12.8
Food spoilage results from microbial growth and enzymatic activity, both of which are influenced by environmental conditions.
Preservation techniques such as drying or salting inhibit these processes by removing moisture and extending the food’s shelf life.
Understanding the microbial growth curve helps design better preservation methods.
For instance, minimizing the initial microbial load extends the lag phase, which delays rapid growth and spoilage and keeps the food fresher for longer.
Controlling nutrients and the environment prevents the transition to the log phase, where rapid exponential multiplication causes visible spoilage.
Creating unfavorable conditions, such as low temperatures, extreme pH, or the use of chemical inhibitors, slows microbial multiplication.
For example, low temperatures slow down microbial divisions, whereas optimum temperatures enable rapid divisions and larger populations in the same time.
Methods such as irradiation or pasteurization also inactivate microbes and their enzymes.
Also, using clean equipment and containers during food handling lowers the chances of introducing bacteria.
Food spoilage results from microbial growth, enzymatic activity, and environmental factors that gradually degrade the sensory, nutritional, and safety…
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