The Rare Earth Element Distribution in Marine Carbonates as a Potential Proxy for Seawater pH on Early Earth

IF 1.9 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY American Journal of Science Pub Date : 2024-06-12 DOI:10.2475/001c.118215
Ping-Chun Lin, D. Catling
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Abstract

Understanding the marine environment of early Earth is crucial for understanding the evolution of climate and early life. However, the master variable of Archean and Proterozoic seawater, the pH, is poorly constrained, and published ideas about the pH range encompass ~7 pH units from mildly acidic to hyperalkaline. To better infer ancient seawater pH, we examine the possibility of a seawater pH proxy using rare earth elements (REEs) in marine carbonates. The principle is based on increasing concentrations of heavy rare earth elements in solution relative to the light REEs with decreasing pH due to REE complexation and scavenging. We calibrated such an REE pH proxy using pH variability in modern seawater and tested the proxy with ~100 REE measurements from 13 separate carbonate formations. We compared our pH estimates derived from the REE proxy to published pH estimates of Cenozoic and Neoproterozoic seawater that use the established pH proxy of boron isotopes (δ11B). REE-pH estimates agree with the Cenozoic and the Ediacaran δ11B-pH proxy based on the type of carbonate and boron isotopic composition at corresponding times. The uncertainty in our REE-pH proxy can probably be explained by model assumptions, noise from freshwater influence, siliciclastic input, and diagenesis. This proof-of-concept study demonstrates that the REE-pH method provides pH estimates comparable to boron isotope pH estimates within uncertainties, which potentially could constrain changes in Precambrian seawater pH to better understand the coevolution of life and early Earth’s environment.
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海洋碳酸盐中的稀土元素分布是早期地球海水 pH 值的潜在替代物
了解早期地球的海洋环境对于了解气候和早期生命的演化至关重要。然而,阿新世和新生代海水的主变量--pH值--却没有得到很好的约束,已发表的有关pH值范围的观点包括从弱酸性到高碱性的约7个pH值单位。为了更好地推断古海水的 pH 值,我们研究了利用海洋碳酸盐中的稀土元素(REEs)来替代海水 pH 值的可能性。其原理是,由于稀土元素的络合和清除作用,溶液中的重稀土元素浓度相对于轻稀土元素浓度不断增加,pH值不断降低。我们利用现代海水的 pH 值变化校准了这种 REE pH 值代理,并用来自 13 个独立碳酸盐地层的约 100 个 REE 测量值对代理进行了测试。我们将根据 REE 代理得出的 pH 值估算值与已发表的新生代和新近纪海水 pH 值估算值进行了比较,后者使用的是硼同位素(δ11B)这一成熟的 pH 代理。根据相应时期的碳酸盐类型和硼同位素组成,REE-pH估算值与新生代和埃迪卡拉δ11B-pH代理值一致。我们的 REE-pH 代用值的不确定性可能是由模型假设、淡水影响的噪声、硅质岩输入和成岩作用造成的。这项概念验证研究表明,REE-pH方法提供的pH值估算值与硼同位素pH值估算值在不确定范围内,这有可能制约前寒武纪海水pH值的变化,从而更好地理解生命与早期地球环境的共同演化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
American Journal of Science
American Journal of Science 地学-地球科学综合
CiteScore
5.80
自引率
3.40%
发文量
17
审稿时长
>12 weeks
期刊介绍: The American Journal of Science (AJS), founded in 1818 by Benjamin Silliman, is the oldest scientific journal in the United States that has been published continuously. The Journal is devoted to geology and related sciences and publishes articles from around the world presenting results of major research from all earth sciences. Readers are primarily earth scientists in academia and government institutions.
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