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Milling time influence of ultrafine treated rice husk ash to pozzolanic reactivity in portlandite

机译:超细处理稻壳磨削碾磨时间对波特兰石油公司波佐反应性的影响

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An investigation of pozzolanic reactivity of ultrafine treated rice husk ash (UFTRHA) was evaluated using electrical conductivity measurement. This paper is aimed to identify the effect of grinding duration via high speed milling process to the pozzolanic reactivity level. This pozzolanic reactivity assessment was completed by incorporating UFTRHA powder samples prepared at several milling duration in saturated portlandite solution at 40°C. Structure of these mesoporous substances after grinding process were captured using Field Emission Scanning Electron Microscopy (FESEM) accordingly. Based on the findings, experimental results analysis reveal that UFTRHA ground at 15min has highest pozzolanic reactivity level among all specimens. Hence, short period of grinding is sufficient to attain huge amount of specific surface area (SSA) by using high speed milling process. Excessive grinding aid i.e. 60 min produced lower specific surface area hence lower pozzolanic reactivity level. Larger amount of specific surface area leads towards vigorous and higher pozzolanic reactivity.
机译:使用电导率测量评价超细处理水稻壳灰(UFTRHA)的Pozzolanic反应性的研究。本文旨在通过高速铣削过程识别研磨持续时间与波兹托烷反应性水平的影响。通过在40℃下掺入在饱和的波特兰溶液中的几个研磨持续时间下制备的UFTRHA粉末样品完成了这种波佐晶反应性评估。使用现场发射扫描电子显微镜(FESEM)捕获研磨过程后这些介孔物质的结构。基于调查结果,实验结果分析表明,15分钟的UFTRHA地面具有最高的Pozzolanic反应性水平。因此,通过使用高速铣削过程,短时间足以获得大量的比表面积(SSA)。过度研磨辅助辅助装置,即60分钟产生的较低的比表面积,因此降低了较低的波佐反应性水平。较大量的比表面积导致有剧烈且高的波佐酸反应性。

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