EdX

Industrial Fermentation (edX)

Industrial Fermentation (edX)

Get introduced to the essentials of industrial fermentation processes, which convert renewable feedstocks into biomaterials, chemicals, nutrition products and biofuels with the help of microorganisms. Industrial fermentation is the central operation in a broad, sustainable value chain, also involving the upstream generation and supply of renewable feedstocks, and downstream purification of the products formed.

Class Deals by MOOC List - Click here and see EdX's Active Discounts, Deals, and Promo Codes.

In this course you will understand how the essential process inputs and outputs are connected via biological and physical mechanisms, and form the basis of process design, scrutiny, optimization and scaling between factory and lab.
This course provides the insights and tools for designing industrial fermentation processes with sustainability advantages, where choices of product and feedstock determine the specific process requirements. Six experienced course leaders will reveal the essentials of industrial fermentation and how to apply these for conceptual design and quantification, resulting in basic mathematical frames and models. Throughout the course, you will apply the theory to a case study where you will produce the building block 1,3-propane diol (PDO) from sugar. Also, you will experience what are the main pitfalls (‘banana skins’) and how to stay away from them.
The course includes guest lectures from industry and universities.
This course is geared towards Biologists, Biotechnologists and Chemical and Environmental Engineers, but will also be of value to others with a different science and engineering background or interest, working in the field of research, development and manufacturing, who wish to deepen their knowledge of industrially relevant fermentation technology and operations.
This course is part of the Industrial Biotechnology and Industrial Fermentation Professional Certificate.

What you'll learn
After this course all learners will be in a position to:

  • Describe the essence of industrial fermentation
  • Utilize insights gained to design an industrial scale quantitative fermentation plant
  • Explain the causes and remedies for scale-up issues, from lab to factory
  • Apply the insights to suggest improvements for industrial fermentation processes and design of down-scaled lab-scale simulators

Syllabus

Getting started and introduction is included in Week 1

Unit 1. Industrial Fermentation

  • Industrial Fermentation: the Great Adventure?
  • Industrial Fermentation Essentials (preliminary title)
  • Benefits for society and sustainability - evaluating the effects of biobased production (preliminary title)
  • Process to produce bio-PDO (1,3-Propanediol)
  • Renewable Feedstocks for Fermentation (preliminary title)

Unit 2. Balances and Microbial Rates

  • Microorganisms and their function in nature
  • Functional understanding of nutrient requirements for microbial growth
  • Learning about the process: broth balances
  • Learning about the process: gas-phase balances
  • Learning about the microorganism: q-rates and chemostat
  • Learning about the process and organism: batch
  • Extra guest lecture: balances
  • Extra: banana skins
  • PDO case
  • Best practice: mixed cultures

Unit 3. The Black Box Model and Process Reaction

  • The process reaction
  • Basics of the black box model
  • Energy consuming and energy producing products
  • A PDO black box model: experiments for parameter identification
  • Black box models: The PDO process reaction as function of μ
  • PDO continuous process design: calculation of inputs and outputs using the process reaction
  • Aerobic PDO process: improving sustainability
  • Introduction to Metabolic Flux Analysis
  • PDO case
  • Best practice: succinic acid

Unit 4. Fermentation Design

  • Introduction to fermentation technology
  • The large-scale fermenter
  • Fermenter operation
  • Gas transport
  • Heat transport
  • Mixing
  • Basic approach to design and then optimize a PDO fermentation process
  • PDO case
  • Best practice: artemisinin

Unit 5. Scale-down and Scale-up

  • Introduction to scale-effects
  • Similarity and scaling approaches
  • Scaling Macro- Micro-balances
  • Dimensional scaling
  • Computational fluid dynamics for scaling
  • Industrial examples

Unit 6. Wrap-up

  • Closing lecture: Industrial Fermentation: where we are now, and where we will go?
  • Final assessment
Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Pathways to Public Health (edX) EdX
George Washington University

Pathways to Public Health (edX)

Pathways to Public Health provides learners with a working knowledge of the issues public health professionals are striving to address every day. You will meet public health specialists who focus on dimensions of health relating to: the environment, family and community, personal behaviors and decision making, health services delivery and access, and utilizing data to both identify the underlying causes of disease, and to track and control the spread of disease.

Self Paced
Self-Paced
Biospecimen Research Methods (edX) EdX
The University of British Columbia,UBCx

Biospecimen Research Methods (edX)

Improve the quality of your research by learning and applying best practices to collect, store and use biospecimens in your laboratory. The success of your research depends on the quality of the biospecimens you use. Get ahead of the competition, increase your chances of being published in high impact journals, and open doors to opportunities for working in leading biomedical research laboratories or biobanks.

Self Paced
Self-Paced
One Planet, One Ocean (edX) EdX
SDGAcademyX,SDG Academy

One Planet, One Ocean (edX)

A holistic view of how the ocean functions, how human interactions with the ocean can be understood, and what solutions are available to support both sustainable use and stewardship of our blue planet. Is the ocean the real final frontier? Humans have a greater understanding of the surface of the moon than they do of the depths of these waters.

Self Paced
Self-Paced
Super-Earths And Life (edX) EdX
HarvardX,Harvard University

Super-Earths And Life (edX)

Learn about the Earth, life, and how we can search for life elsewhere in the universe. Are we alone in this universe? What new information and observations on exoplanets have we discovered? In the past decade, astronomers have made incredible advances in the discovery of planets outside our solar system. Thirty years ago, we knew only of the planets in our own solar system. Now we know of thousands circling nearby stars.

Self Paced
Self-Paced
BioStatistics (edX) EdX
DoaneX,Doane University

BioStatistics (edX)

This college-level, credit-eligible Biostatistics course will teach you the skills required for success in future analytical studies in biology. In this undergraduate-level biostatistics course, the learners will be introduced to the use of statistics and study designs in biology. Upon successful completion of this course, learners will be able to design experimental, quasi-experimental and observational studies that will meet regulatory guidelines; collect, analyze, and interpret data using appropriate statistical tools.

Self Paced
Self-Paced
Sharks! (edX) EdX
University of Queensland,CornellX,Cornell University,UQx

Sharks! (edX)

Learn about the most fascinating animals on Earth, their sophisticated senses and how sharks and their relatives have impacted human history and culture. Did you know that you can track some sharks’ movements on Twitter? Or that the scales on their skin have influenced the way humans design boats, planes, and even swimsuits? Or that sharks have more senses than humans?

Jul 3rd 2023
4 Weeks
Global Warming Science (edX) EdX
MIT,MITx

Global Warming Science (edX)

Learn about the physics, chemistry, biology, and geology of the earth’s climate system. Global Warming Science teaches you about the risks and uncertainties of future climate change by examining the science behind the earth’s climate. You will be able to answer such questions as, “What is the Greenhouse Effect?” and “How and why has earth’s climate changed through geologic history?”

No sessions available
13-24 Weeks
Beer: the science of brewing (edX) EdX
KU Leuven University,KULeuvenX

Beer: the science of brewing (edX)

Ever wondered why your beer tastes the way it does? Learn how the ingredients, different biochemical reactions and process parameters in beer brewing influence the taste and aroma of beer. In this course of 12 modules, our team of academic scientists and brewmasters will introduce you to the science underlying beer brewing. At the end of this MOOC, you will understand the science underlying beer production, and why your beer tastes the way it does!

Self Paced
Self-Paced
Food Fermentation: The Science of Cooking with Microbes (edX) EdX
HarvardX,Harvard University

Food Fermentation: The Science of Cooking with Microbes (edX)

In Food Fermentation: The Science of Cooking with Microbes, explore the history of food and beverage fermentations and how tiny microbes change and enhance flavors, aromas, and tastes in our food. What’s living in your food? Many of the foods that we consume daily owe their distinct characteristics and flavors to microbes, specifically through a biochemical process of fermentation (using bacteria, fungi, and other microorganisms to produce diverse foods).

Self Paced
Self-Paced