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Pelagic barite precipitation at micromolar ambient sulfate

机译:微摩尔环境硫酸盐上浮式重晶石沉淀

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摘要

Geochemical analyses of sedimentary barites (barium sulfates) in the geological record have yielded fundamental insights into the chemistry of the Archean environment and evolutionary origin of microbial metabolisms. However, the question of how barites were able to precipitate from a contemporary ocean that contained only trace amounts of sulfate remains controversial. Here we report dissolved and particulate multi-element and barium-isotopic data from Lake Superior that evidence pelagic barite precipitation at micromolar ambient sulfate. These pelagic barites likely precipitate within particle-associated microenvironments supplied with additional barium and sulfate ions derived from heterotrophic remineralization of organic matter. If active during the Archean, pelagic precipitation and subsequent sedimentation may account for the genesis of enigmatic barite deposits. Indeed, barium-isotopic analyses of barites from the Paleoarchean Dresser Formation are consistent with a pelagic mechanism of precipitation, which altogether offers a new paradigm for interpreting the temporal occurrence of barites in the geological record.
机译:地质记录中沉积重晶石(硫酸钡)的地球化学分析已经对太古代环境的化学和微生物代谢的演化起源有了基本的认识。但是,重晶石如何从仅含微量硫酸盐的当代海洋中沉淀出来的问题仍然存在争议。在这里,我们报告了苏必利尔湖的溶解和颗粒状多元素及钡同位素数据,这些数据证明了微摩尔环境硫酸盐上浮重晶石的沉淀。这些浮游重晶石可能会在与颗粒相关的微环境中沉淀,这些微环境中还含有来自有机物异养再矿化的额外钡和硫酸根离子。如果在太古宙时期活跃,则浮游沉积和随后的沉积可能解释了神秘重晶石沉积的成因。的确,对古古宙斯德莱德组重晶石的钡同位素分析与中上层降水机制是一致的,这为解释地质记录中重晶石的时空发生提供了新的范例。

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