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  1. 1
    Academic Journal

    Source: Alternative Energy and Ecology (ISJAEE); № 4-6 (2017); 80-88 ; Альтернативная энергетика и экология (ISJAEE); № 4-6 (2017); 80-88 ; 1608-8298

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    Relation: https://www.isjaee.com/jour/article/view/998/888; Ginkel, S.V. Biohydrogen production as a function of pH and substrate concentration [Текст] / S.V. Ginkel, S. Sung, J. Lay // Environ Sci Technol. – 2001. – Vol. 35. – No 24. – P. 4726–4730.; Temudo, M. Diversity of microbial communities in open mixed culture fermentations: impact of the pH and carbon source [Текст] / M. Temudo [et al.] // Appl Microbiol Biotechnol. – 2008. – Vol. 80. – No 6. – P. 1121–1130.; Chuang, Y-S. Optimization of incubation factors for fermentative hydrogen production from agricultural wastes [Текст] / Y-S. Chuang [et al.] // Sustain. Environ. Res. – 2013. – Vol. 22. – No 2. – P. 99–106.; Jo, J. H. The effects of pH on carbon material and energy balances in hydrogen-producing Clostridium tyrobutyricum JM1 [Текст] / J.H. Jo, D.S. Lee, J.M. Park // Bioresourse Technology. – 2008. – Vol. 99. – No 17. – P. 8485–8491.; Chong, P. S. Enhancement of batch biohydrogen production from prehydrolysate of acid treated oil palm empty fruit bunch [Текст] / P.S. Chong, J.M. Jahim, S. Harun, S.S. Lim [et al.] // Int. J. Hydrogen Energy. – 2013. – Vol. 38. – No 22. – P. 9592–9599.; Li, W-W. Anaerobic Granule Technologies for Hydrogen Recovery from Wastes: The Way Forward [Текст] / W-W. Li, H-Q. Yu // Environ. Sci. Technol. – 2013. – Vol. 43. – No 12. – P. 1246–1280.; Karlsson, A. Effects of temperature, hydraulic retention time and hydrogen extraction rate on hydrogen production from the fermentation of food industry residues and manure [Текст] / A. Karlsson, L. Vallin, J. Ejlertsson // Int. J. Hydrogen Energy. – 2008. – Vol. 33. – No 3. – P. 953–962.; Magnusson, L. Continuous hydrogen production during fermentation of α-cellulose by the thermophillic bacterium Clostridium thermocellum [Текст] / L. Magnusson [et al.] // Biotechnol. Bioeng. – 2009. – Vol. 102. – No 3. – P. 759–766.; Munro, S.A. The fermentation stoichiometry of Thermotoga neapolitana and influence of temperature, oxygen, and pH on hydrogen production [Текст] / S. A. Munro, S. H. Zinder, L.P. Walker // Biotechnol. – 2009. – Vol. 25. – No 4. – P. 1035–1042.; Siriporn, Y. Effect of initial pH, nutrients and temperature on hydrogen production from palm oil mill effluent using thermotolerant consortia and corresponding microbial communities [Текст] / Y. Siriporn, O-T. Sompong , P. Poonsuk // Int. J. Hydrogen Energy. – 2012. – Vol. 37. – No 18. – P. 13806–13814.; Waligуrska, M. Fermentative hydrogen production – process design and bioreactors [Текст] / M. Waligуrska // Chemical and Process Engineering. – 2012. – Vol. 33. – No 4. – P. 585–594.; Nguyen, T.A. Hydrogen production of the hyperthermophilic eubacterium, Thermotoga neapolitana under N2 sparging condition [Текст] / T.A. Nguyen [et al.] // Bioresour. Technol. – 2010. – Vol. 10. – No 1. – P. 38–41.; Hung, С.-Н. Roles of microorganisms other than Clostridium and Enterobacter in anaerobic fementative biohydrogen production systems – A review [Текст] / CH. Hung, Y-T. Chang, Y-J. Chang // Bioresource Technol. – 2011. – Vol. 102. – No 18. – P. 8437–8444.; Baghchehsaraee B. Fermentative hydrogen production by diverse microflora / B. Baghchehsaraee, G. Nakhla, D. Karamanev, A. Margaritis // Int. J. Hydrogen Energy. – 2010. – Vol. 35. – No 10. – P. 5021–5027.; Show, K-Y. Bioreactor and process design for biohydrogen production [Текст] / K-Y. Show, D-J. Lee, J-S. Chang // Bioresource Technology. – 2011. – Vol. 102. – No 18. – P. 8524–8533.; Chojnacka, A. Comparative analysis of hydrogen-producing bacterial biofilms and granular sludge formed in continuous cultures of fermentative bacteria [Текст] / A. Chojnacka [et al.] // Bioresource Technology. – 2011. – Vol. 102. – No 21. – P. 10057–10064.; Khanal, S.K. Biological hydrogen production effects of pH and intermediate products [Текст] / S.K. Khanal,[et al] // Int. J. Hydrogen Energy. – 2004. – Vol. 29. – No 11. – P. 1123–1131.; Pendyala, B. Pretreating mixed anaerobic communities from different sources: Correlating the hydrogen yield with hydrogenase activity and microbial diversity [Текст] / B. Pendyala [et al.] // Int. J. Hydrogen Energy. – 2012. – Vol. 37. – No 17. – P. 12175–12186.; Chuang, Y.-S. Optimization of incubation factors for fermentative hydrogen production from agricultural wastes [Текст] / Y-S. Chuang [et al] // Sustain. Environ. Res. – 2012. – Vol. 22. – No 2. – P. 99–106.; Kawai, M. The effect of the labile organic fraction in food waste and the substrate/inoculum ratio on anaerobic digestion for a reliable methane yield [Текст] / M. Kawai [et al] // Bioresource Technology. – 2014. – Vol. 157. – No 12. – P. 174–180.; Голуб, Н.Б. Культивирование микроорганизмов для получения биоводорода при анаэробном разложении целлюлозы [Текст] / Н.Б. Голуб, Д.И. Жураховская // Возобновляемая энергетика. – 2012. – № 2. – С. 81–86.; Иономер лабораторный И-160ми. Руководство по эксплуатации. – ООО «Измерительная техника». – 2007. – 69 с.; Лейбниц, Э. Руководство по газовой хроматографии. Часть 1 [Текст] / Э. Лейбниц, Х.Г. Штруппе. – М.: Мир, 1988. – 480с.; Shimadzu High-Performance Liquid Chromatograph. – Shimadzu corporation. – 2010. – 45 p.; Kawagoshi, Y. Effect of inoculum conditioning on hydrogen fermentation and pH effect on bacterial community relevant to hydrogen production [Текст] / Y. Kawagoshi [et al.] // J. Bioscience Bioengineering. – 2005. – Vol. 100. – No 5. – P. 524–530.; Hayes, E. Oxygen limitation modulates pH regulation of catabolism and hydrogenases, multidrugtransporters, and envelope compositionin Escherichia coli K-12 [Текст] / E. Hayes [et al.] // BMC Microbiol. – 2006. – Vol. 6. – No 1. – P. 6–89.; https://www.isjaee.com/jour/article/view/998

  2. 2
    Academic Journal

    Source: Alternative Energy and Ecology (ISJAEE); № 23 (2014); 67-72 ; Альтернативная энергетика и экология (ISJAEE); № 23 (2014); 67-72 ; 1608-8298

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    Relation: https://www.isjaee.com/jour/article/view/745/732; Гелетуха Г.Г., Желєзна Т.А., Кучерук П.П., Олійник Є.М. Сучасний стан та перспективи розвитку біоенергетики в Україні. Аналітична записка БАУ. 2014. № 9. [Ел. ресурс]. http://www.uabio.org/ img/files/docs/position-paper-uabio-9-ua.pdf/.; Teghammar A. Biogas production from lignocelluloses: pretreatment, substrate characterization, co-digestion, and economic evaluation. Chalmers university of technology. Department of Chemical and Biological Engineering. 2013.; Sims J.T., Badger D.D. A review of poultry manure management: Directions for the Future Agriculture and Agri-Food Canada Poultry Section. August 17, 1990. Pp. 60-63.; Koster J.W., Lettinga G. The influence of ammonium-nitrogen on the specific activity of pelletized methanogenic sludge // Agricultural Wastes. 1984. № 9. P. 205-216.; Pender S., Toomey M., Carton M., Eardly D., Patching J.W., Colleran E., O'Flaherty V. Long-term effects of operating temperature and sulphate addition on the methanogenic community structure of an aerobic hybrid reactors // Water Res. 2004. Vol. 38, № 3. P. 619-630.; Bergman I., Lundberg P., Nilsson M. Microbial carbon mineralization in an acid surface peat: effects of environmental factors in laboratory incubations // Soil Biol. Biochem. 1999. Vol. 31, № 13. P. 1867-1877.; Francese A.P., Aboagye-Mathiesen G., Olesen T., Cordoba P.R., Sineriz F. Feeding approaches for biogas production from animal wastes and industrial effluents // World J. Microbiol. Biotechnol. 2000. Vol. 16, № 2. P. 147-150.; Ionomer laboratornyj I-160 MI / Rukovodstvo po èkspluatacii. Obsestvo s ogranicennoj otvetst-vennost'û « «Izmeritel'naâ tehnika», 2007.; Lejbnic È., Struppe H.G. Rukovodstvo po gazovoj hromatografii. Cast' 1. M.: Mir, 1988.; Seina O.A., Sysoev V.A. Biohimiâ processa proizvodstva biogaza kak al'ternativnogo istocnika ènergii // Vestnik TGU. 2009. T. 14, vyp. 1. S. 73-76.; Hippler B., Thauer R.K. The energy conserving methyltetrahydromethanopter in: coenzyme M methyltransferase complex from methanogenic archaea: function of the subunit // FEBS Lett. 1999. Vol. 449, № 2-3. P. 165-168.; Shima S., Wakentin E., Thauer R.K., Ermler U. Structure and function of enzymes involved in the methanogenic pathway utilizing carbondioxide and molecular hydrogen // J. Biosci. Bioeng. 2002. Vol. 93, № 6. P. 519-530.; https://www.isjaee.com/jour/article/view/745

  3. 3
    Academic Journal

    Source: Alternative Energy and Ecology (ISJAEE); № 15 (2014); 107-112 ; Альтернативная энергетика и экология (ISJAEE); № 15 (2014); 107-112 ; 1608-8298

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    Relation: https://www.isjaee.com/jour/article/view/548/538; Кузык Б.Н., Кушлин. В.И., Яковец Ю.В. На пути к водородной энергетике. М.: РАН, 2005.; Claassen P.A.M., deVrije T. Non-thermal production of pure hydrogen from biomass: HYVOLUTION // Int. J. Hydrogen Energy. 2006. Vol. 31, No. 11. P. 1416-1423.; Chou C.J., ShockleyC.J., Conners S.B., Lewis D. L., Comfort D.A., Adams M.W., Kelly R.M. Impact of substrate glycoside linkage and elemental sulfur on bioenergetics of and hydrogen production by the hyperthermophilic archae on Pyrococcus furiosus // Microbiol. 2007. Vol. 73, No. 21. P. 6842-6853.; Hung С.-Н., Chang Y.-T., Chang Y.-J. Roles of microorganisms other than Clostridium and Enterobacter in anaerobic fementative biohydrogen production systems - A review // Bioresource Technol. 2011. Vol. 102, No. 18. P. 8437-8444.; Lin C.-Y., Wu C.-C., Hung C.-H. Temperature effects on fermentative hydrogen production from xylose using mixed anaerobic cultures // Int. J. Hydrogen energy. 2008. Vol. 33, No. 1. P. 43-60.; Khanal S.K., Chen W.-H., Li L., Sung S. Biological hydrogen production effects of pH and intermediate products // Int. J. Hydrogen Energy. 2004. Vol. 29, No. 11. P. 1123-1131.; Lee Y., Miyahara T., Noike T. Effect of pH on microbial hydrogen fermentation // J. Chem. Technol. Biotechnol. 2002. Vol. 77, No. 5. P. 694-699.; Kawagoshi Y., Hino N., Fujimoto A., Nakao M., Fujita Y., Sugimura S., Furukawa K. Effect of inoculum conditioning on hydrogen fermentation and pH effect on bacterial community relevant to hydrogenp roduction // J. Bioscience Bioengineering. 2005. Vol. 100, No. 5. P. 524-530.; Kim I.S., Hwang M.H., Jang N.J., Hyun S.H., Lee S.T. Effect of low pH on the activity of hydrogen utilizing methanogen in bio-hydrogen process // Int. J. Hydrogen Energy. 2004. Vol. 29, No. 11. P. 1133-1140.; Siriporn Y., Sompong O-T., Poonsuk P. Effect of initial pH, nutrients and temperature on hydrogen production from palmoil mill effluent using thermotolerant consortia and corresponding microbial communities // Int. J. Hydrogen Energy. 2012. Vol. 37, No. 18. P. 13806-13814.; Jo J.H., Lee D.S., Park J.M. The effects of pH on carbon material and energy balances in hydrogen-producing Clostridium tyrobutyricum JM1 // Bioresourse Technology. 2008. Vol. 99. No. 17. P. 8485-8491.; Кондратьева Е.Н., Гоготов И.Н. Молекулярный водород в метаболизме микроорганизмов. М.: Наука, 1981.; Guo X.M., Trably E., Latrille E., Carrère H., Steyer J.-P. Hydrogen production from agricultural waste by dark fermentation: A review // Int. J. Hydrogen Energy. 2010. Vol. 35. No. 19. P. 10660-10673.; Demirer G.N., Othman M. Two phase thermophilic acidification and mesophilic methano-genesis anaerobic digestion of waste activated sludge // Environ. Eng. Sci. 2008. Vol. 25, No. 9. P. 1291-1300.; Levin D.B., Chahine R. Challenges for renewable hydrogen production from biomass // Int. J. Hydrogen Energy. 2010. Vol. 35, No. 10. P. 4962-4969.; De La Rubia M.A., Raposo F., Rincon B., Borja R. Evaluation of the hydrolytic acidogenic step of a two-stage mesophilic anaerobic digestion process of sunflower oil cake // Bioresour. Technol. 2009. Vol. 100. P. 4133-4138.; Chen S.-D., Lee K.-S., Lo Y.-C., Chen W.-M., Wu J.-F., Lin C.-Y., Chang J.-S. Batchand continuous biohydrogen production from starch hydrolysate by Clostridium species // Int. J Hydrogen Energy. 2008. Vol. 33, No. 7. P. 1803-1812.; Хроматограф лабораторный ЛХМ-8МД: техническое описание, инструкция по эксплуатации / Опытный завод «Хроматограф». Москва, 1992.; Карасек Ф., Клемент Р. Введение в хроматомассспектрометрию: Пер. с англ. М.: Мир, 1993.; https://www.isjaee.com/jour/article/view/548

  4. 4
    Academic Journal

    Source: Alternative Energy and Ecology (ISJAEE); № 19 (2014); 53-57 ; Альтернативная энергетика и экология (ISJAEE); № 19 (2014); 53-57 ; 1608-8298

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    Relation: https://www.isjaee.com/jour/article/view/680/667; Demirer G.N., Othman M. Two phase thermophilicacidification and mesophilicmethanogenesis anaerobic digestion of waste activated sludge // Environ. Eng. Sci. 2008. V. 25. No. 9. P. 1291-1300.; Levin D.B., Chahine R. Challenges for renewable hydrogen production from biomass // Int. J. Hydrogen Energy. 2010. Vol. 35. No. 10. P. 4962-4969.; De La Rubia M. A., Raposo F., Rinco'n B., Borja R. Evaluation of the hydrolytic acidogenic step of a two-stage mesophilic anaerobic digestion process of sunflower oil cake // Bioresour. Technol. 2009. Vol.100. No 18. P. 4133-4138.; Chen S-D., Lee K-S., Lo Y-C., Chen W-M., Wu J-F., Lin C-Y., Chang J-S. Batchand continuous biohydrogen production from starch hydrolysate by Clostridium species //Int. J Hydrogen Energy. 2008. Vol. 33. No 7. P. 1803-1812.; Голуб Н.Б. Технологическая схема процесса получения биоводорода при использовании сельскохозяйственных отходов // Відновлювальна енергетика. 2013. № 2. С. 80 - 84.; Srikanth S. Mohan S. Regulatory function of divalent cations in controlling the acido-genicbiohydrogen production process // RSC Advances. 2012. Vol. 2. No. 16. P. 6576 - 6589.; Venkata Mohan S., LalitBabu V., Sarma P.N. Anaerobic biohydrogen production from dairy wastewater treatment in sequencing batch reactor (AnSBR): Effect of organic loading rate // Enzyme Microbial. Technol. 2007. vol. 41. No. 4.P. 506-515.; Lay J-J., Fan K-S., HwangJ-I., ChangJ-I., Hsu P-C. Factors affecting hydrogen production from food wastes by Clostridium-richcomposts // Environ. Eng. 2005. vol. 131. No. 4. P. 595 - 602.; El-Sakhawy M., Ha M. L. Physical and mechanical properties of microcrystalline cellulose 4, prepared from agricultural residues // Carbohydrate Polum.2007. No. 67. P. 1-10.; Хроматографлабораторный ЛХМ-8МД: техническое описание инструкция по эксплуатации // Опытный завод «Хроматограф». Москва, 1992. 50с.; Карасек Ф., Клемент P. Введение в хроматомасс-спектрометрию: Пер. с англ. М.: Мир, 1993. 237 с.; Кондратьева Е.Н., Гоготов И.Н. Молекулярный водород в метаболизме микроорганизмов // М.: Наука, 1981. 340с.; https://www.isjaee.com/jour/article/view/680

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    Relation: Деклараційний патент № 29795 Україна, С 12С 3/00, А 23L 2/00. Асоціація мікроорганізмів Medusomyces gisevii V для одержання безалкогольних напоїв бродіння / Прибильський В. Л., Домарецький В. О., Вітряк О. П.; http://dspace.nuft.edu.ua/jspui/handle/123456789/5102