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Investigation into Pozzolanic Activity Component of Basalt and Pumice

机译:玄武岩和浮石火山灰活性成分的研究

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To evaluate the feasibility of using basalt and pumice as pozzolanic materials in a cement-based material, this paper is focused on the pozzolanic activity component (PAC) of basalt and pumice. PAC was explored as a characteristic index of potential pozzolanicity to express the intrinsic capacity of pozzolans regardless of particle size and other external factors. PAC was calculated as the product of chemical composition (SiO_2+Al_2O_3+Fe_2O_3) content and amorphous phase content in rock; the former was analyzed using a wet chemical analysis, and the latter was determined by X-ray diffraction (XRD). Using chemical composition data, petrographic characteristics, powder XRD, and pozzolanic activity index data, it was summarized that both basalt and pumice had significant pozzolanicity and were suitable for use as supplementary cementitious materials. The relationship between the PAC and the pozzolanic activity index was evaluated through the ratio of mortar strengths achieved therewith. The results could be used to select basalt and pumice for use as pozzolans.
机译:为了评估在水泥基材料中将玄武岩和浮石用作火山灰材料的可行性,本文重点研究了玄武岩和浮石的火山灰活性成分(PAC)。 PAC被用作潜在火山灰的特征指标,以表达火山灰的内在能力,而与粒径和其他外部因素无关。 PAC计算为岩石中化学成分(SiO_2 + Al_2O_3 + Fe_2O_3)含量与非晶相含量的乘积。前者使用湿化学分析进行分析,后者通过X射线衍射(XRD)测定。使用化学成分数据,岩石学特征,粉末XRD和火山灰活性指数数据,可以得出结论,玄武岩和浮石均具有明显的火山灰度,适合用作辅助胶结材料。 PAC与火山灰活性指数之间的关系通过由此获得的灰浆强度的比率来评估。结果可用于选择玄武岩和浮石用作火山灰。

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