This is the author's manuscript version. The version of record is available via DOI: 10.1016/j.jpowsour.2009.09.044. Available online:26 September 2009The design of a 10 cm × 10 cm flow cell for the soluble lead acid flow battery is described. A number of extended charge/discharge cycling experiments are presented to demonstrate the capability of the battery to cycle over lengthy periods and to identify the problems that limit the number of cycles that can be achieved. A charge efficiency below 100%, leading to a build up of deposits on both electrodes and a consequent drop in the concentration of Pb2+ in the electrolyte are found to limit cycle life.DTI Technology Programm
Extensive cycling of the soluble lead flow battery has revealed unexpected problems with the reducti...
The soluble lead-acid battery is a redox flow cell that uses a single reservoir to store the electro...
Redox flow batteries (RFBs) are constructed such that the electrolytes, containing the active redox ...
The design of a 10 cm × 10 cm flow cell for the soluble lead acid flow battery is described. A numbe...
The history of soluble lead flow batteries is concisely reviewed and recent developments are highlig...
The design and performance of a small redox flow battery is described; it is based on a single undiv...
The soluble-lead flow battery (SLFB) utilises methanesulfonic acid, an electrolyte in which Pb(II) i...
The performance of an undivided flow battery based on the Pb(II)/Pb and PbO2/Pb(II) couples in aqueo...
The structure of thick lead dioxide deposits (approximately 1 mm) formed in conditions likely to be ...
Extended cycling of a soluble lead acid battery can lead to problems due to an imbalance in the coul...
This thesis describes the chemistry, electrochemistry and characterisation of a lead-acid flow batte...
The structure of thick lead dioxide deposits (approximately 1 mm) formed in conditions likely to be ...
This series of papers will describe the chemistry, electrochemistry and performance of a flow batter...
The electrochemistry of static lead-acid and soluble lead-acid flow batteries is summarised and the ...
This is the author's manuscript version. The version of record is available via DOI: 10.1016/j.jpows...
Extensive cycling of the soluble lead flow battery has revealed unexpected problems with the reducti...
The soluble lead-acid battery is a redox flow cell that uses a single reservoir to store the electro...
Redox flow batteries (RFBs) are constructed such that the electrolytes, containing the active redox ...
The design of a 10 cm × 10 cm flow cell for the soluble lead acid flow battery is described. A numbe...
The history of soluble lead flow batteries is concisely reviewed and recent developments are highlig...
The design and performance of a small redox flow battery is described; it is based on a single undiv...
The soluble-lead flow battery (SLFB) utilises methanesulfonic acid, an electrolyte in which Pb(II) i...
The performance of an undivided flow battery based on the Pb(II)/Pb and PbO2/Pb(II) couples in aqueo...
The structure of thick lead dioxide deposits (approximately 1 mm) formed in conditions likely to be ...
Extended cycling of a soluble lead acid battery can lead to problems due to an imbalance in the coul...
This thesis describes the chemistry, electrochemistry and characterisation of a lead-acid flow batte...
The structure of thick lead dioxide deposits (approximately 1 mm) formed in conditions likely to be ...
This series of papers will describe the chemistry, electrochemistry and performance of a flow batter...
The electrochemistry of static lead-acid and soluble lead-acid flow batteries is summarised and the ...
This is the author's manuscript version. The version of record is available via DOI: 10.1016/j.jpows...
Extensive cycling of the soluble lead flow battery has revealed unexpected problems with the reducti...
The soluble lead-acid battery is a redox flow cell that uses a single reservoir to store the electro...
Redox flow batteries (RFBs) are constructed such that the electrolytes, containing the active redox ...