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Developing marble slurry as supplementary cementitious material through calcination: Strength and microstructure study

机译:通过煅烧开发大理石浆料作为补充水泥材料:强度和微观结构研究

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摘要

The production of cement concrete composites usually results in high emissions of CO2 which results in severe damage to environment. Therefore, investigations are required to study and report materials that can be used as environmentally friendly binders. The present study is aimed at investigating and improv-ing the supplementary cementitious behavior of marble slurry by calcination. The compressive strength, microstructure and physio-mechanical properties were investigated. The compressive strength results indicated that as compared to raw marble slurry paste the specimens fabricated with calcined marble slurry presented improved compressive strength. It was observed that up to 10% incorporation of cal-cined marble slurry resulted in almost 7% increase in 28 days compressive strength. The microstructure observations revealed that use of calcined marble slurry results in lower porosity and average pore diam-eter. The use of 10% calcined marble slurry resulted in 7.5% reduction of porosity. Moreover, the data obtained from Si-29 NMR spectra revealed that use of calcined marble slurry as cement replacement resulted in increased degree of hydration and chain length. Based on the results obtained up to 10% of calcined marble slurry can be used as supplementary cementitious material to develop environmentally friendly binary blended cement. In conclusion it can be stated that supplementary cementitious behavior of raw marble slurry can be enhanced by calcination. (C) 2021 Elsevier Ltd. All rights reserved.
机译:生产水泥混凝土复合材料通常会导致CO2这导致对环境的严重损害的高排放。因此,调查需要,可以用来作为环境友好的粘合剂研究和报告材料。本研究的目的是调查和煅烧即兴-ING大理石浆料的辅助胶凝行为。抗压强度,微观结构和物理 - 机械性能的影响。抗压强度结果表明,相比于原始大理石浆料粘贴与煅烧大理石浆料制造的试样呈现的改进的压缩强度。据观察,CAL-cined大理石浆料的高达10%的掺入导致了28天抗压强度近7%的增加。显微组织观察结果表明在较低的孔隙率和平均孔径直径-ETER在使用的焙烧大理石浆料的结果。使用10%的煅烧大理石浆料导致孔隙率的降低7.5%。此外,由Si-29 NMR光谱获得的数据表明,使用煅烧大理石浆料水泥置换导致加水和链长的增加的程度。基于所获得高达煅烧大理石浆料的10%的结果可被用作补充胶凝材料开发环保二进制混合水泥。总之,可以说是大理石原料浆的辅助胶凝行为可以通过煅烧得到增强。 (c)2021 elestvier有限公司保留所有权利。

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