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Fibrous Growth of Chloride Minerals on Diatomite Saturated with a Brine

机译:用盐水饱和硅藻土的抗氯化物矿物质的纤维生长

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One of the fundamental characteristics of diatomites is their structural porosity as it controls specific properties of these rocks and their possible industrial applications. The authors examined the interaction between natural diatomites (not calcinated) from Polish Carpathian Flysch Belt and a brine composed of the mixture of NaCl, KCl and MgCl_2*H_2O with the concentration 100 g/L each for 5 days. Blocks of diatomites immersed in the brine showed an uprising boundary of a moisturised rock after a 2-4 h. Then, after about 24 h salt efflorescences began to grow on their surfaces. SEM-EDS analyses have revealed two types of fibres on the block surfaces. One group is formed by long and thin, often strongly bent fibres. In the cross-section they are rounded or flatten (ribbons) or have more complex shapes. Their chemical composition indicates sylvine but with a considerable amount of sodium. The crystals of the second type are shorter and thicker, and their chemical composition indicates halite but with high amounts of potassium. The magnesium minerals was not stated. Inside the lower parts of diatomite blocks, pores are almost completely filled with halite, but in the upper parts of the blocks sylvine is the precipitate found in the pores. The habit of the efflorescent salts seem to be influenced by the size and shape of the diatomite porous structure. The spatial distribution of both salt types and their chemical compositions seem to be associated with selective absorption of ions by silica that forms the diatomite framework.
机译:硅藻土的基本特征之一是它们的结构孔隙率,因为它控制了这些岩石的特定性质及其可能的工业应用。作者检测了从波兰喀尔巴阡山卵巢的天然硅藻土(未煅烧)之间的相互作用,以及由NaCl,KCl和MgCl_2 * H_2O的混合物组成的盐水,浓度为100g / L 5天。浸入盐水中的硅藻土嵌段显示出2-4小时后透湿岩石的起义边界。然后,在大约24小时后,盐养殖开始在它们的表面上生长。 SEM-EDS分析显示块表面上的两种类型的纤维。一组由长而薄,通常强烈弯曲的纤维形成。在横截面中,它们是圆形或压平(带)或具有更复杂的形状。它们的化学成分表示Sylvine,但具有相当大量的钠。第二种类型的晶体较短,较厚,它们的化学组合物表示留胡子,但具有大量钾。镁矿物质未陈述。在硅藻土块的下部内部,孔隙几乎完全填充有留胡子,但在块的上部,Sylvine是孔中发现的沉淀物。卷水盐的习惯似乎受到硅藻土多孔结构的尺寸和形状的影响。盐类型及其化学成分的空间分布似乎与通过二氧化硅的离子的选择性吸收有关,其形成硅藻土框架。

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