By V. L. Yarovenko (auth.)

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Intermedia contains a pool of hydrocarbon corresponding to the maximum oxygen uptake rate in the early period after removal of the cells from the hydrocarbon medium, while C. tropicalis contains a smaller hydrocarbon pool than that corresponding to its maximum oxygen uptake rate. 6 E Fig. 13. Oxygen uptake rate of C. intermedia under starvation of carbon source 181 I 5 O~ I I0 15 STARVATtO~ TIME(hr] J= o 4 x o-Fig. 14. Oxygen uptake rate of C. tropicalis under starvation of carbon source [8] 0 0 1 I 5 I0 I 15 20 STARVATION TIME (hr) 5.

Yarovenko, V. : Sposob progotovlcniya i vnescniya drozhei v brodilnii chany pro ncprcryvnom spirtovom brozhenii. Avtorskoyc svidctclstov 120203. Byullctcn isobrctcnii I I (1959). 25. Yarovcnko, V. : Stcrilizatsiya brodilnoi posysy pri ncprcryvnom brozhenii. Spirtovaya promyshlennost 3, 14-17 (1954). 26. Yaxovenko, V. /Nakhmanovich, B. : Neprcryvnoye spirtovoyc brozhcniyc krahmalistykh sred s rctsirculyatsiei drozhei. Mikrobiologicheskaya promyshlennost 2 (1976). 27. Y~ovcnko, V. : Osnovnyic zakonomcrnosti ncprczyvnogo spirtovogo i atsetono-butilovogo brozhenia.

Intermedia, which had a strong adhesive force with hydrocarbon, the maximum rate of oxygen uptake on accommodation-form hydrocarbon was nearly equal to that on drop-form hydrocarbon: Qo~ (AH)max - Qo, (DH)max For C. tropicalis, which had a low adhesive force to hydrocarbon, the maximum rate of oxygen uptake on accommodation-form hydrocarbon was higher than that on drop-form hydrocarbon: Qo 2 (AH)max > Qo~ (DH)max. It is considered, from the above results,that microorganisms with high affinity for hydrocarbon can utilize the drop-form hydrocarbon almost equally as well as the accom- 42 Y.

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