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18 May 2023 | Story André Damons | Photo Supplied
Powerstation
South Africa is facing increasing water stress due to a variety of factors.

South Africa, like the rest of Africa, is facing increasing water stress due to a variety of factors, including inadequate maintenance and investment in water and sanitation infrastructure, unequal access to water, poor water quality, and increasingly unsustainable water demand. Flooding and drought disasters and disruptions in water and sanitation services have become more frequent in recent years amidst a growing population in a semi-arid country.

In addition to the ongoing load shedding crisis we are facing, South Africa is rapidly approaching a situation where “water shedding” is becoming a tangible issue. Although it hasn’t reached a nationwide scale yet, the occurrence of disruptions in water supply systems due to shortages and a combination of other factors is growing significantly.

This situation is detrimental, not only to South Africa’s developmental goals but also to its socio-economic position within the Southern African development community region and the continent as a whole.

This is according to academics from the University of the Free State (UFS) and the University of Pretoria (UP) who were part of a group of academics and industry experts who did an independent assessment of Operation Vulindlela’s impact on South Africa. Pres Cyril Ramaphosa unveiled Operation Vulindlela – a joint initiative of the Presidency and National Treasury that aims to modernise and transform network industries – in 2020 as the vehicle to “fast-track the delivery of economic reforms”.

Prof Paul Oberholster, Director of the UFS Centre for Environmental Management and an expert in wastewater treatment, and Dr Yolandi Schoeman, his Postdoctoral Fellow, together with Prof Emma Archer, Professor in Geography and Environmental Studies at the University of Pretoria were asked by Rand Merchant Bank (RMB) to focus on water.

Bring about the structural change

RMB states in the report that it commissioned a body of work by academics and industry experts to independently evaluate whether the execution of policy initiatives set out by Operation Vulindlela, would bring about the structural change that is necessary to accelerate SA’s growth and employment. The subsequent parts of this report focus on three of the five network industries identified by Operation Vulindlela – electricity, water and transport (ports and rail).

“It was an honour to have been part of this project with RMB and to unpack and strategically assess the water sector in South Africa. We know that there are plenty of challenges, but there are also remarkable opportunities where we can implement solutions and demonstrate impact, bring about change and work hard in turning the situation around as a joint constructive collaborative approach.

“They are very keen on working with leaders in the water space with qualities of strategic thinking, innovation, collaboration, inclusivity, and a strong commitment to sustainable development. It is an impactful contribution indeed,” says Prof Oberholster.

In their sections of the report, under heading South Africa's Blue Revolution: Investing in a thriving water future South Africa, Prof Oberholster, Dr Schoeman and Prof Archer, focused on five themes, namely Water for planetary health, Water for development, Water for climate, resilience and the environment, Water for cooperation and The Water Decade of Action.

“We were asked to evaluate the viability of what is still left to be done in the water sector in South Africa. We were asked to contribute our thinking to the RMB handbook for the purpose of distribution to corporate and institutional clients. As part of our outcome we provided clear and unbiased direction to RMB’s clients on the joint initiative the likely impact of Operation Vulindlela on economic growth and what still needs to be done to turn the water sector around,” according to Prof Oberholster.

Guidelines to improve the country’s water situation

He says their aim was to give guidelines on how to improve the country’s water situation. He believes the work they have done with this assessment and on other occasions, will help the UFS in its goal to be a university that impactfully supports societal development as set out in Vision 130, which states: Our knowledge will continue to contribute to the development of the Free State, South Africa, and the African continent and to advance global knowledge and understanding.

As clean water and sanitation is Goal 6 of the 17 Sustainable Development Goals (SDGs), it is a further indication of the importance of this research and work.

According to Dr Schoeman, reports like these are important because they help raise awareness of the challenges and opportunities for achieving water security and sustainable development. They identify problems and bottlenecks within the industry, helping to target areas that require immediate attention and action. They provide potential solutions and enable dialogue to the problems identified, giving stakeholders a roadmap for action and providing essential background that can enable investment and further inform investment priorities.

“Such reports help to inform planning and decision-making processes by providing data, evidence, and recommendations based on research and analysis.  They encourage collaboration and coordination among stakeholders by providing a common understanding of the issues and potential solutions.

“They also provide guidance and recommendations for decision-makers to improve water resources management and governance. Water is a vital resource for human health, food security, energy production, environmental protection and more, so it is essential to recognise its worth and incorporate it into planning and policies,” says Dr Schoeman.

Blue Revolution

The academics also talks about the Blue Revolution – essential blue solutions – in supporting Operation Vulindlela which can enable a sustainable future for South Africa's water management system. The Blue Revolution in South Africa, write the academics, refers to a comprehensive strategy and functional implementation for modernising and transforming the country’s water sector. It aims to improve water management practices and enhance the water sector’s overall efficiency, effectiveness, and sustainability in enabling planetary health.

News Archive

New world-class Chemistry facilities at UFS
2011-11-22

 

A world-class research centre was introduced on Friday 18 November 2011 when the new Chemistry building on the Bloemfontein Campus of the University of the Free State (UFS) was officially opened.
The upgrading of the building, which has taken place over a period of five years, is the UFS’s largest single financial investment in a long time. The building itself has been renovated at a cost of R60 million and, together with the new equipment acquired, the total investment exceeds R110 million. The university has provided the major part of this, with valuable contributions from Sasol and the South African Research Foundation (NRF), which each contributed more than R20 million for different facets and projects.
The senior management of Sasol, NECSA (The South African Nuclear Energy Corporation), PETLabs Pharmaceuticals, and visitors from Sweden attended the opening.

Prof. Andreas Roodt, Head of the Department of Chemistry, states the department’s specialist research areas includes X-ray crystallography, electrochemistry, synthesis of new molecules, the development of new methods to determine rare elements, water purification, as well as the measurement of energy and temperatures responsible for phase changes in molecules, the development of agents to detect cancer and other defects in the body, and many more.

“We have top expertise in various fields, with some of the best equipment and currently competing with the best laboratories in the world. We have collaborative agreements with more than twenty national and international chemistry research groups of note.

“Currently we are providing inputs about technical aspects of the acid mine water in Johannesburg and vicinity, as well as the fracking in the Karoo in order to release shale gas.”

New equipment installed during the upgrading action comprises:

  • X-ray diffractometers (R5 million) for crystal research. Crystals with unknown compounds are researched on an X-ray diffractometer, which determines the distances in angstroms (1 angstrom is a ten-billionth of a metre) and corners between atoms, as well as the arrangement of the atoms in the crystal, and the precise composition of the molecules in the crystal.
  • Differential scanning calorimeter (DSC) for thermographic analyses (R4 million). Heat transfer and the accompanying changes, as in volcanoes, and catalytic reactions for new motor petrol are researched. Temperature changes, coupled with the phase switchover of fluid crystals (liquid crystals -watches, TV screens) of solid matter to fluids, are measured.
  • Nuclear-magnetic resonance (NMR: Bruker 600 MHz; R12 million, one of the most advanced systems in Africa). A NMR apparatus is closely linked with the apparatus for magnetic resonance imaging, which is commonly used in hospitals. NMR is also used to determine the structure of unknown compounds, as well as the purity of the sample. Important structural characteristics of molecules can also be identified, which is extremely important if this molecule is to be used as medication, as well as to predict any possible side effects of it.
  • High-performance Computing Centre (HPC, R5 million). The UFS’ HPC consists of approximately 900 computer cores (equal to 900 ordinary personal computers) encapsulated in one compact system handling calculations at a billion-datapoint level It is used to calculate the geometry and spatial arrangements, energy and characteristics of molecules. The bigger the molecule that is worked with, the more powerful the computers must be doing the calculations. Computing chemistry is particularly useful to calculate molecular characteristics in the absence of X-ray crystallographic or other structural information. Some reactions are so quick that the intermediary products cannot be characterised and computing chemistry is of invaluable value in that case.
  • Catalytic and high-pressure equipment (R6 million; some of the most advanced equipment in the world). The pressures reached (in comparison with those in car tyres) are in gases (100 times bigger) and in fluids (1 500 times) in order to study very special reactions. The research is undertaken, some of which are in collaboration with Sasol, to develop new petrol and petrol additives and add value to local chemicals.
  • Reaction speed equipment (Kinetics: R5 million; some of the most advanced equipment in the world). The tempo and reactions can be studied in the ultraviolet, visible and infrared area at millisecond level; if combined with the NMR, up to a microsecond level (one millionth of a second.

Typical reactions are, for example, the human respiratory system, the absorption of agents in the brain, decomposition of nanomaterials and protein, acid and basis polymerisation reactions (shaping of water-bottle plastic) and many more.

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