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Constraining the preservation of organic compounds in Mars analog nontronites after exposure to acid and alkaline fluids

机译:在暴露于酸和碱性液体后约束火星模拟非巨石中有机化合物的保存

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摘要

The presence of organic matter in lacustrine mudstone sediments at Gale crater was revealed by the Mars Science Laboratory Curiosity rover, which also identified smectite clay minerals. Analogue experiments on phyllosilicates formed under low temperature aqueous conditons have illustrated that these are excellent reservoirs to host organic compounds against the harsh surface conditions of Mars. Here, we evaluate whether the capacity of smectites to preserve organic compounds can be influenced by a short exposure to different diagenetic fluids. We analyzed the stability of glycine embedded within nontronite samples previously exposed to either acidic or alkaline fluids (hereafter referred to as “treated nontronites”) under Mars-like surface conditions. Analyses performed using multiple techniques showed higher photodegradation of glycine in the acid-treated nontronite, triggered by decarboxylation and deamination processes. In constrast, our experiments showed that glycine molecules were preferably incorporated by ion exchange in the interlayer region of the alkali-treated nontronite, conferring them a better protection against the external conditions. Our results demonstrate that smectite previously exposed to fluids with different pH values influences how glycine is adsorbed into their interlayer regions, affecting their potential for preservation of organic compounds under contemporary Mars surface conditions.
机译:火星科学实验室流动站揭示了大谷山谷山脉泥岩沉积物中有机物质的存在,也发现了蒙脱石矿物质。在低温含水条件下形成的文学的模拟实验表明,这些是优异的储存器,以抵御火星的苛刻表面条件的宿主的有机化合物。在这里,我们评估是否可以通过短暂暴露于不同的成岩流体的短暂暴露的蒙脱石的能力。我们分析了嵌入的甘氨酸内嵌入的甘氨酸的稳定性,以前暴露于酸性或碱性流体(以下称为“处理的非巨石”)在火星样表面条件下。使用多种技术进行的分析表明,在酸处理的非旋流岩中甘氨酸的光降解,由脱羧和脱氨环化方法引发。在约束中,我们的实验表明,甘氨酸分子优选通过离子交换在碱处理的非硬岩的中间区间中掺入,赋予它们更好地保护外部条件。我们的结果表明,先前暴露于具有不同pH值的液体的蒙脱石影响甘氨酸如何吸附到其层间区域中,影响其在当代火星表面条件下保存有机化合物的潜力。

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