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  1. 25 wrz 2023 · The results showed that the shortest start-up time of 127.3 h and highest power density of 0.84 W m−2 were obtained with carbon brush as electrode, low concentration of substrate (1.0 g L−1), and 1000 Ω external resistance (denoted as N1).

  2. 13 wrz 2021 · Comparison of different chemical treatments of brush and flat carbon electrodes to improve performance of microbial fuel cells. Emmanuel U. Fonseca, Wulin Yang, +2 authors. B. Logan. Published in Bioresource Technology 13 September 2021. Engineering, Chemistry, Environmental Science. View on PubMed. manuscript.elsevier.com. Save to Library.

  3. 9 lip 2020 · These results suggest that Methanothrix species were participating in direct electron transfer (DET) in the carbon brush reactor and that carbon brush is a better biocathode material in bioelectrochemical biogas upgrading systems.

  4. Electrically Switchable Polymer Brushes for Protein Capture and Release in Biological Environments** Gustav Ferrand-Drake del Castillo, Maria Kyriakidou, Zeynep Adali, Kunli Xiong, Rebekah L. N. Hailes, and Andreas Dahlin* Abstract: Interfaces functionalized with polymers are known for providing excellent resistance towards bio-

  5. 1 Introduction. Over the past decades, research on microbial fuel cells (MFCs) has attracted wide attention for its unique advantages to degrade organic matter in wastewater and simultaneously produce electricity by the electrochemically active bacteria (EAB).1–3 However, the power output of MFCs is still limited.

  6. Brush or flat anodes were chemically treated and then compared in identical two-chambered MFCs using the electrode potential slope (EPS) analysis to quantify the anode resistances.

  7. Microbial fuel cells (MFCs) are bio-electrochemical systems (BES) that can oxidize and convert biodegradable wastes directly into electricity via microbial metabolism.

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