An electrode-assisted anaerobic digestion process for the production of high-quality biogas

被引:19
作者
Yanuka-Golub, K. [1 ]
Baransi-Karkaby, K. [2 ]
Szczupak, A. [3 ]
Reshef, L. [1 ]
Rishpon, J. [1 ]
Shechter, R. [3 ]
Gophna, U. [1 ]
Sabbah, I [2 ,4 ]
机构
[1] Tel Aviv Univ, Sch Mol Cell Biol & Biotechnol, POB 39040, IL-6997801 Tel Aviv, Israel
[2] Galilee Soc, Reg Res & Dev Ctr, POB 437, IL-20200 Shefa Amr, Israel
[3] Fluence Water Prod & Innovat, 1 HaEshel St Caesarea Ind Pk, IL-30889 Caesarea, Israel
[4] Braude Coll, Prof Ephra Katzir Dept Biotechnol Engn, IL-2161002 Karmiel, Israel
关键词
anaerobic digestion; biogas upgrading; methanogenic hydrogenotrophs; microbial electrolysis cells; wastewater treatment; METHANE PRODUCTION; COMMUNITY; ENHANCEMENT; INHIBITION; DYNAMICS; WASTE; CELLS;
D O I
10.2166/wst.2019.214
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Biogas is a sustainable, renewable energy source generated from organic waste degradation during anaerobic digestion (AD). AD is applied for treating different types of wastewater, mostly containing high organic load. However, AD practice is still limited due to the low quality of the produced biogas. Upgrading biogas to natural gas quality (>90% CH4) is essential for broad applications. Here, an innovative bio-electrochemically assisted AD process was developed, combining wastewater treatment and biogas upgrading. This process was based on a microbial electrolysis cell (MEC) that produced hydrogen from wastewater at a relatively high efficiency, followed by high-rate anaerobic systems for completing biodegradation of organic matter and an in situ bio-methanation process. Results showed that CH4 production yield was substantially improved upon coupling of the MEC with the AD system. Interestingly, CH4 production yield increase was most notable once circulation between AD and MEC was applied, while current density was not markedly affected by the circulation rates. The microbial community analysis confirmed that the MEC enhanced hydrogen production, leading to the enrichment of hydrogenotrophic methanogens. Thus, directing soluble hydrogen from the MEC to AD is plausible, and has great potential for biogas upgrading, avoiding the need for direct hydrogen harvesting.
引用
收藏
页码:2145 / 2155
页数:11
相关论文
共 31 条
[1]   In-situ biogas upgrading with pulse H2 additions: The relevance of methanogen adaption and inorganic carbon level [J].
Agneessens, Laura Mia ;
Ottosen, Lars Ditlev Morck ;
Voigt, Niels Vinther ;
Nielsen, Jeppe Lund ;
de Jonge, Nadieh ;
Fischer, Christian Holst ;
Kofoed, Michael Vedel Wegener .
BIORESOURCE TECHNOLOGY, 2017, 233 :256-263
[2]   Biogas upgrading and utilization: Current status and perspectives [J].
Angelidaki, Irini ;
Treu, Laura ;
Tsapekos, Panagiotis ;
Luo, Gang ;
Campanaro, Stefano ;
Wenzel, Henrik ;
Kougias, Panagiotis G. .
BIOTECHNOLOGY ADVANCES, 2018, 36 (02) :452-466
[3]  
[Anonymous], 2005, Standard methods for the examination of water and waste- water
[4]   Anaerobic digestion in global bio-energy production: Potential and research challenges [J].
Appels, Lise ;
Lauwers, Joost ;
Degreve, Jan ;
Helsen, Lieve ;
Lievens, Bart ;
Willems, Kris ;
Van Impe, Jan ;
Dewil, Raf .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2011, 15 (09) :4295-4301
[5]   Biogas Upgrading via Hydrogenotrophic Methanogenesis in Two-Stage Continuous Stirred Tank Reactors at Mesophilic and Thermophilic Conditions [J].
Bassani, Ilaria ;
Kougias, Panagiotis G. ;
Treu, Laura ;
Angelidaki, Irini .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2015, 49 (20) :12585-12593
[6]   A new upgraded biogas production process: Coupling microbial electrolysis cell and anaerobic digestion in single-chamber, barrel-shape stainless steel reactor [J].
Bo, Tao ;
Zhu, Xiaoyu ;
Zhang, Lixia ;
Tao, Yong ;
He, Xiaohong ;
Li, Daping ;
Yan, Zhiying .
ELECTROCHEMISTRY COMMUNICATIONS, 2014, 45 :67-70
[7]   Inhibition of anaerobic digestion process: A review [J].
Chen, Ye ;
Cheng, Jay J. ;
Creamer, Kurt S. .
BIORESOURCE TECHNOLOGY, 2008, 99 (10) :4044-4064
[8]   Methane production improvement and associated methanogenic assemblages in bioelectrochemically assisted anaerobic digestion [J].
Gajaraj, Shashikanth ;
Huang, Yuxi ;
Zheng, Ping ;
Hu, Zhiqiang .
BIOCHEMICAL ENGINEERING JOURNAL, 2017, 117 :105-112
[9]  
Guebitz G.M., 2015, BIOGAS SCI TECHNOLOG, DOI DOI 10.1007/978-3-319-21993-6
[10]   Microbial community dynamics reflect reactor stability during the anaerobic digestion of a very high strength and sulfate-rich vinasse [J].
Jimenez, Janet ;
Barrera, Ernesto L. ;
De Vrieze, Jo ;
Boon, Nico ;
DeMeester, Steven ;
Spanjers, Henri ;
Romero Romero, Osvaldo ;
Dewulf, Jo .
JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2018, 93 (04) :975-984