首页> 外文会议>Society of Photo-Optical Instrumentation Engineers Conference on Instruments, Methods, and Missions for the Investigation of Extraterrestrial Microorganisms >Polycyclic aromatic hydrocarbons (PAHs) in Antarctic Martian meteorites, carbonaceous chondrites, and polar ice
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Polycyclic aromatic hydrocarbons (PAHs) in Antarctic Martian meteorites, carbonaceous chondrites, and polar ice

机译:南极火星陨石的多环芳烃(PAHS),碳质心脏和极性冰

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Recent analyses of the carbonate globules present in the Martian meteorite ALH84001 have detected polycyclic aromatic hydrocarbons (PAHs) at the ppm level. The distribution of PAHs observed in ALH84001 was interpreted as being inconsistent with a terrestrial origin and were claimed to be indigenous to the meteorite, perhaps derived from an ancient martian biota. We have examined PAHs in the Antarctic shergottite EETA79001, which is also considered to be from Mars, as well as several Antarctic carbonaceous chondrites. We have found that many of the same PAHs detected in the ALH84001 carbonate globules are present in Antarctic carbonaceous chondrites and in both the matrix and carbonate (druse) component of EETA79001. We also investigated PAHs in polar ice and found that carbonate is an effective scavenger of PAHs in ice meltwater. Moreover, the distribution of PAHs in the carbonate extract of Antarctic Allan Hills ice is remarkably similar to that found in both EETA79001 and ALH84001. The reported presence of L-amino acids of apparent terrestrial origin in the EETA79001 druse material suggests that this meteorite is contaminated with terrestrial organics probably derived from Antarctic ice meltwater that had percolated through the meteorite. Our data suggests that the PAHs observed in both ALH84001 and EETA79001 are derived from either the exogenous delivery of organics to Mars or extraterrestrial and terrestrial PAHs present in the ice meltwater or, more likely, from a mixture of these sources. It would appear that PAHs are not useful biomarkers in the search for extinct or extant life in Mars.
机译:Martian Meteorite alh84001中存在的碳酸盐球的最近分析在PPM水平下检测到多环芳烃(PAH)。在alh84001中观察到的PAHs的分布被解释为与陆地起源不一致,并声称是陨石的土着,也许来自古老的火星生物群。我们在南极Shercottites eeta79001中审查了PAHS,这也被认为是来自火星,以及几种南极碳质碳质心脏。我们发现,在甲炔碳酸盐球中检测到的许多相同的PAHs存在于南极碳质包围和eeta79001的基质和碳酸酯(Druse)组分中存在。我们还在极地冰上调查了PAHS,发现碳酸盐是冰熔融水中PAH的有效清除剂。此外,南极艾伦山地冰碳酸盐提取物中PAHS的分布非常类似于eeta79001和alh84001中的发现。 eeta79001 Druse材料中表观陆地源的L-氨基酸的存在表明,这种陨石被可能来自陨石渗透的南极冰融水的陆地有机物污染。我们的数据表明,在alh84001和eeta79001中观察到的PAHs源自有机物对冰融水中存在的外源性或陆地PAHs,或者更可能从这些来源的混合物中衍生出来。似乎PAHS在寻找火星中的灭绝或现存的生活中没有有用的生物标志物。

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