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09 February 2024 | Story EDZANI NEPHALELA | Photo SUPPLIED
Jerry Dlamini
Dr Jerry Dlamini, lecturer and researcher specialising in agronomy within the Department of Soil, Crop, and Climate Sciences at the University of the Free State (UFS), is at the forefront of pioneering research in this field.

Greenhouse gas emissions represent a significant global concern, driving climate change on a massive scale. This concern is particularly pronounced in rainfed agriculture, where understanding and addressing these emissions are crucial for ensuring sustainable agricultural practices. 

In South Africa, rainfed agriculture is vital in food production, contributing substantially to the nation's agricultural output. However, this sector also stands as a notable contributor to greenhouse gas emissions, primarily through activities such as livestock farming, fertiliser use, and changes in land use.

Dr Jerry Dlamini, a distinguished lecturer and researcher specialising in agronomy within the Department of Soil, Crop, and Climate Sciences at the University of the Free State (UFS), is leading pioneering research in this field. His current project, @CROPGas on X, funded by the European Joint Programme (EPJ), with a budget of R22 million, focuses on investigating the impact of various conservation agriculture interventions on greenhouse gas emissions, primarily targeting nitrous oxide (N2O), methane (CH4), and carbon dioxide (CO2).

This two-year project, which commenced in December 2022 and concludes in December 2024, is a collaborative effort between European and African universities and institutions, including Rothamsted Research (UK), University College Dublin (Ireland), University of Nottingham (UK), University of Poznan (Poland), British Geological Surveys (BGS), University of Zambia (Zambia), University of Zimbabwe, and Lilongwe University of Agriculture and Natural Resources (Malawi). 

Dr Dlamini’s preliminary findings from the UFS Kenilworth Experimental Farm indicate that climate-smart agriculture interventions, such as legume rotation and no-till practices, have the potential to reduce the intensity of greenhouse gas emissions, particularly highly radiative gases like N2O.

“This is a significant finding,” Dr Dlamini noted, “as N2O has a global warming potential 100 times greater than CO2 over a 100-year horizon, meaning its impact on ozone depletion persists far longer despite being emitted in smaller quantities.”

Looking ahead, Dr Dlamini advocates for increased research efforts to quantify greenhouse gas emissions from South African croplands. He emphasises the importance of field-based measurements, akin to methodologies employed by other nations, to enhance the accuracy and effectiveness of South Africa's greenhouse gas inventories submitted annually to the United Nations Framework Convention on Climate Change (UNFCCC) and to devise effective mitigation strategies. 

News Archive

UFS receives apparatus for research in bio analysis
2006-08-31

The Department of Chemistry at the University of the Free State (UFS) and FARMOVS-PAREXEL received three mass spectrometers valued at  R6 000 000 from Applied-Biosystems (Canada), one of the biggest suppliers of mass spectrometers in the world.  
 
The apparatus will be used in the department's research projects on bio analytical and bio prospecting in the search of new drugs for indigenous biodiversity.  The UFS Department of Chemistry and FARMOVS-PAREXEL have been working together closely for the past two years to develop new bio analytical methods to analyse drugs in blood.

Standing next to one of the mass spectrometers are from the left:  Prof Herman van Schalkwyk (Dean: Faculty of Natural and Agricultural Sciences), Dr Irene Kamara (senior lecturer at the UFS Department of Chemistry), Dr Kenneth Swart (senior director and head of the bioanalytical section of FARMOVS-PAREXEL), Mr Uwe Völlkopf (Business Development Manager of Applied Biosystems (Canada)) and Prof Jan van der Westhuizen (head of the organic chemistry division at the UFS Department of Chemistry).

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