太古宙
自生的
地质学
地球科学
微量元素
早期地球
背景(考古学)
前寒武纪
地球化学
海洋学
环境科学
古生物学
沉积岩
作者
Kurt O. Konhauser,Leslie J. Robbins,Ernesto Peçoits,Caroline L. Peacock,Andreas Kappler,Stefan V. Lalonde
出处
期刊:Astrobiology
[Mary Ann Liebert, Inc.]
日期:2015-10-01
卷期号:15 (10): 804-815
被引量:73
标识
DOI:10.1089/ast.2015.1301
摘要
Iron formations (IF) preserve a history of Precambrian oceanic elemental abundance that can be exploited to examine nutrient limitations on early biological productivity. However, in order for IF to be employed as paleomarine proxies, lumped-process distribution coefficients for the element of interest must be experimentally determined or assumed. This necessitates consideration of bulk ocean chemistry and which authigenic ferric iron minerals controlled the sorption reactions. It also requires an assessment of metal mobilization reactions that might have occurred in the water column during particle descent and during post-depositional burial. Here, we summarize recent developments pertaining to the interpretation and fidelity of the IF record in reconstructions of oceanic trace element evolution. Using an updated compilation, we reexamine and validate temporal trends previously reported for the nickel content in IF (see Konhauser et al., 2009 ). Finally, we reevaluate the consequences of methanogen Ni starvation in the context of evolving views of the Archean ocean-climate system and how the Ni famine may have ultimately facilitated the rise in atmospheric oxygen.
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