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Electricity Generation and Wastewater Treatment of Oil Refinery in Microbial Fuel Cells Using Pseudomonas putida

Microbial fuel cells (MFCs) represent a novel platform for treating wastewater and at the same time generating electricity. Using Pseudomonas putida (BCRC 1059), a wild-type bacterium, we demonstrated that the refinery wastewater could be treated and also generate electric current in an air-cathode...

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Autores principales: Majumder, Dip, Maity, Jyoti Prakash, Tseng, Min-Jen, Nimje, Vanita Roshan, Chen, Hau-Ren, Chen, Chien-Cheng, Chang, Young-Fo, Yang, Tsui-Chu, Chen, Chen-Yen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4200787/
https://www.ncbi.nlm.nih.gov/pubmed/25247576
http://dx.doi.org/10.3390/ijms150916772
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author Majumder, Dip
Maity, Jyoti Prakash
Tseng, Min-Jen
Nimje, Vanita Roshan
Chen, Hau-Ren
Chen, Chien-Cheng
Chang, Young-Fo
Yang, Tsui-Chu
Chen, Chen-Yen
author_facet Majumder, Dip
Maity, Jyoti Prakash
Tseng, Min-Jen
Nimje, Vanita Roshan
Chen, Hau-Ren
Chen, Chien-Cheng
Chang, Young-Fo
Yang, Tsui-Chu
Chen, Chen-Yen
author_sort Majumder, Dip
collection PubMed
description Microbial fuel cells (MFCs) represent a novel platform for treating wastewater and at the same time generating electricity. Using Pseudomonas putida (BCRC 1059), a wild-type bacterium, we demonstrated that the refinery wastewater could be treated and also generate electric current in an air-cathode chamber over four-batch cycles for 63 cumulative days. Our study indicated that the oil refinery wastewater containing 2213 mg/L (ppm) chemical oxygen demand (COD) could be used as a substrate for electricity generation in the reactor of the MFC. A maximum voltage of 355 mV was obtained with the highest power density of 0.005 mW/cm(2) in the third cycle with a maximum current density of 0.015 mA/cm(2) in regard to the external resistor of 1000 Ω. A maximum coulombic efficiency of 6 × 10(−2)% was obtained in the fourth cycle. The removal efficiency of the COD reached 30% as a function of time. Electron transfer mechanism was studied using cyclic voltammetry, which indicated the presence of a soluble electron shuttle in the reactor. Our study demonstrated that oil refinery wastewater could be used as a substrate for electricity generation.
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spelling pubmed-42007872014-10-17 Electricity Generation and Wastewater Treatment of Oil Refinery in Microbial Fuel Cells Using Pseudomonas putida Majumder, Dip Maity, Jyoti Prakash Tseng, Min-Jen Nimje, Vanita Roshan Chen, Hau-Ren Chen, Chien-Cheng Chang, Young-Fo Yang, Tsui-Chu Chen, Chen-Yen Int J Mol Sci Article Microbial fuel cells (MFCs) represent a novel platform for treating wastewater and at the same time generating electricity. Using Pseudomonas putida (BCRC 1059), a wild-type bacterium, we demonstrated that the refinery wastewater could be treated and also generate electric current in an air-cathode chamber over four-batch cycles for 63 cumulative days. Our study indicated that the oil refinery wastewater containing 2213 mg/L (ppm) chemical oxygen demand (COD) could be used as a substrate for electricity generation in the reactor of the MFC. A maximum voltage of 355 mV was obtained with the highest power density of 0.005 mW/cm(2) in the third cycle with a maximum current density of 0.015 mA/cm(2) in regard to the external resistor of 1000 Ω. A maximum coulombic efficiency of 6 × 10(−2)% was obtained in the fourth cycle. The removal efficiency of the COD reached 30% as a function of time. Electron transfer mechanism was studied using cyclic voltammetry, which indicated the presence of a soluble electron shuttle in the reactor. Our study demonstrated that oil refinery wastewater could be used as a substrate for electricity generation. MDPI 2014-09-22 /pmc/articles/PMC4200787/ /pubmed/25247576 http://dx.doi.org/10.3390/ijms150916772 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Majumder, Dip
Maity, Jyoti Prakash
Tseng, Min-Jen
Nimje, Vanita Roshan
Chen, Hau-Ren
Chen, Chien-Cheng
Chang, Young-Fo
Yang, Tsui-Chu
Chen, Chen-Yen
Electricity Generation and Wastewater Treatment of Oil Refinery in Microbial Fuel Cells Using Pseudomonas putida
title Electricity Generation and Wastewater Treatment of Oil Refinery in Microbial Fuel Cells Using Pseudomonas putida
title_full Electricity Generation and Wastewater Treatment of Oil Refinery in Microbial Fuel Cells Using Pseudomonas putida
title_fullStr Electricity Generation and Wastewater Treatment of Oil Refinery in Microbial Fuel Cells Using Pseudomonas putida
title_full_unstemmed Electricity Generation and Wastewater Treatment of Oil Refinery in Microbial Fuel Cells Using Pseudomonas putida
title_short Electricity Generation and Wastewater Treatment of Oil Refinery in Microbial Fuel Cells Using Pseudomonas putida
title_sort electricity generation and wastewater treatment of oil refinery in microbial fuel cells using pseudomonas putida
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4200787/
https://www.ncbi.nlm.nih.gov/pubmed/25247576
http://dx.doi.org/10.3390/ijms150916772
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