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Recovery of Fatty Acids from Mineralogic Mars Analogs by TMAH Thermochemolysis for the Sample Analysis at Mars Wet Chemistry Experiment on the Curiosity Rover

机译:TMAH热化学法从矿物火星类似物中回收脂肪酸用于好奇号火星上火星湿化学实验的样品分析

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摘要

The Mars Curiosity rover carries a diverse instrument payload to characterize habitable environments in the sedimentary layers of Aeolis Mons. One of these instruments is Sample Analysis at Mars (SAM), which contains a mass spectrometer that is capable of detecting organic compounds via pyrolysis gas chromatography mass spectrometry (py-GC-MS). To identify polar organic molecules, the SAM instrument carries the thermochemolysis reagent tetramethylammonium hydroxide (TMAH) in methanol (hereafter referred to as TMAH). TMAH can liberate fatty acids bound in macromolecules or chemically bound monomers associated with mineral phases and make these organics detectable via gas chromatography mass spectrometry (GC-MS) by methylation. Fatty acids, a type of carboxylic acid that contains a carboxyl functional group, are of particular interest given their presence in both biotic and abiotic materials. This work represents the first analyses of a suite of Mars-analog samples using the TMAH experiment under select SAM-like conditions. Samples analyzed include iron oxyhydroxides and iron oxyhydroxysulfates, a mixture of iron oxides/oxyhydroxides and clays, iron sulfide, siliceous sinter, carbonates, and shale. The TMAH experiments produced detectable signals under SAM-like pyrolysis conditions when organics were present either at high concentrations or in geologically modern systems. Although only a few analog samples exhibited a high abundance and variety of fatty acid methyl esters (FAMEs), FAMEs were detected in the majority of analog samples tested. When utilized, the TMAH thermochemolysis experiment on SAM could be an opportunity to detect organic molecules bound in macromolecules on Mars. The detection of a FAME profile is of great astrobiological interest, as it could provide information regarding the source of martian organic material detected by SAM.
机译:火星“好奇号”流动站携带多种仪器有效载荷,以表征风神蒙斯沉积层中的宜居环境。这些仪器之一是火星样品分析(SAM),该仪器包含一个质谱仪,该质谱仪能够通过热解气相色谱质谱仪(py-GC-MS)检测有机化合物。为了鉴定极性有机分子,SAM仪器在甲醇(以下称为TMAH)中携带热化学试剂氢氧化四甲基铵(TMAH)。 TMAH可以释放结合在大分子中的脂肪酸或与矿物相相关的化学结合单体,并使这些有机物可通过气相色谱质谱法(GC-MS)进行甲基化检测。考虑到脂肪酸在生物和非生物材料中的存在,脂肪酸是一种含有羧基官能团的羧酸类型。这项工作代表了在类似SAM的条件下使用TMAH实验对一组火星模拟样品进行的首次分析。分析的样品包括羟基氧化铁和羟基氧化铁,氧化铁/羟基氧化铁和粘土的混合物,硫化铁,硅质烧结矿,碳酸盐和页岩。当有机物以高浓度或在现代地质系统中存在时,TMAH实验在类似SAM的热解条件下产生可检测的信号。尽管只有很少的模拟样品表现出很高的丰度和多种脂肪酸甲酯(FAME),但在大多数测试的模拟样品中都检测到了FAME。当利用TMAH在SAM上进行热化学实验时,它可能是检测结合在火星上大分子中的有机分子的机会。 FAME轮廓的检测具有重大的天体生物学意义,因为它可以提供有关SAM检测到的火星有机物质来源的信息。

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