ZH

KR

JP

ES

RU

DE

Ketones react with bases

Ketones react with bases, Total:223 items.

In the international standard classification, Ketones react with bases involves: Construction materials, Structures of buildings, Analytical chemistry, Products of the chemical industry, Paint ingredients, Construction of railways, Hydraulic energy engineering, Road engineering, Equipment for the chemical industry, Nuclear energy engineering, Protection against fire, Thermodynamics and temperature measurements, Adhesives, Radiation measurements, Quantities and units, Road vehicles in general, Medical equipment, Character symbols, Physics. Chemistry, Quality, Production in the chemical industry, Extraction and processing of petroleum and natural gas, Electronic display devices, Paper and board, Plastics.


CZ-CSN, Ketones react with bases

Association Francaise de Normalisation, Ketones react with bases

  • NF P18-584:1991 Aggregates - Potentiel alkali reactivity of alkali-silica
  • NF P18-594:2015 Aggregates - Alkali Reactivity Test Methods
  • FD P18-464:2021 Concrete - Provisions for the prevention of alkali-silica reaction
  • NF P18-454:2021 Concrete - Reactivity of a concrete formula with regard to the alkali-aggregate reaction - Performance test
  • XP P18-543:2017 Granulats - Étude pétrographique des granulats appliquée à l'alcali-réaction
  • FD P18-541:2023 Aggregates - Guide for the development of the career file in the context of the prevention of disorders linked to alkali reaction
  • FD P18-542:2023 Aggregates - Qualification criteria for natural aggregates for hydraulic concrete with respect to alkali reaction
  • FD P18-456:2004 Concrete - Reactivity of a concrete formula with respect to the alkali-aggregate reaction - Criteria for interpretation of the performance test results
  • NF P18-589:1992 Aggregates - Potential reactivity of alkali silica and alkali silicate type - Kinetic test - Chemical method
  • NF T76-116:1987 Adhesives. Reactive adhesives with organic binders. Determination of conventionel reactivity.
  • FD P18-542:2017 Agregates - Criteria for qualification natural agregates for hydraulic concrete with respect to the alkali-reaction
  • NF ISO 22146:2019 Carbonated basic mineral amendments - Determination of reactivity - Automatic titration method with citric acid
  • NF EN 16357:2013 Carbonated basic mineral amendments - Determination of reactivity - Automatic titration method with citric acid
  • FD P18-541:2015 Aggregates - Guide for the drafting of the quarry specification for the purposes of the prevention of deleterious effects of alkali-aggregate reactions
  • NF EN 13971:2020 Basic carbonate and silicate mineral amendments - Determination of reactivity - Potentiometric titration method with hydrochloric acid
  • NF M64-100:1992 Mechanical equipment of nuclear reactors : design and construction rules. Hard facing by cobalt alloys melting for mechanical equipment of nuclear reactors.

SCC, Ketones react with bases

  • AENOR UNE 146509:2018 Determination of the potential reactivity of aggregates with alkalis. Concrete prism method.
  • AENOR UNE 146512:2018 Aggregate tests. Determination of the potential reactivity of aggregates. Chemical method. Determination of alkali-silica and alkali-silicate reactivity.
  • AENOR UNE 146513:2018 Aggregate tests. Determination of the potential reactivity of aggregates. Chemical method. Determination of alkali-carbonate reactivity.
  • SN-CEN/TR 16349:2012 Framework for a specification on the avoidance of a damaging Alkali-Silica Reaction (ASR) in concrete
  • BS PD CEN/TR 16349:2012 Framework for a specification on the avoidance of a damaging Alkali-Silica Reaction (ASR) in concrete
  • DANSK DS/CEN/TR 16349:2012 Framework for a specification on the avoidance of a damaging Alkali-Silica Reaction (ASR) in concrete
  • CSA A864-2000(R2005) Guide to the Evaluation and Management of Concrete Structures Affected by Alkali-Aggregate Reaction
  • AASHTO T 299-1993(2004) Standard Method of Test for Rapid Identification of Alkali-Silica Reaction Products in Concrete
  • SN-CR 1901:1995 Regional Specifications and Recommendations for the avoidance of damaging alkali silica reactions in concrete
  • AENOR UNE 146508:2018 Aggregate test. Determination of the potential alkali-silica and alkali-silicate reactivity of aggregates. Accelerated method in mortar specimens.
  • NS 3656:1993 Concrete testing - Rate of reaction as a function of temperature
  • SA HB 79:2015 Alkali Aggregate Reaction - Guidelines on Minimising the Risk of Damage to Concrete Structures in Australia
  • AASHTO T 364-2017(2021) Standard Method of Test for Determination of Composite Activation Energy of Aggregates due to Alkali-Silica Reaction (Chemical Method)
  • BS DD 218:1995 Testing aggregates. Method for determination of alkali-silica reactivity. Concrete prism method
  • ANS 57.5-1978 Light Water Reactors Fuel Assembly Mechanical Design and Evaluation
  • ANS 19.11-2017(R2022) Calculation and Measurement of the Moderator Temperature Coefficient of Reactivity for Pressurized Water Reactors
  • AASHTO TP 109-2014(2016) Standard Method of Test for Nonlinear Impact Resonance Acoustic Spectroscopy (NIRAS) for Concrete Specimens with Damage from the Alkali-Silica Reaction (ASR)
  • AASHTO T 379-2018(2022) Standard Method of Test for Nonlinear Impact Resonance Acoustic Spectroscopy (NIRAS) for Concrete Specimens with Damage from the Alkali–Silica Reaction (ASR)

未注明发布机构, Ketones react with bases

  • ASTM RR-C01-1009 1998 PS081-Test Method for Length Change of Mortar Bars Caused by Reaction Between Hydraulic Cement and Alkali-Reactive Aggregate
  • NF P18-454:2004 Contrete - Reactivity of a concrete formula with regard to the alkali-aggregate reaction - Performance test.
  • ASTM RR-C09-1021 1999 C1260-Standard Test Method for Potential Alkali Reactivity of Aggregates (Mortar-Bar Method)
  • ASTM RR-C09-1002 1989 C1105- Test Method for Length of Change of Concrete Due to Alkali-Carbonate Rock Reaction
  • AS 1141.60.1:2014/Amdt 1:2019 Methods for sampling and testing aggregates, Method 60.1: Potential alkali-silica reactivity — Accelerated mortar bar method
  • AS 1141.60.1:2014(R2019) Methods for sampling and testing aggregates, Method 60.1: Potential alkali-silica reactivity — Accelerated mortar bar method
  • AS 1141.60.2:2014/Amdt 1:2016 Methods for sampling and testing aggregates, Method 60.2: Potential alkali-silica reactivity — Concrete prism method

American Society for Testing and Materials (ASTM), Ketones react with bases

  • ASTM C1073-18 Standard Test Method for Hydraulic Activity of Slag Cement by Reaction with Alkali
  • ASTM C1073-97a(2011) Standard Test Method for Hydraulic Activity of Ground Slag by Reaction with Alkali
  • ASTM C1073-12 Standard Test Method for Hydraulic Activity of Slag Cement by Reaction with Alkali
  • ASTM C1073-18(2023) Standard Test Method for Hydraulic Activity of Slag Cement by Reaction with Alkali
  • ASTM C289-01 Standard Test Method for Potential Alkali-Silica Reactivity of Aggregates (Chemical Method)
  • ASTM C289-02 Standard Test Method for Potential Alkali-Silica Reactivity of Aggregates (Chemical Method)
  • ASTM C289-94 Standard Test Method for Potential Alkali-Silica Reactivity of Aggregates (Chemical Method)
  • ASTM C1260-22 Standard Test Method for Potential Alkali Reactivity of Aggregates (Mortar-Bar Method)
  • ASTM C1260-14 Standard Test Method for Potential Alkali Reactivity of Aggregates 40;Mortar-Bar Method41;
  • ASTM C1260-07 Standard Test Method for Potential Alkali Reactivity of Aggregates (Mortar-Bar Method)
  • ASTM C1260-23 Standard Test Method for Potential Alkali Reactivity of Aggregates (Mortar-Bar Method)
  • ASTM C289-03 Standard Test Method for Potential Alkali-Silica Reactivity of Aggregates (Chemical Method)
  • ASTM C1260-01 Standard Test Method for Potential Alkali Reactivity of Aggregates (Mortar-Bar Method)
  • ASTM C1260-94 Standard Test Method for Potential Alkali Reactivity of Aggregates (Mortar-Bar Method)
  • ASTM C177-85(1993)e1 Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Guarded-Hot-Plate Apparatus
  • ASTM C1778-22 Standard Guide for Reducing the Risk of Deleterious Alkali-Aggregate Reaction in Concrete
  • ASTM C1778-14 Standard Guide for Reducing the Risk of Deleterious Alkali-Aggregate Reaction in Concrete
  • ASTM C1778-16 Standard Guide for Reducing the Risk of Deleterious Alkali-Aggregate Reaction in Concrete
  • ASTM C1778-23 Standard Guide for Reducing the Risk of Deleterious Alkali-Aggregate Reaction in Concrete
  • ASTM C1260-05a Standard Test Method for Potential Alkali Reactivity of Aggregates (Mortar-Bar Method)
  • ASTM C1260-05 Standard Test Method for Potential Alkali Reactivity of Aggregates (Mortar-Bar Method)
  • ASTM C1778-19a Standard Guide for Reducing the Risk of Deleterious Alkali-Aggregate Reaction in Concrete
  • ASTM C1778-19 Standard Guide for Reducing the Risk of Deleterious Alkali-Aggregate Reaction in Concrete
  • ASTM C1778-19b Standard Guide for Reducing the Risk of Deleterious Alkali-Aggregate Reaction in Concrete
  • ASTM C1778-20 Standard Guide for Reducing the Risk of Deleterious Alkali-Aggregate Reaction in Concrete
  • ASTM C1073-97a Standard Test Method for Hydraulic Activity of Ground Slag by Reaction with Alkali
  • ASTM C1073-97a(2003) Standard Test Method for Hydraulic Activity of Ground Slag by Reaction with Alkali
  • ASTM C1293-18a Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C227-97a Standard Test Method for Potential Alkali Reactivity of Cement-Aggregate Combinations (Mortar-Bar Method)
  • ASTM C1293-20 Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C1105-08 Standard Test Method for Length Change of Concrete Due to Alkali-Carbonate Rock Reaction
  • ASTM C1293-06 Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C1293-18 Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C1293-20a Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C1105-23a Standard Test Method for Length Change of Concrete Due to Alkali-Carbonate Rock Reaction
  • ASTM C289-07 Standard Test Method for Potential Alkali-Silica Reactivity of Aggregates (Chemical Method)
  • ASTM C1105-23 Standard Test Method for Length Change of Concrete Due to Alkali-Carbonate Rock Reaction
  • ASTM C227-03 Standard Test Method for Potential Alkali Reactivity of Cement-Aggregate Combinations (Mortar-Bar Method)
  • ASTM C1293-08b Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C1293-08b(2015) Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C1293/C1293M-23a Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C227-10 Standard Test Method for Potential Alkali Reactivity of Cement-Aggregate Combinations (Mortar-Bar Method)
  • ASTM C1293-05 Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C1293-01 Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C1293/C1293M-23 Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction
  • ASTM C586-11 Standard Test Method for Potential Alkali Reactivity of Carbonate Rocks as Concrete Aggregates (Rock-Cylinder Method)
  • ASTM D686-93 Standard Test Methods of Qualitative Examination of Mineral Filler and Mineral Coating of Paper
  • ASTM D6869-17 Standard Test Method for Coulometric and Volumetric Determination of Moisture in Plastics Using the Karl Fischer Reaction (the Reaction of Iodine with Water)
  • ASTM C1105-95(2002) Standard Test Method for Length Change of Concrete Due to Alkali-Carbonate Rock Reaction
  • ASTM C1105-95 Standard Test Method for Length Change of Concrete Due to Alkali-Carbonate Rock Reaction
  • ASTM C1105-05 Standard Test Method for Length Change of Concrete Due to Alkali-Carbonate Rock Reaction
  • ASTM C1105-08a Standard Test Method for Length Change of Concrete Due to Alkali-Carbonate Rock Reaction
  • ASTM C1105-08a(2016) Standard Test Method for Length Change of Concrete Due to Alkali-Carbonate Rock Reaction

ACI - American Concrete Institute, Ketones react with bases

Taiwan Provincial Standard of the People's Republic of China, Ketones react with bases

  • CNS 13618-1995 Method of Test for Potential Alkali-Silica Reactivity of Aggregates(Chemical Method)
  • CNS 13619-1995 Method of Test for Potential Alkali Reactivity of Cement-Aggregate Combinations(Mortar-Bar Method)
  • CNS 11296-10-1985 Quantities and Units of Nuclear Reactions and Ionizing Radiations
  • CNS 11296.10-1985 Quantities and Units of Nuclear Reactions and Ionizing Radiations
  • CNS 14793-2003 Method of test for effectiveness of mineral admixtures or ground blast-furnace slag in preventing excessive expansion of concrete due to the alkali-silica reaction

RO-ASRO, Ketones react with bases

  • STAS 5440-1970 Cement concrete INSPECTION OF THE REACTION BETWEEN THE ALKALIS AND AGGREGATES
  • STAS 9538/5-1974 PAPER FOR CHROMATOGRAPHY AND ELECTROPHORESIS Determination of ninhydrine reaction
  • STAS 6318-1961 Organic dyes. Specific reactions with concentrated acids and concentrated sodium hydroxide

PL-PKN, Ketones react with bases

  • PN B06714-34-1991 Mineral aggregates Testing Determination of alkaline reactivity
  • PN B06714-46-1992 Mineral aggrchates Testings Determination of potential alkali reactivity by fast method
  • PN Z04033 Arkusz 03-1973 Air purity protection Tests for benzene Determination o? benzene in work station by nitration method with acetone

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Ketones react with bases

  • GB/T 29597-2013 Reactive dyes.Determination of stability to alkalis
  • GB/T 9339-2014 Reactive dyes.The linkage between the dyes and the cellulosic fibers.Determination of the acidic or basic hydrolizing properties
  • GB/T 9339-2006 Reactive dyes. The linkage between the dyes and the cellulosic fibers. Determination of the acidic or basic hydrolizing properties
  • GB 9339-1988 Determination of the acidic or basic hydrolizing properties on the linkage between the reactive dyes and the cellulosic fibers
  • GB/T 50733-2011 Technical code for prevention of alkali-aggregate reaction in concrete

British Standards Institution (BSI), Ketones react with bases

  • BS 7943:1999 Guide to the interpretation of petrographical examinations for alkali-silica reactivity
  • BS 812-123:1999 Testing aggregates - Method for determination of alkali-silica reactivity - Concrete prism method
  • BS 4877:2016 Nuclear reactor instrumentation and control. Code of practice
  • DD 249-1999 Testing aggregates. Method for the assessment of alkali-silica reactivity. Potential accelerated mortar-bar method
  • BS DD 249:1999 Testing aggregates - Method for the assessment of alkali-silica reactivity - Potential accelerated mortar-bar method

Korean Agency for Technology and Standards (KATS), Ketones react with bases

  • KS F 2585-2020 Standard test method for alkali-silica reaction of concrete
  • KS F 2585-2010 Standard test method for alkali-silica reaction of concrete
  • KS F 2545-2002 Testing method for potential reactivity of aggregates(Chemical method)
  • KS F 2585-2010(2020) Standard test method for alkali-silica reaction of concrete
  • KS F 2546-2002 Testing method for potential reactivity of aggregate (Mortar-bar method)
  • KS F 2546-2000 Testing method for potential reactivity of aggregate (Mortar-bar method)
  • KS F 2546-1982 Testing method for potential reactivity of aggregate (Mortar-bar method)
  • KS F 2547-1997 Testing method for potential alkali reactivity of carbonate rocks for concrete aggregates(rock cylinder method)
  • KS F 2547-1982 Testing method for potential alkali reactivity of carbonate rocks for concrete aggregates(rock cylinder method)
  • KS F 2825-1993 Methods of test for production control of concrete. Method of rapid test for identification of the alkali reactivity of aggregates
  • KS F 2546-2014 Standard test method for potential alkali reactivity of cement-aggregate combinations(mortar-bar method)
  • KS F 2547-2017 Testing method for potential alkali reactivity of carbonate rocks for concrete aggregates(rock cylinder method)
  • KS F 2825-2007(2022) Testing method for rapid identification of the alkali reactivity of aggregates-Methods of test for production control of concrete
  • KS F 2547-2017(2022) Testing method for potential alkali reactivity of carbonate rocks for concrete aggregates(rock cylinder method)
  • KS F 2825-2022 Testing method for rapid identification of the alkali reactivity of aggregates-Methods of test for production control of concrete
  • KS F 2547-2022 Testing method for potential alkali reactivity of carbonate rocks for concrete aggregates(rock cylinder method)

IT-UNI, Ketones react with bases

  • UNI 11504-2021 Alkali-aggregate reaction in concrete - Detection of potential alkali-reactivity of aggregates for concrete - Test of accelerated expansion of mortar bars
  • UNI 11834-2021 Cements resistant to alkali-silica reaction with specified alkali content - Classification and composition
  • UNI 11604-2020 Alkali-aggregate reaction in concrete - Detection of potential alkali-reactivity of aggregates for concrete - Concrete prisms accelerated expansion test
  • UNI 8520-22-2020 Aggregates for concrete - Part 22: Evaluation method of potential alkali-silica reactivity of aggregates

Standard Association of Australia (SAA), Ketones react with bases

  • AS 1141.65:2008 Methods for sampling and testing aggregates - Alkali aggregate reactivity - Qualitative petrological screening for potential alkali-silica reaction
  • HB 79-1996 Alkali Aggregate reaction - Guidelines on Minimising the Risk of Damage to Concrete Structures in Australia
  • AS 1141.60.1:2014 Methods for sampling and testing aggregates, Method 60.1: Potential alkali-silica reactivity — Accelerated mortar bar method
  • AS 1141.60.2:2014 Methods for sampling and testing aggregates, Method 60.2: Potential alkali-silica reactivity — Concrete prism method
  • AS 1678.X1:1993 Mixed dangerous goods. Packaged, compatible. Do not react violently with water

Japanese Industrial Standards Committee (JISC), Ketones react with bases

  • JIS A 1146:2017 Method of test for alkali-silica reactivity of aggregates by mortar-bar method
  • JIS A 1145:2007 Method of test for alkali-silica reactivity of aggregates by chemical method
  • JIS A 1146:2007 Method of test for alkali-silica reactivity of aggregates by mortar-bar method
  • JIS A 1145:2017 Method of test for alkali-silica reactivity of aggregates by chemical method
  • JIS A 1146 AMD 1:2022 Method of test for alkali-silica reactivity of aggregates by mortar-bar method (Amendment 1)
  • JIS A 1145:2001 Method of test for alkali-silica reactivity of aggregates by chemical method
  • JIS A 1146:2001 Method of test for alkali-silica reactivity of aggregates by mortar-bar method
  • JIS A 1145 AMD 1:2022 Method of test for alkali-silica reactivity of aggregates by chemical method (Amendment 1)
  • JIS A 1146 ERRATUM 1:2001 Method of test for alkali-silica reactivity of aggregates by mortar-bar method (Erratum 1)
  • JIS A 1804:2001 Methods of test for production control of concrete -- Method of rapid test for identification of alkali reactivity of aggregate

ES-UNE, Ketones react with bases

  • UNE 146512:2018 Test for aggregates. Determination of the potential reactivity of aggregates. Chemical method. Determination of the reactivity alkali-silica and alkali-silicate.
  • UNE 146513:2018 Test for aggregates. Determination of the potential reactivity of aggregates. Chemical method. Determination of the alkali-carbonate reactivity.
  • UNE 83968:2016 EX Concrete durability. Evaluation of the expansion of mortar bars using potential reactive and non-reactive aggregate mixes, against alkali-silica and alkali-silicate . Accelerated method of mortar bars.
  • UNE 146508:2018 Test for aggregates. Determination of the alkali-silica and alkali-silicate potential reactivity of aggregates. Accelerated mortar bar test.
  • UNE 146508:2023 Test for aggregates. Determination of the alkali-silica and alkali-silicate potential reactivity of aggregates. Accelerated mortar bar test.

NL-NEN, Ketones react with bases

  • NEN 5925-1988 Aggregates for concrete - Determination of susceptibility for alkali-aggregate reaction

Professional Standard - Electricity, Ketones react with bases

  • DL/T 5298-2013 Technical specifications for inhibiting alkali-aggregate reaction of hydraulic concrete

KR-KS, Ketones react with bases

  • KS F 2545-2022 Test method for potential alkali-reactivity of aggregates (Chemical method)

Liaoning Provincial Standard of the People's Republic of China, Ketones react with bases

  • DB21/T 3933-2024 Technical specifications for preventing alkali aggregate reaction in hydraulic concrete

German Institute for Standardization, Ketones react with bases

  • DIN 25405:1970 Aspects of a safe design of thermal reactors with regard to their reactivity behaviour
  • DIN CEN/TR 16349:2012-11*DIN SPEC 18047:2012-11 Framework for a specification on the avoidance of a damaging Alcali-Silica Reaction (ASR) in concrete; English version CEN/TR 16349:2012
  • DIN 13345:1978 Thermodynamics and kinetics of chemical reactions; symbols, units
  • DIN CEN/TR 16349:2012 Framework for a specification on the avoidance of a damaging Alcali-Silica Reaction (ASR) in concrete; English version CEN/TR 16349:2012

National Fire Protection Association (NFPA), Ketones react with bases

Canadian Standards Association (CSA), Ketones react with bases

  • CSA A864-2000 Guide to the Evaluation and Management of Concrete Structures Affected by Alkali-Aggregate Reaction (First Edition; General Instruction No.1)

Group Standards of the People's Republic of China, Ketones react with bases

  • T/CECS G D69-01-2020 Technical Specification for Inhibiting Alkali-Aggregate Reaction of Highway Concrete
  • T/SDSCCE 010-2021 Process for developing fluoride ketone products using microchannel reactors
  • T/CAQI 110-2020 Specification for verification and evaluation of polymerase chain reaction amplifier
  • T/ZJATA 0016-2023 Chemical experiment reaction risk assessment and prevention technical specification

Professional Standard - Railway, Ketones react with bases

  • TB/T 3054-2002 Technical conditions for prevention of alkali-aggregate reaction in railway concrete engineering

European Committee for Standardization (CEN), Ketones react with bases

  • PD CEN/TR 16349:2012 Framework for a specification on the avoidance of a damaging Alkali-Silica Reaction (ASR) in concrete
  • CEN/TR 16349:2012 Framework for a specification on the avoidance of a damaging Alkali-Silica Reaction (ASR) in concrete

Guizhou Provincial Standard of the People's Republic of China, Ketones react with bases

  • DB52/T 1704-2022 Technical specification for prevention of alkali-aggregate reaction in highway engineering concrete

IN-BIS, Ketones react with bases

  • IS 2386 Pt.7-1963 Test methods for partial aggregates in concrete ⑦ Aggregate alkali reactivity
  • IS 9989-1981 Noise assessment related to community response

American National Standards Institute (ANSI), Ketones react with bases

  • ANSI/ANS 2.23-2002 Nuclear Plant Response to an Earthquake
  • ANSI/ANS 19.11-2017 Calculation and Measurement of the Moderator Temperature Coefficient of Reactivity for Pressurized Water Reactors

AENOR, Ketones react with bases

  • UNE 146507-1:1999 EX TEST FOR AGGREGATES. DETERMINATION OF THE POTENTIAL REACTIVITY OF AGGREGATES. CHEMICAL METHOD. PART 1: DETERMINACION OF THE REACTIVITY ALKALI-SILICA AND ALKALI-SILICATE.
  • UNE 146507-2:1999 EX TEST FOR AGGREGATES. DETERMINATION OF THE POTENCIAL REACTIVITY OF AGGREGATES. CHEMICAL METHOD. PART 2: DETERMINATION OF THE ALKALI-CARBONATE REACTIVITY.
  • UNE 146508:1999 EX TEST FOR AGGREGATES. DETERMINATION OF THE ALKALI-SILICA AND ALKALI-SILICATE POTENCIAL REACTIVITY OF AGGREGATES. ACCELERATED MORTAR BAR TEST.

Danish Standards Foundation, Ketones react with bases

  • DS/CEN/TR 16349:2012 Framework for a specification on the avoidance of a damaging Alkali-Silica Reaction (ASR) in concrete
  • DS/ISO 31/10:1984 Quantities and units of nuclear reactions and ionizing radiations
  • DS/INF 108:1995 Regional Specifications and Recommendations for the avoidance of damaging alkali silica reactions in concrete

Underwriters Laboratories (UL), Ketones react with bases

  • UL TR 34-1993 Reactions of Aluminum and Magnesium with Certain Chlorinated Hydrocarbons

International Organization for Standardization (ISO), Ketones react with bases

  • ISO/TR 3814:1975 The development of tests for measuring "reaction to fire" of building materials
  • ISO/TR 3814:1989 Tests for measuring "reaction-to-fire" of building materials; their development and application
  • ISO/TS 3814:2014 Standard tests for measuring reaction-to-fire of products and materials - Their development and application

Indonesia Standards, Ketones react with bases

  • SNI 18-4149-1996 Personnel qualification for operation and maintenance of nuclear reactor

AASHTO - American Association of State Highway and Transportation Officials, Ketones react with bases

  • T 299-1993 Standard Method of Test for Rapid Identification of Alkali-Silica Reaction Products in Concrete
  • T 364-2017 Standard Method of Test for Determination of Composite Activation Energy of Aggregates due to Alkali–Silica Reaction (Chemical Method)

The American Road & Transportation Builders Association, Ketones react with bases

  • AASHTO T 299-1993(R2009) Standard Method of Test for Rapid Identification of Alkali-Silica Reaction Products in Concrete
  • AASHTO T 299-93(R2004) Standard Method of Test for Rapid Identification of Alkali-Silica Reaction Products in Concrete
  • AASHTO T 299-1993 Standard Method of Test for Rapid Identification of Alkali-Silica Reaction Products in Concrete
  • AASHTO TP 144-2021 Standard Method of Test for Determining the Potential Alkali- Silica Reactivity of Coarse Aggregates (TFHRC-TFAST)
  • AASHTO T 303-2000 Standard Method of Test for Accelerated Detection of Potentially Deleterious Expansion of Mortar Bars Due to Alkali-Silica Reaction
  • AASHTO T 364-2017 Standard Method of Test for Determination of Composite Activation Energy of Aggregates due to Alkali–Silica Reaction (Chemical Method)

Canadian General Standards Board (CGSB), Ketones react with bases

YU-JUS, Ketones react with bases

  • JUS B.B8.056-1986 Crushedaggregates. Testmethod for potential reactivity of aggregates. Chemical analysis
  • JUS B.B8.057-1986 Cruched aggregates. Test method for potential reactivity of aggregates. Mortar-bar method

Qinghai Provincial Standard of the People's Republic of China, Ketones react with bases

  • DB63/T 2217-2023 Technical regulations for preventing alkali aggregate reaction of cement concrete structures in highway projects

TR-TSE, Ketones react with bases

  • TS 2606-1977 ACOUSTICS - ASSESSMENT OF NOISE WITH RESPECT TO COMMUNITY RESPONSE

NO-SN, Ketones react with bases

  • NS 3656-1993 Concrete testing. Rate of reaction as a function o temperature

ES-AENOR, Ketones react with bases

  • UNE 83-121-1990 Determination of acidic/alkaline reactions of concrete aggregates (by means of chemical methods)

GSO, Ketones react with bases

  • OS GSO 1464:2002 chemical tests of aggregates –part -1:safety(stability)test and reactability with alkalinity for coarse and fine aggregates used in concrete

American Nuclear Society (ANS), Ketones react with bases

  • ANS 57.5 ERTA-2010 Light Water Reactors Fuel Assembly Mechanical Design and Evaluation
  • ANS 58.8-1994 Time Response Design Criteria for Safety-Related Operator Actions

ANS - American Nuclear Society, Ketones react with bases

  • 57.5 ERTA-2010 Light Water Reactors Fuel Assembly Mechanical Design and Evaluation
  • 57.5-1996 Light Water Reactors Fuel Assembly Mechanical Design and Evaluation
  • 19.11-2017 Calculation and Measurement of the Moderator Temperature Coefficient of Reactivity for Pressurized Water Reactors

Shaanxi Provincial Standard of the People's Republic of China, Ketones react with bases

  • DB61/T 1205-2018 Fully automatic nucleic acid extraction and reaction system construction system

API - American Petroleum Institute, Ketones react with bases

VN-TCVN, Ketones react with bases

  • TCVN 7572-14-2006 Aggregates for concrete and mortar.Test methods.Part 14: Determination of alkali silica reactivity

Professional Standard - Petroleum, Ketones react with bases

  • SY/T 6526-2002 Measuring method of dynamic reaction rate for hydrochloric acid with carbonate rock

国家能源局, Ketones react with bases

  • SY/T 6526-2019 Method for determination of dynamic reaction rate between hydrochloric acid and carbonate rock

工业和信息化部, Ketones react with bases

  • HG/T 5707-2020 Test method for reaction performance of catalysts for dehydrogenation of methyl isobutyl methanol to methyl isobutyl ketone

RU-GOST R, Ketones react with bases

  • GOST 25024.2-1983 Signal produce displays. Measuring methods of response and relaxation time

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., Ketones react with bases

  • ASHRAE ST-16-007-2016 Examination of the Reactions of R-40 with R-134a and POE Refrigeration System Materials

Professional Standard - Nuclear Industry, Ketones react with bases

  • EJ/T 20029-2012 Nuclear Criticality Safety Nuclear Criticality Accident Emergency Preparedness and Response for Fissile Materials Outside the Reactor

ZA-SANS, Ketones react with bases

  • SANS 6155:2006 Effect of extenders, used with cement, on the reduction of expansion caused by alkali-silica reaction (accelerated mortar prism method)




Copyright ©2007-2023 ANTPEDIA, All Rights Reserved