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19 December 2018 | Story Leonie Bolleurs | Photo Leonie Bolleurs
Water management reseachers
Marinda Avenant, Dirk Jungman and Niels Schütze are working on a project proposal for a decision support system that will assist local authorities with sustainable water resources management. Both Dirk and Niels are from the Technical University Dresden in Germany.

Climate change has a strong effect on the water cycle and is likely to lead to a multitude of hazardous weather events such as droughts, heavy rainfall and floods in Southern Africa.

The Technical University of Dresden, in Germany, in collaboration with the Centre for Environmental Management at the University of the Free State (UFS), earlier this year received seed funding to develop a project proposal for a study on the risks of climate change.

At a recent workshop, universities (including the Central University of Technology, University of KwaZulu-Natal, University of Pretoria, Cape Peninsula University of Technology and the Namibia University of Science and Technology), Weather SA and the Global Water Partnership of Southern Africa) as well as companies from the public and private sectors and universities in Germany (Technical University Dresden, United Nations University Flores, Büro für Angewandte Hydrologie, and WISUTEC Chemnitz), collaborated to discuss the project proposal.

The proposal to obtain funding for the study will be submitted in May 2019.

 

Managing water resources

Once funding is obtained, the combined team will study a series of sites in the upper (Qwaqwa), middle (Free State Goldfields) and lower Vaal catchment areas. The aim of this three-year project is to prepare climatic, hydrological and ecological models as a basis for the development of a decision support system (DSS). This simple-to-use DSS is intended to assist local authorities with sustainable water resources management, as well as to address the risks associated with future climate change in their regions.

The study is titled: Threats of droughts and floods: investigating resilience to the multiple risks of climate change in Southern Africa and the study area was chosen for its suitability in terms of non-perenniality of rivers, residual impacts of mining, climate change, urbanisation, the poor quality of water, major modification of natural ecosystems, as well as poverty and joblessness.

According to Marinda Avenant, lecturer in the Centre for Environmental Management, increasing hazards can result in additional ecological, social and economic impacts and risks such as asset damage, yield reduction and decrease of livelihoods for the region. “We intend to produce a tool to support decision-making and risk-management by means of easily understandable guidelines to consider threats of droughts and floods under climate-change conditions of mining-contaminated, non-perennial river systems,” said Avenant.

 

Reliable forecasts

 

A web-based data platform to provide reliable forecasts of disaster risk and effective warnings of multiple hazardous weather events will also be developed to support resilient management strategies and to trigger risk reduction behaviour.

News Archive

NRF grants of millions for Kovsie professors
2013-05-20

 

Prof Martin Ntwaeaborwa (left) and Prof Bennie Viljoen
20 May 2013


Two professors received research grants from the National Research Foundation (NRF). The money will be used for the purchase of equipment to add more value to their research and take the university further in specific research fields.

Prof Martin Ntwaeaborwa from the Department of Physics has received a R10 million award, following a successful application to the National Nanotechnology Equipment Programme (NNEP) of the NRF for a high-resolution field emission scanning electron microscope (SEM) with integrated cathodoluminescence (CL) and energy dispersive X-ray spectrometers (EDS).

Prof Bennie Viljoen from the Department of Microbial, Biochemical and Food Biotechnology has also been awarded R1,171 million, following a successful application to the Research Infrastructure Support Programme (RISP) for the purchase of a LECO CHN628 Series Elemental Analyser with a Sulphur add-on module.

Prof Ntwaeaborwa says the SEM-CL-EDS’ state-of-the art equipment combines three different techniques in one and it is capable of analysing a variety of materials ranging from bulk to individual nanoparticles. This combination is the first of its kind in Africa. This equipment is specifically designed for nanotechnology and can analyse particles as small as 5nm in diameter, a scale which the old tungsten SEM at the Centre of Microscopy cannot achieve.

The equipment will be used to simultaneously analyse the shapes and sizes of submicron particles, chemical composition and cathodoluminescence properties of materials. The SEM-CL-EDS is a multi-user facility and it will be used for multi- and interdisciplinary research involving physics, chemistry, materials science, life sciences and geological sciences. It will be housed at the Centre of Microscopy.
“I have no doubt that this equipment is going to give our university a great leap forward in research in the fields of electron microscopy and cathodoluminescence,” Prof Ntwaeaborwa said.

Prof Viljoen says the analyser is used to determine nitrogen, carbon/nitrogen, and carbon/hydrogen/nitrogen in organic matrices. The instrument utilises a combustion technique and provides a result within 4,5 minutes for all the elements being determined. In addition to the above, the machine also offers a sulphur add-on module which provides sulphur analysis for any element combination. The CHN 628 S module is specifically designed to determine the sulphur content in a wide variety of organic materials such as coal and fuel oils, as well as some inorganic materials such as soil, cement and limestone.

The necessity of environmental protection has stimulated the development of various methods, allowing the determination of different pollutants in the natural environment, including methods for determining inorganic nitrogen ions, carbon and sulphur. Many of the methods used so far have proven insufficiently sensitive, selective or inaccurate. The availability of the LECO analyser in a research programme on environmental pollution/ food security will facilitate accurate and rapid quantification of these elements. Ions in water, waste water, air, food products and other complex matrix samples have become a major problem and studies are showing that these pollutants are likely to cause severe declines in native plant communities and eventually food security.

“With the addition of the analyser, we will be able to identify these polluted areas, including air, water and land pollution, in an attempt to enhance food security,” Viljoen said. “Excess levels of nitrogen and phosphorous wreaking havoc on human health and food security, will be investigated.”

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