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Titanium Molecular Sieve

Titanium Molecular Sieve, Total:267 items.

In the international standard classification, Titanium Molecular Sieve involves: Iron and steel products, Products of the chemical industry, Analytical chemistry, Production in the chemical industry, Ferroalloys, Non-metalliferous minerals, Agricultural machines, implements and equipment, Kitchen equipment, Medical equipment, Equipment for processing of minerals, Equipment for the chemical industry, Quality, Road engineering, Particle size analysis. Sieving, Water quality, Passenger and cabin equipment, Measurement of volume, mass, density, viscosity, Shop fittings, Electronic components in general, Non-ferrous metals, Powder metallurgy, Paints and varnishes, Aerospace electric equipment and systems, Internal combustion engines, Fuels, Plastics, Document imaging applications, Microbiology, Electrical engineering in general, Road vehicle systems, Vocabularies, Ferrous metals, Organic chemicals, Metalliferous minerals, Construction materials, Testing of metals.


Group Standards of the People's Republic of China, Titanium Molecular Sieve

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Titanium Molecular Sieve

  • GB/T 10504-2008 Molecular sieve 3A
  • GB/T 10504-1989 Molecular sieve 3A
  • GB/T 23135-2008 Drier filter used in refrigerators
  • GB/T 13550-1992 Molecular sieve 5A and its determination
  • GB/T 13550-2015 Molecular sieve 5A and its determination
  • GB/T 10505.2-1989 Determination of abrasion for molecular sieve 3A
  • GB/T 6288-1986 Determination of particle size for granular molecular sieve
  • GB 6288-1986 Determiantion of particle size for granular molecular sieve
  • GB 6286-1986 Method for Determination of Bulk Density of Molecular Sieve
  • GB/T 6286-1986 Determination of bulk density for molecular sieve
  • GB 10505.2-1989 3A Molecular Sieve Wear Rate Determination Method
  • GB 6287-1986 Determination of static adsorbed water for molecular sieve
  • GB/T 8770-1988 Determination of dynamic adsorbed water for molecular sieve
  • GB/T 6287-1986 Determination of static adsorbed water for molecular sieve
  • GB/T 8770-2014 Determination of dynamic water absorption capability for molecular sieve
  • GB/T 10505.4-1989 Determination of water content for packaged molecular sieve 3A
  • GB 10505.4-1989 3A method for determination of moisture content in molecular sieve packaging
  • GB/T 4698.17-1996 Sponge titanium, titanium and titanium alloys--Determination of magnesium content--Flame atomic absorption spectrometric method
  • GB/T 4698.18-1996 Sponge titanium, titanium and titanium alloys--Determination of tin content--Flame atomic absorption spectrometric method
  • GB/T 10505.3-1989 Determination of static absorbed ethene and nitrogen for molecular sieve 3A
  • GB 10505.3-1989 3A Molecular Sieve Static Ethylene and Nitrogen Adsorption Determination Method
  • GB/T 4698.4-2017 Methods for chemical analysis of titanium sponge,titanium and titanium alloys.Part 4:Determination of manganese content.Potassium periodate spectrophotometry and inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.10-2020 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 10:Determination of chromium content—Ammonium ferrous sulfate titration and inductively coupled plasma atomic emission spectrometry(with vanadium)

Professional Standard - Chemical Industry, Titanium Molecular Sieve

  • HG/T 2690-2012 Molecular sieve 13X
  • HG/T 2524-2010 Molecular sieve 4A
  • HG/T 4364-2012 Carbon molecular sieve
  • HG/T 2690-1995 13X molecular sieve
  • HG/T 2524-1993 4A molecular sieve
  • HG/T 5335~5339-2018 Determination method of molecular sieve adsorption temperature rise, determination method of molecular sieve dusting degree, lithium low-silicon X-type molecular sieve, molecular sieve adsorbent for decarboxylation and stable isotope 15N-labeled melamine
  • HG/T 2783-1996 Molecular sieve crush resistance test method
  • HG/T 4220-2011 Molecular sieve desiccant of dehydration refrigerant
  • HG/T 4226-2011 Solid core desiccant of dehydration refrigerant
  • HG/T 2691-1995 Determination of Dynamic Carbon Dioxide Adsorption by Zeolite Molecular Sieves
  • HG/T 3590-1999 Test method of Attrition of molecular Sieve Desiccant Used in Refrigeration System

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, Titanium Molecular Sieve

  • GB/T 10504-2017 Molecular sieve 3A
  • GB/T 33032-2016 Molecular sieve—Terminology
  • GB/T 35109-2017 Static test method of nitrogen and oxygen separation for molecular sieves
  • GB/T 4698.28-2017 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 28:Determination of ruthenium content—Inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.27-2017 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 27:Determination of neodymium content—Inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.18-2017 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 18:Determination of tin content—Flame atomic absorption spectrometry
  • GB/T 4698.1-2017 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 1:Determination of copper content—Flame atomic absorption spectrometry
  • GB/T 4698.22-2017 Methods for chemical analysis of titanium sponge ,titanium and titanium alloys—Part 22:Determination of niobium content—5-Br-PADAP spectrophotometry and inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.13-2017 Methods for chemical analysis of titanium sponge,titanium and titanium alloys—Part 13:Determination of zirconium content—EDTA complexometric titration and inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.9-2017 Methods for chemical analysis of titanium sponge,titanium and titanium alloys—Part 9:Determination of tin content—Potassium iodate titration and inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.5-2017 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 5:Determination of molybdenum content—Thiocyanate spectrophotometry and inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.24-2017 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 24:Determination of nickel content—Dimethylglyoxime spectrophotometry and inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.8-2017 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 8:Determination of aluminum content—Separation with sodium hydroxide-EDTA complex-metric titration and inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.12-2017 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 12:Determination of vanadium content—Ammonium ferrous sulfate titration and inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.23-2017 Methods for chemical analysis of titanium sponge,titanium and titanium alloys—Part 23:Determination of palladium content—Stannous choride-potassium iodide spectrophotometry and inductively coupled plasma atomic emission spectrometry
  • GB/T 34320-2017 Specification for the use of molecular sieves in SF6 electrical apparatus

工业和信息化部, Titanium Molecular Sieve

  • HG/T 4364-2020 carbon molecular sieve
  • HG/T 5337-2018 Lithium low silicon X-type molecular sieve
  • HG/T 5643-2019 Tubular molecular sieve water permeable membrane module
  • HG/T 5336-2018 Determination method of molecular sieve powder falling degree
  • HG/T 5540-2019 Tubular type A (NaA) molecular sieve water permeable membrane
  • HG/T 2783-2020 Test method for crushing resistance of molecular sieves
  • HG/T 5335-2018 Molecular sieve adsorption temperature rise determination method
  • HG/T 5338-2018 Molecular sieve adsorbent for decarbonizing oxygen compounds
  • HG/T 5530-2019 Methods for analyzing chemical components of silicate molecular sieve catalysts
  • YS/T 1262-2018 Chemical analysis methods for titanium sponge, titanium and titanium alloys. Determination of multi-element content by inductively coupled plasma atomic emission spectrometry.

国家市场监督管理总局、中国国家标准化管理委员会, Titanium Molecular Sieve

  • GB/T 36203-2018 Molecular sieve — Classification
  • GB/T 6286-2021 Determination of bulk density for molecular sieve
  • GB/T 6288-2021 Determination of particle size for granular molecular sieve
  • GB/T 6287-2021 Determination of static adsorbed water for molecular sieve
  • GB/T 4698.17-2019 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 17:Determination of magnesium content—Flame atomic absorption spectrometry
  • GB/T 4698.6-2019 Methods for chemical analysis of titanium sponge,titanium and titanium alloys—Part 6:Determination of boron content—Methylene blue spectrophotometry and inductively coupled plasma atomic emission spectrometry
  • GB/T 4698.21-2019 Methods for chemical analysis of titanium sponge, titanium and titanium alloys—Part 21: Determination of manganese, chromium, nickel, aluminum, molybdenum, tin, vanadium, yttrium, copper and zirconium content—Atomic emission spectrometry

Association Francaise de Normalisation, Titanium Molecular Sieve

  • NF X11-519:1987 Sieves and sieving-Industrial wire screens - Number of blemishes
  • FD X06-121*FD ISO/TR 12845:2010 Selected illustrations of fractional factorial screening experiments
  • NF A06-653:2020 Chemical analysis of titanium and titanium alloys - Determination of iron - Molecular absorption spectrophotometric method
  • NF A06-653:1993 Chemical analysis of titanium and titanium alloys. Determination of iron content. Molecular absorption spectrometry method.
  • A08-652:1994 Chemical analysis of titanium and titanium alloys. Rules to be followed for plasma emission spectrometrie analysis.
  • NF X34-124-1*NF EN ISO 17827-1:2016 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 1 : oscillating screen method using sieves with apertures of 3,15 mm and above
  • NF X34-124-2*NF EN ISO 17827-2:2016 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 2 : vibrating screen method using sieves with aperture of 3,15 mm and below
  • NF A08-653:2021 Chemical analysis of titanium and titanium alloys - Determination of aluminium, copper, iron, manganese, molybdenum and vanadium in TiAlV alloy grades - Atomic absorption spectrometric method
  • NF A08-650:1992 Chemical analysis of titanium and titanium alloys. Detemination of aluminium, vanadium and iron contents in the TA6V alloy by flame atomic absorption spectrophotometry.
  • NF X34-214-1*NF EN 15415-1:2011 Solid recovered fuels - Determination of particle size distribution - Part 1 : screen method for small dimension particles
  • NF A54-107:2021 Nickel alloys - Determination of titanium content - Diantipyrylmethane molecular absorption method
  • NF ISO 11433:2021 Alliages de nickel - Détermination de la teneur en titane - Méthode par spectrophotométrie d'absorption moléculaire au diantipyrylméthane
  • NF A08-313:1995 Chemical analysis of ferrous materials. Determination of titanium in steel and iron. Flame atomic absorption spectrometric method.
  • NF S94-169-1*NF ISO 13179-1:2021 Implants for surgery - Coatings on metallic surgical implants - Part 1 : plasma-sprayed coatings derived from titanium or titanium-6 aluminum-4 vanadium alloy powders

American Society for Testing and Materials (ASTM), Titanium Molecular Sieve

  • ASTM UOP437-81 Size Distribution of Molecular Sieve Particles
  • ASTM UOP438-81 Attrition of Molecular Sieve Particles
  • ASTM D6933-04 Standard Test Method for Oversized Particles in Emulsified Asphalts (Sieve Test)
  • ASTM D6933-08 Standard Test Method for Oversized Particles in Emulsified Asphalts (Sieve Test)
  • ASTM UOP563-90 Packed Apparent Bulk Density of Molecular Sieves
  • ASTM UOP563-14 Packed Apparent Bulk Density of Molecular Sieves
  • ASTM UOP914-92 Automated Crush Strength of Catalysts or Molecular Sieves
  • ASTM UOP434-83 Free Water and Volatile Hydrocarbon Content of Molecular Sieves
  • ASTM D5153-04 Standard Test Method for Palladium in Molecular Sieve Catalyst by Atomic Absorption
  • ASTM E2371-04 Standard Test Method for Analysis of Titanium and Titanium Alloys by Atomic Emission Plasma Spectrometry
  • ASTM D5153-91(1997) Standard Test Method for Palladium in Molecular Sieve Catalyst by Atomic Absorption
  • ASTM D5153-22 Standard Test Method for Palladium in Molecular Sieve Catalyst by Atomic Absorption Spectrophotometry
  • ASTM D5153-10 Standard Test Method for Palladium in Molecular Sieve Catalyst by Atomic Absorption
  • ASTM D5153-10(2016) Standard Test Method for Palladium in Molecular Sieve Catalyst by Atomic Absorption
  • ASTM E1343-90(1997)e1 Standard Test Method for Molecular Weight Cutoff Evaluation of Flat Sheet Ultrafiltration Membranes
  • ASTM D4782-91(1997) Standard Test Method for Palladium in Molecular Sieve Catalyst by Wet Chemistry
  • ASTM UOP912-06 Fluoride in Catalysts, Molecular Sieves, and Aqueous Solutions by Ion Selective Electrode
  • ASTM UOP912-94 Fluoride in Catalysts, Molecular Sieves, and Aqueous Solutions by Ion Selective Electrode
  • ASTM D6579-00 Standard Practice for Molecular Weight Averages and Molecular Weight Distribution of Hydrocarbon and Terpene Resins by Size-Exclusion Chromatography
  • ASTM E2371-13 Standard Test Method for Analysis of Titanium and Titanium Alloys by Direct Current Plasma and Inductively Coupled Plasma Atomic Emission Spectrometry (Performance-Based Test Methodology)
  • ASTM D4782-04 Standard Test Method for Palladium in Molecular Sieve Catalyst by Wet Chemistry
  • ASTM D4782-10 Standard Test Method for Palladium in Molecular Sieve Catalyst by Wet Chemistry
  • ASTM E2371-21 Standard Test Method for Analysis of Titanium and Titanium Alloys by Direct Current Plasma and Inductively Coupled Plasma Atomic Emission Spectrometry (Performance-Based Test Methodology)
  • ASTM E2371-21a Standard Test Method for Analysis of Titanium and Titanium Alloys by Direct Current Plasma and Inductively Coupled Plasma Atomic Emission Spectrometry (Performance-Based Test Methodology)
  • ASTM D4782-10(2016) Standard Test Method for Palladium in Molecular Sieve Catalyst by Wet Chemistry
  • ASTM D6579-06 Standard Practice for Molecular Weight Averages and Molecular Weight Distribution of Hydrocarbon and Terpene Resins by Size-Exclusion Chromatography
  • ASTM D6579-11 Standard Practice for Molecular Weight Averages and Molecular Weight Distribution of Hydrocarbon, Rosin and Terpene Resins by Size-Exclusion Chromatography
  • 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)

(U.S.) Ford Automotive Standards, Titanium Molecular Sieve

Professional Standard - Ferrous Metallurgy, Titanium Molecular Sieve

  • YB/T 4392.3-2014 Sulphat titanium slag.Determination of particle size.Mechanical sieving method

British Standards Institution (BSI), Titanium Molecular Sieve

  • BS 7444:1991 Specification for molecular sieves (of type 4A)
  • BS 6620 Pt.1:1991 Industrial plate screens. Guide for screens of thickness 3 mm and above
  • BS 6620 Pt.2:1991 Industrial plate screens. Guide for screens of thicknessbelow 3 mm
  • PD ISO/TR 12845:2010 Selected illustrations of fractional factorial screening experiments
  • BS IEC 61163-2:1999 Reliability stress screening - Electronic components
  • BS EN 15149-1:2010 Solid biofuels. Determination of particle size distribution. Oscillating screen method using sieve apertures of 1 mm and above
  • BS EN 15149-2:2010 Solid biofuels. Determination of particle size distribution. Vibrating screen method using sieve apertures of 3,15 mm and below
  • BS ISO 22960:2008 Titanium and titanium alloys - Determination of iron - Molecular absorption spectrometry using 1, 10- phenanthroline
  • BS DD CEN/TS 15149-3:2006 Solid biofuels - Methods for the determination of particle size distribution - Rotary screen method
  • BS 3727-13:1965 Methods for the analysis of nickel for use in electronic tubes and valves - Determination of titanium (photometric method)
  • BS EN ISO 17827-2:2016 Solid biofuels. Determination of particle size distribution for uncompressed fuels. Vibrating screen method using sieves with aperture of 3,15 mm and below
  • 23/30456658 DC BS EN ISO 17827-2 Solid biofuels. Determination of particle size distribution for uncompressed fuels - Part 2. Vibrating screen method using sieves with aperture of 3,15 mm and below
  • 23/30456654 DC BS EN ISO 17827-1 Solid biofuels. Determination of particle size distribution for uncompressed fuels - Part 1. Oscillating screen method using sieves with apertures of 3,15 mm and above
  • BS ISO 11433:1993+A1:2013 Nickel alloys. Determination of titanium content. Diantipyrylmethane molecular absorption spectrometric method
  • 20/30408871 DC BS ISO 11433. Nickel alloys. Determination of titanium content. Diantipyrylmethane molecular absorption method

Defense Logistics Agency, Titanium Molecular Sieve

工业和信息化部/国家能源局, Titanium Molecular Sieve

SAE - SAE International, Titanium Molecular Sieve

Society of Automotive Engineers (SAE), Titanium Molecular Sieve

Indonesia Standards, Titanium Molecular Sieve

  • SNI 19-4177-1996 Specification of sieves for size measurement of grains
  • SNI 03-3962-1995 Test method for light sediment grain distribution gravimetrically by sieves

Professional Standard - Petrochemical Industry, Titanium Molecular Sieve

  • SH/T 0340-1992 Determination of crystallinity of NaY molecular sieve
  • SH/T 0339-1992 Determination of unit cell parameters of NaY molecular sieve
  • SH/T 0684-1999 Standard test method for palladium in molecular sieve catalysts and in aluminium oxide base catalysts by atomic absorption spectrometry

International Organization for Standardization (ISO), Titanium Molecular Sieve

  • ISO/TR 12845:2010 Selected illustrations of fractional factorial screening experiments
  • ISO 16014-1:2012 Plastics - Determination of average molecular mass and molecular mass distribution of polymers using size-exclusion chromatography - Part 1: General principles
  • ISO 22960:2008 Titanium and titanium alloys - Determination of iron - Molecular absorption spectrometry using 1, 10-phenanthroline
  • ISO/TR 22957:2009 Document management - Analysis, selection and implementation of electronic document management systems (EDMS)
  • ISO 4576:1978 Plastics; Aqueous dispersions of homopolymers and copolymers; Determination of gross particle content by sieve analysis
  • ISO 17827-2:2016 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 2: Vibrating screen method using sieves with aperture of 3,15 mm and below
  • ISO 16014-5:2012 Plastics - Determination of average molecular mass and molecular mass distribution of polymers using size-exclusion chromatography - Part 5: Method using light-scattering detection
  • ISO 16014-1:2003/Cor 1:2005 Plastics - Determination of average molecular mass and molecular mass distribution of polymers using size-exclusion chromatography - Part 1: General principles; Technical Corrigendum 1
  • ISO 11433:2020 Nickel alloys — Determination of titanium content — Diantipyrylmethane molecular absorption method
  • ISO 2208:1973 Phenol, o-cresol, m-cresol and p-cresol for industrial use; Determination of crystallizing point after drying with a molecular sieve
  • ISO 11433:1993 Nickel alloys; determination of titanium content; diantipyrylmethane molecular absorption spectrometric method
  • ISO 11433:1993/Amd 1:2013 Nickel alloys - Determination of titanium content - Diantipyrylmethane molecular absorption spectrometric method - Amendment 1: Alternative procedure for the preparation of the titanium standard solution

Professional Standard - Light Industry, Titanium Molecular Sieve

  • QB/T 1297-1991 Molecular sieve filters intended to be used in household refrigerators

National Metrological Technical Specifications of the People's Republic of China, Titanium Molecular Sieve

  • JJF 1891-2021 Calibration Specification for Medical Oxygen Generators with Molecular Sieve

Fujian Provincial Standard of the People's Republic of China, Titanium Molecular Sieve

  • DB35/T 2098-2022 Technical specification for molecular sieve water treatment system

Universal Oil Products Company (UOP), Titanium Molecular Sieve

  • UOP 563-2014 Packed Apparent Bulk Density of Molecular Sieves
  • UOP 912-2006 Fluoride in Catalysts, Molecular Sieves, and Aqueous Solutions by Ion Selective Electrode

Professional Standard - Agriculture, Titanium Molecular Sieve

  • GB 8770-1988 Molecular sieve dynamic water adsorption determination method
  • GB 3636-1983 Method for determination of wear rate of fertilizer catalyst, molecular sieve and adsorbent
  • GB 3635-1983 Method for determination of crushing strength of fertilizer catalyst, molecular sieve and adsorbent particles

Professional Standard - Business, Titanium Molecular Sieve

  • SB/T 10932-2012 Controlled atmosphere storage appliance.Molecular sieve oxygen adsorber

Korean Agency for Technology and Standards (KATS), Titanium Molecular Sieve

  • KS M 1425-2004 Testing method for particle size distribution of palletized media by sieving
  • KS A IEC 61163-2:2003 Reliability stress screening-Part 2:Electronic components
  • KS D 2086-2019 Methods for atomic emission spectrometric analysis of titanium
  • KS D ISO 22960-2010(2020) Titanium and titanium alloys-Determination of iron-Molecular absorption spectrometry using 1,10-phenanthroline
  • KS D ISO 22960:2010 Titanium and titanium alloys-Determination of iron-Molecular absorption spectrometry using 1,10-phenanthroline
  • KS A IEC 60300-3-7:2003 Dependability management-Part 3:Application guide-Section 7:Reliability stress screening of electronic hardware
  • KS D ISO 11433:2018 Nickel alloys — Determination of titanium content — Diantipyrylmethane molecular absorption spectrometric method
  • KS D ISO 11433:2012 Nickel alloys-Determination of titanium content-Diantipyrylmethane molecular absorption spectrometric method

Danish Standards Foundation, Titanium Molecular Sieve

  • DS/ISO/TR 12845:2010 Selected illustrations of fractional factorial screening experiments
  • DS/ISO 13179-1:2021 Implants for surgery – Coatings on metallic surgical implants – Part 1: Plasma-sprayed coatings derived from titanium or titanium-6 aluminum-4 vanadium alloy powders

Military Standard of the People's Republic of China-General Armament Department, Titanium Molecular Sieve

  • GJB 4865A-2012 General specifications for airborne molecular sieve oxygen production equipment
  • GJB 4865-2003 General specifications for aircraft airborne molecular sieve oxygen generation systems

Taiwan Provincial Standard of the People's Republic of China, Titanium Molecular Sieve

RU-GOST R, Titanium Molecular Sieve

  • GOST 18318-1994 Metallic powders. Determination of particle size by dry sieving
  • GOST 18318-1973 Metal powders. Method of sieve analysis
  • GOST 32989.1-2014 Solid biofuels. Determination of particle size distribution. Part 1. Oscillating screen method using sieve apertures of 1 mm and above
  • GOST 32989.2-2014 Solid biofuels. Determination of particle size distribution. Part 2. Vibrating screen method using sieve apertures of 3,15 mm and below

Japanese Industrial Standards Committee (JISC), Titanium Molecular Sieve

  • 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 H 1632-3:2014 Titanium.ICP atomic emission spectrometry.Part 3: Determination of boron
  • JIS H 1632-1:2014 Titanium.ICP atomic emission spectrometry.Part 1: General requirements and sample decomposition
  • JIS K 6828-3:2003 Plastics -- Polymer dispersions -- Determination of sieve residue (gross particle and coagulum content)
  • JIS G 1257-9:2013 Iron and steel -- Atomic absorption spectrometric method -- Part 9: Determination of titanium -- Flame atomization after decomposition with acids
  • JIS M 8219-1:2012 Iron ores -- Determination of titanium -- Part 1: Flame atomic absorption spectrometric method
  • JIS M 8219-1 AMD 1:2022 Iron ores -- Determination of titanium -- Part 1: Flame atomic absorption spectrometric method (Amendment 1)

Professional Standard - Medicine, Titanium Molecular Sieve

  • YY/T 0298-1998 General specification for medical oxygen generator with molecular sieve

KR-KS, Titanium Molecular Sieve

International Electrotechnical Commission (IEC), Titanium Molecular Sieve

  • IEC 61163-2:1998 Reliability stress screening - Part 2: Electronic components
  • IEC 62321-3-2:2013 Determination of certain substances in electrotechnical products - Part 3-2: Screening test methods - Screening of total bromine in polymers and electronics by combustion - Ion chromatography (C-IC)
  • IEC 60300-3-7:1999 Dependability management - Part 3-7: Application guide - Reliability stress screening of electronic hardware

North Atlantic Treaty Organization Standards Agency, Titanium Molecular Sieve

  • STANAG 3865-1986 PHYSIOLOGICAL REQUIREMENTS FOR AIRCRAFT MOLECULAR SIEVE OXYGEN CONCENTRATING SYSTEMS

RO-ASRO, Titanium Molecular Sieve

Professional Standard - Coal, Titanium Molecular Sieve

  • MT/T 1135-2011 General technical conditions of Carbon Molecular Sieve separation nitrogen producing device for coal mine

Professional Standard - Post and Telecommunication, Titanium Molecular Sieve

  • YD 330-1987 Technical requirements for heatless regenerative molecular sieve drying and aerating equipment

European Association of Aerospace Industries, Titanium Molecular Sieve

  • AECMA PREN 4800-3-2001 Aerospace Series Titanium and Titanium Alloys Technical Specification Part 3: Tube Edition P1
  • AECMA PREN 4800-3-2002 Aerospace Series Titanium and Titanium Alloys Technical Specification Part 3: Tube Edition P1 [Replaced: ASD-STAN PREN 3544-4]
  • AECMA PREN 4800-003-2009 Aerospace series Titanium and titanium alloys Technical specification Part 003: Tube Edition P 2

AENOR, Titanium Molecular Sieve

  • UNE 38861:2012 Titanium and titanium alloys. Determination of iron. Molecular absorption spectrometry using 1,10-phenanthroline.

Professional Standard - Machinery, Titanium Molecular Sieve

  • JB/T 14411-2023 Diesel engines — Coated zeolite SCR catalyst — Chemical composition analysis method

Professional Standard - Energy, Titanium Molecular Sieve

  • NB/SH/T 6015-2020 Determination of Unit Cell Parameters of ZSM-23 Molecular Sieve by X-ray Diffraction Method
  • NB/SH/T 6033-2021 Determination of unit cell parameters of ZSM-22 molecular sieve X-ray diffraction method
  • NB/SH/T 6024-2021 Determination of Relative Crystallinity of ZSM-5 Molecular Sieve X-ray Diffraction Method
  • NB/SH/T 0339-2021 Determination of Unit Cell Parameters of Faujasite Molecular Sieve X-ray Diffraction Method

BE-NBN, Titanium Molecular Sieve

  • NBN T 04-290-1985 Phenoland cresols for industrial use - Determination of crystallizing point after drying with a molecular sieve
  • NBN T 03-426-1988 Aluminium oxide primarily used for the production of aluminium - Determination of the fine particle size distribution (less than 60 u.m) - Method using electroformed sieves

Henan Provincial Standard of the People's Republic of China, Titanium Molecular Sieve

  • DB41/T 2402-2023 Management specification for the use of medical molecular sieve oxygen-generating equipment in medical institutions

European Committee for Standardization (CEN), Titanium Molecular Sieve

  • EN 15149-1:2010 Solid biofuels - Determination of particle size distribution - Part 1: Oscillating screen method using sieve apertures of 1 mm and above
  • EN 15149-2:2010 Solid biofuels - Determination of particle size distribution - Part 2: Vibrating screen method using sieve apertures of 3,15 mm and below
  • prEN ISO 17827-2 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 2: Vibrating screen method using sieves with aperture of 3,15 mm and below (ISO/DIS 17827-2:2022)
  • prEN ISO 17827-1 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 1: Oscillating screen method using sieves with apertures of 3,15 mm and above (ISO/DIS 17827-1:2022)
  • EN 933-2:1996 Tests for Geometrical Properties of Aggregates - Part 2: Determination of Particle Size Distribution - Test Sieves, Nominal Size of Apertures

US-CFR-file, Titanium Molecular Sieve

  • CFR 7-361.2-2014 Agriculture. Part361:Importation of seed and screenings under the federal seed act. Section361.2:Preemption of State and local laws; general restrictions on the importation of seed and screenings.

PL-PKN, Titanium Molecular Sieve

  • PN C04860-10-1991 Ion exchange resins. Testing methods. Determination of the total strong acidic and weak acidic exchange capacitias of cationites
  • PN C04860-05-1991 ?on exchange resins Testing methods Determination of granulometric composition (mesh analysis)

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., Titanium Molecular Sieve

  • ASHRAE 4131-1998 Drying R-407C and R-410A Refrigerant Blends with Molecular Sieve Desiccants

Professional Standard - Electron, Titanium Molecular Sieve

  • SJ/T 10898-1996 Spectrophotometric analysis of iron oxide and titania in electronic glass
  • SJ/T 10552-2021 Method of emission specthchemical analysis of impurities in TiO2 for use in electron ceramics
  • SJ/T 10552-1994 Method of emission specthochemical analysis of impurities in TiO2 for use in electron ceramics

German Institute for Standardization, Titanium Molecular Sieve

  • DIN EN ISO 17827-1:2016-10 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 1: Oscillating screen method using sieves with apertures of 3,15 mm and above (ISO 17827-1:2016); German version EN ISO 17827-1:2016 / Note: To be replaced by DI...
  • DIN EN ISO 17827-2:2016-10 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 2: Vibrating screen method using sieves with aperture of 3,15 mm and below (ISO 17827-2:2016); German version EN ISO 17827-2:2016 / Note: To be replaced by DIN E...
  • DIN EN 60512-23-4:2002-07 Connectors for electronic equipment - Tests and measurements - Part 23-4: Screening and filtering tests; Test 23d: Transmission line reflections in the time domain (IEC 60512-23-4:2001); German version EN 60512-23-4:2001
  • DIN EN 15149-1:2011 Solid biofuels - Determination of particle size distribution - Part 1: Oscillating screen method using sieve apertures of 1 mm and above; German version EN 15149-1:2010
  • DIN EN 15149-2:2011 Solid biofuels- Determination of particle size distribution - Part 2: Vibrating screen method using sieve apertures of 3,15 mm and below; German version EN 15149-2:2010
  • DIN EN ISO 17827-2:2023-01 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 2: Vibrating screen method using sieves with aperture of 3,15 mm and below (ISO/DIS 17827-2:2022); German and English version prEN ISO 17827-2:2022 / Note: Date ...
  • DIN EN ISO 17827-1:2023-01 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 1: Oscillating screen method using sieves with apertures of 3,15 mm and above (ISO/DIS 17827-1:2022); German and English version prEN ISO 17827-1:2022 / Note: Da...

ES-UNE, Titanium Molecular Sieve

  • UNE-EN ISO 17827-2:2016 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 2: Vibrating screen method using sieves with aperture of 3,15 mm and below (ISO 17827-2:2016)
  • UNE-EN ISO 17827-1:2016 Solid biofuels - Determination of particle size distribution for uncompressed fuels - Part 1: Oscillating screen method using sieves with apertures of 3,15 mm and above (ISO 17827-1:2016)
  • ISO/DIS 17827-1:2023 Solid biofuels — Determination of particle size distribution for uncompressed fuels — Part 1: Oscillating screen method using sieves with apertures of 3,15 mm and above
  • ISO/DIS 17827-2:2023 Solid biofuels — Determination of particle size distribution for uncompressed fuels — Part 2: Vibrating screen method using sieves with aperture of 3,15 mm and below

CH-SNV, Titanium Molecular Sieve

Shaanxi Provincial Standard of the People's Republic of China, Titanium Molecular Sieve

  • DB61/T 1294-2019 Determination of low-concentration sulfur dioxide in exhaust gas from stationary pollution sources Molecular sieve adsorption tube sampling-ion chromatography

Professional Standard - Environmental Protection, Titanium Molecular Sieve

  • HJ 807-2016 Water quality-Determination of molybdenum and titanium by graphite furnace atomic absorption spectrophotometry

Professional Standard - Commodity Inspection, Titanium Molecular Sieve

  • SN/T 2592.3-2010 Determination of organotin compounds in electrical and electronic equipment.Part 3:Screening by inductively coupled plasma mass spectrometry
  • SN/T 0564.1-2013 Titanium dioxide.Part 1:Determination of ferric oxide content.Atomic absorption method
  • SN/T 2003.7-2011 Screening method of lead,mercury,cadmium,chromium and bromine in electrical and electronic equipments.Part 7:Laser induced breakdown spectroscopy
  • SN/T 3319.1-2012 Ferrophosphorus for import and export.Part 1:Determination of phosphorus、 manganese silicon、titanium、vanadium、chromium.Inductively coupled plasma atomic emission spectrometric method
  • SN/T 2003.6-2010 Determination of lead,mercury,cadmium and chromium in electrical and electronic equipment.Part 6:Qualitative screening by spark discharge emission spectrometry

Professional Standard - Aviation, Titanium Molecular Sieve

  • HB 7716.17-2022 Spectral analysis method of chemical composition of titanium alloys Part 17: Determination of boron content by inductively coupled plasma atomic emission spectrometry
  • HB 7716.18-2022 Spectrometric analysis of titanium alloys – Part 18:Determination of lithium, lead content –Inductively coupled plasma atomic emission spectrometric method
  • HB 7716.16-2022 Spectrometric analysis of titanium alloys – Part 16:Determination of platinum, palladium content –Inductively coupled plasma atomic emission spectrometric method
  • HB 7716.14-2002 Spectrometric analysis of titanium alloys Part 14:Determination of yttrium content-Inductively coupled plasma atomic emission spectrometric method
  • HB 7716.15-2022 Spectrometric analysis of titanium alloys – Part 15:Determination of tungsten, niobium, tantalum, nickel content –Inductively coupled plasma atomic emission spectrometric method
  • HB 7716.7-2002 Spectrometric analysis of titanium alloys Part 7:Determination of copper content-Flame atomic absorption spectrometric method
  • HB 7716.9-2002 Spectrometric analysis of titanium alloys Part 9:Determination of manganese content-Flame atomic absorption spectrometric method
  • HB 7716.11-2002 Spectrometric analysis of titanium alloys Part 11:Determination of iron content-Flame atomic absorption spectrometric method
  • HB 7716.12-2002 Spectrometric analysis of titanium alloys Part 12:Determination of silicon content-Flame atomic absorption spectrometric method
  • HB 7716.1-2002 Spectrometric analysis of titanium alloys Part 1:Determination of aluminum content-Flame atomic absorption spectrometric method
  • HB 7716.2-2002 Spectrometric analysis of titanium alloys Part 2:Determination of vanadium content-Flame atomic absorption spectrometric method
  • HB 7716.3-2002 Spectrometric analysis of titanium alloys Part 3:Determination of chromium content-Flame atomic absorption spectrometric method
  • HB 7716.4-2002 Spectrometric analysis of titanium alloys Part 4:Determination of molybdenum content-Flame atomic absorption spectrometric method
  • HB 7716.6-2002 Spectrometric analysis of titanium alloys Part 6:Determination of tin content-Flame atomic absorption spectrometric method

European Committee for Electrotechnical Standardization(CENELEC), Titanium Molecular Sieve

  • EN 62321-3-2:2014 Determination of certain substances in electrotechnical products - Part 3-2: Screening - Total bromine in polymers and electronics by Combustion - Ion Chromatography




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