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Fluid Permeability of Ground Steel Slag-Blended Composites Evaluated by Pore Structure

机译:通过孔结构评价地钢矿弹混合物的流体渗透性

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The resource utilization of steel slag has attracted wide attention. In the present work, the pore structure of cement paste with and without ground basic oxygen furnace slag (BOFS) up to 180 days was investigated by mercury intrusion porosimetry. Permeability was evaluated from the tested pore structure. Results indicate that the porosity, critical pore radius, pore-throat radius, and permeability are increased with the BOFS content and levels off after 28 days. Lower gel porosity and higher coarse capillary porosity were observed in BOFS-blended composites. The calculated permeability (around 0.30–7.49?×?10?19?m2) based on the pore structure agrees well with the range of reported experimental measurements. Well-correlated linear and power-law relationship was noticed between permeability and porosity and characteristic pore radius, respectively.
机译:钢渣的资源利用引起了广泛的关注。在目前的工作中,通过汞侵入孔隙测定法研究了高达180天的水泥膏的孔隙结构,含有底碱性氧气炉渣(BOF)。从测试的孔结构评价渗透性。结果表明,孔隙率,临界孔半径,孔径半径和渗透率随BOF含量和28天后脱落。在BOFS混合复合材料中观察到较低的凝胶孔隙率和较高的粗毛细孔孔隙。基于孔隙结构的计算渗透率(约0.30-7.49?×10?19?19?19×m 2)与报道的实验测量的范围相当良好。在渗透性和孔隙率和特征孔半径之间发现了良好相关的线性和动力法关系。

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