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Blended Cement Mixed with Basic Oxygen Steelmaking Slag (BOF) as an Alternative Green Building Material

机译:混合水泥与碱性氧气炼金制品(BOF)混合为替代的绿色建筑材料

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摘要

Portland cement tends to exhibit negative environmental impacts; thus, it is required to find measures that will improve its green credentials. In this study, we report a blended Portland slag cement as an alternative environmentally-friendly building material in order to reduce the total carbon footprint resulted from the production of the ordinary Portland cement (OPC), which may resolve the environmental issues associated with carbon dioxide emissions. The ordinary Portland cement type I enhanced by basic oxygen steelmaking slag (BOF) is produced and casted into cubic and beam-like samples for the compressive and three-point bending tests, and the compressive and flexural strengths are experimentally measured. Numerical simulations are conducted to compare with the experimental result and satisfactory agreements are obtained. X-ray diffraction (XRD) investigations and porosity tests are then carried out using the semi-adiabatic calorimetry, which indicates that 5% BOF is the optimal ratio to accelerate the hydration process while increasing the amount of hydration products, especially at the early curing age of 3 days. Scanning electron microscope (SEM) images further indicate that BOF can be used to prevent the development of microcracks while mitigating their propagation within cement mortar. Our study indicates that the compressive strength of OPC can be critically increased by BOF at the relatively low concentrations of 5%. The blended slag cement reported in this paper provides advanced understanding on the green building material that uses byproduct wastes for the mechanical and electrical performance.
机译:波特兰水泥往往表现出负面的环境影响;因此,需要找到将改善其绿色凭证的措施。在这项研究中,我们将混合的波特兰渣水泥作为替代环保型建筑材料举报,以减少普通波特兰水泥(OPC)生产的总碳足迹,这可能解决与二氧化碳相关的环境问题排放。由基本氧气炼铁渣(BOF)增强的普通波特兰水泥型,并浇铸成用于压缩和三点弯曲试验的立方体和光束样样品,并通过实验测量压缩和弯曲强度。进行数值模拟以与实验结果进行比较,获得令人满意的协议。然后使用半绝热量热法进行X射线衍射(XRD)研究和孔隙率试验,表明5%BOF是加速水合过程的最佳比例,同时增加水合产物的量,特别是在早期固化。年龄3天。扫描电子显微镜(SEM)图像进一步表明BOF可用于防止微裂纹的发育,同时减轻其在水泥砂浆内的繁殖。我们的研究表明,OPC的抗压强度可以在相对低浓度的5%处通过BOF来统治性增加。本文报道的混纺渣水泥在绿色建筑材料上提供了先进的理解,该材料用副产品废物用于机械和电气性能。

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