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05 September 2025 | Story Kagiso Ngake and Dr Nitha Ramnath | Photo Stephen Collett
Consulate
Left: Stephanie Bruce, Consul General of the United States in South Africa Right: Prof Hester C. Klopper, Vice-Chancellor and Principal of the University of the Free State

The University of the Free State (UFS) recently had the honour of hosting Stephanie Bunce, Consul General of the United States (US) in South Africa, and her delegation on the Bloemfontein Campus. The visit came at a significant moment, shortly after the first 100 days of Prof Hester C. Klopper’s tenure as Vice-Chancellor and Principal. 

The meeting marked an important introduction between two leaders new in their respective roles: Prof Klopper at the UFS, and Consul General Bunce, who began her posting in Johannesburg in September 2024. Their discussions offered an opportunity to align the strategic ambitions of the UFS with the priorities of the U.S Mission in South Africa, while reflecting on the longstanding and fruitful relationship between the UFS and American universities. 

Consul General Bunce commended the depth of UFS’s academic partnerships with the United States and expressed enthusiasm about the university’s future direction. “I’m really excited to hear what you’re looking for in the next few years and how we can continue to work together,” she said.

 

Advancing clinical training and collaboration 

The delegation toured the world-class Clinical Simulation and Skills Unit (CSSU), where Prof Mathys Labuschagne, Head of Clinical Simulation and Skills Unit, School of Biomedical Sciences, and his team showcased how advanced simulation technologies prepare students for clinical practice. “Hands-on practice in a safe, non-threatening environment is one of the best ways to build confidence and skills,” explained Prof Labuschagne. 

The CSSU was developed based on a model from Penn State University following a visit 15 years ago - a collaboration that has continued to thrive. “Collaboration with US universities opens doors for joint teaching, student exchanges, and research partnerships that drive innovation,” Prof Labuschagne added. 

 

Deepening a century of partnership 

Collaboration between the UFS and the U.S universities dates back more than a century. In the 1920s, the University of Michigan established the Lamont-Hussey Observatory on Naval Hill, and Harvard University relocated the Boyden Observatory to Maselspoort. Both observatories, now part of the UFS, symbolise a legacy of shared scientific discovery. 

These historic ties have since evolved into formal agreements with universities across the United States. Between 2020 and 2024, the US was the leading country collaborating with the UFS, producing more than 929 co-authored publications across 648 institutions. Today, partnerships continue to expand through research, academic exchanges, and staff mobility programmes that leave a lasting impact on students and society alike. 

Consul General Bunce highlighted the distinctive nature of these partnerships. “In many countries, academic exchange is driven by government. Here, it grows organically from strong relationships and programmes.”

Prof Lynette Jacobs, interim Director in the Office for International Affairs, emphasised the value of these ties: “Our partnership with the United States shows how a strong and mature relationship can drive diversified internationalisation, advancing our strategic goal of global engagement with real impact. We look forward to welcoming the Consul General on our other two campuses.”   

 

Driving innovation and commercialisation

In her address, Prof Klopper outlined the university’s vision to translate research into real-world solutions and commercial opportunities. “The UFS is learning from many American universities’ innovative models, which leverage multiple income streams and strong industry partnerships,” noted Prof Klopper. Prof Klopper emphasised that diversifying income is not only about sustainability but also about ensuring research has impact. Recent spin-off companies are an example of this vision becoming reality. 

 

Charting the future 

The US delegation expressed strong interest in UFS’s areas of strength, including community engagement, entrepreneurship, and student success initiatives. They also highlighted the potential for US students to study at the UFS, with consular support services in place to assist visiting students in emergencies. 

“It is wonderful to see relationships that grow and change but continue to bring in new partnerships and exchanges,” Consul General Bunce remarked. 

With plans for new mobility schemes, joint research projects, and a shared commitment to innovation, the UFS and its US partners are well-positioned to shape the next chapter in their century-long story of collaboration.  

News Archive

Carbon dioxide makes for more aromatic decaffeinated coffee
2017-10-27


 Description: Carbon dioxide makes for more aromatic decaffeinated coffee 1b Tags: Carbon dioxide makes for more aromatic decaffeinated coffee 1b 

The Inorganic Group in the Department of Chemistry
at the UFS is systematically researching the utilisation
of carbon dioxide. From the left, are, Dr Ebrahiem Botha,
Postdoctoral Fellow; Mahlomolo Khasemene, MSc student;
Prof André Roodt; Dr Marietjie Schutte-Smith, Senior Lecturer;
and Mokete Motente, MSc student.
Photo: Charl Devenish

Several industries in South Africa are currently producing hundreds of thousands of tons of carbon dioxide a year, which are released directly into the air. A typical family sedan doing around 10 000 km per year, is annually releasing more than one ton of carbon dioxide into the atmosphere.

The Inorganic Chemistry Research Group in the Department of Chemistry at the University of the Free State (UFS), in collaboration with the University of Zurich in Switzerland, has focused in recent years on using carbon dioxide – which is regarded as a harmful and global warming gas – in a meaningful way. 

According to Prof André Roodt, Head of Inorganic Chemistry at the UFS, the Department of Chemistry has for the past five decades been researching natural products that could be extracted from plants. These products are manufactured by plants through photosynthesis, in other words the utilisation of sunlight and carbon dioxide, nitrogen, and other nutrients from the soil.

Caffeine and chlorophyll 
“The Inorganic group is systematically researching the utilisation of carbon dioxide. Carbon dioxide is absorbed by plants through chlorophyll and used to make interesting and valuable compounds and sugars, which in turn could be used for the production of important new medicines,” says Prof Roodt.

Caffeine, a major energy enhancer, is also manufactured through photosynthesis in plants. It is commonly found in tea and coffee, but also (artificially added) in energy drinks. Because caffeine is a stimulant of the central nervous system and reduces fatigue and drowsiness, some people prefer decaffeinated coffee when enjoying this hot drink late at night. 

Removing caffeine from coffee could be expensive and time-consuming, but also environmentally unfriendly, because it involves the use of harmful and flammable liquids. Some of the Inorganic Group’s research focus areas include the use of carbon dioxide for the extraction of compounds, such as caffeine from plants. 

“Therefore, the research could lead to the availability of more decaffeinated coffee products. Although decaffeinated coffee is currently aromatic, we want to investigate further to ensure better quality flavours,” says Prof Roodt.

Another research aspect the team is focusing on is the use of carbon dioxide to extract chlorophyll from plants which have medicinal properties themselves. Chemical suppliers sell chlorophyll at R3 000 a gram. “In the process of investigating chlorophyll, our group discovered simpler techniques to comfortably extract larger quantities from green vegetables and other plants,” says Prof Roodt.

Medicines
In addition, the Inorganic Research Group is also looking to use carbon dioxide as a building block for more valuable compounds. Some of these compounds will be used in the Inorganic Group’s research focus on radiopharmaceutical products for the identification and possibly even the treatment of diseases such as certain cancers, tuberculosis, and malaria.

 

 

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