
Researchers have used the chemical fingerprints of zinc contained in meteorites to determine the origin of volatile elements on Earth. 探花直播results suggest that without 鈥榰nmelted鈥 asteroids, there may not have been enough of these compounds on Earth for life to emerge.
Researchers have used the chemical fingerprints of zinc contained in meteorites to determine the origin of volatile elements on Earth. 探花直播results suggest that without 鈥榰nmelted鈥 asteroids, there may not have been enough of these compounds on Earth for life to emerge.
Volatiles are elements or compounds that change into vapour at relatively low temperatures. They include the six most common elements found in living organisms, as well as water. 探花直播zinc found in meteorites has a unique composition, which can be used to identify the sources of Earth鈥檚 volatiles.
探花直播researchers, from the 探花直播 of Cambridge and Imperial College London, have previously found that Earth鈥檚 zinc came from different parts of our Solar System: about half came from beyond Jupiter and half originated closer to Earth.
鈥淥ne of the most fundamental questions on the origin of life is where the materials we need for life to evolve came from,鈥 said Dr Rayssa Martins from Cambridge鈥檚 Department of Earth Sciences. 鈥淚f we can understand how these materials came to be on Earth, it might give us clues to how life originated here, and how it might emerge elsewhere.鈥
Planetesimals are the main building blocks of rocky planets, such as Earth. These small bodies are formed through a process called accretion, where particles around a young star start to stick together, and form progressively larger bodies.
But not all planetesimals are made equal. 探花直播earliest planetesimals that formed in the Solar System were exposed to high levels of radioactivity, which caused them to melt and lose their volatiles. But some planetesimals formed after these sources of radioactivity were mostly extinct, which helped them survive the melting process and preserved more of their volatiles.
In a study published in the journal Science Advances, Martins and her colleagues looked at the different forms of zinc that arrived on Earth from these planetesimals. 探花直播researchers measured the zinc from a large sample of meteorites originating from different planetesimals and used this data to model how Earth got its zinc, by tracing the entire period of the Earth鈥檚 accretion, which took tens of millions of years.
Their results show that while these 鈥榤elted鈥 planetesimals contributed about 70% of Earth鈥檚 overall mass, they only provided around 10% of its zinc.
According to the model, the rest of Earth鈥檚 zinc came from materials that didn鈥檛 melt and lose their volatile elements. Their findings suggest that unmelted, or 鈥榩rimitive鈥 materials were an essential source of volatiles for Earth.
鈥淲e know that the distance between a planet and its star is a determining factor in establishing the necessary conditions for that planet to sustain liquid water on its surface,鈥 said Martins, the study鈥檚 lead author. 鈥淏ut our results show there鈥檚 no guarantee that planets incorporate the right materials to have enough water and other volatiles in the first place 鈥 regardless of their physical state.鈥
探花直播ability to trace elements through millions or even billions of years of evolution could be a vital tool in the search for life elsewhere, such as on Mars, or on planets outside our Solar System.
鈥淪imilar conditions and processes are also likely in other young planetary systems,鈥 said Martins. 鈥 探花直播roles these different materials play in supplying volatiles is something we should keep in mind when looking for habitable planets elsewhere.鈥
探花直播research was supported in part by Imperial College London, the European Research Council, and UK Research and Innovation (UKRI).
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Reference:
Rayssa Martins et al. 鈥楶rimitive asteroids as a major source of terrestrial volatiles.鈥 Science Advances (2024). DOI: 10.1126/sciadv.ado4121
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