Sample
  • Biomedical Engineering

  • The Fundamentals of Biotechnology
  • By: Phil Gilberts
  • Narrated by: Kevin Brooker
  • Length: 1 hr and 41 mins
  • 4.0 out of 5 stars (1 rating)

Prime logo Prime members: New to Audible?
Get 2 free audiobooks during trial.
Pick 1 audiobook a month from our unmatched collection.
Listen all you want to thousands of included audiobooks, Originals, and podcasts.
Access exclusive sales and deals.
Premium Plus auto-renews for $14.95/mo after 30 days. Cancel anytime.

Biomedical Engineering

By: Phil Gilberts
Narrated by: Kevin Brooker
Try for $0.00

$14.95/month after 30 days. Cancel anytime.

Buy for $6.95

Buy for $6.95

Pay using card ending in
By confirming your purchase, you agree to Audible's Conditions of Use and Amazon's Privacy Notice. Taxes where applicable.
activate_WEBCRO358_DT_T2

Publisher's summary

Biochemical engineering integrates the principles of biology, chemistry, and engineering to develop processes for the large-scale production of valuable biochemicals. This interdisciplinary field plays a crucial role in industries such as pharmaceuticals, biotechnology, food and beverage, and environmental engineering.

One of the fundamental aspects of biochemical engineering is fermentation, which involves the controlled growth of microorganisms like bacteria, yeast, or fungi to produce desired compounds. These microorganisms can be genetically engineered or selected for their ability to synthesize specific products, such as antibiotics, vitamins, or biofuels.

Biocatalysis is another key area within biochemical engineering, focusing on the use of enzymes or whole cells to catalyze chemical reactions. By harnessing the specificity and efficiency of biological catalysts, biocatalysis offers environmentally friendly and cost-effective solutions for chemical synthesis and manufacturing processes.

Bioseparation techniques are essential for isolating and purifying target biomolecules from complex mixtures produced during fermentation or biocatalytic reactions. These techniques include filtration, chromatography, centrifugation, and membrane processes, which enable the recovery of high-purity products for further downstream processing.

©2024 Phil Gilberts (P)2024 Phil Gilberts

What listeners say about Biomedical Engineering

Average customer ratings
Overall
  • 4 out of 5 stars
  • 5 Stars
    0
  • 4 Stars
    1
  • 3 Stars
    0
  • 2 Stars
    0
  • 1 Stars
    0
Performance
  • 4 out of 5 stars
  • 5 Stars
    0
  • 4 Stars
    1
  • 3 Stars
    0
  • 2 Stars
    0
  • 1 Stars
    0
Story
  • 4 out of 5 stars
  • 5 Stars
    0
  • 4 Stars
    1
  • 3 Stars
    0
  • 2 Stars
    0
  • 1 Stars
    0

Reviews - Please select the tabs below to change the source of reviews.