ISO 16111:2008
Withdrawn
A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.
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Transportable gas storage devices Hydrogen absorbed in reversible metal hydride
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19-02-2019
English, French
14-11-2008
ISO 16111:2008 defines the requirements applicable to the material, design, construction, and testing of transportable hydrogen gas storage systems, referred to as metal hydride assemblies (MH assemblies) which utilize shells not exceeding 150 l internal volume and having a maximum developed pressure (MDP) not exceeding 25 MPa (250 bar).
It only applies to refillable storage MH assemblies where hydrogen is the only transferred media. Storage MH assemblies intended to be used as fixed fuel-storage onboard hydrogen fuelled vehicles are excluded.
ISO 16111:2008 is intended to be used for certification purposes.
DevelopmentNote |
Supersedes ISO TS 16111. (11/2008) DRAFT ISO/DIS 16111 is also available for this standard. (04/2017)
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DocumentType |
Standard
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Pages |
38
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PublisherName |
International Organization for Standardization
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Status |
Withdrawn
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SupersededBy | |
Supersedes |
Standards | Relationship |
BS ISO 16111:2008 | Identical |
NEN ISO 16111 : 2008 | Identical |
BS EN 62282-3-100:2012 | Fuel cell technologies Stationary fuel cell power systems. Safety |
OVE/ONORM EN 62282-4-101 : 2015 | FUEL CELL TECHNOLOGIES - PART 4-101: FUEL CELL POWER SYSTEMS FOR PROPULSION OTHER THAN ROAD VEHICLES AND AUXILIARY POWER UNITS (APU) - SAFETY OF ELECTRICALLY POWERED INDUSTRIAL TRUCKS (IEC 62282-4-101:2014) |
BS EN 62282-5-1:2012 | Fuel cell technologies Portable fuel cell power systems. Safety |
IEC PAS 62282-6-150:2011 | Fuel cell technologies - Part 6-150: Micro fuel cell power systems - Safety - Water reactive (UN Devision 4.3) compounds in indirect PEM fuel cells |
EN 62282-3-100:2012 | Fuel cell technologies - Part 3-100: Stationary fuel cell power systems - Safety |
16/30354071 DC : 0 | BS EN 62282-3-100 - FUEL CELL TECHNOLOGIES - PART 3-100: STATIONARY FUEL CELL POWER SYSTEMS - SAFETY |
09/30196132 DC : 0 | BS ISO 11513 - GAS CYLINDERS - REFILLABLE WELDED STEEL CYLINDERS CONTAINING ABSORBENT MATERIAL FOR SUB-ATMOSPHERIC GAS PACKAGING - DESIGN, CONSTRUCTION AND TESTING |
CEI EN 62282-3-100 : 2012 | FUEL CELL TECHNOLOGIES - PART 3-100: STATIONARY FUEL CELL POWER SYSTEMS - SAFETY |
ANSI/CSA FC 1:2014 | FUEL CELL TECHNOLOGIES - PART 3-100: STATIONARY FUEL CELL POWER SYSTEMS - SAFETY |
ISO/TS 19880-1:2016 | Gaseous hydrogen Fuelling stations Part 1: General requirements |
18/30359998 DC : 0 | BS ISO 19880-1 - GASEOUS HYDROGEN - FUELLING STATIONS - PART 1: GENERAL REQUIREMENTS |
IEC 62282-5-1:2012 | Fuel cell technologies - Part 5-1: Portable fuel cell power systems - Safety |
OVE/ONORM EN 62282-3-100 : 2013 | FUEL CELL TECHNOLOGIES - PART 3-100: STATIONARY FUEL CELL POWER SYSTEMS - SAFETY (IEC 62282-3-100:2012) |
05/30106456 DC : DRAFT AUG 2005 | IEC 62282-6 - FUEL CELL TECHNOLOGIES - PART 6-1: MICRO FUEL CELL POWER SYSTEMS - SAFETY |
DD IEC/PAS 62282-6-150:2011 | Fuel cell technologies Micro fuel cell power systems. Safety. Water reactive (UN Division 4.3) compounds in indirect PEM fuel cells |
PD ISO/TR 15916:2015 | Basic considerations for the safety of hydrogen systems |
I.S. EN 62282-3-100:2012 | FUEL CELL TECHNOLOGIES - PART 3-100: STATIONARY FUEL CELL POWER SYSTEMS - SAFETY (IEC 62282-3-100:2012 (EQV)) |
BS ISO 11513:2011 | Gas cylinders. Refillable welded steel cylinders containing materials for subatmospheric gas packaging (excluding acetylene). Design, construction, testing, use and periodic inspection |
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13/30276640 DC : 0 | BS EN 62282-4-101 ED 1.0 - FUEL CELL TECHNOLOGIES - PART 4-101: FUEL CELL POWER SYSTEMS FOR PROPULSION FOR OTHER THAN ROAD VEHICLES AND AUXILIARY POWER UNITS - FUEL CELL POWER SYSTEMS FOR ELECTRICALLY POWERED INDUSTRIAL TRUCKS - SAFETY |
BS EN 62282-4-101:2014 | Fuel cell technologies Fuel cell power systems for propulsion other than road vehicles and auxiliary power units (APU). Safety of electrically powered industrial trucks |
IEC 62282-4-101:2014 | Fuel cell technologies - Part 4-101: Fuel cell power systems for propulsion other than road vehicles and auxiliary power units (APU) - Safety of electrically powered industrial trucks |
UNE-EN 62282-5-1:2013 | Fuel cell technologies - Part 5-1: Portable fuel cell power systems - Safety |
ISO 22734-2:2011 | Hydrogen generators using water electrolysis process Part 2: Residential applications |
IEC 62282-3-100:2012 | Fuel cell technologies - Part 3-100: Stationary fuel cell power systems - Safety |
10/30173705 DC : DRAFT SEP 2010 | BS EN 62282-5-1 - FUEL CELL TECHNOLOGIES - PART 5-1: PORTABLE FUEL CELL POWER SYSTEMS - SAFETY |
BS ISO 22734-2:2011 | Hydrogen generators using water electrolysis process Residential applications |
10/30238615 DC : DRAFT NOV 2010 | BS EN 62282-3-100 - FUEL CELL TECHNOLOGIES - PART 3-100: STATIONARY FUEL CELL POWER SYSTEMS - SAFETY |
ISO/TR 15916:2015 | Basic considerations for the safety of hydrogen systems |
16/30354067 DC : 0 | BS EN 62282-5-100 - FUEL CELL TECHNOLOGIES - PART 5-100: PORTABLE FUEL CELL POWER SYSTEMS - SAFETY |
EN 62282-5-1:2012 | FUEL CELL TECHNOLOGIES - PART 5-1: PORTABLE FUEL CELL POWER SYSTEMS - SAFETY (IEC 62282-5-1:2012) |
EN 62282-4-101:2014 | Fuel cell technologies - Part 4-101: Fuel cell power systems for propulsion other than road vehicles and auxiliary power units (APU) - Safety of electrically powered industrial trucks |
ISO 7225:2005 | Gas cylinders — Precautionary labels |
ISO/TR 15916:2015 | Basic considerations for the safety of hydrogen systems |
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ASTM G 146 : 2001 | Standard Practice for Evaluation of Disbonding of Bimetallic Stainless Alloy/Steel Plate for Use in High-Pressure, High-Temperature Refinery Hydrogen Service |
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ISO 11114-2:2013 | Gas cylinders Compatibility of cylinder and valve materials with gas contents Part 2: Non-metallic materials |
API 941 : 2016 | STEELS FOR HYDROGEN SERVICE AT ELEVATED TEMPERATURES AND PRESSURES IN PETROLEUM REFINERIES AND PETROCHEMICAL PLANTS |
ISO 16528-1:2007 | Boilers and pressure vessels — Part 1: Performance requirements |
ISO 9588:2007 | Metallic and other inorganic coatings Post-coating treatments of iron or steel to reduce the risk of hydrogen embrittlement |
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ISO 17081:2014 | Method of measurement of hydrogen permeation and determination of hydrogen uptake and transport in metals by an electrochemical technique |
API 934-A : 2008 | MATERIALS AND FABRICATION OF 2 [1/4]CR-1MO, 2 [1/4]CR-1MO-[1/4]V, 3CR-1MO, AND 3CR-1MO-[1/4]V STEEL HEAVY WALL PRESSURE VESSELS FOR HIGH-TEMPERATURE, HIGH-PRESSURE HYDROGEN SERVICE |
ISO 11114-4:2017 | Transportable gas cylinders Compatibility of cylinder and valve materials with gas contents Part 4: Test methods for selecting steels resistant to hydrogen embrittlement |
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ISO 11119-1:2012 | Gas cylinders Refillable composite gas cylinders and tubes Design, construction and testing Part 1: Hoop wrapped fibre reinforced composite gas cylinders and tubes up to 450 l |
ISO 6406:2005 | Gas cylinders Seamless steel gas cylinders Periodic inspection and testing |
ISO 3690:2012 | Welding and allied processes Determination of hydrogen content in arc weld metal |
ISO 2626:1973 | Copper — Hydrogen embrittlement test |
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ASTM F 326 : 1996 | Standard Test Method for Electronic Measurement for Hydrogen Embrittlement from Cadmium-Electroplating Processes |
AIAA G 095 : 2004 | GUIDE TO SAFETY OF HYDROGEN AND HYDROGEN SYSTEMS |
SAE USCAR 5 : 2012 | AVOIDANCE OF HYDROGEN EMBRITTLEMENT OF STEEL |
SAE AMS 2451/4D : 2017 | PLATING, BRUSH, CADMIUM CORROSION PROTECTIVE, LOW HYDROGEN EMBRITTLEMENT |
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