Latest News Archive

Please select Category, Year, and then Month to display items
Previous Archive
09 December 2022 | Story Leonie Bolleurs | Photo Leonie Bolleurs
Dr Refilwe Mogale
Dr Refilwe Mogale received her PhD in Chemistry. She is fascinated by the ability of chemistry and science in general to solve some of the world’s most pressing issues, such as water scarcity.

“Chemistry chose me,” says Dr Refilwe Mogale, who wanted to enrol for Psychology years ago when she decided to study at the University of the Free State (UFS). 

“On the day of registration, however, as I was standing in the queue, something inside me said this was not the right choice for me. Ultimately, I chose my second option, which was a BSc degree majoring in biology, physics, and chemistry.”

“Once I started the BSc programme, I gravitated towards chemistry, and as difficult as it was juggling classes and six-hour practical sessions, I loved it. I am fascinated by the ability of chemistry and science in general to solve some of the world’s most pressing issues, such as water scarcity, alternative generation, access to antibacterial hygiene products, as well as novel strategies to cure diseases, among many other things.”

The UFS awarded Dr Mogale a PhD in Chemistry on 9 December 2022.

Addressing a global challenge

Being passionate about applied chemistry – where scientific research can be used to create products to address everyday problems – Dr Mogale focused her thesis on Aluminium- and Zirconium-based metal organic frameworks with azobenzene and stilbene dicarboxylate ligands for use in wastewater treatment. 

She has also published multiple articles on topics of environmental chemistry and wastewater management in international journals. 

Dr Mogale is of the opinion that water pollution by financially lucrative industries and access to clean drinkable water is one of our planet’s most challenging environmental and health issues. “The waste generated by some of the industries that contribute heavily to our country’s economy, such as the textile, agricultural, and medical industries, may end up in the limited drinking water resources we have. I chose my research topic because I wanted to positively contribute to this global challenge,” she says.

“My research was based on making highly porous metal-organic frameworks (MOF) to be used in the wastewater treatment technique called adsorption,” explains Dr Mogale, describing MOFs as “really cool three-dimensional ‘sponges’ that can suck up very high amounts of gases and pollutants, trapping them in their pores. These trapped materials can later be released from the pores to be re-used when MOFs are exposed to certain stimuli.”

She continues, “Low cost and simplicity make this method attractive for industrial use. Considering our current energy crisis, other methods are not ideal, since they require large amounts of energy.” 

Focused on developing highly effective adsorbent for wastewater purification systems, Dr Mogale synthesised a novel MOF with one of the highest adsorption capacities compared to existing counterparts.

According to her, should MOFs with their incredibly high surface areas – which allow them to absorb more waste than their existing counterparts – be implemented in wastewater purification systems, they would be able to address the environmental issue of water pollution and the health issue of access to drinkable water.

Tackling everyday societal issues

She is currently doing a postdoctoral fellowship in the UFS Department of Chemistry – to broaden her knowledge in chemistry beyond MOFs. Her plans are, however, to transition to industry and ultimately entrepreneurship, where she will be able to develop scientific products that can tackle everyday societal issues. 

Dr Mogale dreams of adding value to society by practically contributing to the water crisis issue through the development of low-cost water generation and purification products.

News Archive

Two OSM students selected for KZN Philharmonic Youth Concerto Festival
2016-06-13

Description: Ketumile Moleleki designs KovsieGear  Tags: Ketumile Moleleki designs KovsieGear
Kamu Magou has been an occasional
studies student in violin performance
for the last four years at the Odeion
School of Music.
Photo: Supplied
Two students from the Odeion School of Music (OSM) at the University of the Free State have been selected as soloists to be part of the KwaZulu-Natal Philharmonic Orchestra National Youth Concerto Festival.

The cellist Chris van Zyl and violinist Kamu Magou will be part of the festival taking place on 29 September 2016 in the Durban City Hall. The KZN Philharmonic presents the festival annually, with the aim of providing gifted young musicians an opportunity to rehearse and perform with a professional orchestra. The orchestra will be conducted by Lykele Temmingh.

Cricketer playing cello since age of six

Chris, who is under the tutelage of Prof Anmari van der Westhuizen from the Odeion String Quartet, is a first-year student at the OSM. He will perform Tchaikovsky’s Pezzo capriccioso, Op. 62, for cello and orchestra.

He started playing the cello at the age of six, under the tutelage of Michael Haller, a respected cello pedagogue and cellist of the then Odeion String Quartet.

Although a gifted musician, he also loves cricket, and, as a youngster, his mother had to bribe him by bowling plastic cricket balls in the lounge in exchange for five minutes of cello playing.

Violin student in residence in Amsterdam

Kamu has been studying violin under Sharon de Kock from the Odeion String Quartet, her violin lecturer at the OSM, since high school. She has been an occasional studies student in violin performance for the last four years.

Kamu, who is pursuing a BCom degree at Unisa, was in residence for a week recently at the acclaimed Royal Concertgebouw Orchestra in Amsterdam. She and the Bloemfontein double bassist, Siyolise Nyondo, were part of an initiative by the South African Youth Orchestra Foundation.

We use cookies to make interactions with our websites and services easy and meaningful. To better understand how they are used, read more about the UFS cookie policy. By continuing to use this site you are giving us your consent to do this.

Accept