[1]
V.V. Zhazhkov, M. Yu. Zubkova, V.I. Maslikov, D.V. Molodtsov, A.N. Chusov, D.V. Semenenko, Model calculation of energy carriers expenses on the basis of biogas in system reformer - fuel cell for autonomous power supply systems, Applied Mechanics and Materials. 725-726 (2015).
DOI: 10.4028/www.scientific.net/amm.725-726.1602
Google Scholar
[2]
R. Chaubey, S. Sahu, O.O. James, S. Maity, A review on development of industrial processes and emerging techniques for production of hydrogen from renewable and sustainable sources, Renewable and Sustainable Energy Reviews. 23 (2013) 443-462.
DOI: 10.1016/j.rser.2013.02.019
Google Scholar
[3]
D.O. Dunikov, V.I. Borzenko, S.P. Malyshenko, D.V. Blinov, A.N. Kazakov, Prospective technologies for using biohydrogen in power installations on the basis of fuel cells (a review), Teploenergetika [Thermal Engineering]. 60(3) (2013) 202-211.
DOI: 10.1134/s0040601512110043
Google Scholar
[4]
M.P. Fedorov, V.I. Maslikov, A.N. Chusov, D.V. Molodtsov, The experimental complex for hydrogen production from organic wastes for use in fuel cells, St. Petersburg State Polytechnical University Journal. 4 (135) (2011) 35-41.
Google Scholar
[5]
Y. Shen, J.L. Linville, M. Urgun-Demirtas, M.M. Mintz, S.W. Snyder, An overview of biogas production and utilization at full-scale wastewater treatment plants (WWTPs) in the United States: Challenges and opportunities towards energy-neutral WWTPs, Renewable and Sustainable Energy Reviews. 50 (2015).
DOI: 10.1016/j.rser.2015.04.129
Google Scholar
[6]
J. Havukainen, V. Uusitalo, A. Niskanen, V. Kapustina, M. Horttanainen, Evaluation of methods for estimating energy performance of biogas production, Renewable Energy. 66 (2014) 232-240.
DOI: 10.1016/j.renene.2013.12.011
Google Scholar
[7]
V.I. Maslikov, Biogaz - perspektivnyy istochnik energii [Biogas – a perspective energy source], Tverdye bytovye othody [Municipal solid waste]. 8 (2006) 32-33.
Google Scholar
[8]
V.I. Maslikov, A.N. Chusov, E. Yu. Negulyaeva, A.V. Cheremisin, D.V. Molodtsov, Laboratory research of waste decomposing in bioreactors for assessment of biogas potential and choice of measures for aftercare phase, St. Petersburg State Polytechnical University Journal. 2-2(147) (2012).
Google Scholar
[9]
Ju.S. Vasiliev, V.V. Elistratov, V.I. Maslikov, V.P. Breusov, An autonomous power supply of consumers on the base of combined use of renewable resources, 2005 IEEE Russia Power Tech, PowerTech St. Petersburg. (2005) No. 4524811.
DOI: 10.1109/ptc.2005.4524811
Google Scholar
[10]
M.P. Fedorov, A.V. Zinchenko, V.V. Korablev, V.I. Maslikov, A.N. Chusov, E.O. Ioksha, Energy utilization of methane emission from the Saint-Petersburg solid wastes to reduce greenhouse gas blowouts and to attract investments to reclamation, St. Petersburg State Polytechnical University Journal. 6(70) (2008).
Google Scholar
[11]
A.N. Chusov, V.I. Maslikov, D.V. Molodtsov, Researches of Biogas Composition on Landfill, Safety in Technosphere. 6 (2013) 24-28.
DOI: 10.12737/2158
Google Scholar
[12]
A.N. Chusov, M. Yu. Zubkova, V.V. Korablev, V.I. Maslikov, D.V. Molodtsov, The technology of using hydrogen-containing mixtures based on biogas in fuel cells for energy supply autonomous consumers, St. Petersburg State Polytechnical University Journal. 4-1(183) (2013).
Google Scholar
[13]
A.I. Lysikov, A.G. Okunev, D.V. Molodtsov, V.I. Maslikov, Novel approach for municipal solid waste biogas reforming into hydrogen for fuel cell powered generators, XIX International Conference of Chemical Reactors Chemreactor-19,. (2010) 192-193.
Google Scholar
[14]
M.P. Fedorov, V.I. Maslikov, Technology for artificial renewable energy resources, The sixth St Petersburg Scientific Forum Science and Society,: Innovative Technologies for New Russian Economy. Abstracts of plenary lectures. (2013) 20-22.
Google Scholar
[15]
M.P. Fedorov, V.R. Okorokov, R.V. Okorokov, Energeticheskie tekhnologii i mirovoe ekonomicheskoe razvitie: proshloe, nastoyashchee, budushchee [Energy technologies and world economic development: past, present, future], Nauka, SPb, (2010).
Google Scholar
[16]
M.P. Fedorov, V.V. Korablev, V.I. Maslikov, E.O. Ioksha, «Carbonic» investments into the bioconversion of landfills, Ecology and Life. 4(77) (2008) 16 22.
Google Scholar
[17]
H.J. Alves, C. Bley Junior, R.R. Niklevicz, E.P. Frigo, M.S. Frigo, C.H. Coimbra-Araújo, Overview of hydrogen production technologies from biogas and the applications in fuel cells, International Journal of Hydrogen Energy. 38(13) (2013).
DOI: 10.1016/j.ijhydene.2013.02.057
Google Scholar
[18]
P.P. Bezrukih, Spravochnik po resursam vozobnovlyaemyh istochnikov energii Rossii i mestnym vidam topliva (pokazateli po territoriyam) [Handbook of renewable energy sources in Russia and local fuels (data about areas)], IATS Energiya, Moscow, (2007).
Google Scholar
[19]
M. Zubkova, M. Fedorov, A. Chusov, An innovative approach in the use of fuels produced from biogas, Journal of Innovation. 2(196) (2015) 70-76.
Google Scholar
[20]
H. Odegaard, Innovations in wastewater treatment: The moving bed biofilm process, Water Water Science and Technology. 53(9) (2006) 17-33.
DOI: 10.2166/wst.2006.284
Google Scholar
[21]
J.P. McQuarrie, J.P. Boltz, Moving bed biofilm reactor technology: Process applications, design, and performance, Water Environment Research. 83(6) (2011) 560-575.
DOI: 10.2175/106143010x12851009156286
Google Scholar
[22]
T.A. Seadi, D. Rutz, H. Prassl, M. Köttner, T. Finsterwalder, S. Volk, R. Janssen, Biogas handbook, University of Southern Denmark Esbjerg, Esbjerg, Denmark, (2008).
Google Scholar
[23]
M.P. Fedorov, M. Yu. Zubkova, V.V. Korablev et al., Razrabotka i sozdanie eksperimental'nogo kompleksa po optimizatsii konvertornyh protsessov polucheniya vodoroda iz biogazov organosoderzhashchih othodov [Design and development of an experimental complex for optimization of converter processes of hydrogen production from biogas organic wastes], Physical Problems of Hydrogen Energy, 6th Russian conference, November 2010, St. Petersburg. (2010).
Google Scholar
[24]
M.P. Fedorov Rol' universitetov v innovatsionnoy ekonomike [The role of universities in the innovation economy], Journal of Innovation. 2(100) (2007) 71-75.
Google Scholar
[25]
D.V. Molodtsov, A.N. Chusov, M.P. Fedorov. Creation of the laboratory plant for the estimation of biogas deep cleaning parameters, International Youth Environmental Forum of the Baltic region «EС{TTP}1057 OBALTIKA-2008». (2008) 216-217.
Google Scholar
[26]
M. Yu. Zubkova, V.I. Maslikov, D.V. Molodtsov, A.N. Chusov, The ways assessment of direct production electricity and heat from hydrogenous fuel based on biogas for autonomous consumers, Applied Mechanics and Materials. 587-589 (2014) 330-337.
DOI: 10.4028/www.scientific.net/amm.587-589.330
Google Scholar
[27]
A.A. Stroganov, M. Yu. Zubkova, inventors and assignee. Carbon-bearing fuel use in the system containing the high-temperature fuel cell. Russian Federation patent 2475899 RU, (2013).
Google Scholar