representation of results of particle size analysis - Part 4: Characterization of a classification process

Standard Association of Australia (SAA)

  • AS 3550.1:1988 Methods for the analysis of waters - Determination of dissolved sulphide - Spectrophotometric method
  • AS 1050.19:1988 Methods for the analysis of iron and steel - Determination of nickel content - Spectrophotometric method
  • AS 1050.17:1988 Methods for the analysis of iron and steel - Determination of copper content - Spectrophotometric method
  • AS 2365.1.2:1990 Methods for the sampling and analysis of indoor air - Determination of nitrogen dioxide - Spectrophotometric method - Treated filter/passive badge sampling procedures

British Standards Institution (BSI)

  • BS EN ISO 8130-13:2019 Coating powders. Particle size analysis by laser diffraction
  • BS ISO 9276-4:2001+A1:2017 Representation of results of particle size analysis - Characterization of a classification process
  • BS ISO 9276-4:2002 Representation of results of particle size analysis - Characterization of a classification process
  • BS ISO 11505:2012 Surface chemical analysis. General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry

AENOR

  • UNE 103102:1995 PARTICLE SIZE ANALYSIS OF A FINE SOIL BY SEDIMENTATION. DENSIMETER METHOD.

IN-BIS

  • IS 12813-1989 Method for analyzing hydraulic cement using atomic absorption spectrophotometer

Danish Standards Foundation

KR-KS

SAE - SAE International

  • SAE J1739-2021 Potential Failure Mode and Effects Analysis in Design (Design FMEA), Potential Failure Mode and Effects Analysis in Manufacturing and Assembly Processes (Process FMEA)
  • SAE J1739-1994 Potential Failure Mode and Effects Analysis in Design (Design FMEA) and Potential Failure Mode and Effects Analysis in Manufacturing and Assembly Processes (Process FMEA) Reference Manual@ Recommended Practice
  • SAE J1739-2000 Potential Failure Mode and Effects Analysis in Design (Design FMEA), Potential Failure Mode and Effects Analysis in Manufacturing and Assembly Processes (Process FMEA)
  • SAE AS13004-2017 Process Failure Mode and Effects Analysis (PFMEA) and Control Plans

Korean Agency for Technology and Standards (KATS)

Society of Automotive Engineers (SAE)

  • SAE J1739-2009 Potential Failure Mode and Effects Analysis in Design (Design FMEA), Potential Failure Mode and Effects Analysis in Manufacturing and Assembly Processes (Process FMEA)

RO-ASRO

Japanese Industrial Standards Committee (JISC)

  • JIS K 0117:2017 General rules for infrared spectrophotometric analysis
  • JIS K 0145:2002 Surface chemical analysis -- X-ray photoelectron spectrometers -- Calibration of energy scales

API - American Petroleum Institute

Universal Oil Products Company (UOP)

  • UOP 495-2003 AROMATICS IN MOLEX PROCESS n-PARAFFIN PRODUCTS BY ULTRAVIOLET SPECTROPHOTOMETRY

RU-GOST R

  • GOST 27981.5-1988 Copper of high purity. Methods of photometric analysis
  • GOST R 58919-2021 Engineering (technology and design). Integrated analysis of potential hazards in the course of designing facility. General

TIA - Telecommunications Industry Association

  • TIA/EIA-455-119-1997 FOTP-119 Coating Geometry Measurement for Optical Fiber by Gray-Scale Analysis

CU-NC

  • NC 90-13-21-1984 Metrological Assurance. Spectrophotometers. Reference Dissolutions for the Verification of Spectrophotometers