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Optical Observations and Geochemical Data in Deep-Sea Hexa- and Octo-Coralla Specimens

机译:深海六方和八方-Coralla标本的光学观测和地球化学数据

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Coral skeletons are built by Ca-carbonate (calcite or aragonite) crystals that exhibit distinct morphological patterns and specific spatial arrangements that constitute skeletal microstructures. Additionally, the long-standing recognition that distinct coral species growing in similar conditions are able to record environmental changes with species-specific responses provides convincing evidence that, beyond the thermodynamic rules for chemical precipitation, a biological influence is at work during the crystallization process. Through several series of comparative structural and geochemical (elemental and isotopic) data, this paper aims to firmly establish the specific properties of the distinct major taxonomic units that are commonly gathered as deep-water ?¢????corals?¢???? in current literature. Moreover, taking advantage of recent micrometric and infra-micrometric observations, attention is drawn to the remarkable similarity of the calcareous material observed at the nanoscale. These observations suggest a common biomineralization model in which mineralogical criteria are not the leading factors for the interpretation of the geochemical measurements.
机译:珊瑚骨骼是由碳酸钙(方解石或文石)晶体构成的,这些晶体表现出明显的形态模式和构成骨骼微结构的特定空间排列。此外,长期以来的认识是,在相似条件下生长的独特珊瑚能够记录特定物种响应的环境变化,这提供了令人信服的证据,表明除了化学沉淀的热力学规则外,生物影响还在结晶过程中起作用。通过一系列比较的结构和地球化学(元素和同位素)数据,本文旨在牢固地建立通常作为深水“珊瑚”聚集的不同主要分类单元的特定特性。 ?在当前文献中。此外,利用最近的微米和红外线测量的观察结果,人们注意到在纳米级观察到的钙质材料的显着相似性。这些观察结果提出了一种常见的生物矿化模型,其中矿物学标准不是解释地球化学测量值的主要因素。

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