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Pickeringite: A deleterious salt on buildings

机译:er石:建筑物上的有害盐

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Pickeringite, MgAl2(SO4)(4)22H(2)O, was observed as efflorescence at the church of Saints Peter and Paul in Largario (Switzerland). The spongy salt crusts formed directly on rusty, deeply weathered gneiss rich in mica. The building stones originate from rocks in the vicinity of the village. On outcrops, similar occurrences were discovered. Ferrous and pyritic gneiss exhibited efflorescences of gypsum, epsomite, potassium alum, and pickeringite in sheltered places. Based on these observations and the known conditions of formation, we conclude that pickeringite resulted as a secondary mineral from weathering of pyritic gneiss. Most likely, weathering happened in an environment where, among other ions, aluminium and magnesium were present, but calcium and carbonate were absent. Such conditions rarely occur. If our hypothesis was confirmed, the fact that an extremely acid, calcium- and carbonate-free weathering system evolves next to lime mortars and plasters would be very surprising. It would imply that restricted zones devoid of a buffering effect develop on a microscopic scale.
机译:在拉尔加里奥(瑞士)的Saints Peter和Paul教堂观察到Pickeringite MgAl2(SO4)(4)22H(2)O风化。海绵状盐皮直接在富含云母的生锈,风化的片麻岩上形成。建筑石块起源于村庄附近的岩石。在露头上,发现了类似的情况。亚铁和黄铁质片麻岩在避难处表现出石膏,eps石,钾明矾和pick石的风化。根据这些观察结果和已知的形成条件,我们得出结论,堇青石是黄铁矿片麻岩风化的次生矿物。风化最有可能发生在存在铝和镁等离子但不含钙和碳酸盐的环境中。这种情况很少发生。如果我们的假设得到证实,那么在石灰砂浆和灰泥旁边会形成无酸,无钙和无碳酸盐的耐候体系的事实将是非常令人惊讶的。这意味着没有缓冲作用的限制区将在微观尺度上发展。

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