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Properties of high calcium wood ash and densified silica fume blended cement

机译:高钙木灰与致密硅粉掺合水泥的性能

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Recycling industrial waste material as construction material to minimize production of ordinary Portland cement could solve arising industrial waste management problems and increase environmental sustainability. This study focused on the incorporation of wood biomass ash in combination with silica fume in blended cement. In this study, physical and chemical properties of high calcium wood ash (HCWA) and densified silica fume (DSF) were thoroughly characterized. Results indicated that HCWA is an active hydraulic binder material as it is rich in calcium carbonate and quicklime content. Fresh concrete properties showed HCWA-DSF blended cement pastes have marginally higher standard consistency and significantly longer setting times as compared to pure cement paste. Additionally, hard concrete properties, such as mechanical strength, water absorption, air permeability and chloride resistance properties of mortar were also investigated. Enhancement in the compressive and flexure strength of mortar was observed for mortar mixes containing DSF and HCWA. The incorporation of HCWA at level of cement replacement ranging between 4 to 12% in combination with 7.5% of DSF was observed to significantly improve the chloride resistance of mortar mixes produced.
机译:回收工业废料作为建筑材料,以减少普通硅酸盐水泥的产量,可以解决工业废料管理中出现的问题并提高环境可持续性。这项研究的重点是将木材生物质灰分与硅灰混合后掺入混合水泥中。在这项研究中,对高钙木灰(HCWA)和致密化硅粉(DSF)的物理和化学性质进行了全面表征。结果表明,HCWA是一种活性的水硬性粘结剂材料,因为它富含碳酸钙和生石灰含量。新鲜混凝土的性能表明,与纯水泥浆相比,HCWA-DSF掺和水泥浆具有略高的标准稠度和显着更长的凝固时间。此外,还研究了砂浆的坚硬混凝土性能,例如机械强度,吸水率,透气性和耐氯化物性能。对于含有DSF和HCWA的砂浆混合物,观察到砂浆的抗压强度和弯曲强度有所提高。观察到掺入HCWA的水泥替代品含量在4%至12%的范围内,再加上7.5%的DSF,可以显着提高所生产的砂浆混合物的耐氯性。

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