论文标题

金星云甲板中的磷酸气

Phosphine Gas in the Cloud Decks of Venus

论文作者

Greaves, Jane S., Richards, Anita M. S., Bains, William, Rimmer, Paul B., Sagawa, Hideo, Clements, David L., Seager, Sara, Petkowski, Janusz J., Sousa-Silva, Clara, Ranjan, Sukrit, Drabek-Maunder, Emily, Fraser, Helen J., Cartwright, Annabel, Mueller-Wodarg, Ingo, Zhan, Zhuchang, Friberg, Per, Coulson, Iain, Lee, E'lisa, Hoge, Jim

论文摘要

行星气氛中痕量的测量有助于我们探索与地球上不同的化学条件。我们最近的邻居维纳斯(Venus)的云甲板是温带但高酸的。我们报告了在金星大气中的明显存在磷酸(PH3)气体,任何磷都应采用氧化形式。来自JCMT和ALMA望远镜的单线毫米波光谱检测(质量高达〜15 sigma)没有其他合理的识别。可以推断出约20亿亿美元的大气PH3。在对稳态化学和光化学途径进行详尽的研究后,磷酸的存在无法解释,目前在金星大气,云,表面和地下或闪电,火山或陨石递送中,目前没有众所周知的非生物生产路线。磷酸可能源自未知的光化学或地球化学,或者,与生命的存在相比,地球上的磷蛋白的生物产生。应寻求其他PH3光谱特征,而原位云和表面采样可以检查该气体的来源。

Measurements of trace-gases in planetary atmospheres help us explore chemical conditions different to those on Earth. Our nearest neighbor, Venus, has cloud decks that are temperate but hyper-acidic. We report the apparent presence of phosphine (PH3) gas in Venusian atmosphere, where any phosphorus should be in oxidized forms. Single-line millimeter-waveband spectral detections (quality up to ~15 sigma) from the JCMT and ALMA telescopes have no other plausible identification. Atmospheric PH3 at ~20 parts-per-billion abundance is inferred. The presence of phosphine is unexplained after exhaustive study of steady-state chemistry and photochemical pathways, with no currently-known abiotic production routes in Venusian atmosphere, clouds, surface and subsurface, or from lightning, volcanic or meteoritic delivery. Phosphine could originate from unknown photochemistry or geochemistry, or, by analogy with biological production of phosphine on Earth, from the presence of life. Other PH3 spectral features should be sought, while in-situ cloud and surface sampling could examine sources of this gas.

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