13.2
Bioreactors offer precise control over temperature, pH, and foam levels to maintain conditions that support optimal microbial growth.
Temperature in bioreactors rises due to microbial metabolism, mechanical agitation, and aeration. It is regulated using water baths, external jackets, or internal cooling coils that circulate refrigerated water to remove excess heat.
Microbial metabolic processes in the bioreactor can also alter the pH of the fermentation broth, which in turn affects microbial growth and product yield.
pH is controlled using buffers or automated systems equipped with sterilizable probes that regulate the addition of acid or base. Ammonia is often used to neutralize the acid produced during fermentation.
Foam formation in bioreactors results primarily from aeration, agitation, or microbial activity. Foam is managed either mechanically, using foam breakers, or chemically, using antifoams.
Antifoams reduce surface tension and break down foam films. The ideal antifoam is non-toxic, autoclavable, non-metabolizable, and does not interfere with oxygen transfer.
Maintaining optimal conditions within fermenters is essential for maximizing microbial productivity and ensuring process efficiency. This lesson focus…
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