Choi H-J (2020) Influence of acidogenic fermented fish by-products with rice bran for sludge
reduction and biogas recovery in anaerobic co-digestion. Environ Eng Res 26:190409
Cirne DG, Lehtomäki A, Björnsson L, Blackall LL (2007) Hydrolysis and microbial community
analyses in two-stage anaerobic digestion of energy crops. J Appl Microbiol 103(3):516–527
Coelho MMH, Morais NWS, Pereira EL, Leitão RC, dos Santos AB (2020) Potential assessment
and kinetic modeling of carboxylic acids production using dairy wastewater as substrate.
Biochem Eng J 156:107502
Demirel B, Scherer P (2008) Production of methane from sugar beet silage without manure addition
by a single-stage anaerobic digestion process. Biomass Bioenergy 32:203–209
Depraect OG, Muñoz R, van Lier JB, Rene ER, Diaz-Cruces VF, Becerril EL (2020) Three-stage
process for tequila vinasse valorization through sequential lactate, biohydrogen and methane
production. Bioresour Technol 307:123160
Dioha IJ, Ikeme CH, Nafi’u T, Soba NI, Yusuf MBS (2013) Effect of carbon to nitrogen ratio on
biogas production. Int Res J Nat Sci 1(3):1–10
Emerson CW (2008) Hydrogen energy: a study of the use of anaerobic digester gas to generate
electricity utilizing stand-alone hydrogen fuel cells at wastewater treatment plants. Thesis,
Rochester Institute of Technology. Accessed from https://scholarworks.rit.edu/cgi/
viewcontent.cgi?article=1551&context=theses
Enzmann F, Mayer F, Rother M, Holtmann D (2018) Methanogens: biochemical background and
biotechnological applications. AMB Express 8(1):1–22
Evans PN, Parks DH, Chadwick GL, Robbins SJ, Orphan VJ, Golding SD, Tyson GW (2015)
Methane metabolism in the archaeal phylum Bathyarchaeota revealed by genome-centric
metagenomics. Science 350:434–438
Ganguly A, Banerjee S, Biswas GK (2006) Studies on biomethanation of kitchen wastes. Ind J
Environ Protect 26(3):219
Garcia J-L, Patel BK, Ollivier B (2000) Taxonomic, phylogenetic, and ecological diversity of
methanogenic archaea. Anaerobe 6:205–226
Geppert F, Liu D, van Eerten-Jansen M, Weidner E, Buisman C, ter Heijne A (2016)
Bioelectrochemical power-to-gas: state of the art and future perspectives. Trends Biotechnol
34:879–894
Ghosh P, Kumar M, Kapoor R, Kumar SS, Singh L, Vijay V, Vijay VK, Kumar V, Thakur IS
(2020) Enhanced biogas production from municipal solid waste via co-digestion with sewage
sludge and metabolic pathway analysis. Bioresour Technol 296:122275
Gieg LM, Duncan KE, Suflita JM (2008) Bioenergy production via microbial conversion of
residual oil to natural gas. Appl Environ Microbiol 74:3022–3029
Gopinath LR, Christy PM, Mahesh K, Bhuvaneswari R, Divya D (2014) Identification and
evaluation of effective bacterial consortia for efficient biogas production. IOSR J Environ Sci
Toxicol Food Technol 8(3):80–86
Güllert S, Fischer MA, Turaev D, Noebauer B, Ilmberger N, Wemheuer B, Grundhoff A (2016)
Deep metagenome and metatranscriptome analyses of microbial communities affiliated with an
industrial biogas fermenter, a cow rumen, and elephant feces reveal major differences in
carbohydrate hydrolysis strategies. Biotechnol Biofuels 9(1):121
Huang X, Liu X, Chen F, Wang Y, Li X, Wang D, Yang Q (2020) Clarithromycin affect methane
production from anaerobic digestion of waste activated sludge. J Clean Prod 255:120321
Jiang Y, Su M, Li D (2014) Removal of sulfide and production of methane from carbon dioxide in
microbial fuel cells–microbial electrolysis cell (MFCs– MEC) coupled system. Appl Biochem
Biotechnol 172:2720–2731
Joshua OS, Ejura GJ, Bako IC, Gbaja IS, Yusuf YI (2014) Fundamental principles of biogas
product. Int J Sci Eng Res (IJSER) 2(8):47–50
Karichappan T, Venkatachalam S, Jeganathan PM (2014) Investigation on biogas production
process from chicken processing industry wastewater using statistical analysis: modelling and
optimization. J Renew Sustain Energy 6(4):043117
3 A Comprehensive Review on Microbial Technology for Biogas Production
75
Précédent

- 86/215

Suivant