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

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
Irrigation Efficiency: more food with less water (edX) EdX
KU Leuven University,KULeuvenX

Irrigation Efficiency: more food with less water (edX)

Learn to improve the efficiency of different irrigation system components over varying scales in order to extract less water from our resources while producing more food. How can we meet the demands of our ever hungrier and thirstier world? Irrigation water uses 70% of the fresh water extraction worldwide to produce 40% of the food.

Self Paced
Self-Paced
Fundamentals of Neuroscience, Part 2: Neurons and Networks (edX) EdX
HarvardX,Harvard University

Fundamentals of Neuroscience, Part 2: Neurons and Networks (edX)

Discover what makes your brain tick in this second part of a four-part introductory series in Neuroscience. Neurons in isolation are fascinating and complicated, but the real magic of neuroscience happens in the interaction between neurons. In this course, we examine how neurons pass signals to one another and how complex dynamics can result from just a few neurons arranged in relatively simple circuits.

Self Paced
Self-Paced
Principles of Biochemistry (edX) EdX
HarvardX,Harvard University

Principles of Biochemistry (edX)

This introduction to biochemistry explores the molecules of life, starting at simple building blocks and culminating in complex metabolism. Principles of Biochemistry integrates an introduction to the structure of macromolecules and a biochemical approach to cellular function. Topics addressing protein function will include enzyme kinetics, the characterization of major metabolic pathways and their interconnection into tightly regulated networks, and the manipulation of enzymes and pathways with mutations or drugs.

Self Paced
Self-Paced
Tropical Coastal Ecosystems (edX) EdX
University of Queensland,UQx

Tropical Coastal Ecosystems (edX)

Take the challenge and understand problems and solutions to managing tropical coastal ecosystems. Do you want to develop the skills and knowledge needed to help preserve tropical coastal ecosystems? These habitats provide goods and services for hundreds of millions of people but human activities have led to their global decline.

Self Paced
Self-Paced
Innovate & Regulate: Drug Research, Costs, Clinical Trials & Approval (edX) EdX
Davidson College,DavidsonX

Innovate & Regulate: Drug Research, Costs, Clinical Trials & Approval (edX)

At some point in their life, essentially everyone needs to use medication for some type of disease treatment or cure. While medications offer great benefits, the cost of drugs, especially new drugs, and the lack of treatment for some diseases can raise questions about business activity behind the creation of new drugs. Better understanding of how drugs are discovered and developed as well as the legal and regulatory factors that affect the industry can help one better recognize both the shortcomings and opportunities faced by the drug industry at large.

Self Paced
Self-Paced
AP® Biology - Part 2: Genetics (edX) EdX
Rice University,RiceX

AP® Biology - Part 2: Genetics (edX)

The second course in a comprehensive series designed to prepare you for the AP Biology exam, focusing on genetics and DNA. Preparing for the AP Biology exam requires a deep understanding of many different topics in biology as well as an understanding of the format of the AP exam and the types of questions it asks. This course is Part 2 of the AP Biology series designed to prepare you for the AP Biology exam.

No sessions available
5-12 Weeks
Quantitative Biology Workshop (edX) EdX
MIT,MITx

Quantitative Biology Workshop (edX)

A workshop-style introduction to tools used in biological research. Discover how to analyze data using computational methods. Do you have an interest in biology and quantitative tools? Do you know computational methods but do not realize how they apply to biological problems? Do you know biology but do not understand how scientists really analyze complicated data? 7.QBWx: Quantitative Biology Workshop is designed to give learners exposure to the application of quantitative tools to analyze biological data at an introductory level.

Self Paced
Self-Paced
Cell Biology: Mitochondria (edX) EdX
HarvardX,Harvard University

Cell Biology: Mitochondria (edX)

A human-centered approach to the fundamentals of cell biology with a focus on the power plants of the cell - mitochondria. The cell is a powerful case study to help us explore the functional logic of living systems. All organisms, from single-celled algae to complex multicellular organisms like us, are made up of cells. In this course, you will learn the how and why of biology by exploring the function of the molecular components of cells, and how these cellular components are organized in a complex hierarchy.

Self Paced
Self-Paced
Salmon, People, and Place (edX) EdX
University of Alaska Fairbanks,AlaskaX

Salmon, People, and Place (edX)

This course explores the relationships between salmon and people with an emphasis on the special ties of salmon to Indigenous peoples and to Alaska Natives in particular. No wild animal has more profoundly influenced the cultures and well-being of societies in North America than salmon. Salmon and people have been entwined in a relationship for millennia. This six-week course is an exploration and celebration of this relationship, as well as an examination of the current major issues, including habitat alterations, climate change, and management actions currently straining the relationship between salmon and salmon-dependent people.

Self Paced
Self-Paced