ISO 16312-1:2016
Current
The latest, up-to-date edition.
Guidance for assessing the validity of physical fire models for obtaining fire effluent toxicity data for fire hazard and risk assessment Part 1: Criteria
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French, English
11-14-2016
ISO 16312-1:2016 provides technical criteria and guidance for evaluating physical fire models (i.e. laboratory combustion devices and operating protocols) used in effluent toxicity studies for obtaining data on the effluent from products and materials under fire conditions relevant to life safety.[9] Relevant analytical methods, calculation methods, bioassay procedures and prediction of the toxic effects of fire effluents can be referenced in ISO 19701, ISO 19702, ISO 19703, ISO 19706 and ISO 13344. Comparisons are detailed in ISO 29903. Prediction of the toxic effects of fire effluents can be referenced in ISO 13571 and ISO/TR 135712.
DevelopmentNote |
Supersedes ISO TS 16312-1 (03/2006) Supersedes ISO/DIS 16312-1. (11/2016)
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DocumentType |
Standard
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Pages |
13
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PublisherName |
International Organization for Standardization
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Status |
Current
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Supersedes |
Standards | Relationship |
NF ISO 16312-1 : 2017 | Identical |
NEN ISO 16312-1 : 2010 | Identical |
09/30206172 DC : 0 | BS EN 60695-7-3 ED.1 - FIRE HAZARD TESTING - PART 7-3: TOXICITY OF FIRE EFFLUENT - USE AND INTERPRETATION OF TEST RESULTS |
15/30318694 DC : 0 | BS ISO 12828-2 - VALIDATION METHODS FOR FIRE GAS ANALYSES - PART 2: VALIDATION OF QUANTIFICATION METHOD |
NF EN 60695-7-1 : 2011 | FIRE HAZARD TESTING - PART 7-1: TOXICITY OF FIRE EFFLUENT - GENERAL GUIDANCE |
13/30275218 DC : 0 | BS ISO 19700 - CONTROLLED EQUIVALENCE RATIO METHOD FOR THE DETERMINATION OF HAZARDOUS COMPONENTS OF FIRE EFFLUENTS - THE STEADY STATE TUBE FURNACE |
PD ISO/TS 29761:2015 | Fire safety engineering. Selection of design occupant behavioural scenarios |
UNI EN ISO 25762 : 2012 | PLASTICS - GUIDANCE ON THE ASSESSMENT OF THE FIRE CHARACTERISTICS AND FIRE PERFORMANCE OF FIBRE-REINFORCED POLYMER COMPOSITES |
ISO 12828-2:2016 | Validation method for fire gas analysis Part 2: Intralaboratory validation of quantification methods |
IEC 60695-7-1:2010 | Fire hazard testing - Part 7-1: Toxicity of fire effluent - General guidance |
EN 60695-7-2:2011 | Fire hazard testing - Part 7-2: Toxicity of fire effluent - Summary and relevance of test methods |
EN 60695-7-3 : 2011 | FIRE HAZARD TESTING - PART 7-3: TOXICITY OF FIRE EFFLUENT - USE AND INTERPRETATION OF TEST RESULTS (IEC 60695-7-3:2011) |
BS EN 60695-7-1:2010 | Fire hazard testing Toxicity of fire effluent. General guidance |
DIN EN ISO 25762:2012-04 | Plastics - Guidance on the assessment of the fire characteristics and fire performance of fibre-reinforced polymer composites (ISO 25762:2009) |
BS ISO 10840:2008 | Plastics. Guidance for the use of standard fire tests |
ISO 10840:2008 | Plastics — Guidance for the use of standard fire tests |
09/30205350 DC : 0 | BS EN 60695-7-2 ED.1 - FIRE HAZARD TESTING - PART 7-2: TOXICITY OF FIRE EFFLUENT - SUMMARY AND RELEVANCE OF TEST METHODS |
CEI EN 60695-7-1 : 2013 | FIRE HAZARD TESTING - PART 7-1: TOXICITY OF FIRE EFFLUENT - GENERAL GUIDANCE |
I.S. EN 60695-7-3:2011 | FIRE HAZARD TESTING - PART 7-3: TOXICITY OF FIRE EFFLUENT - USE AND INTERPRETATION OF TEST RESULTS (IEC 60695-7-3:2011) |
I.S. EN 60695-7-2:2011 | FIRE HAZARD TESTING - PART 7-2: TOXICITY OF FIRE EFFLUENT - SUMMARY AND RELEVANCE OF TEST METHODS (IEC 60695-7-2:2011) |
IEC 60695-7-2:2011 | Fire hazard testing - Part 7-2: Toxicity of fire effluent - Summary and relevance of test methods |
CEI EN 60695-7-2 : 2013 | FIRE HAZARD TESTING - PART 7-2: TOXICITY OF FIRE EFFLUENT - SUMMARY AND RELEVANCE OF TEST METHODS |
BS ISO 19706:2011 | Guidelines for assessing the fire threat to people |
BS ISO 25762 : 2009 | PLASTICS - GUIDANCE ON THE ASSESSMENT OF THE FIRE CHARACTERISTICS AND FIRE PERFORMANCE OF FIBRE-REINFORCED POLYMER COMPOSITES |
18/30369843 DC : DRAFT APR 2018 | BS ISO 11907-1 - PLASTICS - SMOKE GENERATION - DETERMINATION OF THE CORROSIVITY OF FIRE EFFLUENTS - PART 1: GENERAL REQUIREMENTS AND APPLICABILITY |
BS EN 60695-7-3:2011 | Fire hazard testing Toxicity of fire effluent. Use and interpretation of test results |
UNE-EN 60695-7-1:2011 | Fire hazard testing -- Part 7-1: Toxicity of fire effluent - General guidance |
ISO/TS 29761:2015 | Fire safety engineering — Selection of design occupant behavioural scenarios |
ISO/TR 16312-2:2007 | Guidance for assessing the validity of physical fire models for obtaining fire effluent toxicity data for fire hazard and risk assessment Part 2: Evaluation of individual physical fire models |
BS EN ISO 25762:2012 | Plastics. Guidance on the assessment of the fire characteristics and fire performance of fibre-reinforced polymer composites |
08/30182164 DC : DRAFT MAY 2008 | BS ISO 31000 - RISK MANAGEMENT - PRINCIPLES AND GUIDELINES ON IMPLEMENTATION |
PD ISO/TS 19700:2016 | Controlled equivalence ratio method for the determination of hazardous components of fire effluents. Steady-state tube furnace |
BS EN 60695-7-2:2011 | Fire hazard testing Toxicity of fire effluent. Summary and relevance of test methods |
BS ISO 29903:2012 | Guidance for comparison of toxic gas data between different physical fire models and scales |
I.S. EN ISO 25762:2012 | PLASTICS - GUIDANCE ON THE ASSESSMENT OF THE FIRE CHARACTERISTICS AND FIRE PERFORMANCE OF FIBRE-REINFORCED POLYMER COMPOSITES (ISO 25762:2009) |
UNE-EN 60695-7-3:2012 | Fire hazard testing - Part 7-3: Toxicity of fire effluent - Use and interpretation of test results |
CEI EN 60695-7-3 : 2013 | FIRE HAZARD TESTING - PART 7-3: TOXICITY OF FIRE EFFLUENT - USE AND INTERPRETATION OF TEST RESULTS |
ISO 29903:2012 | Guidance for comparison of toxic gas data between different physical fire models and scales |
I.S. EN 60695-7-1:2010 | FIRE HAZARD TESTING - PART 7-1: TOXICITY OF FIRE EFFLUENTS - GENERAL GUIDANCE |
ISO 19706:2011 | Guidelines for assessing the fire threat to people |
IEC TS 60695-7-3:2004 | Fire hazard testing - Part 7-3: Toxicity of fire effluent - Use and interpretation of test results |
UNE-EN 60695-7-2:2012 | Fire hazard testing - Part 7-2: Toxicity of fire effluent - Summary and relevance of test methods |
ISO 25762:2009 | Plastics Guidance on the assessment of the fire characteristics and fire performance of fibre-reinforced polymer composites |
EN ISO 25762:2012 | Plastics - Guidance on the assessment of the fire characteristics and fire performance of fibre-reinforced polymer composites (ISO 25762:2009) |
10/30198657 DC : 0 | BS EN 60695-7-1 - FIRE HAZARD TESTING - PART 7-1: TOXICITY OF FIRE EFFLUENT - GENERAL GUIDANCE |
ISO/TS 19700:2016 | Controlled equivalence ratio method for the determination of hazardous components of fire effluents — Steady-state tube furnace |
ISO 15928-4:2017 | Houses — Description of performance — Part 4: Fire safety |
EN 60695-7-1:2010 | Fire hazard testing - Part 7-1: Toxicity of fire effluent - General guidance |
ISO 13344:2015 | Estimation of the lethal toxic potency of fire effluents |
ASTM E 1678 : 2015 : REDLINE | Standard Test Method for Measuring Smoke Toxicity for Use in Fire Hazard Analysis |
ISO 13943:2017 | Fire safety — Vocabulary |
ISO 19702:2015 | Guidance for sampling and analysis of toxic gases and vapours in fire effluents using Fourier Transform Infrared (FTIR) spectroscopy |
ISO/TR 16738:2009 | Fire-safety engineering Technical information on methods for evaluating behaviour and movement of people |
ISO 13571:2012 | Life-threatening components of fire — Guidelines for the estimation of time to compromised tenability in fires |
NFPA 269 : 2017 | TEST METHOD FOR DEVELOPING TOXIC POTENCY DATA FOR USE IN FIRE HAZARD MODELING |
ISO 19706:2011 | Guidelines for assessing the fire threat to people |
ISO 19703:2010 | Generation and analysis of toxic gases in fire Calculation of species yields, equivalence ratios and combustion efficiency in experimental fires |
ISO/TR 13571-2:2016 | Life-threatening components of fire Part 2: Methodology and examples of tenability assessment |
ISO 19701:2013 | Methods for sampling and analysis of fire effluents |
ISO 29903:2012 | Guidance for comparison of toxic gas data between different physical fire models and scales |
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