在新泽西州民宅发现的陨石中检测出外星化学物质
Alien World Chemistry Found Inside Meteorite That Struck New Jersey Home

原始链接: https://www.seti.org/news/alien-world-chemistry-found-inside-meteorite/

近期对希尔斯伯勒(Hillsborough)陨石的分析,为生命基石如何抵达早期地球提供了新证据。由搜寻地外文明研究所(SETI Institute)和日本海洋研究开发机构(JAMSTEC)等专家组成的国际团队研究发现,该陨石含有多种可溶性有机化合物,其中包括氨基酸。 研究表明,这些分子很可能是在陨石母体内的卤水化学作用下形成的。由于盐水环境能使磷酸盐保持可溶性并催化矿物质与有机物之间的反应,从而为必需的前生物化合物的形成创造了有利环境。希尔斯伯勒陨石显示出明显的流水改造迹象,这支持了碳质球粒陨石作为生命起源所需复杂有机物质载体的理论。通过研究这些来自太空的物质,科学家们正更清晰地了解地球生物进化前原始的化学过程。

Hacker News新内容 | 往期 | 评论 | 提问 | 展示 | 招聘 | 提交登录 在新泽西州民宅中发现陨石内含外星世界化学物质 (seti.org) 9 分,由 spzx 发布于 2 小时前 | 隐藏 | 往期 | 收藏 | 1 条评论帮助 ButlerianJihad 14 分钟前 [–] 真正值得称道的是,这块巨大的碎片竟恰好落在一位敏锐且准备充分的人家中:他随即使用一次性手套和铝箔纸,将陨石碎片放入玻璃罐中,保护并记录了整个现场。 对于陨石撞击,我可以想到各种不同的反应,但连 NASA 都在称赞这个人及其敏锐的思维。回复 考虑申请 YC 2026 年秋季批次!申请截止日期为 7 月 27 日。 指南 | 常见问题 | 列表 | API | 安全 | 法律 | 申请 YC | 联系方式 搜索:
相关文章

原文

The high concentration of salt in briny fluids can potentially create molecules crucial to life on Earth. Brines allow phosphate to remain in solution and can catalyze chemical reactions between organics and precipitate minerals.

“Isotope studies of carbon and nitrogen suggest that primitive carbonaceous chondrites, including CM-types, delivered organic matter to the early Earth,” said cosmochemist Queenie Chan of Royal Holloway University of London, England, and biogeochemist Nana Ogawa of the Biogeochemistry Research Center at the Japan Agency for Marine-Earth Science and Technology. "The Hillsborough meteorite contained 1.8% by weight of carbon and 0.07% of nitrogen, and had carbon and nitrogen isotopes typical for CM-type meteorites."

The meteorite contained a wide variety of soluble organic compounds, and its compositional range confirms that the Hillsborough meteorite was more altered by water than most other CM-type meteorites.

"A high fraction of compounds were the product of organic chemistry with minerals," said organic mass spectrometry specialist Phil Schmitt-Kopplin of Technical University Munich. "We do not know if these magnesium organic compounds were contributed by brine chemistry or were simply left over from earlier impact shock processes."

In living organisms, organo-metallic compounds are found in blood and used in photosynthesis. Among the soluble organic compounds were also many amino acids, similar to those found in more moderately altered CM2 chondrites.

Astrobiologist Danny Glavin of NASA's Goddard Space Flight Center in Greenbelt, Maryland, and his team in Goddard’s Astrobiology Analytical Lab, concluded that the delivery of amino acids, carboxylic acids, and other soluble organic molecules by CM-type bodies may have contributed to the prebiotic organic inventory that preceded the emergence of life on Earth. Their analysis suggests the complex distribution of amino acids observed in the Hillsborough meteorite formed within the parent body, likely assisted by brine fluid chemistry.

Some of the meteorite fragments will be curated at the American Museum of Natural History in New York City.

"We are thrilled that nature delivered such a precious asteroid sample on our doorstep," said curator Denton Ebel.

Read the original paper: https://www.science.org/doi/10.1126/sciadv.aea2105

About the SETI Institute
Founded in 1984, the SETI Institute is a non-profit, multi-disciplinary research and education organization whose mission is to lead humanity’s quest to understand the origins and prevalence of life and intelligence in the Universe and to share that knowledge with the world. Our research encompasses the physical and biological sciences and leverages expertise in data analytics, machine learning and advanced signal detection technologies. The SETI Institute is a distinguished research partner for industry, academia and government agencies, including NASA and NSF.

About JAMSTEC’s Biogeochemistry Research Center

JAMSTEC LogoThe Biogeochemistry Research Center (BGC) at the Japan Agency for Marine-Earth Science and Technology (JAMSTEC) investigates the origins and evolution of life-related primordial organic matter through chemical and isotopic analyses. Its research includes studies of asteroid samples (i.e., Ryugu, Bennu) and carbonaceous meteorite samples, contributing to our understanding of the pristine chemical processes in molecular evolution.

Contact information
Rebecca McDonald
Director of Communications
SETI Institute
[email protected]

联系我们 contact @ memedata.com