Abstract

Moisture expansion in natural building stones is considered one of the most important factors affecting their weathering and deterioration. The processes that may be responsible for the expansion under determinate relative humidity (hygric dilatation) and water-saturated conditions (hydric dilatation) are generally attributed to the presence of swellable clay minerals. In contrast to this assumption, our investigations show that moisture expansion also takes place in volcanic tuff building stones almost free from clay minerals. To provide a deeper understanding of the processes, swelling and deterioration were performed on 14 volcanic tuffs used as important building stones of different ages, compositions and weathering stages from Mexico, Germany and Hungary. The investigations undertaken include extensive chemical, petrophysical and fabric analyses. The samples show a wide range of effective porosity, microporosity, capillary water absorption, moisture expansion, and CEC values. High moisture expansion does not seem to depend on clay mineral content alone. We also observed that there is no significant effect on dilatation if clay minerals are present but only form a thin coat on the outer shell of bigger pores. Moreover, we identified a correlation between microporosity, average pore radius and moisture expansion. The investigations highlight the fact that moisture expansion cannot only be attributed to swellable clay minerals, and suggest that the presence and accumulation of micropores and their average radius and distribution play an important role for non-clay associated swelling intensity, which can most probably be attributed to the disjoining pressure.

Highlights

  • Volcanic rocks have been an important natural building material since the beginning of time

  • Their use varied from monumental sculptures in antique cultures to recent modern buildings all over the world. The reason these rocks are so appreciated as natural building stones is mainly due to three facts; firstly, because some of these rocks and, in particular, tuffs, are relatively soft and easy to work with. They are available worldwide, because tuff rocks are present in many places and all geological times; and thirdly, tuff rocks exist in a great assortment of colours, composition, grain size, sorting and textures, which makes these rocks very attractive for construction and artwork (Fig. 1)

  • At the same time, these characteristics cause tuffs to be less resistant to deterioration, if they are exposed to moisture and humidity (Steindlberger 2003; Ruedrich et al 2011; Timothy et al 2011)

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Summary

Introduction

Volcanic rocks have been an important natural building material since the beginning of time. TY (Aztec sculpture Tlatecuhtli, Templo Mayor, Mexico-City), f Chiluca, CH, and Cantera gris de los Remedios, GR (cathedral of Mexico-City), g Cantera Amarilla Tuff, CA (Santa Monica Church, Guadalajara/Mexico) block-sized clasts and lithics ( known as lapilli), as well as volcanic blocks and bombs, are embedded The arrangement between these tuff components and the lithology itself opens a very wide spectrum of porosities, very different fabrics (Fischer 1961; Le Maitre et al 2004) and normally large amounts of clay minerals in the matrix. Fourteen total volcanic tuffs were investigated in this study, while eight tuffs were investigated in greater detail because of their particular properties From these eight volcanites, four are from Mexico: Cantera Blanca Tuff (BP), Tenayocatetl Tuff (TY) Bufa Tuff (BT) and Cantera Amarilla Tuff (CA); three are from Germany: Habichtswald Tuff (HW), Rochlitz Tuff (RP) and Hilbersdorf Tuff (HD); and one from Hungary: Eger-Demjen Tuff (ED) Another six volcanites were investigated: Weibern Tuff (WB), Loseros Tuff (LS), Chiluca Tuff (CH), Gris de los Remedios Tuff (GR), Cantera Rosa Tuff (CR), and Cantera Formacion Tuff (CF)

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