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Salt bursting tests on volcanic tuff rocks from Mexico

机译:墨西哥火山凝灰岩的盐爆试验

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During the pre-colonial period all the architectural constructions of the Maya and the later Aztec culture were made from different types of rocks available in the nearby surroundings of the settlements. Later, the architecture characterizing the Spanish colonization utilized volcanic tuff rocks for ashlars and masonry facades. Volcanic tuffs were used in large quantities and are still the main natural building rock used in most of the country. Tuffs are mostly soft and porous rocks that can be easily cut and reworked. They are, however, very susceptible to the effects of weathering, especially the deterioration caused by salt crystallization. Seventeen volcanic tuff samples from Mexico used as natural building stones were studied. These tuffs show highly variable compositions and different porosities and textural properties as well as very different behaviors in regard to salt crystallization. The petrographic, petrophysical, mineralogical and geochemical properties of the 17 samples were analyzed before and after a large number of salt bursting tests in order to try and determine the main factors leading to the weathering caused by salt crystallization. Some factors appear to have a real importance in regard to the resistance against salt crystallization. Two of the most important are the water vapor diffusion (mu value) and the pore radii distribution; however, microporosity also becomes a relevant factor for rapid salt destruction if it reaches more than 50 % of the pore volume. All these effects related to the salt crystallization are dependent on the presence of water in any form, so the climatic conditions must also play a principal role.
机译:在前殖民时期,玛雅人的所有建筑结构和后来的阿兹台克文化都是由附近定居点周围可用的不同类型的岩石制成的。后来,具有西班牙殖民特色的建筑将火山凝灰岩用作方石和砖石外墙。火山凝灰岩被大量使用,仍然是该国大部分地区使用的主要天然建筑岩石。凝灰岩大多是柔软而多孔的岩石,很容易切割和重新加工。但是,它们非常容易受到风化的影响,特别是盐结晶引起的变质。研究了来自墨西哥的17个火山凝灰岩样品用作天然建筑石料。这些凝灰岩显示出高度可变的组成和不同的孔隙率和质地特性,以及关于盐结晶的非常不同的行为。在大量盐爆发试验之前和之后,分析了这17个样品的岩石学,岩石物理,矿物学和地球化学性质,以试图确定导致盐结晶引起风化的主要因素。在抗盐结晶性方面,某些因素似乎具有真正的重要性。最重要的两个是水蒸气扩散(μ值)和孔隙半径分布。但是,如果微孔达到孔体积的50%以上,那么微孔也将成为快速破坏盐分的重要因素。与盐结晶有关的所有这些影响都取决于任何形式的水的存在,因此气候条件也必须起主要作用。

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