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12 June 2025 | Story University of the Free State | Photo Supplied
Dr Hossein Naghizadeh and Refilwe Lediga
Collaborative innovation in action: Researchers from the University of the Free State’s Green Concrete Lab have partnered with the University of Johannesburg to advance 3D printing technologies using sustainable concrete materials. Pictured (from left): Dr Hossein Naghizadeh, Senior Lecturer in Engineering Sciences at UFS, and Refilwe Lediga, Concrete Printing Research Expert in the Department of Civil Engineering Technology at UJ.

In an ambitious and interdisciplinary effort to address today’s Grand Challenges, researchers at the University of the Free State (UFS) are exploring how nature’s oldest life forms – stromatolites – can inspire cutting-edge innovations in industrial ecology and marine conservation.  Drawing from biomimicry, 3D printing, and microbial engineering, their work showcases the convergence of ecological insight with modern technology. 

“One such example is replicating the structures of stromatolites – some of the earliest evidence of life - using green cement and 3D printing, the latest technology in industrial ecology,” explains Dr Jacques Maritz, Head of the Unit of Engineering Sciences at UFS. 

 

Ancient structures, modern science  

Stromatolites are layered microbial formations created by ancient cyanobacteria and date back over 3.5 billion years. These living fossils, found in fossil records and rare modern environments like Shark Bay in Australia, grow through a combination of photosynthesis, sediment trapping, and calcium carbonate precipitation. Not only do they support biodiversity, but they also play a vital role in natural carbon sequestration. 

UFS researchers are harnessing the lessons from these ancient formations to address urgent environmental challenges. In particular, Dr Yolandi Schoeman, Senior Lecturer at the Centre for Biogeochemistry, is leading efforts to cultivate hybrid stromatolites in controlled environments, using microbial consortia grown on 3D-printed scaffolds.  

“At UFS, we are reimagining stromatolite formation through both artificial structural replication and biological cultivation, bridging industrial ecology and microbial engineering to address modern environmental challenges,” says Dr Schoeman. 

 

Ecological engineering for reef restoration 

The rapid decline of marine biodiversity and the degradation of natural reef ecosystems have prompted ecological engineers to develop innovative solutions. At the UFS Green Concrete Lab, researchers are pioneering the design of artificial reefs using 3D-printed, low-carbon geopolymer concrete – a material formulated from industrial by-products such as fly ash and slag. 

Artificial reefs mimic natural reef complexity and serve as critical habitats for marine life, from fish and crustaceans to coral polyps and algae. Algae, in particular, are key to marine ecosystems due to their roles in nutrient cycling, oxygen production, and carbon capture. 

“Green concrete refers to concrete that utilises alternative binders and industrial by-products, significantly reducing the environmental footprint. At UFS, we are focusing on geopolymer concrete, which eliminates the high-energy processes associated with Portland cement, while offering greater chemical resistance - ideal for marine applications,” explains Dr Abdolhossein Naghizadeh from the Unit of Engineering Sciences. 

 

3D printing nature’s complexity 

One of the challenges in artificial reef development is replicating biologically inspired geometries that support diverse marine ecosystems. Traditional construction methods often fail in this regard, but additive manufacturing, or 3D concrete printing, is providing a solution.  

The UFS Green Concrete Lab, in collaboration with the University of Johannesburg, is developing reef modules with intricate geometries and natural surface textures. These features support coral and algae attachment, accelerate ecological colonisation, and enhance habitat functionality. Biochar-based compost filters are also being integrated to aid algae-driven wastewater treatment. 

A particularly novel avenue of research involves using 3D printing to recreate stromatolite structures. These serve as ancient blueprints for modern reef design, merging deep-time ecological understanding with advanced material science. 

 

Biologically engineered hybrid stromatolites  

In parallel to structural efforts, UFS is advancing biological approaches to stromatolite cultivation. From July 2025, researchers in the Unit of Engineering Sciences will initiate a large-scale experiment using microbial consortia in 60-litre tanks, scaling up to 1 m² hypersaline ponds. 3D-printed conical scaffolds, coated with materials such as PP-CaCO₃, hydroxyapatite, and silica gel, will accelerate microbial colonisation and lamination. 

The goal: to achieve stromatolite growth of 14-16 mm in just 28 days - over 150 times faster than in nature. These hybrid systems are expected to produce 7-8 mg/L/day of oxygen, sequester carbon at 3.2 g/m²/day, and remove up to 90% of nitrates and phosphates from water. The potential applications extend from terrestrial ecosystem restoration to extraterrestrial life-support systems. 

 

A multidisciplinary vision for sustainability 

This work exemplifies the strength of interdisciplinary research at UFS, combining civil engineering, mechatronics, marine ecology, chemistry, microbiology, and digital fabrication. The Ecological Engineering Sciences stream fosters a vibrant environment for postgraduate students to develop practical, impactful solutions.  

The Green Concrete Lab is central to these efforts, offering students and researchers access to advanced technologies and collaborative networks. Through their innovative work in 3D-printed green concrete and microbial systems, UFS researchers are addressing biodiversity loss, advancing sustainable construction, and contributing to the global climate agenda. 

“Whether it's rethinking materials, restoring ecosystems, or redefining what concrete can be, our research is laying the foundation for a better, more sustainable world beneath the waves,” concludes Dr Maritz. 

News Archive

New multi-purpose residences open in January 2015
2014-06-18

The UFS is currently busy with exciting new accommodation developments on both the Bloemfontein and Qwaqwa Campuses.

This includes a new residence with a hotel and a conference/lecture hall on the western part of the Bloemfontein Campus and the building of another residence on the Qwaqwa Campus.

“We have done what was possible in our quest to maximise the number of beds available in the older residences on the Bloemfontein Campus,” says Quintin Koetaan, Senior Director: Housing and Residence Affairs at the UFS. “This we achieved by converting underutilised and unutilised dining halls and kitchens into bedrooms, which was totally insufficient to address the dire need for beds.”

“The new residence building will have different types of accommodation. I am very excited and look forward to the completion of this project. And this particular residence also brings a very exciting architectural design to the university environment.”

The residence, with multiple blocks for different accommodation, will be wheelchair friendly and numbering and signage will also be in braille. This futuristic-designed building will stand the test of time and will be provide student accommodation until 2030.The R60 million project is funded by the UFS and the Department of Higher Education and Training.

In step with international university accommodation trends – as with Yale's residential college system – this residence will house female first-years who will be mentored by postgraduate students. Postgraduates will be headhunted with the support of the Student Representative Council’s (SRC) postgraduate committee. These postgraduate students will represent all the faculties. Block A and B will accommodate 184 female first-years.

Each floor in this residence will have a study room, two lounges, a kitchen and a laundry for 25 students. Security will be very tight, with three levels of security: entrance to residence, corridor and individual bedroom door. There will also be perimeter camera surveillance and a security officer outside and inside the residence. 

 
Block C will accommodate postgraduate students. The ground floor will house eight single-bed roomed flats. The first floor will have 16 single rooms sharing a bathroom, kitchen and living room, as well as one double room with its own bathroom. The second floor will have 21 single rooms sharing a bathroom, kitchen and living room.

Block D will house 18 hotel-like en suites, with a dining room where breakfast will be served. The target market here will be visiting academics and other university-affiliated visitors. Prices will be competitive to those of local guesthouses and hotels.

Bookings have already opened. Guests will be able to book in and access the hotel desk 24/7. The dining room, accommodating up to 60 people, will not only be open for hotel guests, but also for postgraduate students and UFS staff. Bookings will therefore be essential.

The expansion of bed spaces also took place at the Qwaqwa Campus. In 2012 a 200-bed residence with a state of the art computer room was completed. As a follow-up to this development, another 248-bed residence is now being built. In this particular residence, there will be designated post-graduate accommodation for 48 students.

The project will be handed over at the end of October 2014, with the first intake planned for January 2015.

Another development at the Qwaqwa Campus is the Chancellor’s House Bed & Breakfast. This B&B, with its 5 en suite rooms, is open for business for all UFS staff.

 

For enquiries or bookings at this new accommodation facility, contact:

- Undergraduate (first-year ladies’ residence):
Monica Naidoo at +27(0)51 401 3455 or NaidooM@ufs.ac.za  

- Postgraduate:
Hein Badenhorst at +27(0)51 401 2602 or BadenH@ufs.ac.za  

- Hotel:
Ilze Nikolova at +27(0)51 401 9689 or NikolovaI@ufs.ac.za  

- Chancellor’s House Bed & Breakfast on Qwaqwa Campus:
Olga Molaudzi at +27(0)58 718 5030 or molaudziOD@qwa.ufs.ac.za

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