Development and characterization of eco-friendly earth bricks stabilized with date palm waste fibers for sustainable construction

Youssef Khrissi , Amine Tilioua
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Abstract

Local ecological materials in construction represent a fundamental step toward creating living environments that combine environmental sustainability, energy efficiency, and occupant comfort. It is part of an organizational context that encourages the adoption of these methods and processes. This study aims to improve the use of locally available materials, particularly soil and agricultural residues, in the Errachidia region (southeastern Morocco). In particular, date palm waste fiber, a widely available agrarian by-product, was incorporated into the soil to develop six different types of stabilized earth bricks with fiber contents of 0 %, 1 %, 2 %, 3 %, 4 %, and 5 %. The aim was to evaluate their thermophysical, mechanical, and capillary water absorption properties. Thermal properties were determined using the highly insulated house method (PHYWE), a specific methodology for assessing thermal properties in a controlled, highly insulated environment. In addition, mechanical measurements were carried out to assess compressive and flexural strength. The results obtained showed that the addition of date palm waste fibers to brick based on soil improves the thermal resistance of the bricks. Flexural and compressive strength increased up to 3 % of fiber content, while a reduction was observed above this value. The 3 % fiber content is optimal for the stabilization of brick based on soil. Then, the increase of fiber content in bricks resulted in an increase in water absorption with a decrease in the density of the bricks. Physical and chemical characterization (XRD, FTIR, SEM, and EDX) of the soil and date palm waste fibers was carried out with geotechnical soil tests. The results obtained showed that the soil studied satisfies the minimum requirements for the production of bricks stabilized by fibers. These bricks can be considered an alternative to conventional bricks in ecological construction.
可持续建筑用椰枣废纤维稳定的环保土砖的开发与表征
建筑中的当地生态材料代表了创造环境可持续性、能源效率和居住者舒适度相结合的生活环境的基本步骤。它是鼓励采用这些方法和过程的组织环境的一部分。这项研究的目的是在erachidia地区(摩洛哥东南部)改进对当地可用材料的利用,特别是土壤和农业残留物。特别是,将广泛使用的农业副产品枣椰树废纤维掺入土壤中,开发出纤维含量为0 %,1 %,2 %,3 %,4 %和5 %的六种不同类型的稳定土砖。目的是评价它们的热物理、力学和毛细吸水性能。热性能是使用高度隔热房屋法(PHYWE)来确定的,这是一种在受控的高度隔热环境中评估热性能的特定方法。此外,进行了机械测量,以评估抗压和弯曲强度。结果表明,在土基砖中添加椰枣废纤维,可以提高砖的耐热性。弯曲和抗压强度增加到纤维含量的3 %,而在此值以上观察到降低。3 %的纤维含量对土基砖的稳定效果最佳。然后,砖中纤维含量的增加导致砖的吸水率增加,而砖的密度降低。通过土工土试验对土壤和枣椰树废纤维进行了理化表征(XRD、FTIR、SEM、EDX)。结果表明,所研究的土壤满足生产纤维稳定砖的最低要求。这些砖可以被认为是传统砖在生态建设中的替代品。
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CiteScore
2.60
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