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ASTM G 72 : 2001

Superseded
Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by
superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Standard Test Method for Autogenous Ignition Temperature of Liquids and Solids in a High-Pressure Oxygen-Enriched Environment
Available format(s)

Hardcopy , PDF

Superseded date

11-11-2014

Language(s)

English

Published date

10-09-2001

CONTAINED IN VOL. 14.04, 2009 Measures to determine spontaneous ignition temperature of solids and liquids.

1.1 This method covers the determination of the temperature at which liquids and solids will spontaneously ignite. These materials must ignite without application of spark or flame in a high-pressure oxygen-enriched environment.

1.2 This method is intended for use at pressures of 2.1 to 20.7 MPa (300 to 3000 psi). The pressure used in the description of the method is 10.3 MPa (1500 psi). The method, as described, is for liquids or solids with ignition temperature in the range from 60 to 425°C (140 to 800°F).

1.3 This method is for high-pressure pure oxygen. The method may be used in atmospheres from 0.5 % to 100 % oxygen.

1.4 An apparatus suitable for these requirements is described. This method could be applied to higher pressures and materials of higher ignition temperature. If more severe requirements or other oxidizers than those described are desired, care must be taken in selecting an alternative safe apparatus capable of withstanding the conditions.

1.5 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Committee
G 04
DocumentType
Test Method
Pages
5
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy

ISO 21010:2017 Cryogenic vessels — Gas/material compatibility
I.S. EN 16603-35-10:2014 SPACE ENGINEERING - COMPATIBILITY TESTING FOR LIQUID PROPULSION COMPONENTS, SUBSYSTEMS AND SYSTEMS
ASTM G 127 : 2015 : REDLINE Standard Guide for the Selection of Cleaning Agents for Oxygen-Enriched Systems
BS EN ISO 15001:2011 Anaesthetic and respiratory equipment. Compatibility with oxygen
DEFSTAN 68-287(PT1)/1(2007) : 2007 GUIDE TO THE COMPATIBILITY OF MATERIALS WITH OXYGEN - PART 1: GUIDANCE
DEFSTAN 68-287(PT2)/1(2007) : 2007 GUIDE TO THE COMPATIBILITY OF MATERIALS WITH OXYGEN - PART 2: TEST DATA AND DATA SOURCES
MIL-DTL-24800 Base Document:1996 CLEANING COMPOUND - AQUEOUS - OXYGEN SYSTEMS COMPONENTS
PREN ISO 11114-3 : DRAFT 2008 TRANSPORTABLE GAS CYLINDERS - COMPATIBILITY OF CYLINDER AND VALVE MATERIALS WITH GAS CONTENTS - PART 3: AUTOGENEOUS IGNITION TEST IN OXYGEN ATMOSPHERE
BS ISO 15001 : 2003 AMD 15145 ANAESTHETIC AND RESPIRATORY EQUIPMENT - COMPATIBILITY WITH OXYGEN
ASTM G 114 : 2014 : REDLINE Standard Practices for Evaluating the Age Resistance of Polymeric Materials Used in Oxygen Service
ASTM G 94 : 2005 : R2014 Standard Guide for Evaluating Metals for Oxygen Service
I.S. EN ISO 15001:2011 ANAESTHETIC AND RESPIRATORY EQUIPMENT - COMPATIBILITY WITH OXYGEN (ISO 15001:2010)
UNI EN ISO 15001 : 2012 ANAESTHETIC AND RESPIRATORY EQUIPMENT - COMPATIBILITY WITH OXYGEN
AEP-33 : B GUIDE TO METHODS OF TEST FOR THE COMPATIBILITY OF MATERIALS USED IN OXYGEN-ENRICHED ENVIRONMENTS
BS EN 16603-35-10:2014 Space engineering. Compatibility testing for liquid propulsion components, subsystems and systems
NACE SP 01 16 : 2016 MULTIPHASE FLOW INTERNAL CORROSION DIRECT ASSESSMENT (MP-ICDA) METHODOLOGY FOR PIPELINES
08/30195387 DC : 0 BS EN ISO 11114-3 - TRANSPORTABLE GAS CYLINDERS - COMPATIBILITY OF CYLINDER AND VALVE MATERIALS WITH GAS CONTENTS - PART 3: AUTOGENEOUS IGNITION TEST IN OXYGEN ATMOSPHERE
NFPA 53 : 2016 MATERIALS, EQUIPMENT, AND SYSTEMS USED IN OXYGEN-ENRICHED ATMOSPHERES
DIN EN ISO 15001:2012-06 Anaesthetic and respiratory equipment - Compatibility with oxygen (ISO 15001:2010)
NASA STD 6001(INT) : 2009 FLAMMABILITY, OFFGASSING, AND COMPATIBILITY REQUIREMENTS AND TEST PROCEDURES
NASA STD 6001 : 2011 FLAMMABILITY, OFFGASSING, AND COMPATIBILITY REQUIREMENTS AND TEST PROCEDURES
ASTM G 63 : 2015 : REDLINE Standard Guide for Evaluating Nonmetallic Materials for Oxygen Service
CSA Z15001 : 2012 ANAESTHETIC AND RESPIRATORY EQUIPMENT - COMPATIBILITY WITH OXYGEN
ASTM G 94 : 2005 Standard Guide for Evaluating Metals for Oxygen Service
CAN/CSA-Z15001:12 (R2017) Anaesthetic and respiratory equipment - Compatibility with oxygen (Adopted ISO 15001:2010, second edition, 2010-06-01, with Canadian deviations)
SAE AIR 1169 : 2014 BIBLIOGRAPHY OF REFERENCES PERTAINING TO THE EFFECTS OF OXYGEN ON IGNITION AND COMBUSTION OF MATERIALS
ISO 15001:2010 Anaesthetic and respiratory equipment Compatibility with oxygen
EN 16603-35-10:2014 Space engineering - Compatibility testing for liquid propulsion components, subsystems and systems
EN ISO 15001:2011 Anaesthetic and respiratory equipment - Compatibility with oxygen (ISO 15001:2010)
02/711073 DC : DRAFT SEP 2002 ISO/DIS 21010 - CRYOGENIC VESSELS - GAS/MATERIALS COMPATIBILITY
ASTM G 128/G128M : 2015 : REDLINE Standard Guide for Control of Hazards and Risks in Oxygen Enriched Systems
16/30339669 DC : 0 BS ISO 21010 - CRYOGENIC VESSELS - GAS/MATERIALS COMPATIBILITY
ASTM G 88 : 2013 : REDLINE Standard Guide for Designing Systems for Oxygen Service
SAE AIR 4071 : 2015 LUBRICANTS FOR OXYGEN USE
ASTM G 126 : 2016 : REDLINE Standard Terminology Relating to the Compatibility and Sensitivity of Materials in Oxygen Enriched Atmospheres
NACE 21413 : 2017 PREDICTION OF INTERNAL CORROSION IN OILFIELD SYSTEMS FROM SYSTEM CONDITIONS
UNE-EN ISO 15001:2012 Anaesthetic and respiratory equipment - Compatibility with oxygen (ISO 15001:2010)

BB-O-925 Revision A:1961 OXYGEN, TECHNICAL, GAS AND LIQUID
MIL-C-81302 Revision D:1985 CLEANING COMPOUND, SOLVENT, TRICHLOROTRIFLUOROETHANE

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