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FEASIBILITY OF HYDROGEN PRODUCTION BASED ON AN ENERGY UNIT UNDER ALTERNATIVE LOADING OF THE ENERGY SYSTEM

https://doi.org/10.15518/isjaee.2016.05-06.005

Abstract

The paper assumes a feasibility of obtaining relatively large quantities of hydrogen in a chemical reactorconverter supplied with methane and electrical energy. As a source of electric energy a part of Beloyarskaya NPP unit BN-600’s power available in decreasing the load in the Ural regional energy system at night times is proposed. Estimations present that in supplying the near-plant chemical reactor-converter with 700 thousand cubic meters of natural gas and 3.4 mln kW-hours of electric energy about 190 tons of hydrogen during 30 night hours (6 nights, 5 hours per night) can be obtained. Hydrogen received may be used for feeding a NPP’s autonomous source of electricity and needs of industry and transport.

About the Authors

G. L. Khorasanov
Obninsk Institute for Nuclear Power Engineering, National Research University “MEPhI” 1 Studgorodok, Obninsk, Kaluga region, 249040, Russia
Russian Federation

PhD, associate professor, MEPhI; head of the RFBR project. tel.: +7(961)122-98-79

Education: MEPhI.

Research area: nuclear and hydrogen power engineering.



V. V. Kolesov
Obninsk Institute for Nuclear Power Engineering, National Research University “MEPhI” 1 Studgorodok, Obninsk, Kaluga region, 249040, Russia
Russian Federation

Ph.D. (physics and mathematics), associate professor, MEPhI. tel.: +7(961)122-98-79

Education: Moscow State University.

Research area: reactor calculations, multigroup constants, uncertainty in nuclear data.



V. V. Korobeinikov
Obninsk Institute for Nuclear Power Engineering, National Research University “MEPhI” 1 Studgorodok, Obninsk, Kaluga region, 249040, Russia
Russian Federation

D. Sc. (physics and mathematics), professor, MEPhI. tel.: +7(961)122-98-79

Education: MEPhI.

Research area: nuclear engineering, fuel cycle, fast reactors technology, system analysis of nuclear power, nonproliferation.



References

1. Egorov A.N. Razrabotka i obosnovanie vodorodnogo ènergetičeskogo kompleksa vlažnoparovyh AÈS s ustanovkoj dopolnitelnoj turbiny: Ph.D. (enginering) thesis: Saratovskij gos. tehn. universitet, 2013 (in Russ.).

2. Baklushin R.P. Èkspluataciâ AÈS. Moscow: National Research University “MEPhI” Publ., 2011. 304 p. (in Russ.).

3. Khorasanov G.L., Ivanov A.P., Blohin A.I. Konversiâ metana s ispolzovaniem vodânogo para bystryh âdernyh reaktorov. International Scientific Journal for Alternative Energy and Ecology (ISJAEE), 2004, no. 6, pp. 5–7 (in Russ.).

4. Khorasanov G.L., Kolesov V.V., Korobeinikov V.V. K voprosu polučeniâ vodoroda na baze âdernyh tehnologij. Izvestiâ vuzov. Âdernaâ ènergetika, 2015, no. 2, p. 81–87 (in Russ.).

5. Kuznetcov I.A., Poplavsky V.M. Bezopasnost AÈS s reaktorami na bystryh nejtronah. Moscow: IzdAT Publ., 2012, p. 82 (in Russ.).


Review

For citations:


Khorasanov G.L., Kolesov V.V., Korobeinikov V.V. FEASIBILITY OF HYDROGEN PRODUCTION BASED ON AN ENERGY UNIT UNDER ALTERNATIVE LOADING OF THE ENERGY SYSTEM. Alternative Energy and Ecology (ISJAEE). 2016;(5-6):54-58. (In Russ.) https://doi.org/10.15518/isjaee.2016.05-06.005

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ISSN 1608-8298 (Print)