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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/46010
Title: The reaserch of dry chicken manure methanogenesis stability
Authors: Shapovalov, Yevhenii
Salyuk, Anatoliy
Kotynsky, Andrii
Tarasenko, Roman
Affiliation: National Center “Junior Academy of Sciences of Ukraine”
National University of Food Technologies
National academy of science of Ukraine
Bibliographic description (Ukraine): The reaserch of dry chicken manure methanogenesis stability / Yevhenii Shapovalov, Anatoliy Salyuk, Andrii Kotynsky, Roman Tarasenko // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2019. — Vol 4. — No 1. — P. 14–18.
Bibliographic description (International): The reaserch of dry chicken manure methanogenesis stability / Yevhenii Shapovalov, Anatoliy Salyuk, Andrii Kotynsky, Roman Tarasenko // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2019. — Vol 4. — No 1. — P. 14–18.
Is part of: Екологічні проблеми, 1 (4), 2019
Environmental Problems, 1 (4), 2019
Journal/Collection: Екологічні проблеми
Issue: 1
Volume: 4
Issue Date: 26-Feb-2019
Publisher: Lviv Politechnic Publishing House
Place of the edition/event: Львів
Lviv
Keywords: methanogenesis
methane fermentation
chicken manure
adaptation
biogas production
dry fermentation
Number of pages: 5
Page range: 14-18
Start page: 14
End page: 18
Abstract: The studies were conducted in batch mode in thirteen repetitions at humidity of 78, 80, 82 and 84 %. The coefficient of variation of methane production varied from 14.84 % to 35.17 % in a mesophilic mode and from 14.4 % to 78.21 % in a thermophilic mode, which means high instability of the process. The moisture content had a much greater effect on the stability of the process in thermophilic conditions than in mesophilic ones.
URI: https://ena.lpnu.ua/handle/ntb/46010
Copyright owner: © Національний університет “Львівська політехніка”, 2019
© Shapovalov Y., Salyuk A., Kotynsky A., Tarasenko R., 2019
URL for reference material: http://eur-lex.europa.eu/legalcontent/En/TXT/?uri=celex:32008L0098
References (Ukraine): 1. Abouelenien, F., Kitamura, Y., Nishio, N., Nakashimada, Y.: Appl Microbiol Biotechnol, 2009, 82, 757.
2. Abouelenien, F., Nakashimada, Y., Nishio, N.: J. Biosci Bioeng, 2009, 107(3), 293.
3. Abouelenien, F., Namba, Yu., Nishio, N., Nakashimada, Y.: Applied Biochemistry & Biotechnology . 2015, 178 (5), 932.
4. Directive 2008/98/EC: http://eur-lex.europa.eu/legalcontent/En/TXT/?uri=celex:32008L0098.
5. Farrow C., Crolla, A., Kinsley, C., McBean, E.: Environmental Progress & Sustainable Energy, 2016, 36(1), 73.
6. Farrow, C.: Anaerobic Digestion of Poultry Manure: Implementation of Ammonia Control to Optimize Biogas. Doctor of Philosophy thesis, Guelph, Ontario, Canada, 2016.
7. Karaalp D., Caliskan G., Azbar: digital proceeding of the ICOEST Cappadocia 2013. Nevsehir, Turkey, June 18-21, 2013, 768.
8. Kothari, R., Pandey, A., Kumar, S., Tyagi, V., Tyagi, S., 2014.: Renewable and Sustainable Energy Reviews, 2014, 39, 174.
9. Li, Y., Park, S.Y., & Zhu J.: Renewable and Sustainable Energy Reviews, 2011, 15, 821.
10. Markou, G.: Bioresource Technology, 2015 196, 726.
11. Nie H., Jacobi, F., Strach, K., et al: Bioresource Technology, 2015, 178, 238.
12. Rajagopal, R., Massé, D., I.: Process Safety and Environmental Protection, 2016 102, 495.
13. Salyuk, A., Zhadan, S., Shapovalov, Ye.: Ukrainian Food Journal, 2014, 3(4), 587.
14. Salyuk, A., Zhadan, S., Shapovalov, Ye.: Journal of Food and Packaging Science, Technique and Technologies, 2015, 4(7), 36.
15. Salyuk, A., Zhadan, S., Shapovalov, Ye., Tarasenko, R.: International Scientific Journal for Alternative Energy and Ecology (ISJAEE), 2015, 15–16: 53.
16. Šinkora, M., Havlíček, M., : Acta Univ. Agric. Silvic. Mendelianae Brun., 2011, 59, 343.
17. Yakushko, S.,: Visnyk of Sumy State University, No. 5 (89), 102.
References (International): 1. Abouelenien, F., Kitamura, Y., Nishio, N., Nakashimada, Y., Appl Microbiol Biotechnol, 2009, 82, 757.
2. Abouelenien, F., Nakashimada, Y., Nishio, N., J. Biosci Bioeng, 2009, 107(3), 293.
3. Abouelenien, F., Namba, Yu., Nishio, N., Nakashimada, Y., Applied Biochemistry & Biotechnology . 2015, 178 (5), 932.
4. Directive 2008/98/EC: http://eur-lex.europa.eu/legalcontent/En/TXT/?uri=celex:32008L0098.
5. Farrow C., Crolla, A., Kinsley, C., McBean, E., Environmental Progress & Sustainable Energy, 2016, 36(1), 73.
6. Farrow, C., Anaerobic Digestion of Poultry Manure: Implementation of Ammonia Control to Optimize Biogas. Doctor of Philosophy thesis, Guelph, Ontario, Canada, 2016.
7. Karaalp D., Caliskan G., Azbar: digital proceeding of the ICOEST Cappadocia 2013. Nevsehir, Turkey, June 18-21, 2013, 768.
8. Kothari, R., Pandey, A., Kumar, S., Tyagi, V., Tyagi, S., 2014., Renewable and Sustainable Energy Reviews, 2014, 39, 174.
9. Li, Y., Park, S.Y., & Zhu J., Renewable and Sustainable Energy Reviews, 2011, 15, 821.
10. Markou, G., Bioresource Technology, 2015 196, 726.
11. Nie H., Jacobi, F., Strach, K., et al: Bioresource Technology, 2015, 178, 238.
12. Rajagopal, R., Massé, D., I., Process Safety and Environmental Protection, 2016 102, 495.
13. Salyuk, A., Zhadan, S., Shapovalov, Ye., Ukrainian Food Journal, 2014, 3(4), 587.
14. Salyuk, A., Zhadan, S., Shapovalov, Ye., Journal of Food and Packaging Science, Technique and Technologies, 2015, 4(7), 36.
15. Salyuk, A., Zhadan, S., Shapovalov, Ye., Tarasenko, R., International Scientific Journal for Alternative Energy and Ecology (ISJAEE), 2015, 15–16: 53.
16. Šinkora, M., Havlíček, M., : Acta Univ. Agric. Silvic. Mendelianae Brun., 2011, 59, 343.
17. Yakushko, S.,: Visnyk of Sumy State University, No. 5 (89), 102.
Content type: Article
Appears in Collections:Environmental Problems. – 2019. – Vol. 4, No. 1

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