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Upscaling of Microbial Electrolysis Cell Integrating Microbial Electrosynthesis: Insights, Challenges and Perspectives

Jiang-Hao Tian, Rémy Lacroix, Elie Desmond-Le Quéméner, Chrystelle Bureau, Cédric Midoux, Théodore Bouchez
doi: https://doi.org/10.1101/609909
Jiang-Hao Tian
1Irstea, UR HBAN, 1 rue Pierre-Gilles de Gennes, 92761 Antony cedex, France
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Rémy Lacroix
26TMIC Ingénieries, 9 Rue du Développement, 31320 Castanet-Tolosan, France.Fgire
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Elie Desmond-Le Quéméner
1Irstea, UR HBAN, 1 rue Pierre-Gilles de Gennes, 92761 Antony cedex, France
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Chrystelle Bureau
1Irstea, UR HBAN, 1 rue Pierre-Gilles de Gennes, 92761 Antony cedex, France
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Cédric Midoux
1Irstea, UR HBAN, 1 rue Pierre-Gilles de Gennes, 92761 Antony cedex, France
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Théodore Bouchez
1Irstea, UR HBAN, 1 rue Pierre-Gilles de Gennes, 92761 Antony cedex, France
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  • For correspondence: theodore.bouchez{at}irstea.fr
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Abstract

Recent development of microbial electrochemical technologies has allowed microbial electrosynthesis (MES) of organic molecules with microbial electrolysis cell treating waste organic matter. An electrolytic cell with a MES cathode (ME-ME cell) can produce soluble organic molecules with higher market price than biomethane, and thus satisfy both economic and environmental interest. However, the sustainability of bioanode activity could become a major concern. In this work, a 15-liter ME-ME reactor was designed with specific electrode configurations. An electrochemical model was established to assess the feasibility and possible performance of the design, considering the “aging” effect of the bioanode. The reactor was then built and operated for performance evaluation as well as bioanode regeneration assay. Biowaste from an industrial deconditioning platform was used as substrate for bioanode. The COD removal rate in the anodic chamber reached 0.83 g day-1 L-1 of anolyte and the anodic coulombic efficiency reached 98.6%. Acetate was produced with a rate of 0.53 g day-1 L-1 of catholyte, reaching a maximum concentration of 8.3 g L-1. A potential difference was applied between the bioanode and biocathode independent of reference electrodes. The active biocathode was dominated by members of the Genus Pseudomonas, rarely reported so far for MES activity.

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Posted April 16, 2019.
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Upscaling of Microbial Electrolysis Cell Integrating Microbial Electrosynthesis: Insights, Challenges and Perspectives
Jiang-Hao Tian, Rémy Lacroix, Elie Desmond-Le Quéméner, Chrystelle Bureau, Cédric Midoux, Théodore Bouchez
bioRxiv 609909; doi: https://doi.org/10.1101/609909
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Upscaling of Microbial Electrolysis Cell Integrating Microbial Electrosynthesis: Insights, Challenges and Perspectives
Jiang-Hao Tian, Rémy Lacroix, Elie Desmond-Le Quéméner, Chrystelle Bureau, Cédric Midoux, Théodore Bouchez
bioRxiv 609909; doi: https://doi.org/10.1101/609909

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