Improvement of purification technology of the liquid waste from fermentation production

dc.citation.epage14
dc.citation.issue6
dc.citation.spage7
dc.contributor.affiliationOdessa National Academy of Food Technologies
dc.contributor.authorKrusir, Galina
dc.contributor.authorSagdeeva, Olga
dc.contributor.authorTsykalo, Alfred
dc.contributor.authorVilhovska, Yuliia
dc.contributor.authorShpyrko, Tatyana
dc.coverage.placenameЛьвів
dc.coverage.placenameLviv
dc.date.accessioned2023-04-25T06:44:49Z
dc.date.available2023-04-25T06:44:49Z
dc.date.created2021-03-03
dc.date.issued2021-03-03
dc.description.abstractOne of the areas of waste disposal of fermentation industries is anaerobic fermentation and biogas production, which becomes increasingly attractive for researchers not only because of the global energy crisis but also the environmental one. Biogas production is based on methane fermentation fundamentally different from other types of fermentation, which creates certain difficulties in its implementation on a large scale. Therefore, the development of innovative energy and resource- saving technologies for the processing of liquid waste from fermentation industries is an urgent task for the development of the domestic food industry. The aim of the work is to develop, theoretically substantiate and experimentally test the technology of processing liquid waste from fermentation plants.
dc.format.extent7-14
dc.format.pages8
dc.identifier.citationImprovement of purification technology of the liquid waste from fermentation production / Galina Krusir, Olga Sagdeeva, Alfred Tsykalo, Yuliia Vilhovska, Tatyana Shpyrko // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2021. — Vol 1. — No 6. — P. 7–14.
dc.identifier.citationenImprovement of purification technology of the liquid waste from fermentation production / Galina Krusir, Olga Sagdeeva, Alfred Tsykalo, Yuliia Vilhovska, Tatyana Shpyrko // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2021. — Vol 1. — No 6. — P. 7–14.
dc.identifier.doidoi.org/10.23939/ep2021.01.007
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/57999
dc.language.isoen
dc.publisherВидавництво Львівської політехніки
dc.publisherLviv Politechnic Publishing House
dc.relation.ispartofEnvironmental Problems, 6 (1), 2021
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dc.relation.referencesTambov: Tambo. in-tu khim. mashynobuduvannya. [in
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dc.relation.referencesenDvoretsʹkyy, S. I., Dolhunin, V. N., & Zyuzina O. V.
dc.relation.referencesen(1998). Rozrobka teoretychnykh osnov rozrakhunku
dc.relation.referenceseni konstruyuvannya enerho- i resursozberihayuchoho
dc.relation.referencesenobladnannya mnohoassortymentnoy khimichnykh i
dc.relation.referencesenmikrobiolohichnykh vyrobnytstv. Zb. nauch. tr. Tambo.
dc.relation.referencesenderzh. tekhn. un-tu, 14–27. [in Ukrainian]
dc.relation.referencesenBaader, V. & Doni, E. (1982). Biohaz: teoriya i praktyka.
dc.relation.referencesenMoskva: Kolos. [in Russian]
dc.relation.referencesenBlyum, Ya. B., Heletukha, H. H., & et al. (2010). Novitni
dc.relation.referencesentekhnolohiyi bioenerhokonversiyi. Kyiv: Ahrar Media
dc.relation.referencesenHrup.
dc.relation.referencesenHalkina, H. V., Illarionova, V. I., Volkova, H. S., Horbatova, Y. V.,
dc.relation.referencesen& Kuksova E. V. (2014). Nova tekhnolohiya pererobky
dc.relation.referencesenpislyaspyrtovoyi bardy. Likero-horilchani vyrobnytstvo i
dc.relation.referencesenvynorobstvo, (6), 14–16. [in Ukrainian]
dc.relation.referencesenKukharenko, A. A., & Vynarov, A. Yu. (2001). Bezvidkhidna
dc.relation.referencesenbiotekhnolohiya etylovoho spyrtu. Moskva: Vyshcha shkola.
dc.relation.referencesen[in Russian]
dc.relation.referencesenKutsenko, Yu. M., & Kolomyts, V. M. (2011). Analiz
dc.relation.referencesenosnovnykh chinnikiv anaerobnoho metanovoho zbrodzhenykh
dc.relation.referencesendlya Otrymannya biohazu. Pratsi TDATU. Melitopolʹ:
dc.relation.referencesenTDATU, 11(30), 49–56. [in Ukrainian]
dc.relation.referencesenKrusir G., Sagdeeva O., Malovanyy M., Shunko H.,
dc.relation.referencesenGnizdovskyi O. (2020). Investigation of Enzymatic
dc.relation.referencesenDegradation of Solid Winemaking Wastes. J. Ecol. Eng. 21(2):72–79. doi: https://doi.org/10.12911/22998993/116345
dc.relation.referencesenKyurchev, V. M., Didur, V. A., & Hrachova, L. I. (2012).
dc.relation.referencesenAlʹternatyvne palyvo dlya enerhetyky. V. A. Didura (red.).
dc.relation.referencesenKyiv: Ahrarna osvita. [in Ukrainian]
dc.relation.referencesenLedenev, V. P. (2008). Pererobka bardy: dosvid, realʹnistʹ,
dc.relation.referencesenperspektyvy. Likerovodoch. vyrobnytstvo i vynorobstvo, (7), 8–11. [in Ukrainian]
dc.relation.referencesenLozynsʹka, T. I., Khudyakova, N. M., & Likhterberh, L. A. (2002).
dc.relation.referencesenVyrobnytstvo kormovykh drizhdzhiv iz pislyaspyrtovoyi
dc.relation.referencesenzernovoyi bardy po bezvidkhodnoyi tekhnolohiyi. Likero-
dc.relation.referencesenhorilchani vyrobnytstvo i vynorobstvo, (7), 1–3. [in
dc.relation.referencesenUkrainian]
dc.relation.referencesenNovykov, V. B., & Zvyeryev, S. V. (2007). Barda v zakoni.
dc.relation.referencesenVyrobnytstvo spyrtu ta likero-horilchanykh vyrobiv, (2),20–23. [in Ukrainian]
dc.relation.referencesenPorivnyannya tekhnolohiy pererobky bardy, pererobka
dc.relation.referencesenpislyaspyrtovoyi bardy. (2020). Retrieved from
dc.relation.referencesenhttp://www.spbarda.ru
dc.relation.referencesenRyabov, H. K. (2003). Systema bezvidkhodnoyi pererobky
dc.relation.referencesenpislyaspyrtovoyi bardy. Innovatsiyi: Doslidzhennya i
dc.relation.referencesenrozrobky, (6), 12–17. [in Ukrainian]
dc.relation.referencesenShunyayeva, O. B., Malakhova, N. A., & Hrydnyeva, L. T.
dc.relation.referencesen(2004). Dynamika zminy mikroflory poliv filʹtratsiyi.
dc.relation.referencesenPratsi Tambo. derzh. tekhn. un-tu, (15), 78–82. [in Ukrainian]
dc.relation.referencesenSposob oderzhanyy biohazu ta biodobriv z orhanichnikh
dc.relation.referencesenvidkhodiv: opysanye do patentu na korysnostey modelʹ.
dc.relation.referencesen(2020). Retrieved from http://uapatents.com/3-52419-sposib-oderzhannya-biogazu-ta-biodobriv-z-organichnikh-vidkhodiv.html
dc.relation.referencesenSposob otrymannya biohazu: opysanye do patentu na korysnostey
dc.relation.referencesenmodelʹ. (2020). Retrieved from http://uapatents.com/4-83722-sposib-otrimannya-biogazu.html
dc.relation.referencesenTekhnolohichna liniya z osushennya bardy, vprovadzhena na
dc.relation.referencesenUrzhumsʹkomu SVZ Kirovsʹkoyi oblasti i pryznachena dlya
dc.relation.referencesenotrymannya sukhoyi pislyaspyrtovoyi bardy v vyhlyadi
dc.relation.referencesenporoshku i hranul. (2020). Retrieved from www.distil.ru
dc.relation.referencesenZyuzina, O. V., Hrachova, I. M., & Arzamastsev, A. A. (1990).
dc.relation.referencesenOsnovy biotekhnolohiyi ta promyslovoyi ekolohiyi.
dc.relation.referencesenTambov: Tambo. in-tu khim. mashynobuduvannya. [in
dc.relation.referencesenUkrainian]
dc.relation.urihttps://doi.org/10.12911/22998993/116345
dc.relation.urihttp://www.spbarda.ru
dc.relation.urihttp://uapatents.com/3-52419-sposib-oderzhannya-biogazu-ta-biodobriv-z-organichnikh-vidkhodiv.html
dc.relation.urihttp://uapatents.com/4-83722-sposib-otrimannya-biogazu.html
dc.rights.holder© Національний університет “Львівська політехніка”, 2021
dc.rights.holder© Krusir G., Sagdeeva O., Tsykalo A., Vilhovska Yu., Shpyrko T., 2021
dc.subjectgrain bard
dc.subjectbiogas
dc.subjectliquid waste
dc.subjectfermentation
dc.subjectmesophilic and thermophilic mode
dc.titleImprovement of purification technology of the liquid waste from fermentation production
dc.typeArticle

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