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Formation of Thiophene under Simulated Volcanic Hydrothermal Conditions on Earth—Implications for Early Life on Extraterrestrial Planets?

机译:模拟火山水热条件下形成噻吩对外部外星围的早期生命的影响吗?

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摘要

Thiophene was detected on Mars during the Curiosity mission in 2018. The compound was even suggested as a biomarker due to its possible origin from diagenesis or pyrolysis of biological material. In the laboratory, thiophene can be synthesized at 400 °C by reacting acetylene and hydrogen sulfide on alumina. We here show that thiophene and thiophene derivatives are also formed abiotically from acetylene and transition metal sulfides such as NiS, CoS and FeS under simulated volcanic, hydrothermal conditions on Early Earth. Exactly the same conditions were reported earlier to have yielded a plethora of organic molecules including fatty acids and other components of extant metabolism. It is therefore tempting to suggest that thiophenes from abiotic formation could indicate sites and conditions well-suited for the evolution of metabolism and potentially for the origin-of-life on extraterrestrial planets.
机译:在2018年的好奇使命期间在火星上检测到噻吩。甚至认为该化合物作为生物标志物,由于其可能的成岩作用或生物材料热解。在实验室中,通过在氧化铝上反应乙炔和硫化氢在400℃下可以在400℃下合成噻吩。我们在此表明​​,噻吩和噻吩衍生物也从乙炔和过渡金属硫化物如NIS,COS和FES在早期地球上的水热条件下生成无生物地形成。提前报道了恰好相同的条件,从而产生了一种有机分子,包括脂肪酸和产物的其他组分。因此,诱人旨在表明来自非生物形成的噻吩可以表明遗址和条件非常适合新陈代谢的演变,并且可能在外星行星上的生命起源。

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