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首页> 外文期刊>Lethaia: An International Journal of Palaeontology and Stratigraphy >Diagenetic fate of bioapatite in linguliform brachiopods: multiple apatite phases in shells of Cambrian lingulate brachiopod Ungula ingrica (Eichwald)
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Diagenetic fate of bioapatite in linguliform brachiopods: multiple apatite phases in shells of Cambrian lingulate brachiopod Ungula ingrica (Eichwald)

机译:生物磷灰石的成岩命运在linguulisliors腕足动物中:寒武纪lingulate brachiopod ungula ingrica(eichwald)的壳中的多个磷灰石相(Eichwald)

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摘要

Fossil skeletal apatites vary in their composition and can yield mixed biochemical, environmental and diagenetic information. Thus, it is important to evaluate the diagenesis spatially inside the skeleton. We study the cross sections of shells of the Furongian lingulate brachiopod Ungula ingrica from Estonia using the Attenuated Total Reflectance - Fourier Transform Infrared (ATR-FTIR) microspectroscopic and energy dispersive spectroscopic (EDS) mapping and show for the first time that different structural laminae of the shell have different chemical compositions. Compact laminae are rich in PO43-, Na, Mg and poor in F and Ca. Porous (baculate) laminae are rich in carbonate anions, Ca and F, but contain less Na and Mg. The ATR-FTIR spectra show further differences in the nu(2) carbonate region, where the IR band at 872 cm(-1) in compact laminae is replaced by a strong band at 864 cm(-1) in baculate laminae. The changes in shell apatite suggest different origins of the apatite phases. Compact laminae are likely chemically less altered and could potentially carry more reliable palaeoenvironmental or geochemical information than the apatite in baculate laminae, which is mostly authigenic in its origin.
机译:化石骨骼猿的成分各不相同,可以产生混合的生化,环境和成岩剂信息。因此,重要的是在骨骼内部空间评估成岩作用。我们使用衰减的总反射率-Furongian lingulate Brachiopod ungula Ingrica的壳的横截面,使用衰减的总反射率-Fourier Transform Indrared(ATR -FTIR)微光谱和能量性色谱光谱光谱镜(EDS)映射(EDS)映射,并首次显示不同的结构层层的不同结构性层层。壳具有不同的化学成分。紧凑型薄片富含po43-,na,mg和f和ca中的较差。多孔(baculate)薄片富含碳酸盐阴离子,Ca和F,但含有较少的Na和Mg。 ATR-FTIR光谱在NU(2)碳酸盐区域显示出进一步的差异,在紧凑型薄片中,在872 cm(-1)处的IR带被Baculate Laminae的864 cm(-1)的强带代替。壳磷灰石的变化表明磷灰石相的不同起源。紧凑型薄片的化学变化可能较小,并且可能比Baculate Laminae中的磷灰石更可靠地携带更可靠的古环境或地球化学信息,而Baculate Laminae中的磷灰石的起源大多是正质的。

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