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    Academic Journal

    Contributors: Программа развития Уральского федерального университета в рамках программы «Приоритет 2030». Номер гранта ФЭУЗ-2022-0031.

    Source: Alternative Energy and Ecology (ISJAEE); № 8 (2023); 64-73 ; Альтернативная энергетика и экология (ISJAEE); № 8 (2023); 64-73 ; 1608-8298

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    Relation: https://www.isjaee.com/jour/article/view/2419/1966; Yasmin A. и др. Hot water extracts of Chlorella vulgaris induced DNA damage and apoptosis. Clinics (Sao Paulo). 2010. № 65(12). С. 1371–1377.; Acurio L. и др. Antimicrobial potential of Chlorella algae isolated from stacked waters of the Andean Region of Ecuador. Earth Environ. 2018. № 151. C. 12–40.; Tofighi A., Babaei S., Mollazahed P. The effect of 6 weeks of aerobic training with Chlorella consumption on lipid peroxidation indices and total antioxidant capacity of inactive obese men following exhaustive activity. Jundishapur Scientific Medical Journal. 2021. № 129. P. 591–604.; Myrsini S., Michael K. Chlorella vulgaris as a green biofuel factory: Comparison between biodiesel, biogas and combustible biomass production. Bioresource Technology. 2019. № 273. C. 237–243.; Nematian, T. и др. Conversion of bio-oil extracted from Chlorella vulgaris bio-oil. Biotechnology for Biofuels. № 146. P. 1796–1804.; Alejandro R., Yunuen C., Paolah C. Biohydrogen production by Chlorella vulgaris and Scenedesmus obliquus immobilized cultivated in artificial wastewater under different light quality. AMB Express. 2020. № 10. Статья 191.; Tran T. Enhancing Hydrogen production from Chlorella sp. Biomass by Pre-Hydrolysis with Simultaneous Saccharification and Fermentation. Energies. 2019. № 12(5). C. 1–14.; Klimov K.K., Lyubomudrov B.E. Optimization of Chlorella vulgaris beijer cultivation process for biohydrogen production. Альтернативная энергетика и экология. 2022. № 12. Статья 11.; Jack M., Jo-Ruth G. The photosynthetic Unit in Chlorella Measured by Repetitive Short Flashes. Plant Physiology. 1971. № 48. C. 282–286.; Kuhl A., Lorenzen H. Handling and Culturing of Chlorella. Methods in Cell Biology. 1964. № 1. C. 159–187.; Volkova M. V. и др. Development of the concept of environmentally friendly CHPP and TPP with the active use of photosynthetic processes. International Journal of Hydrogen Energy. 2022. № 48. С. 8418–8429.; Martinez E. и др. Influence of light intensity on the kinetic and yield parameters of Chlorella pyrenoidosa mixotrophic growth. Process Biochemistry. 1996. № 2. С. 93–98.; Gunawan T. и др. Effect of light intensity and photoperiod on growth of Chlorella pyrenoidosa and CO2 Biofixation. 2018. E3S Web Conf. № 31. С. 1–7.; Chriswardana M. Optimization of Light intensity and Color Temperature in The Cultivation of Chlorella Vulgaris Culture Using the Surface Response Method. Journal of Bioresources and Environmental Sciences. 2022. № 1(2). С. 33–41.; Nishat T. и др. Effect of light Intensity and pH on cell Density Assessed by Spectrophotometry for the Unicellular Algae Chlorella Vulgaris. American Journal of Plant Sciences. 2023. № 4. С. 472–481.; Chin-Hang S. и др. Enhancing high quality oil accumulation and carbon dioxide fixation by a mixed culture of Chlorella sp. and Saccaharomyces cerevisiae. 2013. C. 936–942.; Tamiya H. Mass culture of algae. Annual Review of plant Physiology. 1957. № 8. С. 309–334.; Guan, Y. и др. Two-stage photo-biological production of hydrogen by marine green alga Platymonas subcordiformis. Biochemical Engineering Journal. 2004. № 19. С. 69–73.; Hahn, J.J., Ghirardi, M.L., Jacoby, W.A. Immobilized algal cells used for hydrogen production. Biochemical Engineering Journal. 2007. № 37. С. 75–79.; Markov, S.A., Eivazova, E.R., Greenwood, J. Photostimulation of H2 production in the green alga Chlamydomonas reinhardtii upon photoinhibition of its O2 evolving system. International Journal of Hydrogen Energy. 2006. № 31, С. 1314–1317.; https://www.isjaee.com/jour/article/view/2419

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    Academic Journal

    Source: ADVANCES IN MECHANICAL ENGINEERING AND TRANSPORT; Vol 1 No 14 (2020): ADVANCES IN MECHANICAL ENGINEERING AND TRANSPORT; 5-16 ; СУЧАСНІ ТЕХНОЛОГІЇ В МАШИНОБУДУВАННІ ТА ТРАНСПОРТІ; Том 1 № 14 (2020): Сучасні технології в машинобудуванні та транспорті; 5-16 ; 2313-5425 ; 10.36910/automash.v1i14

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    Academic Journal

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    Relation: Технічне забезпечення інноваційних технологій в агропромисловому комплексі : матеріали І Міжнародної науково-практичної конференції молодих учених, Мелітополь, 01-26 лютого 2021 р.; https://rep.bsatu.by/handle/doc/12955; 620.91

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    Academic Journal

    File Description: application/pdf

    Relation: Двигатели на азотном топливе / В. Г. Некрасов, А. Ф. Макаров, А. А. Злыденный и др. // Двигатели внутреннего сгорания. – 2008. – № 2. – С. 121-126.; http://repository.kpi.kharkov.ua/handle/KhPI-Press/365

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    Academic Journal

    Authors: Лозо, В.І.

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