NFPA 2:2023
Current
The latest, up-to-date edition.
Hydrogen Technologies Code
Hardcopy
English
19-12-2022
1.1 Scope. 1.2 Purpose. 1.3 Application. 1.4 Retroactivity. 1.5 Equivalency. 1.6 Units and Formulas. 1.7 Enforcement. Chapter 2 Referenced Publications 2.1 General. 2.2 NFPA Publications. 2.3 Other Publications. 2.4 References for Extracts in Mandatory Sections. Chapter 3 Definitions 3.1 General. 3.2 NFPA Official Definitions. 3.3 General Definitions. 3.4 Definitions for Performance-Based Designs. Chapter 4 General Fire Safety Requirements 4.1 Application. 4.2 Goals and Objectives. 4.3 Assumptions. 4.4 Compliance Options. 4.5 Permits. 4.6 Emergency Plan. 4.7 Facility Closure. 4.8 Out-of-Service Stationary Bulk Gas Systems. 4.9 Management Plan and Hazardous Materials Documentation. 4.10 Release of GH2or LH2. 4.11 Personnel Training.
This code shall apply to the production, storage,transfer, and use of hydrogen
DevelopmentNote |
TIA 23-1, Reference: 7.1.21 TIA 23-2, Reference: 6.11.1 TIA 23-3, Reference: 8.3.1.2.6.1
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DocumentType |
Standard
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Pages |
248
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PublisherName |
National Fire Protection Association
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Status |
Current
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Supersedes |
NFPA 110:2025 | Standard for Emergency and Standby Power Systems |
NFPA 56:2023 | Standard for Fire and Explosion Prevention During Cleaning and Purging of Flammable Gas Piping Systems |
NFPA 30A:2024 | Code for Motor Fuel Dispensing Facilities and Repair Garages |
NFPA 77:2024 | Recommended Practice on Static Electricity |
NFPA 400:2025 | Hazardous Materials Code |
NFPA 418:2024 | Standard for Heliports and Vertiports |
NFPA 72:2022 | National Fire Alarm and Signaling Code |
ASME B31.12 : 2019 | Hydrogen Piping and Pipelines |
NFPA 400:2022 | Hazardous Materials Code |
NFPA 17:2021 | Standard for Dry Chemical Extinguishing Systems |
ASME A13.1:2020 | Scheme for the Identification of Piping Systems |
NFPA 10:2022 | Standard for Portable Fire Extinguishers |
NFPA 13 : 2022 | Standard for the Installation of Sprinkler Systems, 2022 and 2019 Editions |
ANSI Z535.1:2022 | American National Standard for Safety Colors |
NFPA 79:2021 | Electrical Standard for Industrial Machinery |
NFPA 111:2022 | Standard on Stored Electrical Energy Emergency and Standby Power Systems |
ASTM E 84 : 2005 | Standard Test Method for Surface Burning Characteristics of Building Materials |
ISO 16110-1:2007 | Hydrogen generators using fuel processing technologies Part 1: Safety |
NFPA 90A : 2021 | Standard for the Installation of Air-Conditioning and Ventilating Systems |
NFPA 259 : 2018 | STANDARD TEST METHOD FOR POTENTIAL HEAT OF BUILDING MATERIALS |
SAE J 2600 : 2015 | Compressed Hydrogen Surface Vehicle Fueling Connection Devices<br> |
UL 723:11ED 2018-04-19 | Test for Surface Burning Characteristics of Building Materials |
NFPA 88A:2023 | Standard for Parking Structures |
ANSI/CSA FC 1:2014 | FUEL CELL TECHNOLOGIES - PART 3-100: STATIONARY FUEL CELL POWER SYSTEMS - SAFETY |
NFPA 77 : 2019 | Recommended Practice on Static Electricity |
ASTM E 2652 : 2022 | Standard Test Method for Assessing Combustibility of Materials Using a Tube Furnace with a Cone-shaped Airflow Stabilizer, at 750 °C |
NFPA 86 : 2019 | Standard for Ovens and Furnaces<br> |
IEEE C2-2017 | NATIONAL ELECTRICAL SAFETY CODE (NESC)(R) |
NFPA 11:2021 | Standard for Low-, Medium, and High-Expansion Foam |
NFPA 750:2023 | Standard on Water Mist Fire Protection Systems |
NFPA 70:2023 | National Electrical Code (NEC) Softbound |
NFPA 25 : 2014 | INSPECTION, TESTING, AND MAINTENANCE OF WATER-BASED FIRE PROTECTION SYSTEMS |
NFPA 853:2020 | Standard for the Installation of Stationary Fuel Cell Power Systems |
NFPA 68 : 2018 | EXPLOSION PROTECTION BY DEFLAGRATION VENTING |
ASTM E 2965 : 2022 | Standard Test Method for Determination of Low Levels of Heat Release Rate for Materials and Products Using an Oxygen Consumption Calorimeter |
NFPA 110:2022 | Standard for Emergency and Standby Power Systems |
NFPA 55:2023 | Compressed Gases and Cryogenic Fluids Code |
ANSI Z535.3:2022 | American National Standard for Criteria for Safety Symbols |
SAE J 2579:2018 | Standard for Fuel Systems in Fuel Cell and Other Hydrogen Vehicles J2579_201806 |
NFPA 80:2022 | Standard for Fire Doors and Other Opening Protectives |
SAE J 2601-3 : 2013 | FUELING PROTOCOL FOR GASEOUS HYDROGEN POWERED INDUSTRIAL TRUCKS |
UL 263:14ED 2011-06-21 | Fire Tests of Building Construction and Materials |
NFPA 30A:2021 | Code for Motor Fuel Dispensing Facilities and Repair Garages |
NFPA 69 : 2019 | Standard on Explosion Prevention Systems |
ISO 17268:2020 | Gaseous hydrogen land vehicle refuelling connection devices |
ASTM E 1529 : 2022 | Standard Test Methods for Determining Effects of Large Hydrocarbon Pool Fires on Structural Members and Assemblies |
NFPA 91:2020 | Standard for Exhaust Systems for Air Conveying of Vapors, Gases, Mists, and Particulate Solids |
IEC 60079-10-1:2020 | Explosive atmospheres - Part 10-1: Classification of areas - Explosive gas atmospheres |
NFPA 101:2021 | Life Safety Code |
ASME B31.3:2020 | Process Piping |
NFPA 1 : 2021 | FIRE CODE |
CSA FC 3 : 2004 | PORTABLE FUEL CELL POWER SYSTEMS |
ASTM E 1591 : 2020 | Standard Guide for Obtaining Data for Fire Growth Models |
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