Zobrazeno 1 - 10
of 2 299
pro vyhledávání: '"bioelectrochemical system"'
Autor:
Chaeho Im, Minsoo Kim, Jung Rae Kim, Kaspar Valgepea, Oskar Modin, Yvonne Nygård, Carl Johan Franzén
Publikováno v:
Frontiers in Microbiology, Vol 15 (2024)
Fossil resources must be replaced by renewable resources in production systems to mitigate green-house gas emissions and combat climate change. Electro-fermentation utilizes a bioelectrochemical system (BES) to valorize industrial and municipal waste
Externí odkaz:
https://doaj.org/article/8588d7b81f7a4cf5a7c45e34988ed0cf
Unraveling the Electron Transfer in Cupriavidus necator – Insights Into Mediator Reduction Mechanics
Publikováno v:
ChemElectroChem, Vol 11, Iss 14, Pp n/a-n/a (2024)
Abstract Cupriavidus necator, despite lacking direct electron transfer capabilities, demonstrates efficient reduction of various redox mediators in oxygen‐free cultivation within bioelectrochemical systems. This study investigates the reduction sit
Externí odkaz:
https://doaj.org/article/6069aea0e7cb44f59b686392f142792e
Publikováno v:
Electrochemistry Communications, Vol 162, Iss , Pp 107705- (2024)
Bioelectrochemical systems with Cupriavidus necator present a viable solution for harnessing H2/CO2 mixtures as substrates, employing mediated electron transfer to an infinite electron acceptor in the form of an anode instead of O2. Fourteen redox me
Externí odkaz:
https://doaj.org/article/07d52167d0ca417e898caf276e499af7
Autor:
Minmin Sun, Chengxian Wang
Publikováno v:
Heliyon, Vol 10, Iss 3, Pp e24772- (2024)
In this work, the ferrous (Fe2+) and graphitic N modified graphene-based composite cathode materials (N-rGO/Fe3O4) were developed through an in-situ reduction method, aiming to facilitate the two-electron pathway in the oxidation-reduction process. T
Externí odkaz:
https://doaj.org/article/a7713f89307a4cbfb49583762937836a
Autor:
Meritxell Romans-Casas, Laura Feliu-Paradeda, Michele Tedesco, Hubertus V.M. Hamelers, Lluis Bañeras, M. Dolors Balaguer, Sebastià Puig, Paolo Dessì
Publikováno v:
Environmental Science and Ecotechnology, Vol 17, Iss , Pp 100303- (2024)
Microbial electrosynthesis (MES) is a promising carbon utilization technology, but the low-value products (i.e., acetate or methane) and the high electric power demand hinder its industrial adoption. In this study, electrically efficient MES cells wi
Externí odkaz:
https://doaj.org/article/c5f5ba31c5ce4191ab900b249ee27204
Publikováno v:
Synthetic and Systems Biotechnology, Vol 8, Iss 3, Pp 341-348 (2023)
Microbial bioelectrochemical system (BES) is a promising sustainable technology for the electrical energy recovery and the treatment of recalcitrant and toxic pollutants. In microbial BESs, the conversion of harmful pollutants into harmless products
Externí odkaz:
https://doaj.org/article/16041d94043e445388375e630ac5b83e
Akademický článek
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Publikováno v:
Molecules, Vol 29, Iss 10, p 2276 (2024)
Bioelectrochemical systems (BESs) are an innovative technology for the efficient degradation of antibiotics. Shewanella oneidensis (S. oneidensis) MR-1 plays a pivotal role in degrading sulfamethoxazole (SMX) in BESs. Our study investigated the effec
Externí odkaz:
https://doaj.org/article/05f76d2d0d9b4e858fa9d15b6c9bff10
Publikováno v:
Bioresources and Bioprocessing, Vol 10, Iss 1, Pp 1-12 (2023)
Abstract It is of great significance to utilize CO2 as feedstock to synthesize biobased products, particularly single cell protein (SCP) as the alternative food and feed. Bioelectrochemical system (BES) driven by clean electric energy has been regard
Externí odkaz:
https://doaj.org/article/337ea4dffba74833a8ac69ba0ec81a4e
Autor:
Phuong Ha Vu, Nhung Hong Tran, Thuy Thu Thi Nguyen, Hanh My Tran, Ha Viet Thi Bui, Huy Quang Nguyen, Thao Kim Nu Nguyen, Hai The Pham
Publikováno v:
Aquaculture Reports, Vol 33, Iss , Pp 101826- (2023)
Aquaculture can suffer from heavy losses caused by vibriosis, which denotes diseases caused by Vibrio bacteria. Due to disadvantages of available measures, mostly involving the use of antibiotics, to control these bacteria, novel measures are still n
Externí odkaz:
https://doaj.org/article/5b660c65829f433faa6e45dafd550ff6