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  1. 25 wrz 2023 · Bioelectrochemical system (BES), a technology that takes advantage of electroactive microorganisms (EAMs) to transform chemical energy in wastewater into electrical energy, is widely valued for its simultaneous wastewater treatment and energy recovery (Jiang et al. 2022, Soh et al. 2020).

  2. 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.

  3. 1 wrz 2021 · Biological processes including algal cultivation, gas fermentation, and microbial electrosynthesis (MES) have emerged as prominent alternatives for producing multicarbon chemicals for CO 2 utilization [17].

  4. 15 lip 2018 · The aim of this study is to establish the simple method for carbon brush fabrication and explore the roles of rGO/carbon brush in reducing the resistances of electrode and BES reactor as well as facilitating efficient refractory pollutants removal at cathode in BESs.

  5. 1 gru 2016 · Bioelectrochemical systems (BESs) are unique systems capable of converting chemical energy into electrical energy (and vice-versa) while employing microbes as catalysts. Such organic wastes including low-strength wastewaters and lignocellulosic biomass were converted into electricity with microbial fuel cells (MFCs).

  6. 5 maj 2022 · pHresponsive polymer brushes are presented that are compatible with electrochemical control. The brushes can be reversibly switched between protein binding and repelling states at fully physiological conditions with respect to salt, pH and buffering capacity.

  7. 26 mar 2021 · In this review, a particular emphasis has been provided for studies related to biological applications of polymer brushes based on their ultra-low friction, hydrophilic elongated surfaces, and binding properties.

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