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KU Leuven is seeking a PhD candidate to help design bio-cemented mineral composites for building applications. The project blends synthetic microbiology, concrete chemistry, mineralogy and materials engineering, with collaboration across laboratories and a strong focus on scalable biomineralization processes.
You will work on Formulation, Bio-Fabrication & Characterization tasks, developing porous scaffolds and binder systems that support controlled bacterial activity while ensuring desirable
KU Leuven is an autonomous university. It was founded in 1425. It was born of and has grown within the Catholic tradition.
The PhD will be jointly supervised by Prof. Özlem Cizer and Prof. Ruben Snellings at KU Leuven. The Sustainable Construction Materials for Durable Structures group of prof. Cizer contributes expertise in carbonation and bio-cementation mechanisms, porous-material microstructure and performance assessment. The Applied Mineralogy group of prof. Snellings contributes expertise in low-carbon mineral binders, precursor reactivity, mineral carbonation and advanced mineralogical characterization.
The researcher will be embedded in a broader interdisciplinary consortium and collaborate with teams in synthetic microbiology, microstructure-scale modelling and architectural biofabrication. The participating laboratories provide advanced facilities for mineral processing, material characterization, and cement and concrete testing.
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The construction industry is increasingly exploring biological routes for producing more sustainable materials. However, current approaches often use enzymes or microorganisms as passive additives rather than as programmable components. The E.CoLith project – Bacterially Engineered Concrete Lithification aims to develop a new generation of biomineral composites by integrating synthetic microbiology, concrete chemistry, mineralogy and material engineering to develop programmable biomineral composites.
You will perform research tasks in Work Package 2: Material Formulation, Bio-Fabrication & Characterization. Your task will focus on designing porous mineral scaffolds and binder-precursor systems that support controlled bacterial colonization, and calcium carbonate and silica mineralization, while achieving relevant processing, microstructural and engineering properties. The work will progress from well-defined model minerals to recycled and secondary mineral resources with the support of the supervisors and project consortium.
The position includes the following responsibilities and tasks:
The preferred starting date is January 2027. A mutually agreed starting date may be possible.
KU Leuven strives for an inclusive, respectful and socially safe environment. We embrace diversity among individuals and groups as an asset. Open dialogue and differences in perspective are essential for an ambitious research and educational environment. In our commitment to equal opportunity, we recognize the consequences of historical inequalities. We do not accept any form of discrimination based, but not limited to, gender identity and expression, sexual orientation, age, ethnic or national background, skin colour, religious and philosophical diversity, neurodivergence, employment disability, health, or socioeconomic status. For questions about accessibility or support offered, we are happy to assist you at this email address.
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PhD position on Bio-Cemented Mineral Composites for Building Applications
2026-09-30 23:59 (Europe/Brussels)
2026-09-30 23:59 (CET)
Closing on: 2026-09-30 (Europe/Brussels)
Closing on: 2026-09-30 (Europe/Brussels)
Closing on: 2026-10-12 (Europe/Brussels)
Closing on: 2026-09-14 (Europe/Brussels)
Closing on: 2026-10-16 (Europe/Brussels)
KU Leuven is an autonomous university. It was founded in 1425. It was born of and has grown within the Catholic tradition.