The request of lithium-ion batteries in naval applications features an increasing trend due to the need of high performance energy storage devices. Beside the hazard of runaway when the battery is crushed or overcharged, the naval environment poses additional safety issues due to the possible immersion with seawater of the battery room following accidental flooding. In such a case, seawater electrolysis may generate hydrogen and chlorine, thus giving rise to an explosive and toxic mixture in a confined environment. In this study, a quantitative safety assessment of the possible accidental scenarios induced by seawater electrolysis in battery rooms is performed. The analysis is based on i) the deterministic evaluation of the hazardous gases ...
The shipping industry is facing increasing pressure to cut emissions. Diesel-electric hybrid or full...
When charging most types of industrial lead-acid batteries, hydrogen gas is emitted. A large number ...
International audienceThe development of high energy Li-ion batteries with improved durability and i...
The request of lithium-ion batteries in naval applications features an increasing trend due to the n...
The use of electrical energy is growing constant in the world. Lithium-ion batteries have been large...
By means of these tests, where Li-ion batteries have been immersed in both fresh water as well as 3 ...
Electric propulsion using batteries as energy storage has the potential to significantly reduce emis...
Fire safety of ships is a key issue as evacuation and extinguishment is more difficult at sea than i...
Batteries and hydrogen constitute two of the most promising solutions for decarbonising internationa...
The objective of this study is to evaluate chemical hazards and risks associated with the accidental...
NHTSA-Vehicle Safety Research2021PDFTech ReportRask, EricStutenberg, KevinWaller, ThomasArgonne Nati...
The design, performance and safety of a fully engineered, selfcontained Li/SOCl2 battery as the powe...
Lithium ion rechargeable batteries represent an energy storage technology already commonly used in a...
The frequent safety accidents involving lithium-ion batteries (LIBs) have aroused widespread concern...
The shipping industry is facing increasing pressure to cut emissions. Diesel-electric hybrid or full...
When charging most types of industrial lead-acid batteries, hydrogen gas is emitted. A large number ...
International audienceThe development of high energy Li-ion batteries with improved durability and i...
The request of lithium-ion batteries in naval applications features an increasing trend due to the n...
The use of electrical energy is growing constant in the world. Lithium-ion batteries have been large...
By means of these tests, where Li-ion batteries have been immersed in both fresh water as well as 3 ...
Electric propulsion using batteries as energy storage has the potential to significantly reduce emis...
Fire safety of ships is a key issue as evacuation and extinguishment is more difficult at sea than i...
Batteries and hydrogen constitute two of the most promising solutions for decarbonising internationa...
The objective of this study is to evaluate chemical hazards and risks associated with the accidental...
NHTSA-Vehicle Safety Research2021PDFTech ReportRask, EricStutenberg, KevinWaller, ThomasArgonne Nati...
The design, performance and safety of a fully engineered, selfcontained Li/SOCl2 battery as the powe...
Lithium ion rechargeable batteries represent an energy storage technology already commonly used in a...
The frequent safety accidents involving lithium-ion batteries (LIBs) have aroused widespread concern...
The shipping industry is facing increasing pressure to cut emissions. Diesel-electric hybrid or full...
When charging most types of industrial lead-acid batteries, hydrogen gas is emitted. A large number ...
International audienceThe development of high energy Li-ion batteries with improved durability and i...