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Bioelectrochemical metal recovery with microbial fuel cells
Pau Rodenas Motos
Environmental Technology
WIMEK
Research output
:
Thesis
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internal PhD, WU
Overview
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Projects
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Dive into the research topics of 'Bioelectrochemical metal recovery with microbial fuel cells'. Together they form a unique fingerprint.
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Engineering
Microbial Fuel Cell
100%
Metal Recovery
100%
Electron Donor
100%
Model Compound
50%
Energy Dissipation
33%
Power Production
33%
Limitations
33%
Improve Efficiency
16%
Gas-Phase
16%
Heavy Metal
16%
Internal Resistance
16%
Remote Area
16%
Anion Exchange Membrane
16%
Charge Carrier
16%
Gaseous Diffusion
16%
Material Science
Density
100%
Anode
100%
Biofilms
50%
Heavy Metal
50%
Charge Carrier
50%
Electrochemical Cell
50%
Carbon Dioxide
50%
Electroplating
50%
Metallurgy
50%
Chemical Engineering
Carbon Dioxide
100%
Heavy Metal
100%
Anion Exchange
100%
Electrodeposition
100%
Gas Diffusion Electrode
100%
Biochemistry, Genetics and Molecular Biology
Current Density
100%
Microbial Fuel Cell
100%
Subcellular Localization
50%
Gas Diffusion
50%
Cell Size
50%
Biofilm
50%
Ion Exchange
50%