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Conversion of Biomethane into Hydrogen in a Biogas Plant Using Combined Raw Materials

https://doi.org/10.15518/isjaee.2016.19-20.062-068

Abstract

The article provides a summary of the biogas plant using combined raw materials, the features of the technological process of producing biomethane. It also provides a method for increasing energy efficiency of biogas stations due to the conversion of biomethane into hydrogen and further use of hydrogen in the fuel cell. 

About the Author

A. V. Sadchikov
Orenburg State University
Russian Federation

Information about the author: Ph.D. (engineering), Associate Professor, Orenburg State University.

Awards: a gold medal and diploma of the winner of the regional exhibition STCY 2011 in the category “Engineering” for the project “New Technologies in Energy”; diploma of the winner the 1st regional scientific convention Orenburg region.

Education: Orenburg State University, 1997.

Research area: renewable energy; energysaving technologies; environmental issues.

Publications: 67 including 15 patents for inventions.

13 Pobedy av., Orenburg, 460018

tel.: +7(3532)77-67-70



References

1. Standart organizacii STO 69393208-001-2012 Mikstura dlâ zemli “Samorodovo” [Standard organization STO 69393208-001-2012 “Medicine for the Earth “Samorodovо”]. (in Russ.).

2. Demin A.V., Kostin M.V., Sadchikov A.V. Primenenie produkta biogazovoj ustanovki kak neftedestruktora pri bioremediacii neftezagrâznennyh zemel’ [Product use biogas plant as oil destructors with bioremediation of contaminated lands[. Sovremennye problemy nauki i obrazovaniâ [Modern problems of science and education], 2014, no. 4. Available at: www.science-education.ru/ru/article/view?id=14002 (in Russ.).

3. Kostin M.V., Demin A.V., Sadchikov A.V. Očistka emkostej ot ostatkov nefti i nefteproduktov s pomoŝ’û èfflûenta [Tank cleaning residues from oil and oil products via the effluent]. Sovremennye problemy nauki i obrazovaniâ [Modern problems of science and education], 2014, no. 6. Available at: www.science-education.ru/ru/article/view?id=15494 (in Russ.).

4. Fatkullina A.S., Sadchikov A.V. Ispol’zovanie produktov BGU dlâ povyšeniâ nefteotdači [Use of products for enhanced oil recovery BSU]. Sovremennye problemy nauki i obrazovaniâ [Modern problems of science and education], 2014, no. 3. Available at: www.science-education.ru/ru/article/view?id=13805 (in Russ.).

5. Standart organizacii STO 69393208-003-2013 “Ènergonezavisimyj process po pererabotke othodov agropredpriâtij” [Standard organization STO 69393208- 003-2013 “Nonvolatile process recycling of agricultural enterprises”] (in Russ.)

6. Sadchikov A.V., Kokarev N.F., Idigenov A.B. Biogaz – kak gazomotornoe toplivo [Biogas as a gas fuel]. Meždunarodnaâ bioènergetika [Bioenergy International], 2013, № 9. Available at: www.infobio.ru/analytics/2542.html (in Russ.).

7. Kokarev N.F., Sadchikov A.V., Idigenov A.B., Nikonorov I.N., Idigenov B.B. Sposob mikrobiologičeskoj pererabotki ptič’ego pometa [Meth￾od for microbiological treatment of poultry manure]. Patent RF no. 2525251 MPK A01C 3/00 (2006.01) C05F 3/00 (2006.01) // Bul. 22, 10.08.2014 (in Russ.).

8. Pushkarev I., Zhu Ai-Min, Li Xiao-Song, Sazonov R.V. Methane Conversion in Low-Temperature Plasma. High Energy Chemistry, 2009, vol. 43, no. 3, pp. 156– 162 (in Eng.).

9. Blanchet J.L. Reaction of Carbon Vapor with Hydrogen and Methane in High Intensity Arc. D.Sc. Thesis, M.I.T., June, 1963 (in Eng.).

10. Koverznev M.P., Zamchiy A.O. Konversiâ metana v vodorod i uglerodnye nanostruktury v beskislorodnoj atmosphere. Sovremennaâ nauka, 2011, no. 2 (7), pp. 189 – 191 (in Russ.).


Review

For citations:


Sadchikov A.V. Conversion of Biomethane into Hydrogen in a Biogas Plant Using Combined Raw Materials. Alternative Energy and Ecology (ISJAEE). 2016;(19-20):62-68. (In Russ.) https://doi.org/10.15518/isjaee.2016.19-20.062-068

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ISSN 1608-8298 (Print)