Interplay of charge between bacteria and electrode has led to emergence of bioelectrochemical systems which leads to applications such as production of electricity, wastewater treatment, bioremediation and production of value added products. Many electroactive bacteria have been identified that have unique external electron transport systems. Coupling of electron transport with carbon metabolism has opened a new approach of carbon dioxide sequestration. The electron transport mechanism involves various cellular and sub cellular molecules. The outer membrane cytochromes, Mtr-complex and Ech-complex are few key molecules involved in electron transport in many electrogenic bacteria. Few cytochrome independent acetogenic electroactive bacteria were also discovered using Rnf complex to transport electrons. For improved productivity, an efficient bioreactor design is mandatory. It should encompass all certain critical issues such as microbial cell retention, charge dissipation, separators and simultaneous product recovery.

Electro-stimulated microbial factory for value added product synthesis / S. Roy, A. Schievano, D. Pant. - In: BIORESOURCE TECHNOLOGY. - ISSN 0960-8524. - 213(2016 Aug), pp. 129-139. ((Intervento presentato al convegno International Conference on New Horizons in Biotechnology (NHBT-2015) : November, 22-25 tenutosi a Trivandrum (India) nel 2015.

Electro-stimulated microbial factory for value added product synthesis

A. Schievano
Secondo
;
2016

Abstract

Interplay of charge between bacteria and electrode has led to emergence of bioelectrochemical systems which leads to applications such as production of electricity, wastewater treatment, bioremediation and production of value added products. Many electroactive bacteria have been identified that have unique external electron transport systems. Coupling of electron transport with carbon metabolism has opened a new approach of carbon dioxide sequestration. The electron transport mechanism involves various cellular and sub cellular molecules. The outer membrane cytochromes, Mtr-complex and Ech-complex are few key molecules involved in electron transport in many electrogenic bacteria. Few cytochrome independent acetogenic electroactive bacteria were also discovered using Rnf complex to transport electrons. For improved productivity, an efficient bioreactor design is mandatory. It should encompass all certain critical issues such as microbial cell retention, charge dissipation, separators and simultaneous product recovery.
bioelectricity; bioreactor design; electron transport; microbial factory; wastewater; bacteria; bioreactors; biotechnology; electron transport; bioelectric energy sources; electricity; bioengineering; environmental engineering; waste management and disposal
Settore AGR/13 - Chimica Agraria
Settore AGR/10 - Costruzioni Rurali e Territorio Agroforestale
Settore ICAR/03 - Ingegneria Sanitaria-Ambientale
ago-2016
19-mar-2016
Biotechnology Research Society
National Institut Interdisciplinary Science & Technology
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/489536
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