A multi-scale investigation on the influence of clay mineralogy on the pozzolanic activity of lime treated clays has been presented. Two clays of different mineralogy have been considered for this study, namely kaolin and bentonite. The time dependent mineralogical and microstructural changes induced by lime addition have beenmonitored at increasing curing time by means of X-ray diffraction (XRD), thermogravimetric analysis, 29Si NMR spectroscopy, Scanning electron microscopy (SEM) and nitrogen adsorption/desorption measurements. Different lime contents of the treated samples have been considered in order to highlight the ongoing of pozzolanic reactions. The timescale of chemical reactions taking place after the addition of limedepends on clay mineralogy. In the short term, flocculation phenomena due to the cation exchange reactions control the microstructural features of lime treated kaolin. The lowreactivity of kaolinite clay minerals to pozzolanic reactionswas detected as a delay in precipitation of new hydrated phases. The chemo-physical evolution of lime treated bentonite depends on the combined effect of cation exchange and pozzolanic reactionswhich developwith a comparable time scale. The results of micro-scale investigations were directly linked to the experimental evidences at volume scale of the samples, allowing an interpretation of the mechanical improvement of the treated clays in the short and long term as a function of the chemo-physical evolution of the system.

Multi-scale analysis and time evolution of pozzolanic activity of lime treated clays / Vitale, E.; Deneele, D.; Paris, M.; Russo, G.. - In: APPLIED CLAY SCIENCE. - ISSN 0169-1317. - 141:(2017), pp. 36-45. [10.1016/j.clay.2017.02.013]

Multi-scale analysis and time evolution of pozzolanic activity of lime treated clays

Vitale, E.
;
Russo, G.
2017

Abstract

A multi-scale investigation on the influence of clay mineralogy on the pozzolanic activity of lime treated clays has been presented. Two clays of different mineralogy have been considered for this study, namely kaolin and bentonite. The time dependent mineralogical and microstructural changes induced by lime addition have beenmonitored at increasing curing time by means of X-ray diffraction (XRD), thermogravimetric analysis, 29Si NMR spectroscopy, Scanning electron microscopy (SEM) and nitrogen adsorption/desorption measurements. Different lime contents of the treated samples have been considered in order to highlight the ongoing of pozzolanic reactions. The timescale of chemical reactions taking place after the addition of limedepends on clay mineralogy. In the short term, flocculation phenomena due to the cation exchange reactions control the microstructural features of lime treated kaolin. The lowreactivity of kaolinite clay minerals to pozzolanic reactionswas detected as a delay in precipitation of new hydrated phases. The chemo-physical evolution of lime treated bentonite depends on the combined effect of cation exchange and pozzolanic reactionswhich developwith a comparable time scale. The results of micro-scale investigations were directly linked to the experimental evidences at volume scale of the samples, allowing an interpretation of the mechanical improvement of the treated clays in the short and long term as a function of the chemo-physical evolution of the system.
2017
Multi-scale analysis and time evolution of pozzolanic activity of lime treated clays / Vitale, E.; Deneele, D.; Paris, M.; Russo, G.. - In: APPLIED CLAY SCIENCE. - ISSN 0169-1317. - 141:(2017), pp. 36-45. [10.1016/j.clay.2017.02.013]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/807327
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