EdX

Industrial Biotechnology (edX)

Industrial Biotechnology (edX)

Learn the basics of sustainable processing for biobased products to further understand their impact on global sustainability. As fossil-based fuels and raw materials contribute to climate change, the use of renewable materials and energy as an alternative is increasingly important and common. This transition is not a luxury, but rather a necessity.

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

We can use the unique properties of microorganisms to convert organic waste streams into biomaterials, chemicals and biofuels. This course provides the insights and tools for the design of biotechnology processes in a sustainable way. Five experienced course leaders will teach you the basics of industrial biotechnology and how to apply these to the design of fermentation processes for the production of fuels, chemicals and foodstuffs.

Throughout this course, you will be challenged to design your own biotechnological process and evaluate its performance and sustainability. This undergraduate course includes guest lectures from industry as well as from the University of Campinas in Brazil, with over 40 years of experience in bio-ethanol production. The course is a joint initiative of TU Delft, the international BE-Basic consortium and University of Campinas.
This course is part of the Industrial Biotechnology and Industrial Fermentation Professional Certificate.

What you'll learn
After this course all learners will be able to:

  1. appreciate the need for sustainable innovation and how biotechnology and biobased production can contribute to this
  2. describe the global context of biobased production
  3. map the biobased economy, from research to application and from raw materials to products
  4. solve basic level calculations in bioprocess engineering.

Verified learners will have the added benefit of being able to:

  1. integrate scientific and technological knowledge on the use of bioprocesses for industrial products at the cell and process level
  2. develop and assess the conditions for efficient and sustainable design of bioprocesses
  3. solve undergraduate engineering level calculations in bioprocess engineering.

Syllabus

Unit 1. Biotechnology for Biobased Products

  • Why develop a biobased economy?
  • Industrial biotechnology
  • Feedstocks - renewable sources of biomass for biobased products
  • Process to produce bio-PDO (1,3-Propanediol)
  • Benefits for society and sustainability - evaluating the effects of biobased production

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

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

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

Unit 5. Up- and Down-stream process integration

  • Towards an integrated bioprocess
  • Pre-treatment
  • Separation and formulation
  • Separation principles
  • Conceptual process design for 1,3 PDO production
  • Process integration for 1,3 PDO production

Unit 6. Process Evaluation and Sustainability

  • Designing a sustainable business case
  • Economics of a process design
  • Environmental assessment of a process design
  • Social sustainability
  • Sustainability in a global context
Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Sustainable Global Food Systems (edX) EdX
University of Edinburgh,EdinburghX

Sustainable Global Food Systems (edX)

How do we feed 11 billion people? Discover the importance of sustainable food systems on a global scale. We are currently facing one of the biggest challenges worldwide: how to feed a growing population without exhausting global resources. This course examines food security from a food systems perspective and illustrates the major global challenges present, from the environmental impact of food production to the public health impacts of current and future diets.

Self Paced
Self-Paced
Biomaterials and Biofabrication: Design, Engineering and Innovation (edX) EdX
University of Bayreuth,BayreuthX

Biomaterials and Biofabrication: Design, Engineering and Innovation (edX)

Take our MOOC to expand your knowledge about biomaterials, biomedical engineering, additive manufacturing, tissue engineering and to obtain insights on the future of biofabrication. This MOOC will benefit individuals working in the biomedical sector to discover emerging trends and achieve their next career step.

Self Paced
Self-Paced
Conscious Grocery Shopping: Sustainability, Nutrition, Health and Law (edX) EdX
University of Bayreuth,BayreuthX

Conscious Grocery Shopping: Sustainability, Nutrition, Health and Law (edX)

Would you consider yourself a conscious decider when it comes to food grocery shopping? Do you really buy healthy and sustainably? Enroll in this course for a journey through the grocery store with multidisciplinary scientific insights that will empower you to make better food choices. Our professors will give you insights into the fascinating scientific world of food commodities highlighting the aspects of sustainability, nutrition, health and law.

Self Paced
Self-Paced
Sustainable Packaging in a Circular Economy (edX) EdX
Delft University of Technology,DelftX

Sustainable Packaging in a Circular Economy (edX)

Learn how to apply the principles of the circular economy to sustainable packaging systems. It has become almost impossible to imagine what our lives would be like without the many benefits of packaging - just think about the different packaging and single-use items you use on a daily basis. Yet as our global population grows in size and affluence, both our collective demand for packaging materials and the waste we generate as a result will increasedramatically.

Self Paced
Self-Paced
Circular Economy for a Sustainable Built Environment (edX) EdX
Delft University of Technology,DelftX

Circular Economy for a Sustainable Built Environment (edX)

Learn how the principles of the Circular Economy can be applied to the built environment ranging from products and buildings to metropolitan and regional development strategies. In this course you will become familiar with circularity as a systemic, multi-disciplinary approach, concerned with the different scale, from material to product, building, city, and region.

Self Paced
Self-Paced
Value Co-Creation in Sport Management – A New Logic in a Changing Society (edX) EdX
University of Bayreuth,BayreuthX

Value Co-Creation in Sport Management – A New Logic in a Changing Society (edX)

Do you want to become a successful sport management expert? Learn the importance of value co-creation and gather new insights that will make you more competitive in the field of sport management. Are you a passionate sports lover interested in exploring a new innovative logic in sport management? Enroll in this online course.

Self Paced
Self-Paced
Worldviews - From Sustainability to Regeneration (edX) EdX
ETH Zurich,ETHx

Worldviews - From Sustainability to Regeneration (edX)

To deal with sets of environmental and social crises, we need a cultural and mental transformation. This MOOC is the first part of an interconnected series of four MOOCS which bring together science, design and transformative praxis as a fluid, intervention-based and synergistic process for addressing complex challenges. This is explored through broadening worldviews, reframing complexity, designing as nature, activating our minds through physical movement, and connecting with new communities.

Self Paced
3 Weeks
SDG: Moving Towards Sustainable Work (edX) EdX
Universidad Carlos III de Madrid - UC3M,UC3Mx

SDG: Moving Towards Sustainable Work (edX)

Decent work is thecritical engine of sustainable development. This course explores the United Nations' Sustainable Development Goals and mechanisms for developing decent and sustainable work. The United Nations' Sustainable Development 2030 Agenda gives us the opportunity to change and improve the lives of millions of people. These widespread efforts won't juststem from organizations in the formal public or private sectors (governments, corporations, trade unions, etc.) but will also require participation from ordinary people and civil society as a whole.

Self Paced
Self-Paced
Sustainable Development: The Post-Capitalist Order (edX) EdX
SDGAcademyX,SDG Academy

Sustainable Development: The Post-Capitalist Order (edX)

Sustainable development represents a shift from our current system of inequitable capitalism to one that prioritizes prosperity for all, while remaining conscious of its environmental impact and sustainability for future generations. Learn why sustainable development has been adopted by countries and multilateral organizations around the world, and how this approach is transforming the way we live, work, and govern our planet.

Self Paced
Self-Paced
Planetary Boundaries (edX) EdX
SDGAcademyX,SDG Academy

Planetary Boundaries (edX)

Can our planet continue to support the current scope of human activity? A thriving global society relies on the stability of the Earth and its resilience across oceans, forests, waterways, biodiversity, the atmosphere and more. So how do we shape sustainability at a global scale? The boundaries set by the planet’s natural resources, the resilience of those resources, and the human activities that impact sustainability all come into play.

Self Paced
Self-Paced