探索在环氧砂浆中将橄榄核粉末作为增强隔热性能的填料,以提高建筑施工的可持续性

Veronica D’Eusanio, A. Marchetti, Stefano Pastorelli, Michele Silvestri, Lucia Bertacchini, L. Tassi
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摘要

本文探讨了如何利用橄榄核粉末(OPP)作为一种有前途的资源来增强环氧砂浆的隔热性能。文章采用扫描电子显微镜(SEM)、热重分析和发射气体分析(TG-MS-EGA)以及近端分析等分析技术,对橄榄核粉的化学和物理特性进行了全面分析。在环氧砂浆基质中使用不同比例的传统无机填料、石英粉和 OPP 制备了环氧灌浆料实验样品。随着配方中 OPP 所占比例的增加,样品的微观结构逐渐变得多孔和不密实。因此,密度随着 OPP 含量的增加而降低。仅含有石英(样品 E)和仅含有 OPP(样品 A)作为填料的样品的 28 天抗压强度分别从 46 兆帕降至 12.8 兆帕。同样,抗折强度也从 35.2 兆帕降至 5.3 兆帕。导热系数从样品 E 的 0.3 W/mK 下降到样品 A 的 0.11 W/mK。因此,增加 OPP 的重量百分比可提高绝缘性能,同时降低机械电阻值。这项研究强调了 OPP 作为环氧砂浆中一种环保且热效率高的填料的潜力,从而促进了可持续的建筑实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring Olive Pit Powder as a Filler for Enhanced Thermal Insulation in Epoxy Mortars to Increase Sustainability in Building Construction
This article explores the use of olive pit powder (OPP) as a promising resource for enhancing the thermal insulation properties of epoxy mortars. A comprehensive analysis of the chemical and physical characteristics of OPP was conducted, employing analytical techniques including scanning electron microscopy (SEM), thermogravimetric analysis and emitted gas analysis (TG-MS-EGA), and proximal analysis. Experimental samples of epoxy grout were prepared by using different proportions of a conventional inorganic filler, quartz powder, and OPP within an epoxy mortar matrix. As the percentage of OPP in the formulation increased, the microstructure of the samples gradually became more porous and less compact. Consequently, there was a decrease in density with the increase in OPP content. The 28-day compressive strength decreased from 46 MPa to 12.8 MPa, respectively, in the samples containing only quartz (Sample E) and only OPP (Sample A) as a filler. Similarly, flexural strength decreased from 35.2 to 5.3 MPa. The thermal conductivity decreased from 0.3 W/mK in Sample E to 0.11 in Sample A. Therefore, increasing the %wt of OPP improved insulating properties while reducing the mechanical resistance values. This study highlights the potential of OPP as an environmentally friendly and thermally efficient filler for epoxy mortars, thereby promoting sustainable construction practices.
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