Research Library
Discover insights from thousands of peer-reviewed papers on microbial electrochemical systems
Discover insights from thousands of peer-reviewed papers on microbial electrochemical systems
Wang Ling
Science Discovery • 2016
Muhammad Haikal Zainal
Journal of Thermal Engineering • 2015
C. Subha, S. Kavitha, S. Abisheka et al.
Fuel • 2019
Anand Parkash
MOJ Proteomics & Bioinformatics • 2018
Ankur B, Shipra S
Journal of Microbial & Biochemical Technology • 2017
Anand Parkash
MOJ Proteomics & Bioinformatics • 2016
Payel Choudhury, Rup Narayan Ray, Tarun Kanti Bandyopadhyay et al.
Fuel • 2020
Unknown Author
University of Thi-Qar Journal • 2019
Unknown Author
International Journal of Engineering • 2019
Unknown Author
Journal of Energy Technologies and Policy • 2019
Junfeng Chen, Yongyou Hu, Wantang Huang et al.
Bioresource Technology • 2018
Xuepeng Chen, Yunfei Li, Xiaole Yuan et al.
Electrochimica Acta • 2020
Debajyoti Bose, Margavelu Gopinath, Parthasarthy Vijay et al.
Fuel • 2019
Alka Pareek, J. Shanthi Sravan, S. Venkata Mohan
Materials Science for Energy Technologies • 2019
Ademola Adekunle, Vijaya Raghavan, Boris Tartakovsky
Bioelectrochemistry • 2019
This study compares the biosensing performance of a microbial fuel cell (MFC) and a microbial electrolysis cell (MEC). Initial tests provided a qualitative comparison of MFC and MEC currents after the anode compartment liquid (anolyte) was spiked with acetate, or sulphates of NH 4 + , Na + , Mg 2+ , Fe 2+ , or a fertilizer solution. Current measurements showed that the MFC sensor had a faster response time, higher sensitivity, and faster recovery time after the spike. Following the spike tests, the MFC and MEC were operated in a continuous flow mode at several influent concentrations of acetate, and sulphates of NH 4 + , Na + , and Fe 2+ . The continuous flow tests confirmed the better performance of the MFC sensor, which was selected for further experiments. Two MFC sensors were used for real-time (on-line) COD measurements of brewery wastewater. Regression analysis showed a strong correlation between the MFC power output and COD concentrations in the anode compartment with a coefficient of determination (R 2 ) of 0.97. Overall, results of this study suggest that an MFC-based sensor can be successfully used as a simple and cost-efficient real-time monitoring tool.
Shrirang R. Maddalwar, Arti S. Shanware
International Journal of Life-Sciences Scientific Research • 2018
Samatha Singh , Dr. Suresh. S Samatha Singh , Dr. Suresh. S
International Journal of Chemical & Petrochemical Technology • 2018
Hanmin Zhang, Zongyang Da, Yujie Feng et al.
Journal of Cleaner Production • 2018
A. Divya Priya, Y. Pydi Setty
Fuel • 2019
Zi-Bo Wang, Min Ge, Shi-Chang Xiong et al.
Ionics • 2016
B. Kartick, S. K. Srivastava, A. Chandra
Journal of Nanoscience and Nanotechnology • 2015
The present work deals with the preparation of fcc-nickel (Ni) nanofibers and Graphene/Ni hybrids. The analysis of XRD, FTIR and Raman data confirms the formation of pure Ni, graphite oxide, reduced graphene and their hybrids. SEM micrographs clearly show the decoration of Ni nanofibers on the graphene flakes. The synthesized Ni-based hybrid systems can have applications in areas ranging from: magnetism, catalysis to microbial fuel cells. The vibrating sample magnetometer (VSM) investigations reveal that the hybrid structure shows hysteresis loop similar to that expected from a superparamagnetic system. When the same hybrid structure is used as catalyst for decolourization of 4-nitrophenol, the maximum rate constant of 0.1 min⁻¹ can be obtained. The catalytic activity also shows dependence on the loading concentration of Ni. The enhanced performance can be explained on the basis of synergistic effect between graphene and nickel nanofibers. The developed hybrids have also been applied as catalyst for cathode in microbial fuel cells and the studies showed improved power density compared to conventional microbial fuel cells (MFCs).
Unknown Author
International Journal of Science and Research (IJSR) • 2017
Lan Li, Shuxin Liu, Hui Wang et al.
Environmental Engineering Science • 2018
Abstract A graphene-cobalt/nickel composite-carbon cloth (Gr-Co/Ni-CC) electrode through dip-coating method associated with hydrothermal process-air calcination method was prepared. The scanning electron microscope (SEM), energy dispersive X-ray (EDX), transmission electron microscope (TEM), and X-ray powder diffraction (XRD) techniques proved that the wrinkled graphene sheets and granular Co/Ni composite loaded on the carbon cloth (CC) surface successfully. The highest Brunauer-Emmett-Teller (BET) surface area of the Gr-Co/Ni-CC was obtained (138.821 m 2 /g), which was effectively higher compared with the CC electrode (1.404 m 2 /g). Electrochemical measurements revealed that the Gr-Co/Ni composite significantly improved the electrochemical performance of the CC electrode. When Gr-Co/Ni-CC electrode was used as an anode in microbial fuel cell (MFC), compared with the control MFCs, the highest maximum power density (784.89 mW/m 2 ) and the lowest internal resistance (158.52 Ω) were obtained. Furthermore, the MFC with Gr-Co/Ni-CC anode electrode still possessed high treatment ability on organics-rich wastewater. The results declared that the Gr-Co/Ni-CC anode was an effective alternative to boost the MFC performance.
Junfeng Chen, Yongyou Hu, Xiaojun Tan et al.
Bioresource Technology • 2017
Alka Pareek, J. Shanthi Sravan, S. Venkata Mohan
Journal of Materials Science • 2019
Debajyoti Bose, Amarnath Bose
Indonesian Journal of Electrical Engineering and Informatics (IJEEI) • 2017
Unknown Author
Advances in Applied Chemistry and Biochemistry • 2018
R. Dhayalan, V. Satya Narayana Murthy, C.V. Krishnamurthy et al.
Ultrasonics • 2011
S. Sreenivasa Prasath, A. Arockiarajan
Sensors and Actuators A: Physical • 2014
Gary Chinga-Carrasco
Nanoscale Research Letters • 2011
Marcelo A. Trindade, Ayech Benjeddou
Acta Mechanica • 2013
Karoliina Junka, Ilari Filpponen, Tom Lindström et al.
Cellulose • 2013
Fredrik Wernersson Brodin, Kristoffer Lund, Harald Brelid et al.
Cellulose • 2012
M. Azizul Moqsud, Kiyoshi Omine, Noriyuki Yasufuku et al.
Waste Management • 2013
Akihiro Kusuda, Xiu-Hua Xu, Xin Wang et al.
Green Chemistry • 2010
Ioannis Ieropoulos, Pablo Ledezma, Andrew Stinchcombe et al.
ECS Meeting Abstracts • 2013
Abstract not Available.
Min-Zih Wu, Hoang-Jyh Leu
ECS Meeting Abstracts • 2014
Abstract not Available.
Hoang-Jyh Leu, Min-Zih Wu
ECS Meeting Abstracts • 2014
Abstract not Available.
Sam A. Masih, Mercy Devasahayam
Advances in Applied Research • 2013
Wei Wang, Zhichun Yang
International Journal of Control and Automation • 2013