Bioelectrochemical enhancement of methane production from exhausted vine shoot fermentation broth by integration of MEC with anaerobic digestion

被引:8
作者
Carrillo-Pena, D. [1 ]
Escapa, A. [1 ,2 ]
Hijosa-Valsero, M. [3 ]
Paniagua-Garcia, A., I [3 ]
Diez-Antolinez, R. [3 ]
Mateos, R. [1 ]
机构
[1] Univ Leon, Nat Resources Inst IRENA, Chem & Environm Bioproc Engn Grp, Avda Portugal 41, Leon 24009, Spain
[2] Univ Leon, Dept Elect Engn & Automat Syst, Campus Vegazana S-N, Leon 24071, Spain
[3] Inst Tecnol Agrario Castilla & Leon ITACyL, Ctr Innovac Bioprod Agroalimentarios CIBAG, Poligono Agroind Orbigo P2-6, Villarejo De Orbigo 24358, Spain
关键词
Anaerobic digestion; Electrochemical impedance spectroscopy; Methane enhancement; Microbial electrolysis cell; Vine shoot treatment; MICROBIAL COMMUNITY; BIOGAS PRODUCTION; BIOBUTANOL;
D O I
10.1007/s13399-022-02890-7
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
A microbial electrolysis cell integrated in an anaerobic digestion system (MEC-AD) is an efficient configuration to produce methane from an exhausted vine shoot fermentation broth (EVS). The cell worked in a single-chamber two-electrode configuration at an applied potential of 1 V with a feeding ratio of 30/70 (30% EVS to 70% synthetic medium). In addition, an identical cell operated in an open circuit was used as a control reactor. Experimental results showed similar behavior in terms of carbon removal (70-76%), while the specific averaged methane production from cycle 7 was more stable and higher in the connected cell (MECAD) compared with the unpolarized one (OCAD) accounting for 403.7 +/- 33.6 L CH4 center dot kg VS-1 and 121.3 +49.7 L CH4 center dot kg VS-1, respectively. In addition, electrochemical impedance spectroscopy revealed that the electrical capacitance of the bioanode in MEC AD was twice the capacitance shown by OCAD. The bacterial community in both cells was similar but a clear adaptation of Methanosarcina Archaea was exhibited in MECAD, which could explain the increased yields in CH4 production. In summary, the results reported here confirm the advantages of integrating MEC-AD for the treatment of real organic liquid waste instead of traditional AD treatment.
引用
收藏
页码:7971 / 7980
页数:10
相关论文
共 46 条
[31]   Domestic wastewater treatment in parallel with methane production in a microbial electrolysis cell [J].
Moreno, R. ;
San-Martin, M. I. ;
Escapa, A. ;
Moran, A. .
RENEWABLE ENERGY, 2016, 93 :442-448
[32]   Anaerobic digestion process: technological aspects and recent developments [J].
Nathia-Neves, G. ;
Berni, M. ;
Dragone, G. ;
Mussatto, S. I. ;
Forster-Carneiro, T. .
INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2018, 15 (09) :2033-2046
[33]   Microbial community in microbial fuel cell (MFC) medium and effluent enriched with purple photosynthetic bacterium (Rhodopseudomonas sp.) [J].
Park, Tae-Jin ;
Ding, Weijun ;
Cheng, Shaoan ;
Brar, Manreetpal Singh ;
Ma, Angel Po Yee ;
Tun, Hein Min ;
Leung, Frederick C. .
AMB EXPRESS, 2014, 4 :1-8
[34]   Enhancement of biogas production in bio-electrochemical digester from agricultural waste mixed with wastewater [J].
Prajapati, Kalp Bhusan ;
Singh, Rajesh .
RENEWABLE ENERGY, 2020, 146 :460-468
[35]   Prediction of biogas production from food waste in a continuous stirred microbial electrolysis cell (CSMEC) with backpropagation artificial neural network [J].
Quashie, Frank Koblah ;
Fang, Anran ;
Wei, Li ;
Kabutey, Felix Tetteh ;
Xing, Defeng .
BIOMASS CONVERSION AND BIOREFINERY, 2023, 13 (01) :287-298
[36]   Recognizing the challenges of anaerobic digestion: Critical steps toward improving biogas generation [J].
Rasapoor, M. ;
Young, B. ;
Brar, R. ;
Sarmah, A. ;
Zhuang, W-Q. ;
Baroutian, S. .
FUEL, 2020, 261
[37]   Improved digestibility and biogas production from lignocellulosic biomass: Biochar addition and microbial response [J].
Saif, Irfan ;
Salama, El-Sayed ;
Usman, Muhammad ;
Lee, Dae Sung ;
Malik, Kamran ;
Liu, Pu ;
Li, Xiangkai .
INDUSTRIAL CROPS AND PRODUCTS, 2021, 171
[38]  
San-Martn MI, 2018, ENERGY SYSTEMS ENV, P71142
[39]   Quantification of bio-anode capacitance in bioelectrochemical systems using Electrochemical Impedance Spectroscopy [J].
ter Heijne, Annemiek ;
Liu, Dandan ;
Sulonen, Mira ;
Sleutels, Tom ;
Fabregat-Santiago, Francisco .
JOURNAL OF POWER SOURCES, 2018, 400 :533-538
[40]   Naive Bayesian classifier for rapid assignment of rRNA sequences into the new bacterial taxonomy [J].
Wang, Qiong ;
Garrity, George M. ;
Tiedje, James M. ;
Cole, James R. .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2007, 73 (16) :5261-5267