Zobrazeno 1 - 7
of 7
pro vyhledávání: '"V. A. Tarabanko"'
Publikováno v:
Kataliz v promyshlennosti. 22:5-17
The literature on the existing processes for the synthesis of γ-acetopropyl alcohol (acetopropanol, 5-hydroxypentan-2-one, APA) is reviewed. This substance is used to produce vitamin B1, antimalarial drugs and polymers. The promising methods for APA
Publikováno v:
Solvent Extraction and Ion Exchange. 25:99-107
The extraction of vanillin (4‐hydroxy‐3‐methoxybenzaldehyde) from water medium with octylamine solution in heptane was studied. The distribution ratios were found to increase with the octylamine concentration and to attain values up to 600. The
Publikováno v:
Kinetics and Catalysis. 45:569-577
The previously proposed mechanism for lignin oxidation to vanillin was supported experimentally. This process begins with the formation of a phenoxyl radical and ends with the step of retroaldol cleavage of substituted coniferaldehyde to vanillin. Th
Publikováno v:
Solvent Extraction and Ion Exchange. 14:1017-1036
The influence of different solvents on the extraction ability of aliphatic non - chelating aldoximes with respect to CuCl2, NiCl2 and CoCl2 has been investigated with heptanaloxime as an example. The effect of carbon tetrachloride, toluene, chlorofor
Publikováno v:
Reaction Kinetics and Catalysis Letters. 21:109-114
It has been established that in the oxidation of diethyl sulfide by18O2 in CH3C16O2H−H216O solution at 369 K catalyzed by heteropoly acids, sulfoxide and sulfone with 44–54%18O enrichment are formed. The process is accompanied by isotope exchange
Autor:
V. A. Tarabanko, L. V. Komissarov
Publikováno v:
The Soviet Journal of Atomic Energy. 1:349-353
Measurements were performed of the quotient of breeding ratios in uranium-water lattices and a uranium-graphite lattice at the start of conversion. The plutonium breeding ratio in uranium-water lattices for certain lattice spacings is larger than in
Autor:
I. G. Umansky, E. M. Kulakova, I. F. Kolpakov, V. B. Zalmanzon, O.A. Gusev, Yu. N. Denisov, N. I. Venikov, A. D. Kirillov, V. D. Fyodorov, N. A. Monoszon, A. A. Vasiliev, B. P. Murin, B. M. Gutner, V. V. Elyan, I.A. Shelaev, V. M. Galitsky, V. I. Chernikov, V. I. Kamensky, M. Sowinski, V. E. Yarosh, A. I. Prokopiev, V. G. Antonenko, V. I. Tsovbun, V. P. Belov, A.A. Kuzmin, G. L. Saksagansky, V. A. Mikahilov, V.A. Titov, I. B. Issinsky, A. A. Ogloblin, Yu. D. Beznogikh, L.G. Makarov, V. M. Galkin, I. N. Semenyushkin, V. V. Kushin, E. P. Goryunov, A.I. Mikhailov, G. I. Batskikh, I. A. Shukeilo, V. A. Tarabanko, V. N. Kapalin, V. A. Glukhikh, B. I. Bondarev, E. V. Chernykh, A.M. Baldin, L. I. Yudin, B. Vasilishin, V. M. Pirozhenko, P. A. Fedotov, A. L. Lebedev
Publikováno v:
IEEE Transactions on Nuclear Science. 26:4294-4295