Zobrazeno 1 - 10
of 21
pro vyhledávání: '"M A, Belonogov"'
Autor:
N. A. Khomutov, A. E. Semyonova, M. V. Belonogov, Antonio Di Martino, E. A. Khan, M. V. Piskunov
Publikováno v:
Technical Physics. 67:779-790
Comparative Analysis of Transmutation in a Burner Reactor Based on the Salts LiF–NaF–KF and LiF–BeF2
Autor:
M. N. Belonogov, I. A. Volkov, D. G. Modestov, G. N. Rykovanov, V. A. Simonenko, D. V. Khmelnitsky
Publikováno v:
Atomic Energy. 132:202-207
Publikováno v:
Atomic Energy. 132:20-23
Publikováno v:
Solid Fuel Chemistry. 55:367-373
Publikováno v:
Chinese Journal of Chemical Engineering. 28:3145-3151
An effect of the high-power electromagnetic pulses onto the droplet of coal-water slurry inside the furnace was investigated. In contrary to the previously investigated laser-induced fuel atomization that occurs at the room temperature, the pre-heate
Autor:
D. V. Khmel’nitskii, V. A. Simonenko, D. G. Modestov, I. A. Volkov, G. N. Rykovanov, M. N. Belonogov
Publikováno v:
Atomic Energy. 128:143-150
The basic regularities in the transmutation Np, Am, and Cm in a molten-salt burner reactor are examined on the basis of the results of neutronic calculations of an idealized infinite homogeneous medium consisting of metal halogenides with low atomic
Publikováno v:
Atomic Energy. 126:139-149
The issues of Np, Am, Cm recycling in a BZhSR molten-salt reactor with a fast neutron spectrum based on LiF–NaF–KF eutectic are examined. The results of a comparative analysis of the efficacy of transmutation for different BZhSR fuel compositions
Publikováno v:
Atomic Energy. 126:150-155
Different approaches to the transmutation of Np, Am, and Cm in molten-salt reactors are compared: based on the eutectics LiF–NaF–KF (BZhSR), LiF–NaF–BeF2 (MOSART), and the salt LiF–BeF2 (ZhSR-S). In addition the efficiency of transmutation
Publikováno v:
Solid Fuel Chemistry. 53:48-53
The paper analyzes the processes occurring on the interaction of high-power nanosecond laser pulses with a coal–water mixture prepared from gas-coal waste. It was found that the rate of production of a mixture of CO and H2 sharply increased at a la
Publikováno v:
Coke and Chemistry. 61:274-280
The light-induced gasification of coal–water fuel slurry prepared from coal-enrichment wastes is considered. Under the action of powerful laser pulses, the coal–water slurry is converted to synthesis gas, consisting mainly of CO and H2, with admi