dc.contributor.author |
Nonjola, Patrick NT
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dc.contributor.author |
Mathe, Mahlanyane K
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dc.contributor.author |
Hietkamp, S
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dc.date.accessioned |
2009-03-27T13:20:23Z |
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dc.date.available |
2009-03-27T13:20:23Z |
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dc.date.issued |
2007-12 |
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dc.identifier.citation |
Nonjola, P, Mathe, MK and Hietkamp, S. 2007. Synthesis and characterisation of alkaline anionic-exchange membranes for direct alcohol fuel cells. Fibre Reinforced Composites Conference, Port Elizabeth, South Africa, 9-12 December 2007, pp 1 |
en |
dc.identifier.isbn |
978-0-620-37679-2 |
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dc.identifier.uri |
http://hdl.handle.net/10204/3259
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dc.description |
Fibre Reinforced Composites Conference, Port Elizabeth, South Africa, 9-12 December 2007 |
en |
dc.description.abstract |
Great effort in research and development has been made over the years to improve and commercialize new electricity generating systems. To provide an alternative energy carrier, an appropriate conversion technology is needed to form high quality power with the highest efficiency and low emission of pollutants. Fuel cells (FCs) are ideal candidates to meet these requirements. FCs are electrochemical devices that convert chemical energy directly into electrical energy. Several kinds of FCs exist, but the most important being proton exchange membrane fuel cell (PEMFC), which uses an acidic membrane like Nafion (sulfonated fluorocarbon polymers) as an electrolyte. The use of polymer electrolytes represents an interesting path to pursue for these electrochemical devices. Moreover, when Nafion membranes are applied to direct alcohol fuel cells (DAFCs), several major obstacles emerge, i.e. methanol crossover and relative low activity. The crossover reduces the operational voltage and the power that can be achieved. One of the major disadvantages of the proton exchange membrane is the high cost of the membrane electrode assembly (MEA), related: (i) to an expensive polymeric membrane and (ii) to the use of platinum catalysts.2 Therefore, this implied that there is an urgent need for the development of novel anion exchange membranes (AEMs) that can be applied in FCs. In alkaline fuel cells, the OH- anions are produced at cathode and then transported through the membrane to the anode where they are quantitatively consumed. This poster will present a brief overview on preparation and characterization of anion exchange membranes (AEMs) using poly(arylene ethers) (PEAs) as well as the modification of commercially available PEAs, for example, polysulfone (Udel) and polyphenylsulfone as base polymers for the membranes. Characterization of these polymeric membranes will be presented with reference to recent advances as reported in literature |
en |
dc.language.iso |
en |
en |
dc.publisher |
Fibre Reinforced Composites Conference 2007 |
en |
dc.subject |
Electricity generation facility |
en |
dc.subject |
Fuel cells |
en |
dc.subject |
Anion exchange membranes |
en |
dc.subject |
AEM |
en |
dc.subject |
Poly(arylene ether) |
en |
dc.title |
Synthesis and characterisation of alkaline anionic-exchange membranes for direct alcohol fuel cells |
en |
dc.type |
Conference Presentation |
en |
dc.identifier.apacitation |
Nonjola, P. N., Mathe, M. K., & Hietkamp, S. (2007). Synthesis and characterisation of alkaline anionic-exchange membranes for direct alcohol fuel cells. Fibre Reinforced Composites Conference 2007. http://hdl.handle.net/10204/3259 |
en_ZA |
dc.identifier.chicagocitation |
Nonjola, Patrick NT, Mahlanyane K Mathe, and S Hietkamp. "Synthesis and characterisation of alkaline anionic-exchange membranes for direct alcohol fuel cells." (2007): http://hdl.handle.net/10204/3259 |
en_ZA |
dc.identifier.vancouvercitation |
Nonjola PN, Mathe MK, Hietkamp S, Synthesis and characterisation of alkaline anionic-exchange membranes for direct alcohol fuel cells; Fibre Reinforced Composites Conference 2007; 2007. http://hdl.handle.net/10204/3259 . |
en_ZA |
dc.identifier.ris |
TY - Conference Presentation
AU - Nonjola, Patrick NT
AU - Mathe, Mahlanyane K
AU - Hietkamp, S
AB - Great effort in research and development has been made over the years to improve and commercialize new electricity generating systems. To provide an alternative energy carrier, an appropriate conversion technology is needed to form high quality power with the highest efficiency and low emission of pollutants. Fuel cells (FCs) are ideal candidates to meet these requirements. FCs are electrochemical devices that convert chemical energy directly into electrical energy. Several kinds of FCs exist, but the most important being proton exchange membrane fuel cell (PEMFC), which uses an acidic membrane like Nafion (sulfonated fluorocarbon polymers) as an electrolyte. The use of polymer electrolytes represents an interesting path to pursue for these electrochemical devices. Moreover, when Nafion membranes are applied to direct alcohol fuel cells (DAFCs), several major obstacles emerge, i.e. methanol crossover and relative low activity. The crossover reduces the operational voltage and the power that can be achieved. One of the major disadvantages of the proton exchange membrane is the high cost of the membrane electrode assembly (MEA), related: (i) to an expensive polymeric membrane and (ii) to the use of platinum catalysts.2 Therefore, this implied that there is an urgent need for the development of novel anion exchange membranes (AEMs) that can be applied in FCs. In alkaline fuel cells, the OH- anions are produced at cathode and then transported through the membrane to the anode where they are quantitatively consumed. This poster will present a brief overview on preparation and characterization of anion exchange membranes (AEMs) using poly(arylene ethers) (PEAs) as well as the modification of commercially available PEAs, for example, polysulfone (Udel) and polyphenylsulfone as base polymers for the membranes. Characterization of these polymeric membranes will be presented with reference to recent advances as reported in literature
DA - 2007-12
DB - ResearchSpace
DP - CSIR
KW - Electricity generation facility
KW - Fuel cells
KW - Anion exchange membranes
KW - AEM
KW - Poly(arylene ether)
LK - https://researchspace.csir.co.za
PY - 2007
SM - 978-0-620-37679-2
T1 - Synthesis and characterisation of alkaline anionic-exchange membranes for direct alcohol fuel cells
TI - Synthesis and characterisation of alkaline anionic-exchange membranes for direct alcohol fuel cells
UR - http://hdl.handle.net/10204/3259
ER -
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en_ZA |