Journal
BIOELECTROCHEMISTRY
Volume 142, Issue -, Pages -Publisher
ELSEVIER SCIENCE SA
DOI: 10.1016/j.bioelechem.2021.107895
Keywords
Microbial fuel cells; Microbial electrochemical snorkel; Denitrification; Biocathode; Bioanode
Funding
- French National Research Agency [ANR-17-CE04-0004]
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Microbial electrochemical snorkel (MES) is a microbial fuel cell suitable for water treatment, which does not generate energy but has lower implementation costs. Testing different materials and configurations of the snorkel helps to better understand its operation in wetlands.
Microbial electrochemical snorkel (MES) is a short-circuited microbial fuel cell applicable to water treatment that does not produce energy but requires lower cost for its implementation. Few reports have already described its water treatment capabilities but no deeper electrochemical analysis were yet performed. We tested various materials (iron, stainless steel and porous graphite) and configurations of snorkel in order to better understand the rules that will control in a wetland the mixed potential of this self-powered system. We designed a model snorkel that was studied in laboratory and on the field. We confirmed the development of MES by identifying anodic and cathodic parts, by measuring the current between them and by analyzing microbial ecology in laboratory and field experiments. An important application is denitrification of surface water. Here we discuss the influence of nitrate on its electrochemical response and denitrification performances. Introducing nitrate caused the increase of the mixed potential of MES and of current at a potential value relatively more positive than for nitrate-reducing biocathodes described in the literature. The major criteria for promoting application of MES in artificial wetland dedicated to mitigation of non-point source nitrate pollution from agricultural water are considered. (c) 2021 Elsevier B.V. All rights reserved.
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