Bioelectricity Production in Warm Climate Sediment Plant Microbial Fuel Cells Utilizing Typha domingensis

Authors

  • Cervantes-Alcalá1 R Author
  • Ortega-Clemente2 L. A. Author

Keywords:

Constructed Wetland, Typha domingensis,, renewable energy, green electricity, microbial fuel cell.

Abstract

Wetlands are ecosystems rich in organic matter due to the high biomass of vegetation that characterize them. 
This organic matter could be used as a substrate in devices to generate electricity through Sediment Plant 
Microbial Fuel Cells (SPMFC). In this study we applied the SPMFC concept adapted to Typha domingensis Pers., 
a typical wetland plant. SPMFCs were constructed with glass cells and graphite electrodes under natural 
environmental conditions. Electrical current production was 47.9 ± 10.98 mA/m2 with 6.12 ± 2.53 mW/m2 power 
(data normalized to plant growth area). Trials were performed using an electrical motor (CEBEK 0.7V and 10 mA) 
which moved a cardboard propeller for 15 min intervals during 6 days

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Published

2024-11-02

How to Cite

Bioelectricity Production in Warm Climate Sediment Plant Microbial Fuel Cells Utilizing Typha domingensis. (2024). Frontiers of Agriculture and Food Technology, 15(1), 19-26. https://kevinpage.org/index.php/FAFT/article/view/1363

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