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12 August 2022 | Story NONSINDISO QWABE | Photo NONSINDISO QWABE
Mpho Twala
Cultivating the land-Mpho Twala.

The Bachelor of Community Development qualification offered on the Qwaqwa Campus develops young professionals who are able to work collaboratively with the community to come up with initiatives that build resilience and sustainability. Before obtaining their qualifications, students are required to identify community needs and to come up with viable ways to eradicate these.

It was during this period that Mpho Twala, a recent CommDev graduate, identified a once-thriving community vegetable garden that had been abandoned and subsequently stripped over the years. Further research led her to realise that the soil was still very fertile, and with a bit of work, could once again be revived to become an income-generating business. She received her qualification during the April graduations on the Qwaqwa Campus, but she did not stop there.

Bringing change to the community through vegetable farming

Twala, with no agricultural background, approached the locals for permission to revive the 1-ha garden into a community-owned vegetable garden. “The land has been uncultivated for more than a decade, and after conducting a needs analysis, I didn’t want to leave it like that, because I saw that if I worked with young people, this would help with the high unemployment rate among the youth in this area,” Twala said.

She says she was driven by bringing about change in her community, which she believes was inspired by her studies.
“I’ve always wanted to do something in my community, and CommDev taught me to see opportunities instead of challenges.”

The vegetable garden currently has 17 employees, 10 of whom are under the age of 35. They are currently harvesting cabbages, various forms of spinach, and white onion – all organic – for home consumption and community purchasing. They also occasionally sell to hawkers around Qwaqwa.

Twala dreams of expanding the garden, adding more crops, and ultimately reaching commercial level. “We are currently classified under subsistence farming – farming for home consumption and selling the surplus so that the project can remain operational. But with the right funding and support, we can grow bigger and better.”

News Archive

Scientists discover a water reservoir beneath the Free State
2009-12-09

Dr Holger Sommer

The Mantle Research Group Bloemfontein (MRGB), under the leadership of Dr Holger Sommer, a senior lecturer in the Department of Geology at the University of the Free State (UFS), has discovered an enormous water reservoir 160 km beneath the Free State.

This discovery, according to Dr Sommer, is the first of its kind in South Africa after he had previously made a similar finding in Colorado, USA.

However, this water cannot be used for human consumption. “It is not frozen water; it is not molecular water; it is not fresh water; it is not salty water; it is OH – water which is sitting in the crystal lattice,” he said.

He said the reservoir was comparable in size to Lake Victoria in Tanzania.
The researchers collected eclogites from the Roberts Victor (Rovic) Mine close to the town of Boshof, south-west of the Free State, for their study.

“The Rovic eclogites are rocks which represent former oceanic crust transported into the earth’s interior by complex plate tectonic processes about 2.0 billion years ago,” explained Dr Sommer.

“These rocks were finally carried back to the earth’s surface by volcanic (kimberlite) eruptions around 130 million years ago. Eclogitic rocks are therefore a window into the Earth’s interior.”

The question from the beginning for all MRGB scientists was: Is there water inside these rocks in such depth, and if so, where is it located?

To answer this question, Dr Sommer and his research fellows separated single mineral grains from eclogite samples and prepared about 100 micrometer (0,1 mm) thick rock sections. Afterwards, specific particle accelerator (Synchrotron) measurements were carried out in the city of Karlsruhe in Germany.

“And indeed, the MRGB found water inside the studied rocks from the Roberts Victor Mine,” he said. “The water was located in defect structures in crystal lattices and along boundaries between single mineral grains.”

“The occurrence of water at such depth would give first evidence that all water of the oceans could be stored five to ten times in the earth’s mantle.”
The study was conducted about a year ago.
 

Media Release
Issued by: Mangaliso Radebe
Assistant Director: Media Liaison
Tel: 051 401 2828
Cell: 078 460 3320
E-mail: radebemt.stg@ufs.ac.za
4 December 2009

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