Innovation is crucial to fulfil the potential of industrial biotechnology for sustainable production of fuels, chemicals, materials, food and feed. Similarly, scientific and technological advances in environmental biotechnology are needed to enable novel approaches to water purification, and ‘waste-to-product’ processes thus contributing to a circular economy. Increased fundamental knowledge encompassing enzymes, microorganisms and processes are essential for progress in this field. The Department of Biotechnology covers this research area and, based on new insights, selects, designs and tests new biobased catalysts, micro-organisms, and processes.
The department encompasses five research sections:
01 February 2018
Clive Brown of Oxford Nanopore at Bioengineering Institute kickoffOn Tuesday 27 March, TU Delft will launch the Delft Bioengineering Institute. Main speaker is Clive Brown, Chief Technology Officer at DNA sequencing specialist Oxford Nanopore Technologies.
23 November 2017
A biological approach to using waste gasesScience funding body NWO-TTW and partners in industry are investing EUR 3.8 million in a consortium that will use micro-organisms to convert syngas into useful chemical building blocks in a sustainable way. By doing so, the consortium intends to contribute to the circular economy and reduce CO2 emissions.
07 June 2017
Bio-energy: not a bad ideaBiofuels don't have a particularly good reputation. Undeservedly so, says Professor Patricia Osseweijer from the department of Biotechnology. Bearing the United Nations Millennium Development Goals in mind, she is currently arguing the case for more investment in bio-energy. Not only because biofuels are renewable, but also because smart investment in bio-energy can play a part in the social development of deprived areas.
06 August 2021
New yeast species could make biotechnology more sustainableYeasts usually need oxygen to reproduce. However, researchers at TU Delft have now come across a highly unusual species of yeast that is capable of rapid growth even without oxygen. How does it do that? By replacing an essential component of the normal yeast cell with a surrogate molecule. In theory, this discovery could make the industrial production of beer and biofuels using yeasts more sustainable and efficient. The results of this study have been published in the scientific journal PNAS.
29 April 2021
Researchers create living material based on algaeResearchers led by Delft University of Technology (TU Delft) used 3D printing to create a novel, environmentally-friendly and living material made of algae that has many potential applications.
07 April 2021