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Alkali activation of compacted termite mound soil for eco-friendly construction materials

机译:生态型建筑材料压实白蚁土壤的碱活化

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摘要

This investigation prospects the feasibility of optimizing the mechanical behavior and dimensional stability of termite's mound soil through alkaline activation. The raw aluminosilicate (termites' soil) was used without any pre-thermal treatment and natural occurring potash was used as the alkaline activator. Different activation level and different initial curing temperature were adopted to examine the effect of the initial temperature and the activator concentration on the Alkali Activated Termite Soil (AATS). Similarly, Scanning Electron Microscopy (SEM)/Energy Dispersive X-ray Spectroscopy (EDS), X-ray Diffraction (XRD) and Fourier Transform Infra-Red Spectroscopy (FTIR) were conducted to characterize the microstructure, to determine the crystallinity of the constituents and to identify the functional groups present within the specimens. These characterizations were carried out on the specimens at 15 days after their moulding. The compressive strength was determined for 7, 15 and 90 days to illuminate the fundamental of the optimization process. Results showed that the optimal initial curing temperature was 60°C for the oven-dry regime at 3wt% activator with compressive strength of 2.56, 4.38 and 7.79 MPa at 7, 15 and 90 days respectively. From the mechanical performances results, the alkali stabilized termite's soil can be used as masonry elements predominantly submitted to compression. The repercussions of the results are analyzed for potential applications of the Alkaline Activation techniques as an environmental-friendly approach to obtain renewable and sustainable building materials at low cost with low energy consumption henceforth replicable in most of the regions.
机译:该调查前景前景通过碱性活化优化白蚁土墩土壤的力学行为和尺寸稳定性的可行性。使用原料硅铝酸盐(白蚁土壤)而无需任何预热处理,使用天然的钾肥作为碱性活化剂。采用不同的活化水平和不同的初始固化温度来检查初始温度和活化剂浓度对碱活化白蚁土壤(AATS)的影响。类似地,进行扫描电子显微镜(SEM)/能量分散X射线光谱(EDS),X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)以表征微观结构,以确定成分的结晶度并鉴定样本内存在的功能群。这些特征在模塑后15天在标本上进行。测定抗压强度7,15和90天,以照亮优化过程的基础。结果表明,在3wt%活化剂的烘箱干燥状态下,最佳初始固化温度为600℃,抗压强度为2.56,4.38和7.79MPa,分别为7,15和90天。从机械性能结果,碱稳定的白蚁的土壤可用作主要提交压缩的砌体元素。分析了结果的再影响,用于碱性活化技术的潜在应用,作为一种环保型方法,以便以低成本获得可再生和可持续建筑材料,在大部分地区可复制。

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