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Pseudomorphic replacement of single calcium carbonate crystals by polycrystalline apatite

机译:多晶磷灰石对碳酸钙单晶的假晶置换

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摘要

During chemical weathering and natural hydrothermal reactions, apatite can form by replacing calcium carbonates. In hydrothermal experiments in which aragonite and calcite single crystals have been reacted with phosphate solutions, the carbonates are replaced by polycrystalline hydroxylapatite (HAP). In both cases the crystals have retained their overall morphology while their compositions have changed significantly. The HAP appears to have a crystallographic relationship to the parent carbonate crystals. The textural relationships are consistent with an interface-coupled dissolution-precipitation mechanism. Structural relationships and relative molar volumes and solubilities appear to be factors that greatly affect replacement reactions.
机译:在化学风化和自然水热反应过程中,磷灰石可以通过取代碳酸钙形成。在将文石和方解石单晶与磷酸盐溶液反应的水热实验中,碳酸盐被多晶羟基磷灰石(HAP)取代。在两种情况下,晶体都保留了其整体形态,而其组成却发生了显着变化。 HAP似乎与母体碳酸盐晶体具有晶体学关系。纹理关系与界面耦合的溶解-沉淀机制一致。结构关系以及相对摩尔体积和溶解度似乎是极大地影响置换反应的因素。

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