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29 November 2022 | Story Leonie Bolleurs | Photo Leonie Bolleurs
UFS green concrete
The Department of Engineering Sciences (EnSci) welcomes collaborations with other departments at the UFS. Pictured here are, from the left: Louis Lagrange, Head of EnSci, Prof Kahilu Kajimo-Shakantu, Head of the Department of Quantity Surveying and Construction Management, Dr Abdolhossein Naghizadeh, and Megan Welman-Purchase, analytical scientist in the Department of Geology.

More than 30 million tonnes of fly ash (residue from coal combustion in power plants) are generated in South Africa annually, with 96% of that being disposed of in landfills. There is thus more than enough of this key ingredient to produce green concrete. 

Green concrete, so called due to its environmentally friendly benefits, is an eco-friendly alternative to conventional concrete based on the Portland cement binder. During the production of green concrete, less carbon dioxide is released into the atmosphere than with the production of ordinary Portland cement (OPC). The latter accounts for up to 8% of all global carbon emissions.

Successful tests

In the Green Concrete Lab, established in 2021 within the Department of Engineering Sciences (EnSci) on the Bloemfontein Campus of the University of the Free State (UFS), Dr Abdolhossein Naghizadeh, Senior Lecturer, researcher, and engineer, is working on green cement and concrete projects.

He uses ‘geopolymer’ technology and a mix of waste materials, alkaline solutions, and recycled aggregates to form concrete mixtures that can provide properties similar to conventional concrete.

Besides being a synthesised inorganic material (not a petrochemical product), the geopolymer cement he introduced has the following properties: it is made from a reaction between aluminosilicate materials and strong alkalis (5-7% of the concrete mixture), it uses water and by-products as raw materials, it does not calcinate lime, thus giving it a low carbon emission, and it is also beneficial from a waste management point of view. 

The waste materials used can include waste from industrial and agricultural sources, such as fly ash, rice husk ash, sugar-cane bagasse, or corncob ash, as well as natural materials such as volcanic ash. In South Africa, sufficient amounts of industrial and agricultural waste are available. 

“So far, we have successfully tested various types of green concrete based on different waste materials,” says Dr Naghizadeh. 

Besides researching the green mixture proportions in the lab, Dr Naghizadeh and his students focused their attention on establishing the strength, durability, workability, and production cost of the product. 

They compared green concrete with conventional concrete. Green concrete’s workability is slightly lower (but he believes that with appropriate mix design it can be corrected), and it has a much higher compressive strength (50-90 MPa), a smaller carbon footprint, and comparable production costs to conventional concrete (depending on the mix design). A very high level of resistance against alkali-silica reaction (concrete cancer) is also present, as well as resistance to carbonation, sulphate attack, and acid attack.
So far, we have successfully tested various types of green concrete based on different waste materials.– Dr Naghizadeh. 

He explains, “The superior durability performance of green concrete is related to its chemical compositions and microstructure. For example, the lack of calcium content in the composition provides better resistance to alkali-silica reaction. At the same time, stronger bonds between elements and polymeric microstructure provide better resistance against acids and fire.”

With all the work and research of the past year and a half, Dr Naghizadeh says they are at the stage where they can prescribe green concrete production recipes for the industry parties based on the specified application and the materials they have.

Biggest accomplishments

“We transferred most of the experimental works to the Green Concrete Lab at the beginning of 2022, which improved our productivity tremendously. Since then, nine journal papers and three peer-reviewed conference papers have been published as outputs of the research projects. Currently, there are also multiple publications under review or in the development stages,” says Dr Naghizadeh.

In addition to him, there are three master's students and one research associate working on their own individual projects.

The department is very proud of its research outputs. Dr Naghizadeh was either author or co-author of all 12 research papers. The focus of these papers was mostly on the formulation of green concrete, based on locally available agricultural waste materials, the formulation of one-part geopolymer cement (when aluminosilicate raw material is replaced with pre-activated aluminosilicate material, water can be used instead of alkali solution), and the development of ambient-cured green concrete (replacing the aluminosilicate raw material with a blend of materials).

Dr Naghizadeh is also the project leader of a group of scientists from local and international universities who are researching sustainable construction materials. These institutions include the Universities of Johannesburg, KwaZulu-Natal, Yaoundé in Cameroon, Erzurum Technical University in Turkey, as well as Nelson Mandela University and the Central University of Technology, which recently came on board. 

 


 


News Archive

Arts and Science collaborate in creating sustainable futures
2016-03-16

Description: Dr Keith Armstrong Tags: Dr Keith Armstrong

Creating a future where living green is the status quo: Dr Keith Armstrong
Photo: Lihlumelo Toyana

In creating partnerships across disciplines, mankind gains a deeper understanding of how to create the future. This is the premise upon which Dr Keith Armstrong bases his research and experimental art. Dr Armstrong is an Australian Hybrid Media artist and a Senior Research Fellow at Queensland University of Technology in Australia.

Artists that make things happen

“My journey has shifted from an artist that makes things to an artist that makes things happen,” he said at the New Futures: Innovations in Arts and Science public talk recently at Oliewenhuis Art Museum. The talk, organised by the Johannes Stegmann Art Gallery, was part of a series of artistic projects presented by the Programme for Innovation in Arts and Development (PIAD). This initiative is spearheaded by the UFS and Vrystaat Arts Festival, kindly supported by The Andrew W. Mellon Foundation.

Dr Angus Hervey – an Australian writer, technologist and science communicator– was also a speaker at the event. Dr Hervey is a co-founder of Future Crunch, a platform for intelligent, optimistic thinking about the future. He strongly shares Dr Armstrong’s passion and viewpoints.

Dr Armstrong’s work is motivated by social and ecological justice. His non-traditional research and more than 60 artworks serve to evoke audiences to create sustainable futures.

Building the future

Dr Armstrong is in the process of making “things happen” in informal settlements across the Free State by means of his Re-Future project. The project brings together sustainability, community development, and creative action. It moves away from conventional art practices and instead offer a platform to rethink and therefore re-future our practices of sustainability.

The Re-Future project has been initiated through a collaboration between the Johannes Stegmann Art Gallery, the UFS Centre for Development Support (CDS) and Qala Phelang Tala (QPT) and the Vrystaat Art Festival.

According to Anita Venter, a lecturer at CDS and founder of QPT, empowerment is at the centre of the artist-initiated, yet community-controlled project. “It gives a new direction and new hope to the community,” she said.

For more information
Angela de Jesus, dejesusav@ufs.ac.za or +27(0)51 401 2706

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