Научная литература
booksshare.net -> Добавить материал -> Химия -> Волова Т.Г. -> "Производство белка на водороде" -> 60

Производство белка на водороде - Волова Т.Г.

Волова Т.Г., Окладников Ю.Н., Сидько Ф.Я. Производство белка на водороде — М.: Наука, 1981. — 151 c.
Скачать (прямая ссылка): proizvodstvobelkanavodorode1981.djvu
Предыдущая << 1 .. 54 55 56 57 58 59 < 60 > 61 .. 62 >> Следующая

Goto E., Suzuki K., Kodoma Т., Minods I. Improvement of Jnitial and exponential growth of hydrogen bacteria, strain 9-5.— Agric. Biol. Chem.,
1977, v. 41, N 3, p. 521-525.
Gottschalk G. Die Biosynthese dor Poly-p-Hydroxybutter-saure.— Arch. Microbiol., 1964, v. 47, p. 225—231.
Gottschalk G., Eberhardt V., Schlegel H. Utilization fructose by Hydrogenomonas H-16.— Arch. Microbiol., 1964, v. 48, p. 95—98.
Grau G. W., Wilkinson S. G. The effect of ethylendiaminetetraacetic acid on the cell walls of some Gram negative Bacteria.— J. Gen. Microbiol., 1965, v. 39, N 3, p. 385—399.
Grelet S. V. La determinisme de la sporulation do Bacillus megateri-um.— Ann. Inst. Pasteur., 1952, v. 82, p. 66—72.
Jagow P. B., Toma R. S. The closed life-support system Anees Re-
search Center.— In: Moffet Field. California, 1966, p. 14—15.
Jaleel S. A. Proteins from mico-algae — another single cell protein.—
In: Chemical Industry Develoments. Bombau, 1974, p. 18—26.
Harrison D. E. F. Physiological effects of dissolved oxiden tensition and redox-pofential on growing population of microorganisms.— J. Appl. Chem. and Biotehnol., 1972, v. 22, p. 417—440.
Herbert D. Continuous culture of microorganism; some theoretical aspects cont. cult.— In: Microbiol. A. Symp. Prague, 1958, p. 316—346.
Herbert D. The chemical composition of microorganisms as a function of their environment.— In: The Eleventh Symposium of the Society for General Microbiol. V. 11. L., 1961, p. 391—428.
Herbert B. Theoretical analysis of continuous culture systems.— In: Coot. Culture of Microbiol. Soc. Chem. L., 1964, p. 21—46.
Huang F., Rha С. K. Fiber formation from single-cell protein.— Bio-technol. and Biocng., 1972, v. 14, N 6, p. 1047—1048.
Fadden Me. Some products of C1402 fixation by Hydrogenomonas fa-cilis.— J. Bacteriol., 1969. v. 77, p. 339—346.
Foster I. F., Litchfield I. H. A continuous culture apparatus for the microbiol utilization of Hydrogen produce by electrolysis of water in closen. cicle spase.— Biotechnol. ana Bioeng., 1964, v. 6, p. 441—461.
Foster I. F., Litchfield I. H. Engineering requirements for culturing of Hydrogenomonas bacteria. — In: Aeronautic and Space engineering and manufactureng meeting. Los Angeles, California, 1967, p. 2—6.
Frank W., Hahn G. Untersuchungen zum bacteriellen Purinabau.— Hoppe-Sycleris. Zeifschrift fur Physiol. Chemie, 1955, Bd 299, S. 1—12.
Jeener R. Studes on the evolution of nucleoprotein fractions of the cytoplasm during the grownth of a culture of Polytomella caeca.; RNA content
146
•of cell and growth rate.— Biochim. et Biophys. Acta, 1952, v. 8, p. 125.
Jenkins D. W. Electrolysis Hydrogenomonas bacterial bioregenerative life support system.— In: XVI Internet. Astronautical Congress. N Y
1965. ' M
Joseph A. A., Wixom R. L. Ammonia incorporation in Hydrogenomonas eutropha.— Biochim. et Biophys. Acta., 1970, v. 201, p. 295—301.
Jshague М., Aleem I. H. Energy compling in H. eutropha.— Biochem. et Biophys. Acta., v. 223, N 2, p. 388—395.
Kaltwasser H. Die Rolle der Polyphosphatstoffewechsel eines Knall-gas bakteriums (Hydrogenomonas Stamm 20). — Arch. Mikrobiol., 1962, y. 41, p. 282—293.
Kaltwasser H. Induktive Bildung partikelgebundener Uricase bei Hydrogenomonas H-16 und anderen aeroben Bakterien.— Arch. Mikrobiol., 1968, v. 60, p. 160—165.
Kaserer H. Die Oxidation des Wasserstoffer durch Mikroorganismen.— Zbl. Bakteriol., 1906, Abt. 11, v. 16, p. 681—698.
Kennel D., Magasanik B. Ribosome content and enzyme synthesis.— Bacteriol. Proc., 1961, v. 1, p. 179—186.
Ketchum В. H. Mineral nutrition of phytoplunkton.— Ann. Rev. of Plant. Physiol., 1954, v. 5, p. 55—63.
Kihlberg. The Microbe as a Source of food.—Ann. Rev. of Microbiol., 1972, v. 26, p. 427-466.
Kiesow L. A., Shelton I. B., Bless I. W. C02-partial Pressure and the Enthalpy and Thermodynamic efficiency of the Oxidation of Nitrite by Nifcrobacter.— Arch, et Biochem. Biophys., 1972, N 151, p. 414—419.
Kleinzeller A. Synthesis of lipides.— Advanc. Enzym., 1948, v. 8, p. 28-43.
Kodama Т., Goto E., Minoda I. Measurement of dissolved Hydrogen concentration and Kia H, in fermentors.— Agr. Biol., Chem., 1976. v. 40, N 12, p. 2373-2377.
Kodama Т., Igarashi Y., Minoda I. Isolation and culture conditions of a bacterium, grown on Hydrogen and carbon dioxide.— Agr. and Biol. Chem., 1975, v. 39, N 1. p. 77—82.
Konig C., Kaltwasser H., Schegel H. Die Bildung von Vrease nach Ver-brauch der ausseren N-Qeulle bei Hydrogenomonas H-16. — Arch. Microbiol., 1966, v. 53, p. 231-244.
Konig C., Scheegel H. Oscillationen der Vreaseaktivitat von Hydrogenomonas H-16 in statiseher Kultur.— Biochim. et Biophys. Acta., 1967, v. 139, p. 182-188.
Kwel C. Chao. Enzymic Degradation of Nucleic Acids in SCP Materials.— Unated States Patent Office. 1974, v. 3, p. 776—809.
Lechtman M. D., Goldner В. H., Canfield I. H. Studies with Aerobic Hydrogen Oxidizing bacteria for application to a regenerative life-support system.— Develop, in Industrial. Microbiol., 1964, v. 5, p. 299—316.
Предыдущая << 1 .. 54 55 56 57 58 59 < 60 > 61 .. 62 >> Следующая

Реклама

c1c0fc952cf0704ad12d6af2ad3bf47e03017fed

Есть, чем поделиться? Отправьте
материал
нам
Авторские права © 2009 BooksShare.
Все права защищены.
Rambler's Top100

c1c0fc952cf0704ad12d6af2ad3bf47e03017fed