This paper will enable students to understand –
Course Outcomes
Course |
Learning outcome (at course level) |
Learning and teaching strategies |
Assessment Strategies |
|
---|---|---|---|---|
Paper Code |
Paper Title |
|||
MBL 501 |
Fermentation Technology |
CO 1 Understand major fermentation, aerobic and anaerobic pathways for energy generation in microbial cells. CO 2 Learn the industrial aspects of microbiology and the basic approach towards fermentation. CO 3 Understand downstream processing and product recovery CO 4 Understand the role of microorganisms in industrial production of different products. CO 5 Have a basic idea of nanotechnology CO 6 Have an industrial exposure |
Approach in teaching: Interactive Lectures, Discussion, Tutorials, Reading assignments, presentations
Learning activities for the students: Self-learning assignments, Effective questions, Seminar presentation, Giving tasks.
|
C A test, Semester end examinations, Quiz, Solving problems in tutorials, Assignments, Classroom interaction |
The fermentation industry, screening of industrially important microorganisms.
Factors involved in Bioreactor design, design of a bioreactor, CSTR, Fluidized bed bioreactor
Modes of fermentation- batch, fed batch, continuous. Inoculum development, media formulation and sterilization, Process control parameters (temperature, pH and DO)
Antibiotic- Penicillin. Production of organic acid- Acetic acid, Production of amino acids- Glutamic acid, Industrial alcohol, SCP and Mushroom cultivation.
Filtration, centrifugation, cell disruption, solvent extraction, precipitation, chromatography (gel filtration, ion exchange, affinity) membrane processes (ultra filtration) and spray drying.
Production of enzymes- Protease, amylase, lipase.
Methods of immobilization of enzymes and applications of enzyme immobilization.