## Abstract Metabolic control analysis (MCA) is an analytical technique that aims to quantify the distribution of control that enzymes exhibit over the steady‐state fluxes through a metabolic network. In an enzymatic biofuel cell, the flux of interest is the electrical current generated by the syst
Complete Oxidation of Glycerol in an Enzymatic Biofuel Cell
✍ Scribed by R. L. Arechederra; S. D. Minteer
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 258 KB
- Volume
- 9
- Category
- Article
- ISSN
- 1615-6846
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✦ Synopsis
Abstract
Glycerol has drawn increasing attention as a prospective fuel because it has many desirable qualities and is abundant due to the fact that it is a by‐product of biodiesel production. Qualities such as nontoxicity, extremely low vapour pressure, low flammability and high energy density make glycerol very appealing as an energy source. Previous research has shown that partial oxidation of glycerol can occur at enzymatic bioanodes of biofuel cells utilising PQQ‐dependent alcohol dehydrogenase (PQQ‐ADH) and PQQ‐dependent aldehyde dehydrogenase (PQQ‐AldDH). In this paper, we describe the use of glycerol for a fuel in an enzymatic biofuel cell that utilizes a three‐enzyme cascade on the anode that can accomplish the complete oxidation of glycerol. The bioanode that was developed contained PQQ‐ADH, PQQ‐AldDH and oxalate oxidase immobilised within a tetrabutylammonium‐modified Nafion membrane. Our previous research has shown that glycerol is an effective fuel with the PQQ‐ADH and PQQ‐AldDH but still was unable to be fully oxidised. With the addition of oxalate oxidase, these glycerol/air biofuel cells have yielded power densities of up to 1.32 mW cm^–2^, and have the ability to operate at high fuel concentrations. The oxidation products were confirmed with ^13^C NMR and comprised mainly ^13^C‐labelled carbonate and glycerate.
📜 SIMILAR VOLUMES
## Abstract We report on the performance of a prototype glucose/O~2~ biofuel cell in a physiological buffer. The cell consists of cathode based on __Melanocarpus albomyces__ laccase (with a reported T1 copper redox potential of + 0.26 V __vs.__ Ag/AgCl) co‐immobilised with an osmium redox polymer m