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一种环保型层状地质聚合物复合材料的物理性能研究

Research on the Physical Properties of an Eco-Friendly Layered Geopolymer Composite.

作者信息

Przybek Agnieszka, Łach Michał

机构信息

Faculty of Material Engineering and Physics, Cracow University of Technology, Jana Pawła II 37, 31-864 Cracow, Poland.

出版信息

Materials (Basel). 2024 Oct 9;17(19):4937. doi: 10.3390/ma17194937.

Abstract

Building envelopes with natural fibers are the future of sustainable construction, combining ecology and energy efficiency. The geopolymer building envelope was reinforced with innovative composite bars and two types of natural insulation (coconut mats and flax/hemp non-woven fabrics) were used as the core material. A 10 mol sodium hydroxide solution with an aqueous sodium silicate solution was used for the alkaline activation of the geopolymers. The purpose of this study was to confirm the feasibility of producing geopolymer composites with insulating layers made of renewable materials, which would have compressive strengths like those of C25/30-grade concrete and thermal conductivity coefficients like those of lightweight concrete. This publication presents the results of physicochemical tests on the base materials (oxide (XRF) and mineral phase (XRD) analysis as well as morphology and EDS) and studies the physical (density measurements), mechanical (flexural and compressive strength tests) and insulating properties (thermal conductivity measurements) of the finished sandwich partitions. The composites achieved a flexural strength of 7 MPa, a compressive strength of up to 30 MPa and a decrease in the thermal conductivity coefficient of about 60%. The research demonstrates contribution to sustainable construction by developing geopolymer composites, offering both structural integrity and superior thermal insulation. This innovation not only reduces reliance on traditional, carbon-intensive materials but also promotes the use of eco-friendly resources, significantly lowering the carbon footprint of construction. The integration of natural fibers into geopolymer matrices addresses key environmental concerns, advancing a rapidly growing field that aligns with global efforts toward energy efficiency, waste reduction, and circular economy principles in building design.

摘要

采用天然纤维的建筑围护结构是可持续建筑的未来,它将生态与能源效率相结合。地质聚合物建筑围护结构用创新型复合筋进行加固,并使用两种天然隔热材料(椰棕垫和亚麻/大麻无纺布)作为核心材料。用10摩尔的氢氧化钠溶液和硅酸钠水溶液对地质聚合物进行碱性活化。本研究的目的是确认生产具有由可再生材料制成的隔热层的地质聚合物复合材料的可行性,该复合材料应具有与C25/30级混凝土相当的抗压强度以及与轻质混凝土相当的导热系数。本出版物介绍了对基础材料进行的物理化学测试结果(氧化物(XRF)和矿物相(XRD)分析以及形态和能谱分析),并研究了成品夹心隔板的物理性能(密度测量)、力学性能(抗弯和抗压强度测试)和隔热性能(导热系数测量)。这些复合材料的抗弯强度达到7兆帕,抗压强度高达30兆帕,导热系数降低了约60%。该研究表明,通过开发地质聚合物复合材料为可持续建筑做出了贡献,既提供了结构完整性又具备卓越的隔热性能。这一创新不仅减少了对传统高碳材料的依赖,还促进了环保资源的利用,显著降低了建筑的碳足迹。将天然纤维融入地质聚合物基体解决了关键的环境问题,推动了一个快速发展的领域,该领域与全球在建筑设计中提高能源效率、减少废物和遵循循环经济原则的努力相一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6557/11477808/43509dfe9812/materials-17-04937-g001.jpg

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