Team:Bielefeld-CeBiTec/Results/rMFC/Construction

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       <a href="https://2014.igem.org/File:Bielefeld_CeBiTec_2014-10-11_Reaktor_NR_beschriftet.png" target="_blank"><img src="https://2014.igem.org/File:Bielefeld_CeBiTec_2014-10-11_Reaktor_NR_beschriftet.png" width="850px"></a><br>
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       <font size="1" style="text-align:left;">Figure 1: H-cell reactor set up. You can see the anode- and cathode-compartments which are connected by a glassflange. The water-heating conection, fumigation and the wiring of the needed electrodes. It is a three electrode set up with working- (WE) und reference-electrode (RE) in the cathode space and a counter electrode (CE) in the anode space.</font>
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       <font size="3" style="text-align:left;">Figure 1: H-cell reactor set up. You can see the anode- and cathode- compartments which are connected by a glass flange. The water-heating conection, fumigation and the wiring of the needed electrodes. It is a three electrode set up with working- (WE) und reference- electrode (RE) in the cathode space and a counter electrode (CE) in the anode space.</font>
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Revision as of 18:56, 13 October 2014



rMFC

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H-Cell Reactor


Figure 1: H-cell reactor set up. You can see the anode- and cathode- compartments which are connected by a glass flange. The water-heating conection, fumigation and the wiring of the needed electrodes. It is a three electrode set up with working- (WE) und reference- electrode (RE) in the cathode space and a counter electrode (CE) in the anode space.

Flow Cell