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多孔介质中因盐结晶造成的损伤。

Damage in porous media due to salt crystallization.

作者信息

Shahidzadeh-Bonn Noushine, Desarnaud Julie, Bertrand François, Chateau Xavier, Bonn Daniel

机构信息

Laboratoire Navier, UMR 8205, Université Paris-Est, 77420 Champs-sur-Marne, France.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Jun;81(6 Pt 2):066110. doi: 10.1103/PhysRevE.81.066110. Epub 2010 Jun 16.

Abstract

We investigate the origins of salt damage in sandstones for the two most common salts: sodium chloride and sulfate. The results show that the observed difference in damage between the two salts is directly related to the kinetics of crystallization and the interfacial properties of the salt solutions and crystals with respect to the stone. We show that, for sodium sulfate, the existence of hydrated and anhydrous crystals and specifically their dissolution and crystallization kinetics are responsible for the damage. Using magnetic resonance imaging and optical microscopy we show that when water imbibes sodium sulfate contaminated sandstones, followed by drying at room temperature, large damage occurs in regions where pores are fully filled with salts. After partial dissolution, anhydrous sodium sulfate salt present in these regions gives rise to a very rapid growth of the hydrated phase of sulfate in the form of clusters that form on or close to the remaining anhydrous microcrystals. The rapid growth of these clusters generates stresses in excess of the tensile strength of the stone leading to the damage. Sodium chloride only forms anhydrous crystals that consequently do not cause damage in the experiments.

摘要

我们研究了砂岩中两种最常见盐分(氯化钠和硫酸盐)造成盐害的根源。结果表明,观察到的两种盐分造成的损害差异与结晶动力学以及盐溶液和晶体相对于岩石的界面特性直接相关。我们发现,对于硫酸钠而言,水合晶体和无水晶体的存在,尤其是它们的溶解和结晶动力学是造成损害的原因。利用磁共振成像和光学显微镜,我们发现,当水侵入被硫酸钠污染的砂岩,随后在室温下干燥时,孔隙被盐分完全填充的区域会出现严重损害。部分溶解后,这些区域中存在的无水硫酸钠会导致硫酸盐水合相以簇状形式在剩余的无水微晶上或其附近迅速生长。这些簇的快速生长产生的应力超过了岩石的抗拉强度,从而导致损害。氯化钠仅形成无水晶体,因此在实验中不会造成损害。

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