prof. dr. Nele De Belie
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Effect of high amounts of superabsorbent polymers and additional water on the workability, microstructure and strength of mortars with a water-to-cement ratio of 0.50
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X-ray computed tomography proof of bacterial-based self-healing in concrete
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Influence of active crack width control on the chloride penetration resistance and global warming potential of slabs made with fly ash + silica fume concrete
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A hydration study by XRD/Rietveld analysis of cement regenerated from completely recyclable concrete
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Sulphates in completely recyclable concrete and their effect on the clinker mineralogy
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Self-healing concrete by use of microencapsulated bacterial spores
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- Conference Paper
- C1
- open access
Repeated autogenous healing in cementitious composites with microfibres and superabsorbent polymers
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- Conference Paper
- C1
- open access
The influence of carbonation on deicer scaling resistance of blast furnace slag concrete (BFSC)
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- Conference Paper
- C1
- open access
The efficiency of autonomous crack healing of mortar in chloride solutions
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- Conference Paper
- C1
- open access
Microscopy and computed micro-tomography for evaluation of microbial self-healing in concrete
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- Conference Paper
- C1
- open access
From lab scale to in situ applications: the ascent of a biogenic carbonate based surface treatment
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Ureolysis and denitrification based microbial strategies for self-healing concrete
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Comparing pH-sensitive with commercial superabsorbent polymers in cementitious materials
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How to seal and heal cracks in cementitious materials by using superabsorbent polymers
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A service life based global warming potential for high-volume fly ash concrete exposed to carbonation
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Development of a low pH cementitious material to enlarge bioreceptivity
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TiO2 coatings synthesized by liquid flame spray and low temperature sol-gel technologies on autoclaved aerated concrete for air-purifying purposes
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Self-healing of dynamic concrete cracks using polymer precursors as encapsulated healing agents
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Can self-repair of concrete cracks help to obtain durable concrete?
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Ureolysis and denitrification based microbial strategies for self-healing concrete