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18 February 2021 | Story Xolisa Mnukwa

The University of the Free State (UFS) invites you to the 2021 Virtual Graduation, where students who completed their qualifications in June/July of 2020 will receive their qualifications during the ceremonies taking place from 22 to 24 February 2021.

Bachelor degrees (435), higher certificates (86), advanced certificates (230), postgraduate certificates (4), national professional diplomas (203), advanced diplomas (13), postgraduate diplomas (158), bachelors honours degrees (22), master’s (201), and doctoral qualifications (70) will be awarded to students across the UFS Bloemfontein and Qwaqwa Campuses. 

Graduates in the faculties of Economic and Management Sciences, Education, Health Sciences, the Humanities, Law, Natural and Agricultural Sciences, and Theology and Religion will be honoured during the upcoming ceremonies for their academic excellence.

Graduation is the highlight on the university calendar, and even though this prestigious occasion will not be taking place traditionally, the UFS would still like to acknowledge and commemorate our graduates’ prestigious accomplishments. 

The COVID-19 pandemic has caused immense disruption in many aspects of our lives. Higher education institutions throughout the world were not exempt from the effects of the deadly virus. This has subsequently impacted the presentation of graduation ceremonies throughout the sector.
The UFS looks forward to virtually celebrating the milestones of all graduates at the virtual graduation ceremonies, and thus implores all graduates to join us in doing so. 

See information further below for details on how to join in on the celebrations.

The university hopes to celebrate many more graduations in future, but for now, the health and safety of our community is our primary concern.
              
  #UFSGraduation2021  #UFSVirtualGraduation 

News Archive

UFS research could light up South African homes
2016-01-21

Reitumetse Maloa, postgraduate student and researcher at the UFS Department of Microbial, Biochemical and Food Biotechnology, is using her research to provide solutions to the energy crises in South Africa.

A young researcher at the university is searching for the solution to South Africa’s energy and electricity problems from a rather unlikely source: cow dung.

“Cow dung could help us power South Africa,” explains Reitumetse Maloa, postgraduate student and researcher at the UFS Department of Microbial, Biochemical and Food Biotechnology.

Reitumetse’s research is trying to understand how the bacteria works that is responsible for producing biogas.

“Biogas can be used for cooking, heating, lighting and powering generators and turbines to make electricity. The remaining liquid effluent can fertilise crops, as it is high in nitrogen, phosphorus and potassium.”

By using cow dung and food waste to produce biogas, we will be able to lower greenhouse gases.

Biogas is produced in a digester - an oxygen-free space in which bacteria break down or digest organic material fed into the system. This process naturally produces biogas, which is mainly a mixture of methane and carbon dioxide.

“Many countries, such as Germany and the United States, have begun generating electricity from cow dung and food waste, through a process known as biogas production. In South Africa, a number of industries, including waste-water treatment facilities and farms, have caught on to this technology, using it to generate heat and to power machines.”

Until recently the world has relied heavily on electricity derived from fossil fuels such as coal, natural gas and oil. Once these fuels have been extracted from underground reservoirs, they are treated or cleaned, transported to power plants and transformed into the electricity that will reach your house. Fossil fuels are considered a ‘dirty’ energy source which gives off greenhouse gases when burned. Those gases are the major contributing factor to climate change.

“We know very little about the interaction of the bacteria inside the biogas digester. To use biogas as a sustainable fuel source, we need to understand and describe the bacteria population and growth dynamics inside the digester to produce biogas optimally. Currently we are testing a variety of feedstock, including bran, maize and molasses, for biogas production potential, as well as optimising the conditions leading to maximum biogas production. We are also exploring the potential to use the effluent as fertiliser on local farms. The ultimate goal is to have biogas systems that will supply our university with clean energy.”


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