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The principle of luminescence

The principle of luminescence, Total:226 items.

In the international standard classification, The principle of luminescence involves: Microbiology, Non-ferrous metals, Analytical chemistry, Testing of metals, Products of non-ferrous metals, Ferrous metals, Vocabularies, Protection against crime, Ferroalloys, Iron and steel products, Medical sciences and health care facilities in general, Coals, Soil quality. Pedology, General methods of tests and analysis for food products, Metalliferous minerals, Crude petroleum, Water quality, Laboratory medicine, Machine tools, Power stations in general, Thermodynamics and temperature measurements, Jewellery, Space systems and operations, Surface treatment and coating, Refractories, Glass, Test conditions and procedures in general, Occupational safety. Industrial hygiene, Nuclear energy engineering, Non-destructive testing, Fuels, Food products in general, Animal feeding stuffs, Powder metallurgy, Lubricants, industrial oils and related products, Optical equipment, Optics and optical measurements, Products of the chemical industry, Inorganic chemicals.


German Institute for Standardization, The principle of luminescence

  • DIN 10124:2009 ATP measuring - Fundamentals for the measuring of the hygienic status with bioluminescence-method

Taiwan Provincial Standard of the People's Republic of China, The principle of luminescence

Japanese Industrial Standards Committee (JISC), The principle of luminescence

  • JIS H 1630:1995 Method for atomic emission spectrometric analysis of titanium
  • JIS H 1630:1975 Method for atomic emission spectrometric analysis of titanium
  • JIS K 0116:1995 General rules for atomic emission spectrometry
  • JIS H 1113:1994 Method for atomic emission spectrophotoelectric analysis of zinc metal
  • JIS H 1113:2014 Method for photoelectric emission spectrochemical analysis of zinc metal
  • JIS H 1560:1994 Method for atomic emission spectrophotoelectric analysis of die casting zinc alloy
  • JIS H 1183:1993 Method for atomic emission spectrophotographic analysis of silver bullion
  • JIS K 0116:2003 General rules for atomic emission spectrometry
  • JIS K 0116:2014 General rules for atomic emission spectrometry
  • JIS G 1253:1995 Iron and steel -- Method for spark discharge atomic emission spectrometric analysis
  • JIS G 1258:1999 Iron and steel -- Methods for inductively coupled plasma atomic emission spectrometry
  • JIS G 1253:2002 Iron and steel -- Method for spark discharge atomic emission spectrometric analysis
  • JIS H 1289:2015 Nickel and nickel alloys -- ICP atomic emission spectrometric method -- Determination of niobium, tantalum and zirconium

Korean Agency for Technology and Standards (KATS), The principle of luminescence

  • KS D 2086-2019 Methods for atomic emission spectrometric analysis of titanium
  • KS M ISO 6955:2011 Analytical spectroscopic methods-Flame emission,atomic absorption, and atomic fluorescence-Vocabulary
  • KS M ISO 6955-2016(2021) Analytical spectroscopic methods-Flame emission,atomic absorption, and atomic fluorescence-Vocabulary
  • KS M ISO 6955:2016 Analytical spectroscopic methods-Flame emission,atomic absorption, and atomic fluorescence-Vocabulary
  • KS D 1652-2007 Iron and steel-Method for spark discharge atomic emission spectrometric analysis
  • KS D 1658-2003 Emission-spectroscopic analysis for carbon steel and low alloy steel
  • KS D 1652-2022 Iron and steel — Method for spark discharge atomic emission spectrometric analysis
  • KS D 1652-2007(2017) Iron and steel-Method for spark discharge atomic emission spectrometric analysis
  • KS M 1074-2008(2018) Determination of antimony in ceramic powder-Hydride generation atomic absorption spectrometry
  • KS L ISO 20565-3-2012(2017) Chemical analysis of chrome-bearing refractory products and chrome-bearing raw materials(alternative to the X-ray fluorescence method)-Part 3:Flame atomic absorption spectrometry(FAAS) and inductively
  • KS L ISO 20565-3-2012(2022) Chemical analysis of chrome-bearing refractory products and chrome-bearing raw materials(alternative to the X-ray fluorescence method)-Part 3:Flame atomic absorption spectrometry(FAAS) and inductively
  • KS D ISO 22033:2006 Nickel alloys-Determination of niobium-Inductively coupled plasma atomic emission spectrometric method
  • KS E ISO 4571-2001(2016) Manganese ores and concentrates- Determination of sodium and potassium content - Flame atomic emission spectrometric method
  • KS D ISO 10278-2003(2018) Steel-Determination of manganese content-Inductively coupled plasma atomic emission spectrometric method
  • KS I ISO 17852-2011(2021) Water quality — Determination of mercury — Method using atomic fluorescence spectrometry
  • KS L ISO 26845-2012(2022) Chemical analysis of refractories-General requirements for wet chemical analysis, atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry methods
  • KS L ISO 26845-2012(2017) Chemical analysis of refractories-General requirements for wet chemical analysis, atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry methods
  • KS M ISO 2366:2002 Cryolite, natural and artificial-Determination of sodium content-Flame emission and atomic absorption spectrophotometric methods
  • KS M ISO 2366-2017(2022) Cryolite, natural and artificial-Determination of sodium contentFlame emission and atomic absorption spectrophotometric methods
  • KS M ISO 2366:2017 Cryolite, natural and artificial-Determination of sodium contentFlame emission and atomic absorption spectrophotometric methods

RU-GOST R, The principle of luminescence

  • GOST 17261-2008 Zinc. Methods of atomic-emission spectral analysis
  • GOST R 54153-2010 Steel. Method of atomic emission spectral analysis
  • GOST 6012-2011 Nickel. Methods of chemical-atomic-emission spectral analysis
  • GOST 8776-2010 Cobalt. Methods of chemical-atomic-emission spectral analysis
  • GOST 6012-1978 Nickel. Methods of chemical-atomic-emission spectral analysis
  • GOST R ISO 22033-2014 Nickel alloys. Determination of niobium. Inductively coupled plasma/atomic emission spectrometric method
  • GOST R ISO 22725-2014 Nickel alloys. Determination of tantalum. Inductively coupled plasma atomic emission spectrometric method

American Society for Testing and Materials (ASTM), The principle of luminescence

  • ASTM E2994-21 Standard Test Method for Analysis of Titanium and Titanium Alloys by Spark Atomic Emission Spectrometry and Glow Discharge Atomic Emission Spectrometry (Performance-Based Method)
  • ASTM E2994-16 Standard Test Method for Analysis of Titanium and Titanium Alloys by Spark Atomic Emission Spectrometry and Glow Discharge Atomic Emission Spectrometry (Performance-Based Method)
  • ASTM E2209-02(2006)e1 Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E2209-02 Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E2209-02(2006)e2 Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E1251-17a Test Method for Analysis of Aluminum and Aluminum Alloys by Atomic Emission Spectrometry
  • ASTM E3047-22 Standard Test Method for Analysis of Nickel Alloys by Spark Atomic Emission Spectrometry
  • ASTM E3047-16 Standard Test Method for Analysis of Nickel Alloys by Spark Atomic Emission Spectrometry
  • ASTM E1999-18 Standard Test Method for Analysis of Cast Iron by Spark Atomic Emission Spectrometry
  • ASTM E1999-23 Standard Test Method for Analysis of Cast Iron by Spark Atomic Emission Spectrometry
  • ASTM E1251-07 Standard Test Method for Analysis of Aluminum and Aluminum Alloys by Atomic Emission Spectrometry
  • ASTM E220-86(1996)e1 Standard Test Method for Calibration of Thermocouples By Comparison Techniques
  • ASTM E2209-02(2006) Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E1999-11 Standard Test Method for Analysis of Cast Iron by Spark Atomic Emission Spectrometry
  • ASTM B954-07 Standard Test Method for Analysis of Magnesium and Magnesium Alloys by Atomic Emission Spectrometry
  • ASTM E2209-21 Standard Test Method for Analysis of High Manganese Steel by Spark Atomic Emission Spectrometry
  • ASTM E2209-22 Standard Test Method for Analysis of High Manganese Steel by Spark Atomic Emission Spectrometry
  • ASTM B954-23 Standard Test Method for Analysis of Magnesium and Magnesium Alloys by Atomic Emission Spectrometry
  • ASTM B954-15 Standard Test Method for Analysis of Magnesium and Magnesium Alloys by Atomic Emission Spectrometry
  • ASTM E2209-13 Standard Test Method for Analysis of High Manganese Steel by Spark Atomic Emission Spectrometry
  • ASTM D7691-11 Standard Test Method for Multielement Analysis of Crude Oils Using Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES)
  • ASTM E2073-10 Standard Test Method for Photopic Luminance of Photoluminescent (Phosphorescent) Markings
  • ASTM E1613-12 Standard Test Method for Determination of Lead by Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES), Flame Atomic Absorption Spectrometry (FAAS), or Graphite Furnace Atomic Absorption Spectrometry (GFAAS) Techniques
  • ASTM E406-19 Standard Practice for Using Controlled Atmospheres in Atomic Emission Spectrometry
  • ASTM UOP410-85 Sodium in Catalysts by Flame Emission or Atomic Absorption Spectrophotometry
  • ASTM E1251-17 Standard Test Method for Analysis of Aluminum and Aluminum Alloys by Spark Atomic Emission Spectrometry
  • ASTM D5184-12 Standard Test Methods for Determination of Aluminum and Silicon in Fuel Oils by Ashing, Fusion, Inductively Coupled Plasma Atomic Emission Spectrometry, and Atomic Absorption Spectrometry
  • ASTM E1613-04 Standard Test Method for Determination of Lead by Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES), Flame Atomic Absorption Spectrometry (FAAS), or Graphite Furnace Atomic Absorption Spectrometry (GFAAS) Techniques
  • ASTM E1251-11 Standard Test Method for Analysis of Aluminum and Aluminum Alloys by Spark Atomic Emission Spectrometry
  • ASTM E1086-22 Standard Test Method for Analysis of Austenitic Stainless Steel by Spark Atomic Emission Spectrometry
  • ASTM D4951-14 Standard Test Method for Determination of Additive Elements in Lubricating Oils by Inductively Coupled Plasma Atomic Emission Spectrometry

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, The principle of luminescence

  • GB/T 4470-1998 Analytical spectroscopic methods-Flame emission,atomic absorption and atomic fluorescence-Vocabulary
  • GB/T 19267.4-2008 Physical and chemical examination of trace evidence in forensic sciences.Part 4:Atomic emission spectrometry
  • GB/T 19267.4-2003 Physical and chemical examination of trace evidence in forensic sciences--Part 4: Atomic emission spectrometry
  • GB/T 17674-2012 Determination of nitrogen in crude oil by boat-inlet chemiluminescence
  • GB/T 17674-1999 Determination of nitrogen in petroleum and petroleum products by chemiluminescence method
  • GB/T 14203-2016 General rules for spark discharge atomic emission spectrometry
  • GB/T 6150.15-2023 Methods for chemical analysis of tungsten concentrates - Part 15: Determination of bismuth content by hydride generation atomic fluorescence spectrometry and flame atomic absorption spectrometry
  • GB/T 6150.10-2023 Methods of chemical analysis of tungsten concentrates - Part 10: Determination of lead content by hydride generation atomic fluorescence spectrometry and flame atomic absorption spectrometry
  • GB/T 22368-2008 Low-alloy steel.Determination of multi-element contents.Glow discharge optical emission spectrometry(Routine method)
  • GB/T 11066.9-2009 Methods for chemical analysis of gold.Determination for arsenic and tin contents.Hydride generation-atomic fluorescence spectrometry
  • GB/T 4324.15-2008 Methods for chemical analysis of tungsten.Determination of magnesium content.The flame atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry
  • GB/T 7731.7-2008 Ferrotungsten. Determination of tin content. Phenylfluorone photometric method and inductively coupled plasma-atomic emission spectrometry
  • GB/T 24916-2010 Surface treatment solution.Determination of metal element contents.Inductively coupled plasma atomic emission spectrometric method
  • GB/T 223.80-2007 Iron,steel and alloy-Determination of trace bismuth and arsenic contents- Hydride generation-atomic fluorescence spectrometric method
  • GB/T 7731.6-2008 Ferrotungsten.Determination of arsenic content.The molybdenum blue photometrie method and inductively coupled plasma-atomic emission spectrometry
  • GB/T 4324.9-2012 Methods for chemical analysis of tungsten.Part 9:Determination of cadmium content.Inductively-coupled plasma atomic emission spectrometry and flame atomic absorption spectrometry
  • GB/T 32179-2015 Chemical analysis of refractories.General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry(ICP-AES) methods
  • GB/T 6730.67-2009 Iron ores-Determination of arsenic content-Hydride generation atomic absorption spectrometric method
  • GB/T 13370-1992 Determination of lithium,sodium,potassium and cesium in uranium dioxide dioxide powders and pellets by atomic absorption spectrophotometry/flame emission spectrophotometry
  • GB/T 24234-2009 Cast iron.Determination of multi-element contents.Spark dicharge atomic emission spectrometric method(Routine method)
  • GB/T 8151.13-2012 Methods for chemical analysis of zinc concentrates.Part 13:Determination of germanium content.Hydride generation-atomic fluorescence spectrometry and the phenyl fluorone spectrophptometric method
  • GB/T 7731.9-2008 Ferrotungsten.Determination of bismuth content.The bismuth iodide photonmetric method and inductively coupled plasma-atomic emission spectrometry
  • GB/T 23273.3-2009 Methods for chemical analysis of cobalt oxatate.Part 3:Determination of arsenic content.Hydride generation-atomic fluorescence spectrometry
  • GB/T 3884.10-2012 Methods for chemical analysis of copper concentrates.Part 10:Determination of Antimony content.Hydride generation atomic fluorescence spectrometry method
  • GB/T 8151.10-2012 Methods for chemical analysis of zinc concentrates.Part 10:Determination of tin content.Hydride generation-atomic fluorescence spectrometry
  • GB/T 8151.11-2012 Methods for chemical analysis of zinc concentrates.Part 11:Determination of antimony content.Hydride generation-atomic fluorescence spectrometry
  • GB/T 23545-2009 Determination of manganese in white wine.Inductively coupled plasma atomic emission spectrometry
  • GB/T 4324.8-2008 Methods for chemical analysis of tungsten.Determination of nickel content.The inductively coupled plasma atomic emission spectrometry、flame atomic absorption spectrometry and dimethylglyoxime gravimetry
  • GB/T 11066.5-2008 Methods for chemical analysis of gold.Determination of silver, copper, iron, lead , antimony and bismuth contents.Atomic emission spectrometry
  • GB/T 11170-2008 Stainless steel .Determination of multi-element contents.Spark discharge atomic emission spectrometric method (Routine method)
  • GB/T 7731.8-2008 Ferrotungsten.Determination of antimony content.The tetraethlrhodamine photometrie method and inductively couple plasma-atomic mission spectrometry

KR-KS, The principle of luminescence

  • KS M ISO 6955-2016 Analytical spectroscopic methods-Flame emission,atomic absorption, and atomic fluorescence-Vocabulary
  • KS D 1652-2007(2017)(英文版) Iron and steel-Method for spark discharge atomic emission spectrometric analysis
  • KS M 1074-2008(2023) Determination of antimony in ceramic powder-Hydride generation atomic absorption spectrometry
  • KS M ISO 2366-2017 Cryolite, natural and artificial-Determination of sodium contentFlame emission and atomic absorption spectrophotometric methods

Association Francaise de Normalisation, The principle of luminescence

  • T01-040:1982 Analytical spectroscopic methods. Flame emission, atomic absorption and atomic fluorescence. Vocabulary.
  • NF EN ISO 21587-3:2007 Analyse chimique des produits réfractaires d'aluminosilicates (méthode alternative à la méthode par fluorescence de rayons X) - Partie 3 : méthodes par spectrométrie d'absorption atomique (AAS) et spectrométrie d'émission atomique avec plasm...
  • NF T90-135-1*NF ISO 17378-1:2014 Water quality - Determination of arsenic and antimony - Part 1 : method using hydride generation atomic fluorescence spectrometry (HG-AFS)
  • NF B30-111*NF ISO 1776:1986 Glass. Resistance to attack by hydrochloric acid at 100 degrees Celsius. Flame emission or flame atomic absorption spectrometric method.
  • NF A08-920:2008 Nickel alloys - Determination of tantalum - Inductively coupled plasma atomic emission spectrometric method.
  • NF S10-041*NF ISO 9335:2013 Optics and photonics - Optical transfer function - Principles and procedures of measurementt

Professional Standard - Hygiene , The principle of luminescence

  • WS/T 474-2015 Determination of arsenic in urine by hydride generation atomic flurescence spectrometry
  • WS/T 47-1996 Urine.Determination of selenium.Hydride generation-atomic absorption spectrometric method
  • WS/T 29-1996 Urine.Determination of arsenic.Hydride generation-flame atomic absorption spectrometry

国家市场监督管理总局、中国国家标准化管理委员会, The principle of luminescence

  • GB/T 39538-2020 Determination of arsenic, selenium and mercury in coal—Hydride generation-atomic fluorescence spectrometry
  • GB/T 6730.79-2019 Iron ores—Determination of cadmium content—Hydride generation-atomic fluorescence spectrometric method
  • GB/T 6730.77-2019 Iron ores—Determination of arsenic content—Hydride generation-atomic fluorescence spectrometric method
  • GB/T 17674-2021 Determination of nitrogen in crude oil—Boat-inlet chemiluminescence
  • GB/T 223.89-2019 Iron, steel and alloy—Determination of tellurium content—Hydride generation-atomic fluorescence spectrometric method
  • GB/T 41404-2022 Determination of platinum content in platinum alloys—Spark atomic emission spectrometric method(difference method)
  • GB/T 40374-2021 Hardmetals—Determination of lead and cadmium content—Flame atomic absorption spectrometric method and inductively coupled plasma atomic emission spectrometry

农业农村部, The principle of luminescence

  • NY/T 3420-2019 Determination of soil available selenium by hydride generation atomic fluorescence spectrometry

Professional Standard - Commodity Inspection, The principle of luminescence

  • SN/T 2083-2008 Method for analysis of brass.Spark discharge atomic emission spectrometric
  • SN/T 3811-2014 Determination of arsenic and antimony in petroleum naphthas.Hydride generation atomic fluorescence spectrometric method
  • SN/T 2679-2010 Determination of arsenic in wood and wood-based products.Hydride generation-atomic fluorescence spectrometry
  • SN/T 3521-2013 Simultaneous determination of arsenic and mercury content in coal.Hydride generation-atomic fluorescence spectrometry

RO-ASRO, The principle of luminescence

  • STAS 2849/5-1986 Lighting OPTICAL PROPERTIES OF MATERIALS AND SUBSTANCES Terminology

International Organization for Standardization (ISO), The principle of luminescence

  • ISO 6955:1982 Analytical spectroscopic methods; Flame emission, atomic absorption, and atomic fluorescence; Vocabulary Bilingual edition
  • ISO/TS 17379-1:2013 Water quality.Determination of selenium.Part 1: Method using hydride generation atomic fluorescence spectrometry (HG-AFS)
  • ISO 22033:2005 Nickel alloys - Determination of niobium - Inductively coupled plasma atomic emission spectrometric method
  • ISO 11435:2005 Nickel alloys - Determination of molybdenum - Inductively coupled plasma atomic emission spectrometric method
  • ISO 22033:2011 Nickel alloys - Determination of niobium - Inductively coupled plasma/atomic emission spectrometric method
  • ISO 9335:1995 Optics and optical instruments - Optical transfer function - Principles and procedures of measurement
  • ISO 9335:2012 Optics and photonics - Optical transfer function - Principles and procedures of measurement
  • ISO 2366:1974 Cryolite, natural and artificial; Determination of sodium content; Flame emission and atomic absorption spectrophotometric methods

British Standards Institution (BSI), The principle of luminescence

  • PD ISO/TS 17379-1:2013 Water quality. Determination of selenium. Method using hydride generation atomic fluorescence spectrometry (HG-AFS)
  • BS ISO 17378-1:2014 Water quality. Determination of arsenic and antimony. Method using hydride generation atomic fluorescence spectrometry (HG-AFS)
  • PD ISO/TS 17379-2:2013 Water quality. Determination of selenium. Method using hydride generation atomic absorption spectrometry (HGAAS)
  • PD CEN/TR 14734:2004 Non-destructive testing - Acoustic emission - General principles
  • BS ISO 17378-2:2014 Water quality. Determination of arsenic and antimony. Method using hydride generation atomic absorption spectrometry (HG-AAS)

Group Standards of the People's Republic of China, The principle of luminescence

  • T/CAIA SH004-2015 Rice-Determination of cadmium-Solid sampling electrothermal vaporization atomic fluorescence spectrometry
  • T/CSTM 01139-2022 Tungsten iron—Determination of arsenic and antimony content—Hydride generation-atomic fluorescence spectrometry
  • T/CSTM 00761-2021 Nickel—Determination of selenium and tellurium contents —Hydride generation- atomic fluorescence spectrometric method
  • T/CSTM 00760-2021 Nickel—Determination of arsenic, antimony and bismuth contents —Hydride generation- atomic fluorescence spectrometric method
  • T/CSTM 00048-2018 Steel and iron—Determination of arsenic content— Hydride generation-atomic absorption spectrometric method
  • T/CSTM 00764-2021 Beryllium and beryllium alloy—Determination of lithium content —Flame atomic emission spectrometric method
  • T/CSTM 00053-2018 Steel and iron—Determination of tellurium content— Hydride generation -atomic absorption spectrometric method
  • T/CSTM 00756-2021 Iron ores—Determination of sodium and potassium contents— Flame atomic emission spectrometric method
  • T/CBMF 99-2021 Determination of glass, glazes and their raw materials—Inductively coupled plasma atomic emission spectrometry method
  • T/WSJD 004-2020 Determination of multi-element contents in hair— Inductively coupled plasma atomic emission spectrometry
  • T/CSTM 00962-2022 Evaluation method for spectrometer performance of spark discharge atomic emission
  • T/QAS 062-2021 Determination of Selenium in Brine by Atomic Fluorescence Spectrometry
  • T/QAS 061-2021 Determination of Mercury in Brine by Atomic Fluorescence Spectrometry
  • T/QAS 081.4-2023 Chemical analysis of polymetallic minerals - Part 4: Determination of tin by hydride generation - atomic fluorescence spectrometry

Standard Association of Australia (SAA), The principle of luminescence

  • AS 2134.3:1994 Recommended practice for chemical analysis by atomic absorption spectrometry - Vapour generation atomic absorption spectrometry
  • AS 4862:2000 Lead and lead alloys - Determination of impurities and alloying elements - Atomic emission spectrometric method
  • AS 4699:2000 Zinc and zinc alloys - Determination of impurities and alloying elements - Atomic emission spectrometric method
  • AS 4861:2004 Aluminium and aluminium alloys - Determination of impurities and alloying elements - Atomic emission spectrometric method

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, The principle of luminescence

  • GB/T 33086-2016 Water treatment chemical—Determination of arsenic and mercury—Atomic fluorescence spectrometry
  • GB/T 34209-2017 Stainless steel—Determination of multi-element contents—Glow discharge optical emission spectrometry

Professional Standard - Electricity, The principle of luminescence

  • DL/T 955-2016 Test methods for water and steam in thermal power plants Determination of copper and iron Atomic absorption spectrophotometry
  • DL/T 1895-2018 Determination of lead in flue gas of thermal power plants - graphite furnace atomic absorption spectrophotometry

Professional Standard - Non-ferrous Metal, The principle of luminescence

  • YS/T 276.8-2011 Methods for chemical analysis of indium.Part 8:Determination of bismuth content.Method 1:Hydride generation-atomic fluorescence spectrometry.Method 2:Flame atomic absorption spectrometry
  • YS/T 226.1-2009 Methods for chemical analysis of selenium.Part 1:Determination of bismuth content.Hydride generation-atomic fluorescence spectrometry
  • YS/T 226.2-2009 Methods for chemical analysis of selenium.Part 2:Determination of antimony content-Hydride generation-atomic fluorescence spectrometry
  • YS/T 74.1-2010 Methods for chemical analysis of cadmium- Part 1: Determination of arsenic content- Hydride generation-atomic fluorescence spectrometry
  • YS/T 74.2-2010 Methods for chemical analysis of cadmium- Part 2: Determination of antimony content- Hydride generation-atomic fluorescence spectrometry
  • YS/T 227.1-2010 Methods for chemical analysis of tellurium-Part 1: Determination of bismuth content-Hydride generation-atomic fluorescence spectrometry
  • YS/T 227.10-2010 Methods for chemical analysis of tellurium-Part 10: Determination of arsenic content- Hydride generation-atomic fluorescence spectrometry
  • YS/T 74.9-2010 Mehtods for chemical analysis of cadmium- Part 9:Determination of tin content- Hydride generation-atomic fluorescence spectrometry
  • YS/T 276.1-2011 Methods for chemical analysis of indium.Part 1:Determination of arsenic content.Hydride generation-atomic fluorescence spectrometry
  • YS/T 1115.14-2016 Methods for chemical analysis of copper ores and tailings.Part 14:Determination of arsenic content.Hydride generation-atomic fluorescence spectrometric and potassium bromate titrimetric method
  • YS/T 472.3-2005 Methods for chemical analysis of nickel concentrates and cobalt sulfide concentrates-Determination of mercury content-Hydride generation-atomic fluorescence spectrometry
  • YS/T 472.5-2005 Methods for chemical analysis of nickel concentrates and cobalt sulfide concentrates-Determination of arsenic content-Hydride generation-atomic fluorescence spectrometry
  • YS/T 556.6-2009 Methods for chemical analysis of antimony concentrates.Part 6:Determination of selenium content.Hydride generation-atomic fluorescence spectrometric method
  • YS/T 281.15-2011 Methods for chemical analysis of cobalt.Part 15:Determination of arsenic,antimony and bismuth content.Hydride generation-atomic fluorescence spectrometry
  • YS/T 745.8-2010 Methods for chemical analysis of copper anode slime- Part 8: Determination of arsenic content- Hydride generation-atomic fluorescence spectrometry method

工业和信息化部, The principle of luminescence

  • YS/T 3015.7-2017 Methods for chemical analysis of gold-loaded carbon Part 7: Determination of arsenic content Atomic fluorescence spectrometry and inductively coupled plasma atomic emission spectrometry
  • YS/T 445.10-2019 Methods of chemical analysis of silver concentrates Part 10: Determination of antimony content Hydride generation-atomic fluorescence spectrometry and flame atomic absorption spectrometry
  • YS/T 3015.6-2017 Methods for chemical analysis of gold-loaded carbon Part 6: Determination of mercury content Atomic fluorescence spectrometry and inductively coupled plasma atomic emission spectrometry
  • YS/T 445.11-2019 Methods for chemical analysis of silver concentrates Part 11: Determination of bismuth content Hydride generation-atomic fluorescence spectrometry, flame atomic absorption spectrometry and Na2EDTA titration
  • YS/T 482-2022 Analysis methods for copper and copper alloys Spark discharge atomic emission spectrometry
  • YS/T 1288.3-2018 Methods for chemical analysis of high-purity zinc Part 3: Determination of arsenic content Hydride generation-atomic fluorescence spectrometry
  • YS/T 1171.8-2017 Methods for chemical analysis of recycled zinc raw materials Part 8: Determination of mercury content by atomic fluorescence spectrometry and cold atomic absorption spectrometry

Indonesia Standards, The principle of luminescence

  • SNI 05-1362-1989 Surface grinding machines with horizontal spindle, Geometric test methods
  • SNI 13-6180-1999 Procedure for optimization of flame Atomic Absorption Spectrophotometer (AAS)

Danish Standards Foundation, The principle of luminescence

  • DS/ISO/TS 17379-1:2013 Water quality - Determination of selenium - Part 1: Method using hydride generation atomic fluorescence spectrometry (HG-AFS)
  • DS/EN ISO 17852:2008 Water quality - Determination of mercury - Method using atomic fluorescence spectrometry

Professional Standard - Education, The principle of luminescence

  • JY/T 015-1996 General rules for inductively coupled plasma-atomic emission spectrometry

Professional Standard - Agriculture, The principle of luminescence

  • 72药典 四部-2015 0411 Inductively coupled plasma atomic emission spectrometry
  • 52药典 四部-2020 0411 Inductively coupled plasma atomic emission spectrometry
  • 776兽药典 二部-2015 Appendix Contents 0400 Spectroscopy 0412 Inductively Coupled Plasma Atomic Emission Spectrometry
  • 780兽药典 一部-2015 Appendix Contents 0400 Spectroscopy 0411 Inductively Coupled Plasma Atomic Emission Spectrometry
  • SN/T 3188-2012 Determination of lead, arsenic and mercury in crude oil by atomic fluorescence spectrometry

Professional Standard - Petroleum, The principle of luminescence

  • SY/T 0528-2008 Determination of arsenic in crude petroleum.Atomic fluorescence spectrometry

Guangdong Provincial Standard of the People's Republic of China, The principle of luminescence

  • DB44/T 1935-2016 Determination of Trace Elements in Hair by Inductively Coupled Plasma-Atomic Emission Spectrometry

中华人民共和国国家卫生和计划生育委员会, The principle of luminescence

  • WS/T 109-1999 Serum.Determination of selenium.Hydride generation atomic absorption spectrometric method

Society of Automotive Engineers (SAE), The principle of luminescence

  • SAE AIR5712A-2012 Common Launch Acceptability Region Approach (CLARA)Rationale Document

ITU-R - International Telecommunication Union/ITU Radiocommunication Sector, The principle of luminescence

  • ITU-R SM.328-7-1990 Spectra and Bandwidth of Emissions - Section 1A - Spectrum Engineering and Computer-Aided Principles and Techniques

American National Standards Institute (ANSI), The principle of luminescence

  • ANSI/ASTM D6129:1998 Test Method for Silicon in Engine Coolant Concentrates by Atomic Absorption Spectroscopy
  • ANSI/ASTM D6130:1998 Test Method for Determination of Silicon and Other Elements in Engine Coolant by Inductively Coupled Plasma-Atomic Emission Spectroscopy

Yunnan Provincial Standard of the People's Republic of China, The principle of luminescence

  • DB53/T 667-2015 Determination of multielement content in hair by inductively coupled plasma atomic emission spectrometry

Professional Standard - Geology, The principle of luminescence

  • DZ/T 0064.11-2021 Analytical methods for groundwater quality - Part 11: Determination of arsenic content by hydride generation - atomic fluorescence spectrometry
  • DZ/T 0064.38-2021 Analytical methods for groundwater quality - Part 38: Determination of the amount of selenium by hydride generation - atomic fluorescence spectrometry

VN-TCVN, The principle of luminescence

  • TCVN 1048-2007 Glass.Resistance to attack by hydrochloric acid at 100 degrees C.Flame emission or flame atomic absorption spectrometry method

IN-BIS, The principle of luminescence

Shandong Provincial Standard of the People's Republic of China, The principle of luminescence

  • DB37/T 3040-2017 Determination of Chromium in Feed by Inductively Coupled Plasma-Atomic Emission Spectrometry
  • DB37/T 3042-2017 Determination of Molybdenum in Feedstuffs by Inductively Coupled Plasma-Atomic Emission Spectrometry
  • DB37/T 1092-2008 Determination of Chromium in Food by Inductively Coupled Plasma-Atomic Emission Spectrometry

Sichuan Provincial Standard of the People's Republic of China, The principle of luminescence

  • DB51/T 1046-2010 Determination of Aluminum in Food by Inductively Coupled Plasma-Atomic Emission Spectrometry
  • DB51/T 1031-2010 Determination method of rare earth in tea - Inductively coupled plasma atomic emission spectrometry

Professional Standard - Water Conservancy, The principle of luminescence

  • SL 327.1-2005 Water quality.Determination of arsenic.Atomic fluorescence spectrometric method
  • SL 327.2-2005 Water quality.Determination of mercury.Atomic fluorescence spectrometric method
  • SL 327.3-2005 Water quality - determination of selenium - atomic fluorescence spectrometric method
  • SL 327.4-2005 Water quality.Determination of lead.Atomic fluorescence spectrometric method

National Health Commission of the People's Republic of China, The principle of luminescence

  • GBZ/T 302-2018 Determination of antimony in urine by atomic fluorescence spectrometry

AENOR, The principle of luminescence

  • UNE 72032:1984 NUMERICAL SPECIFICATION OF THE PSYCOPHYSICAL COLOUR OF LUMINOUS STIMULUS

国家质量监督检验检疫总局, The principle of luminescence

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