偏高岭土
火山碎屑岩
火山
钾
抗压强度
多孔性
矿物学
材料科学
碱金属
固化(化学)
火山灰
溶解
复合材料
化学工程
地质学
冶金
化学
地球化学
有机化学
工程类
作者
Claudio Finocchiaro,Germana Barone,Paolo Mazzoleni,Cristina Leonelli,Ameni Gharzouni,Sylvie Rossignol
标识
DOI:10.1016/j.conbuildmat.2020.120095
摘要
The huge availability of volcanic deposits in Mt. Etna volcano and the wide use of volcanic materials as aggregates in local architecture encouraged us to apply them in alkaline environment to produce geopolymeric binders to restore historical buildings of Mt. Etna area. Two clusters of samples for each volcanic precursor (volcanic ash and ghiara paleo-soil) were produced, using 10 and 20% wt. of metakaolin and two different alkaline solutions based on sodium and potassium respectively. A comparative study was made in relation to activators used, focusing on evaluation of polycondensation step (in ATR); chemical and structural characterization (FT-IR); TGA analysis, qualitative XRD analysis and mechanical compressive test after 7 and 21 curing days. ATR results confirmed the occurrence of geopolymerization for all samples; FT-IR analysis showed a higher content of carbonates in potassium-samples, decreasing at increasing of metakaolin content. A low weight lost was recorded in consolidated samples, as well as a partial dissolution of volcanic phases. Higher mechanical compressive strengths for K-samples, reaching 89 MPa as highest value after 21 days, differently to sodium-samples (51 MPa) were recorded, reflecting the porosity of the different specimens.
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