Enhancing microbial fuel cell performance through microbial immobilization

被引:0
|
作者
Mersinkova, Yana [1 ]
Yemendzhiev, Hyusein [1 ]
机构
[1] Burgas Prof Dr Asen Zlatarov Univ, Fac Tech Sci, Dept Chem Technol, 1 Y Yakimov Blvd, Burgas 8010, Bulgaria
来源
ZEITSCHRIFT FUR NATURFORSCHUNG SECTION C-A JOURNAL OF BIOSCIENCES | 2024年 / 79卷 / 5-6期
关键词
microbial fuel cell; electrochemically active bacteria; microbial immobilization;
D O I
10.1515/znc-2023-0175
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Bio-electrochemical Systems (BES), particularly Microbial Fuel Cells (MFC), have emerged as promising technologies in environmental biotechnology. This study focused on optimizing the anode bacterial culture immobilization process to enhance BES performance. The investigation combines and modifies two key immobilization methods: covalent bonding with glutaraldehyde and inclusion in a chitosan gel in order to meet the criteria and requirements of the bio-anodes in MFC. The performance of MFCs with immobilized and suspended cultures was compared in parallel experiments. Both types showed similar substrate utilization dynamics with slight advantage of the immobilized bio-anode considering the lower concentration of biomass. The immobilized MFC exhibited higher power generation and metabolic activity, as well. Probably, this is due to improved anodic respiration and higher coulombic efficiency of the reactor. Analysis of organic acids content supported this conclusion showing significant inhibition of the fermentation products production in the MFC reactor with immobilized anode culture.
引用
收藏
页码:149 / 153
页数:5
相关论文
共 50 条
  • [31] Modeling the Impact of Interspecies Competition on Performance of a Microbial Fuel Cell
    Merkey, Brian V.
    Chopp, David L.
    BULLETIN OF MATHEMATICAL BIOLOGY, 2014, 76 (06) : 1429 - 1453
  • [32] Performance of Denitrifying Microbial Fuel Cell with Biocathode over Nitrite
    Zhao, Huimin
    Zhao, Jianqiang
    Li, Fenghai
    Li, Xiaoling
    FRONTIERS IN MICROBIOLOGY, 2016, 7
  • [33] Effects of catholyte and dissolved oxygen on microbial fuel cell performance
    Fan L.-P.
    Zheng Y.-J.
    Miao X.-H.
    Gao Xiao Hua Xue Gong Cheng Xue Bao/Journal of Chemical Engineering of Chinese Universities, 2016, 30 (02): : 491 - 496
  • [34] Performance of Microbial Fuel Cell for Wastewater Treatment and Electricity Generation
    Yavari, Z.
    Izanloo, H.
    Naddafi, K.
    Tashauoei, H. R.
    Khazaei, M.
    INTERNATIONAL JOURNAL OF RENEWABLE ENERGY DEVELOPMENT-IJRED, 2013, 2 (02): : 131 - 135
  • [35] EFFECT OF SULFATE CONCENTRATION IN THE WASTEWATER ON MICROBIAL FUEL CELL PERFORMANCE
    Ghangrekar, Makarand Madhao
    Murthy, Sirigirisetty S. R.
    Behera, Manaswini
    Duteanu, Narcis
    ENVIRONMENTAL ENGINEERING AND MANAGEMENT JOURNAL, 2010, 9 (09): : 1227 - 1234
  • [36] Electrochemical performance of microbial fuel cell with air-cathode
    Wen Qing
    Liu Zhi-Min
    Chen Ye
    Li Kai-Feng
    Zhu Ning-Zheng
    ACTA PHYSICO-CHIMICA SINICA, 2008, 24 (06) : 1063 - 1067
  • [37] Investigation of the Influence of Membrane Type on the Performance of Microbial Fuel Cell
    Waheeb, Hayder A.
    Al-Alalawy, Ahmed Faiq
    EGYPTIAN JOURNAL OF CHEMISTRY, 2021, 64 (07): : 3289 - 3296
  • [38] The Effects of Salinity, pH and Temperature on the Performance of a Microbial Fuel Cell
    Tremouli, Asimina
    Martinos, Michalis
    Lyberatos, Gerasimos
    WASTE AND BIOMASS VALORIZATION, 2017, 8 (06) : 2037 - 2043
  • [39] Effects of Pharmaceuticals on the Performance of Earthen Pot Microbial Fuel Cell
    Bagchi, Somdipta
    Behera, Manaswini
    JOURNAL OF HAZARDOUS TOXIC AND RADIOACTIVE WASTE, 2022, 26 (02)
  • [40] Tubular ceramic performance as separator for microbial fuel cell: A review
    Hil, M. F.
    Abu Bakar, M. H.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45 (42) : 22340 - 22348