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Spectral features of biogenic calcium carbonates and implications for astrobiology

机译:生物碳酸钙的光谱特征及其对天体生物学的影响

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The ability to discriminate biogenic from abiogenic calcium carbonate (CaCO_3) would be useful in the search for extant or extinct life, since CaCO_3 can be produced by both biotic and abiotic processes on Earth. Bioprecipitated CaCO_3 material was produced during the growth of heterotrophic microbial isolates on medium enriched with calcium acetate or calcium citrate. These biologically produced CaCO_3, along with natural and synthetic non-biologically produced CaCO_3 samples, were analysed by reflectance spectroscopy (0.35-2.5 μm), Raman spectroscopy (532 and 785 nm), and laser-induced fluorescence spectroscopy (365 and 405 nm excitation). Optimal instruments for the discrimination of biogenic from abiogenic CaCO_3 were determined to be reflectance spectroscopy, and laser-induced fluorescence spectroscopy. Multiple absorption features in the visible light region occurred in reflectance spectra for most biogenic CaCO_3 samples, which are likely due to organic pigments. Multiple fluorescence peaks occurred in emission spectra (405 nm excitation) of biogenic CaCO_3 samples, which also are best attributed to the presence of organic compounds; however, further analyses must be performed in order to better determine the cause of these features to establish criteria for confirming the origin of a given CaCO_3 sample. Raman spectroscopy was not useful for discrimination since any potential Raman peaks in spectra of biogenic carbonates collected by both the 532 and 785 nm lasers were overwhelmed by fluorescence. However, this also suggests that biogenic carbonates may be identified by the presence of this organic-associated fluorescence. No reliable spectroscopic differences in terms of parameters such as positions or widths of carbonate-associated absorption bands were found between the biogenic and abiogenic carbonate samples. These results indicate that the presence or absence of organic matter intimately associated with carbonate minerals is the only potentially useful spectral discriminator for the techniques that were examined, and that multiple spectroscopic techniques are capable of detecting the presence of associated organic materials. However, the presence or absence of intimately associated organic matter is not, in itself, an indicator of biogenicity.
机译:区分生物源性和非生物源性碳酸钙(CaCO_3)的能力将有助于寻找现存或已灭绝的生命,因为CaCO_3可以由地球上的生物过程和非生物过程共同产生。在富含乙酸钙或柠檬酸钙的培养基上异养微生物分离株的生长过程中产生了生物沉淀的CaCO_3材料。这些生物产生的CaCO_3,以及天然和合成的非生物产生的CaCO_3样品,通过反射光谱(0.35-2.5μm),拉曼光谱(532和785 nm)和激光诱导的荧光光谱(365和405 nm激发)进行分析。 )。确定从生源性CaCO_3鉴别生物源性的最佳手段是反射光谱法和激光诱导荧光光谱法。大多数生物型CaCO_3样品的反射光谱中都有可见光区域的多重吸收特征,这很可能是有机颜料引起的。在生物型CaCO_3样品的发射光谱中(405 nm激发)出现多个荧光峰,这也最好归因于有机化合物的存在。但是,必须进行进一步的分析,以便更好地确定这些特征的原因,以建立确认给定CaCO_3样品来源的标准。拉曼光谱法不能用于判别,因为在532和785 nm激光收集的生物碳酸盐的光谱中,任何潜在的拉曼峰都被荧光所淹没。但是,这也表明可以通过这种有机相关荧光的存在来鉴定生物碳酸盐。在生物碳酸盐和非碳酸盐碳酸盐样品之间,在参数方面(例如与碳酸盐相关的吸收带的位置或宽度),没有可靠的光谱差异。这些结果表明与碳酸盐矿物紧密相关的有机物的存在或缺失是所检查技术的唯一潜在有用的光谱鉴别器,并且多种光谱技术能够检测相关的有机材料的存在。但是,是否存在紧密相关的有机物本身并不是生物成因的指标。

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