From Fossil Resources to Biomass: A Chemistry Perspective
About this Course
The upcoming years are all about creating a sustainable future where it is necessary to move away from fossil resources and explore and implement the opportunities that biomass as a renewable energy source gives us. Join this course if you want to learn how to create a sustainable future by moving away from dependence on fossil resources to biomass resources for the production of food, chemicals and energy-carriers. You will learn what biomass is, how to produce biomass renewable energy- and biomass fuel and how to make biobased products. You will get a solid understanding of how chemistry works in a biobased economy and in the production of biomass renewable products. Your valuable knowledge will help your company drive into sustainability and actually make the transition to use biomass resources to produce biobased products. You will learn about the products that can be derived from biomass and the processes used to do so. We will explore catalytic conversion of biomass by discussing types of catalysts, special challenges for catalysis when converting biomass into biomass energy and the interplay of catalysis and up/down stream processes. Then we dive into biorefinery. Biorefinery deals with the challenge of extracting valuable biomass components and converting them to final products. To achieve this you first need knowledge of the different types of biomass, the molecules present and their chemical characteristics. Biorefinery is all about efficient processing. Aspects of processing include the harvesting, pre-treatments, conversion and separation technologies. Stating the obvious; a biobased economy runs on biomass. To apply the gained knowledge to the production of crops, it is therefore important to understand which factors play a major role in crop growth, yield formation and quality. In this module you’ll learn to identify design criteria for the production of biobased crops on both crop- and farm level. Join the MicroMasters programme This MOOC is part of two MicroMasters Programs: Economics and Policies for a Circular Bio-Economy and Business and Operations for a Circular Bio-Economy. The Business and Operations for a Circular Bio-Economy MicroMasters Program will provide you with the knowledge and tools to analyse the business and operations side of the switch to biobased products. The MicroMasters Program Economics and Policies for a Circular Bio-Economy covers the economic and policy side of converting biological resources into biobased products. You will able to contribute substantially to managerial decision-making as well as policy development. Both programmes consist of 3 courses and a final project; the capstone. Explore the other courses in the MicroMasters programmes: Economics and Policies in a Biobased Economy or Business Strategy and Operations in a Biobased Economy Circular Economy: An Interdisciplinary Approach Capstone Economics and Policies for a Circular Bio-Economy or Capstone Business and Operations for a Circular Bio-EconomyCreated by: Wageningen University & Research
Level: Advanced

Related Online Courses
Electric cars are more than a novel means of mobility. They have been recognized as an essential building block of the energy transition. Fulfilling their promise will imply a significant change in... more
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... more
Este es un curso básico de procedimientos constructivos necesarios para la mejora de terrenos en obras civiles y de edificación. Es un curso que no requiere conocimientos especiales y está di... more
Are you fascinated by Geosciences and willing to take the challenge of predicting the nature and behavior of the Earth subsurface? This is your course! In a voyage through the Earth, you will... more
Gli studenti verranno introdotti allo studio della chimica dei composti organici attraverso la conoscenza della nomenclatura, della struttura e della reattività dei principali gruppi funzionali. ... more