Mora-Ortiz René Sebastián, Del Angel-Meraz Ebelia, Díaz Sergio Alberto, Magaña-Hernández Francisco, Torres-Hernández Jazmín Del Rosario, Castro Mayra Agustina Pantoja
División Académica de Ingeniería y Arquitectura (DAIA), Universidad Juárez Autónoma de Tabasco, Carretera Cunduacán-Jalpa de Méndez km. 1, Cunduacán 86690, Tabasco, Mexico.
Materials (Basel). 2024 Nov 14;17(22):5571. doi: 10.3390/ma17225571.
This research presents an experimental analysis of the mechanical behavior of masonry mortars incorporating disposable face masks (FMs) cut into two different sizes. The objective is to provide experimental data contributing to the consolidation of recycling FMs in mortar mixtures. To achieve this, two types of mixtures were prepared: one with strips of 3 × 3 mm and another with strips of 3 × 10 mm. These FM strips were added in different proportions by the volume of mortar (0%, 0.2%, 0.5%, 0.8%, 1.0%, and 1.5%). In all mortars, the dry bulk density, volume of permeable voids, and water absorption, as well as compressive, flexural, and tensile strengths, were evaluated after a 28-day water immersion curing period. Additionally, two essential properties in masonry mortars were analyzed: air content and shear bond strength. The results indicated that, for both strip sizes, adding FMs up to 0.2% positively affected the flexural and tensile strengths; concerning control mortar, increases of 6% and 1.4%, were recorded, respectively, for the longer strips. At this percentage, the density, air content, and compressive and shear bond strengths are not significantly affected. The results demonstrated that incorporating FMs into mortar mixtures is a promising avenue for sustainable recycling and helps reduce microplastic environmental contamination.
本研究对掺入切成两种不同尺寸的一次性口罩(FMs)的砌筑砂浆的力学性能进行了实验分析。目的是提供实验数据,以促进FMs在砂浆混合物中的回收利用。为实现这一目标,制备了两种类型的混合物:一种含有3×3毫米的条带,另一种含有3×10毫米的条带。这些FM条带按砂浆体积的不同比例添加(0%、0.2%、0.5%、0.8%、1.0%和1.5%)。在所有砂浆中,经过28天的水浸养护期后,评估了干堆积密度、可渗透孔隙体积、吸水率以及抗压、抗折和抗拉强度。此外,还分析了砌筑砂浆中的两个基本性能:含气量和剪切粘结强度。结果表明,对于两种条带尺寸,添加高达0.2%的FMs对抗折和抗拉强度有积极影响;与对照砂浆相比,较长条带的抗折和抗拉强度分别提高了6%和1.4%。在此百分比下,密度、含气量以及抗压和剪切粘结强度均未受到显著影响。结果表明,将FMs掺入砂浆混合物是可持续回收利用的一个有前景的途径,有助于减少微塑料对环境的污染。