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Titlebook: International RILEM Conference on Synergising Expertise towards Sustainability and Robustness of Cem; SynerCrete’23 - Volu Agnieszka Jędrze

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Reduction of CO2 Emission by Using Low Carbon Concretes with Accelerating Admixturesthe development of long-term solutions for CO2 reduction may take several decades, the need of immediate actions is required. One possible solution can be the replacement of the cement clinker with the ground granulated blast furnace slag. However, due to the high level of slag in low carbon concret
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The Effect of Ladle Furnace Slag (LFS) Content Replacement as a Supplementary Cementitious Material esses are not considered environmentally friendly and are estimated to be responsible for 4–7% of worldwide CO. emissions. To mitigate their negative externalities, they introduce several improvements in their processes. The steelmaking industry generates a large volume of solid waste, mainly slags.
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Micromechanical Properties Assessment of Slag Blended Cements Using Nanoindentation and Scanning Eles, such as slag. This requires a good understanding of the blended cementitious materials at the microscale to fully explain the observed behavior of the structures at the macroscale. The nanoindentation technique was used to assess the effect of slag incorporation on the micromechanical properties
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Properties of Belite-Rich Cement with Supplementary Cementitious Materialsnergy clinker doped with SO.. The low lime saturation factor (LSF) clinker with belite as the main phase was synthesized at 1350 °C using industrial raw materials. Alite/belite ratio is opposite to that of ordinary Portland cement (OPC). ß-C.S and M. alite are the main modifications in doped clinker
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Development of Eco-cement from Recycled Low-Carbon Footprint By-product. In pursuit of partial replacements for clinker, worldwide research has focused primarily on industrial (fly ash, Si-Mn slag, fired clay-based) and agroforestry (rice husk, sugar cane) waste. The common denominator in all such waste, its pozzolanicity, determines mechanical performance and durabili
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Recycling Potential of Cellular Lightweight Concrete Insulation as Supplementary Cementitious Materithese impacts, intensive research is ongoing in the sector of Nearly Zero-Energy Buildings (NZEBs). Within EU-funded project iClimaBuilt, RISE is developing and improving the formulation of cellular lightweight concrete insulation (CLC) as a sustainable and recyclable alternative for organic insulat
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Clay Brick Powder as Partial Cement Replacementent to reduce the need for cement in cementitious products. The focus is on the fineness of the CBP and its influence on the compressive strength, reactivity of the CBP, and phase development of cement pastes containing CBP over time..The CBP was characterized with respect to mineralogy, Loss on Ign
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