4.7 Article

Effect of highly dispersed colloidal olivine nano-silica on early age properties of ultra-high performance concrete

Journal

CEMENT & CONCRETE COMPOSITES
Volume 131, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.cemconcomp.2022.104564

Keywords

Colloidal silica; Ultra-high performance concrete; Olivine; NMR

Funding

  1. National Natural Science Foundation of China [52178246]
  2. China Scholarship Council (CSC) Fund [201706950053]
  3. Eindhoven University of Technology
  4. Eurosupport (the Netherlands)
  5. ENCI (the Netherlands)

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A novel colloidal olivine nano-silica with high dispersibility and strong pozzolanic reactivity has been developed for use in ultra-high performance concrete, providing new possibilities for the application of cement-based materials.
Nano-silica is an important admixture for ultra-high performance concrete (UHPC). However, complex production process and agglomeration problem of conventional nano-silica significantly limit its application in UHPC. In this study, a novel highly dispersed colloidal olivine nano-silica (C-OnS) is developed. The properties of C-OnS are characterized with laser light scattering, nuclear magnetic resonance and zeta-potential. The C-OnS is applied in UHPC to enhance the cement hydration and reduce the viscosity, while a commercial sol-gel colloidal nano-silica (C-nS) is used as a reference. The effects of C-OnS and C-nS on UHPC are investigated by calorimetry, thermal gravimetry, 29Si and 27Al nuclear magnetic resonance, nitrogen physisorption and mercury intrusion porosimeter. The results show that the performance of UHPC is enhanced by C-OnS at early ages thanks to its higher silanol content, surface area and dispersibility. The advantages of highly dispersive, strong pozzolanic reactivity and tailorable particle size provide new possibilities for application of C-OnS in cement-based materials.

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