P. Clauwaert

Details der Publikationsliste

Zeitraum

2006 - 2008

Anzahl

30

Co-Autoren

Metabolites produced by Pseudomonas sp enable a Gram-positive bacterium to achieve extracellular electron transfer (2008)

Pham, T, Boon, N, Aelterman, P, Clauwaert, P, De Schamphelaire, L, Vanhaecke, L, ...

Previous studies revealed the abundance of Pseudomonas sp. in the microbial community of a microbial fuel cell (MFC). These bacteria can transfer electrons to the electrode via self-produced...

10. Metabolites produced by Pseudomonas sp enable a Gram-positive bacterium to achieve extracellular electron transfer (2008)

Boon, N., Aelterman, P., Clauwaert, P., Schamphelaire, L. D., Vanhaecke, L., ...

Previous studies revealed the abundance of Pseudomonas sp. in the microbial community of a microbial fuel cell (MFC). These bacteria can transfer electrons to the electrode via self-produced...

10. Metabolites produced by Pseudomonas sp enable a Gram-positive bacterium to achieve extracellular electron transfer (2008)

Boon, N., Aelterman, P., Clauwaert, P., Schamphelaire, L. D., Vanhaecke, L., ...

Previous studies revealed the abundance of Pseudomonas sp. in the microbial community of a microbial fuel cell (MFC). These bacteria can transfer electrons to the electrode via self-produced...

5. Metabolites produced by Pseudomonas sp enable a Gram-positive bacterium to achieve extracellular electron transfer (2008)

Boon, N., Aelterman, P., Clauwaert, P., Schamphelaire, L. D., Vanhaecke, L., ...

Previous studies revealed the abundance of Pseudomonas sp. in the microbial community of a microbial fuel cell (MFC). These bacteria can transfer electrons to the electrode via self-produced...

8. Metabolites produced by Pseudomonas sp enable a Gram-positive bacterium to achieve extracellular electron transfer (2008)

Boon, N., Aelterman, P., Clauwaert, P., Schamphelaire, L. D., Vanhaecke, L., ...

Previous studies revealed the abundance of Pseudomonas sp. in the microbial community of a microbial fuel cell (MFC). These bacteria can transfer electrons to the electrode via self-produced...

10. Metabolites produced by Pseudomonas sp enable a Gram-positive bacterium to achieve extracellular electron transfer (2008)

Boon, N., Aelterman, P., Clauwaert, P., Schamphelaire, L. D., Vanhaecke, L., ...

Previous studies revealed the abundance of Pseudomonas sp. in the microbial community of a microbial fuel cell (MFC). These bacteria can transfer electrons to the electrode via self-produced...

4. Metabolites produced by Pseudomonas sp enable a Gram-positive bacterium to achieve extracellular electron transfer (2008)

Boon, Nico, Aelterman, P., Clauwaert, P., De Schamphelaire, Liesje, Vanhaecke, L., ...

Previous studies revealed the abundance of Pseudomonas sp. in the microbial community of a microbial fuel cell (MFC). These bacteria can transfer electrons to the electrode via self-produced...

12 Metabolites produced by Pseudomonas sp enable a Gram-positive bacterium to achieve extracellular electron transfer (2008)

Boon, Nico, Aelterman, P., Clauwaert, P., De Schamphelaire, Liesje, Vanhaecke, L., ...

Previous studies revealed the abundance of Pseudomonas sp. in the microbial community of a microbial fuel cell (MFC). These bacteria can transfer electrons to the electrode via self-produced...

12 Metabolites produced by Pseudomonas sp enable a Gram-positive bacterium to achieve extracellular electron transfer (2008)

Boon, Nico, Aelterman, P., Clauwaert, P., De Schamphelaire, Liesje, Vanhaecke, L., ...

Previous studies revealed the abundance of Pseudomonas sp. in the microbial community of a microbial fuel cell (MFC). These bacteria can transfer electrons to the electrode via self-produced...

Open air biocathode enables effective electricity generation with microbial fuel cells (2007)

Clauwaert, P., Boon, N., Verbeken, K., Verhaege, M., Rabaey, K., ...

The reduction of oxygen at the cathode is one of the major bottlenecks of microbial fuel cells (MFCs). While research so far has mainly focused on chemical catalysis of this oxygen reduction, here we...

Biological denitrification in microbial fuel cells (2007)

Clauwaert, P, Rabaey, K, Aelterman, P, De Schamphelaire, L, Ham, TH, Boeckx, P, ...

Microbial fuel cells (MFCs) that remove carbon as well as nitrogen compounds out of wastewater are of special interest for practice. We developed a MFC in which microorganisms in the cathode...

Communities Driving Electricity Support Communities Thriving on Electricity (2007)

Rabaey, K., Rodriguez, J., Clauwaert, P., Virdis, B., The Pham, H., Aelterman, P., ...

Extracellular electron transfer (EET) is a common bacterial strategy to utilize insoluble electron donors and acceptors for the generation of metabolic energy. In bio-electrochemical systems (BES),...

Open air biocathode enables effective electricity generation with microbial fuel cells (2007)

Clauwaert, P., Boon, N., Verbeken, K., Verhaege, M., Rabaey, K., ...

The reduction of oxygen at the cathode is one of the major bottlenecks of microbial fuel cells (MFCs). While research so far has mainly focused on chemical catalysis of this oxygen reduction, here we...

Biological denitrification driven by microbial fuel cells (2007)

Clauwaert, P., Rabaey, K., Aelterman, P., De Schamphelaire, L., The Pham, H., Boeck, P., ...

Microbial fuel cells (MFCs) that remove carbon as well as nitrogen compounds out of wastewater are of special interest for practice. We developed a MFC in which microorganisms in the cathode...

Communities Driving Electricity Support Communities Thriving on Electricity (2007)

Rabaey, K., Rodriguez, J., Clauwaert, P., Virdis, B., The Pham, H., Aelterman, P., ...

Extracellular electron transfer (EET) is a common bacterial strategy to utilize insoluble electron donors and acceptors for the generation of metabolic energy. In bio-electrochemical systems (BES),...

Microbial Fuel Cells for Sulfide Removal (2006)

Rabaey, K., Maignien, L., Boon, N., Aelterman, P., Clauwaert, P., ...

Thus far, microbial fuel cells (MFCs) have been used to convert carbon-based substrates to electricity. However, sulfur compounds are ubiquitously present in organic waste and wastewater. In this...

Microbial Fuel Cells in Relation to Conventional Anaerobic Digestion Technology (2006)

Pham, T. H., Rabaey, K., Aelterman, P., Clauwaert, P., De Schamphelaire, L., Boon, N., ...

Conventional anaerobic digestion based bioconversion processes produce biogas and have as such been widely applied for the production of renewable energy so far. An innovative technology, based on...

Microbial fuel cells for wastewater treatment (2006)

Aelterman, P., Rabaey, K., Clauwaert, P., Verstraete, W.

Microbial fuel cells (MFCs) are emerging as promising technology for the treatment of wastewaters. The potential energy conversion efficiencies are examined. The rates of energy recovery (W/m3...

Microbial Fuel Cells in Relation to Conventional Anaerobic Digestion Technology (2006)

Pham, T. H., Rabaey, K., Aelterman, P., Clauwaert, P., De Schamphelaire, L., Boon, N., ...

Conventional anaerobic digestion based bioconversion processes produce biogas and have as such been widely applied for the production of renewable energy so far. An innovative technology, based on...

Microbial fuel cells for wastewater treatment (2006)

Aelterman, P., Rabaey, K., Clauwaert, P., Verstraete, W.

Microbial fuel cells (MFCs) are emerging as promising technology for the treatment of wastewaters. The potential energy conversion efficiencies are examined. The rates of energy recovery (W/m3...