Enhanced anaerobic fermentation of dairy manure by microelectrolysis in electric and magnetic fields
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DOI: 10.1016/j.renene.2019.06.050
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- de Andrade, Cristilane M. & Cogo, Antonio J.D. & Perez, Victor Haber & dos Santos, Nathalia F. & Okorokova-Façanha, Anna Lvovna & Justo, Oselys Rodriguez & Façanha, Arnoldo Rocha, 2021. "Increases of bioethanol productivity by S. cerevisiae in unconventional bioreactor under ELF-magnetic field: New advances in the biophysical mechanism elucidation on yeasts," Renewable Energy, Elsevier, vol. 169(C), pages 836-842.
- Qi Wu & Han Xiao & Hongguang Zhu & Fanghui Pan & Fulu Lu, 2023. "Carbon Felt Composite Electrode Plates Promote Methanogenesis through Microbial Electrolytic Cells," Energies, MDPI, vol. 16(11), pages 1-14, May.
- Marcin Zieliński & Marcin Dębowski & Joanna Kazimierowicz, 2021. "The Effect of Static Magnetic Field on Methanogenesis in the Anaerobic Digestion of Municipal Sewage Sludge," Energies, MDPI, vol. 14(3), pages 1-16, January.
- Cai, Yingying & Li, Heng & Qu, Guangfei & Wu, Wenwei & Hu, Yinghui & Zou, Hongmei & Ren, Nanqi & Cheng, Minhua & Chu, Xiaomei, 2022. "Effect of external field on the migration and transformation of copper in sludge fermentation," Renewable Energy, Elsevier, vol. 195(C), pages 1426-1437.
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Keywords
Anaerobic fermentation; Electric and magnetic fields; Methane content; Lignocellulose degradation; Effective microorganisms;All these keywords.
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