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Enhanced Microbial and Chemical Catalysis in Bio-electrochemical Systems: Springer Theses

Autor Xian-Wei Liu
en Limba Engleză Hardback – 13 mar 2025
This study enhances microbial and chemical catalyses in bioelectrochemical systems (BESs) by designing and manufacturing new materials, elucidating the catalytic mechanisms, and applying them in wastewater treatment.
As a novel environmental biotechnology, BESs can be used for treating wastewater and generating power, producing value-added products, and detoxifying contaminants. However, the catalytic efficiency of the electrode reaction is low these systems. 
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Specificații

ISBN-13: 9783662550496
ISBN-10: 3662550490
Pagini: 120
Ilustrații: X, 120 p. 80 illus., 20 illus. in color.
Dimensiuni: 155 x 235 mm
Ediția:1st ed. 2024
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Springer Theses

Locul publicării:Berlin, Heidelberg, Germany

Cuprins

Introduction.- Carbon nanotube enhanced microbial anode catalysis.- Immobilized redox mediator regulated microbial anode catalysis.- Nano-structured manganese oxide enhanced oxygen reduction as a cathodic catalyst.- Nano-structed Ag catalyzed the cathodic reduction of p-notrophenol.- Photoautotrophic cathodic oxygen reduction catalyzed by a green alga.- Integration of a biocathode microbial fuel cell with activated sludge process for energy-saving wastewater treatment.- Summary.

Notă biografică

Dr. Xian-Wei Liu
Doctor of Philosophy, Chemistry
University of Science & Technology of China
Department of Chemistry

Textul de pe ultima copertă

This study enhances microbial and chemical catalyses in bioelectrochemical systems (BESs) by designing and manufacturing new materials, elucidating the catalytic mechanisms, and applying them in wastewater treatment.
As a novel environmental biotechnology, BESs can be used for treating wastewater and generating power, producing value-added products, and detoxifying contaminants. However, the catalytic efficiency of the electrode reaction is low these systems. 

Caracteristici

Develops universal methods of enhancing microbial electron transfer at the anode and elucidates the mechanisms behind this enhancement Fabricates nanostructured materials to cathodically catalyze the oxygen reduction reaction and for contaminant detoxification Demonstrates an energy-saving wastewater treatment system by integrating a biocathode microbial fuel cell into the activated sludge process