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Physicochemical, mineralogical and microscopic evaluation of sustainable bricks manufactured with construction wastes

机译:用建筑垃圾制造的可持续砖的物理化学,矿物学和微观评估

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摘要

At an international level, enormous volumes of construction and demolition wastes are generated: 170 million tons/year in the USA, 500 million tons/year in the European Union (EU) and 12 million tons/year in Mexico. Alternative uses for these heterogeneous materials, such as the manufacture of sustainable bricks, are potential solutions to this growing environmental issue. Based on previous studies, and in compliance with Mexican standards, four different types of secondary\udmaterials were utilized in the composition of a sustainable brick matrix. Temperature and solar radiation used for drying purposes were determined, as well as weight loss, resistance and initial maximum absorption. In order to characterize the resulting matrix, observations were made with a scanning electron microscope, and the chemical composition of the samples was determined by detecting basic compounds using mapping through SEM-EDS microanalysis, connected to the SEM unit. Finally, thermogravimetric analyses were performed to correlate mechanical and chemical behavior, and resistance to high temperatures of the mixtures. The results obtained showed that all-in-one (AiO) is the most appropriate material for brick manufacturing, Opuntia ficus-indica mucilage improves physical properties, such as increased compressive strength and reduced water absorption, while wood residues, clay minerals and illite enhance mechanical properties.
机译:在国际层面上,产生了大量的建筑和拆除废物:美国每年1.7亿吨,欧洲联盟(EU)年5亿吨/年,墨西哥每年1200万吨。这些异质材料的替代用途,例如可持续砖的制造,是解决这一日益严重的环境问题的潜在解决方案。根据先前的研究并符合墨西哥标准,在可持续砖基体的组成中使用了四种不同类型的次要\ udmaterial。确定了用于干燥目的的温度和太阳辐射,以及重量损失,电阻和初始最大吸收量。为了表征所得基质,用扫描电子显微镜进行观察,并通过连接到SEM单元的SEM-EDS微量分析作图,通过检测碱性化合物确定样品的化学组成。最后,进行热重分析以关联机械和化学行为,以及混合物的耐高温性。获得的结果表明,多合一(AiO)是砖制造的最合适材料,仙人掌榕胶浆改善了物理性能,如增加了抗压强度和降低了吸水率,而木材残渣,粘土矿物和伊利石则增强了机械性能。

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