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21 August 2021 | Story Michelle Nöthling

What does the best university community look like? And what would a better South Africa look like?

In the last couple of weeks, our conversations have been dominated by topics of violence that have spilled into our communities. We have shared our fears with each other and talked about the complexities that gave rise to this rage within our society. We also witnessed communities pulling together in the midst of the destruction, reminding us of our common humanity. 

If you had the opportunity to help build the best university you could imagine, would you step into that space? If you could help create a prospering South African society, would you act?

This is what the Division of Student Affairs is calling you to do. Join us as we embark on a journey of reimagining and ultimately co-creating the community we want. It starts with a conversation. A conversation where your voice is important and welcomed, and where we regard your presence as essential to realise our shared dreams.

We call you as a member of the UFS community—students and staff alike—to join our circle of conversation. We will make use of deeply engaging methods and break-out rooms to create a safe and brave space that encourages mutual sharing and deep listening. 

Add your vision and voice to the conversation to collectively imagine and build the best version of our university.

UFS Community Conversation
Date: Wednesday, 1 September
Time: 16:00 – 18:00
Platform: Zoom (in order to best support universal access and methodology)

Registration is required:

For reasonable accommodation requirements (e.g., closed captioning, or sign language interpreters), contact Michelle Nöthling at nothlingm@ufs.ac.za.

We also have information session leading up to our main conversation. During these sessions, we welcome your questions and together start to explore the concept of community in a collaborative environment.  

Information sessions
Monday, 23 August 2021, 15:00 – 16:00
Tuesday, 24 August 2021, 15:00 – 16:00
Wednesday, 25 August 2021, 15:00 – 16:00
Thursday, 26 August 2021, 15:00 – 16:00
Monday, 30 August 2021, 15:00 – 16:00
Tuesday, 31 August 2021, 15:00 – 16:00

Click here to access any of the information sessions. No registration is required for these sessions.

News Archive

Researcher part of project aimed at producing third-generation biofuels from microalgae in Germany
2016-05-09

Description: Novagreen bioreactor  Tags: Novagreen bioreactor

Some of the researchers and technicians among the tubes of the Novagreen bioreactor (Prof Grobbelaar on left)

A researcher from the University of the Free State (UFS), Prof Johan Grobbelaar, was invited to join a group of scientists recently at the Institute for Bio- and Geo-Sciences of the Research Centre Jülich, in Germany, where microalgae are used for lipid (oil) production, and then converted to kerosene for the aviation industry.

The project is probably the first of its kind to address bio-fuel production from microalgae on such a large scale.  

“The potential of algae as a fuel source is undisputed, because it was these photoautotrophic micro-organisms that were fixing sunlight energy into lipids for millions of years, generating the petroleum reserves that modern human civilisation uses today.  However, these reserves are finite, so the challenge is marrying biology with technology to produce economically-competitive fuels without harming the environment and compromising our food security.  The fundamental ability that microalgae have to produce energy-rich biomass from CO2, nutrients, and sunlight through photosynthesis for biofuels, is commonly referred to as the Third-Generation Biofuels (3G),” said Prof Grobbelaar.

The key compounds used for bio-diesel and kerosene production are the lipids and, more particularly, the triacylglyserols commonly referred to as TAGs.  These lipids, once extracted, need to be trans-esterified for biodiesel, while a further “cracking” step is required to produce kerosene.  Microalgae can store energy as lipids and/or carbohydrates. However, for biofuels, microalgae with high TAG contents are required.  A number of such algae have been isolated, and lipid contents of up to 60% have been achieved.

According to Prof Grobbelaar, the challenge is large-scale, high-volume production, since it is easy to manipulate growth conditions in the laboratory for experimental purposes.  

The AUFWIND project (AUFWIND, a German term for up-current, or new impetus) in Germany consists of three different commercially-available photobioreactor types, which are being compared for lipid production.

Description: Lipid rich chlorella Tags: Lipid rich chlorella

Manipulated Chlorella with high lipid contents (yellow) in the Novagreen bioreactor

The photobioreactors each occupies 500 m2 of land surface area, are situated next to one another, and can be monitored continuously.  The three systems are from Novagreen, IGV, and Phytolutions.  The Novagreen photobioreactor is housed in a glass house, and consist of interconnected vertical plastic tubes roughly 150 mm in diameter. The Phytolutions system is outdoors, and consists of curtains of vertical plastic tubes with a diameter of about 90 mm.  The most ambitious photobioreactor is from IGV, and consists of horizontally-layered nets housed in a plastic growth hall, where the algae are sprayed over the nets, and allowed to grow while dripping from one net to the next.

Prof Grobbelaar’s main task was to manipulate growth conditions in such a way that the microalgae converted their stored energy into lipids, and to establish protocols to run the various photobioreactors. This was accomplished in just over two months of intensive experimentation, and included modifications to the designs of the photobioreactors, the microalgal strain selection, and the replacement of the nutrient broth with a so-called balanced one.

Prof Grobbelaar has no illusions regarding the economic feasibility of the project.  However, with continued research, optimisation, and utilisation of waste resources, it is highly likely that the first long-haul flights using microalgal-derived kerosene will be possible in the not-too-distant future.

Prof Grobbelaar from the Department of Plant Sciences, although partly retired, still serves on the editorial boards of several journals. He is also involved with the examining of PhDs, many of them from abroad.  In addition, he assisted the Technology Innovation Agency of South Africa in the formulation of an algae-biotechnology and training centre.  “The chances are good that such a centre will be established in Upington, in the Northern Cape,” Prof Grobbelaar said.

 

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