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bioreactor studies of heterologous protein production by ...

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Y, ... ethanol yield for fermentation pathway based on ceU mass (g ethanoUg cell)<br />

Greek Letters<br />

a?........ growth associated coefficient <strong>of</strong> glucoamyIase for glucose oxidation (unitdg ceU)<br />

a3 ........ growth associated coefficient <strong>of</strong> glucoûmylase for erhanol oxidation (unitdg ceii)<br />

p ..... .... specific growth rate ( h")<br />

p' ........ specific growth rate <strong>of</strong> suspended plasmid-bearing cells (h" )<br />

Ci........ speàfic growth rate <strong>of</strong> suspended plasrnid-free ceiis (h")<br />

pi ........ specifc growth rate <strong>of</strong> imrnobilized cells (h")<br />

pi' ...... . specific growth rate <strong>of</strong> immobilixd plasinid-bearing celis th")<br />

p; ....... specific growth rate <strong>of</strong> immobilized plasmid-free ceiis (h-' )<br />

pl ........ specific gowth rate from gucose fermentation (KI j<br />

pz ........ specific growth rate from glucose oxidation (a')<br />

p~ ........ specific gmwth rate from ethanol oxidation (h")<br />

- Pr<br />

-<br />

.- maximum spemc growth rate for glucose fermentation (h*')<br />

pk ..<br />

-<br />

maximum specific growth rate for glucose oxidation (h-')<br />

p3, .. maximum specific growth rate for ethanol oxidation (h-')<br />

yf ......... fmt-order enzyme <strong>production</strong> decay constant in free suspension cell system (h")<br />

1 ......... first-order enzyme pmduction decay constant in immobiiized ce11 system (h-')

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