By V. L. Yarovenko (auth.)
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"Examines all recognized commercial tactics utilizing form selective zeolites. moment version includes new, up to date details at the particular gains that make zeolites form selective, the function form selective catalysis can play supplying environmentally fresh fuels, 12-membered oxygen ring structures, mesopore structures, and extra.
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31 The uptake rate of a~P-Ha_r'O4shifts upward with the addition of glucose to the n-tetra. decane medium, as shown in Fig. 15. Figure 15 indicates that the uptake rate of 3~p-Ha_PO4was shifted upward by 280 cpm • (mg cell) - t • min - l during the exponential growth phase. During the decreasing growth phase, the uptake rate of 32p-Ha_PO4was shifted up by 250 cpm • (mg cell) -1 • min -1 by the addition of glucose to the n-tetradecane medium, as shown in Fig. 16. The uptake rate of a~p-H3PO4, after the addition 0 6 E o IO } 4 uJ i-- 0 T| tie I hr) 0 15 30 45 TIME (re;n) Fig.
Nakhmanovich, B. /Yarovcnko, V. : Kinetika osakharivaniya i nepreryvnogo spirtovogo brozhenia krahmalistykh sred. Fcrncntnaya i spirtovaya promyshlcnnost 2, 9-12 (1972). 16. Nakhanovich, B. /Yaxovenko, V. : Kinctika osakharivania i ncprczyvnogo spirtovogo brozhenia krakhmalystykh sred v mnogostypenchatych systcmach. Fcrmentnaya i spixtovaya promyshlennost 7, 7-10 (1973). 17. : Proc. Nat. Acad. Sci. 2, Washington (1950). 18. : Science 112, 715 (1950). 19. Ustinnikov, B. /Pykhova, S. : Proisvodstvo i primenenic glubinnoi kultury plcsncvykh grobiv b spirtovoi promyshlcnnosti.
In this section, the growth kinetics of microorganisms with high affinity for liquid hydrocarbon is discussed, using the experimental results of the author etal.  for Candida intermedia IFO 0761 as an example. 1 Transfer of Substrate During Clump Formation Accompanied Growth Microorganisms with high affinity for liquid hydrocarbon often form clumps with hydrocarbon drops during growth (Mimura et al. [ 1], Blanch and Einsele ; Einsele et al. [31 ] and Nakahara et al. ). C. intermedia IFO 0761 adhers tightly to the surface of the hydrocarbon drop and the microbes on the hydrocarbon drops form clumps during growth, as shown in Section 2.
Advances in Biochemical Engineering, Volume 9 by V. L. Yarovenko (auth.)