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The geology of roofing slate

机译:屋顶板岩的地质

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This paper reviews the geological factors linked to the quarrying and quality of roofing slate deposits, and gives recent research results on the loss of fissility by dewatering, and the oxidation of iron sulphides. Mineralogy, resulting from the original protolith composition and the metamorphic grade, controls the colour, brightness and durability of slate tiles. The microtexture of the rock mainly controls the split fitness of slate (fissility). The structure (folding, slaty cleavage development, S_0-S_1 angle, lack of crenulation cleavage and kink-bands, joints and faults) controls the exploitability. Additional factors, such as bed thickness and changes in facies are also important. Both very cold environments, giving frost, and arid conditions, drying the rock enough to remove water, produce a loss of fissility in slate. Ostwald-ripening by dewatering and some collapse of the crystallographic structure of phyllosilicates cause the loss. A mineralogical study of the iron sulphides in some Spanish slate (pyrite, pyrrhotite, marcasite), encompassing crystal habit and size, and their biochemical alteration processes (stain spots), allow the oxidation behaviour of different slates to be predicted.
机译:本文回顾链接到采石,板岩存款品质地质因素,并通过脱水给出了分裂性的丧失最近的研究成果,以及硫化铁的氧化。矿物学,从原来的原岩组合物和变质程度得到,控制石板瓦片的色彩,亮度和耐用性。岩石的微观主要控制板岩(分裂性)的分裂健身。所述结构(折叠,板块解理发展,S_0-S_1角度,缺乏褶劈理和扭结带,关节和故障)控制可利用性。其他因素,诸如床的厚度和在相变化也很重要。这两个非常寒冷的环境,给霜冻,干旱条件下,干燥岩石足以除去水分,产生分裂性的在石板的损失。通过脱水奥斯特瓦尔德熟和页硅酸盐的晶体结构的一些崩溃造成的损失。在一些西班牙板岩(黄铁矿,磁黄铁矿,白铁矿)的铁硫化物的矿物学研究中,包含晶体习性和尺寸,并且它们的生化改变过程(染色点),允许要被预测不同石板的氧化行为。

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