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Mercury isotope signatures record photic zone euxinia in the Mesoproterozoic ocean

机译:汞同位素特征记录了中元古代海洋的光化带游动游

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摘要

Photic zone euxinia (PZE) is a condition where anoxic, H2S-rich waters occur in the photic zone (PZ). PZE has been invoked as an impediment to the evolution of complex life on early Earth and as a kill mechanism for Phanerozoic mass extinctions. Here, we investigate the potential application of mercury (Hg) stable isotopes in marine sedimentary rocks as a proxy for PZE by measuring Hg isotope compositions in late Mesoproterozoic (∼1.1 Ga) shales that have independent evidence of PZE during discrete intervals. Strikingly, a significantly negative shift of Hg mass-independent isotope fractionation (MIF) was observed during euxinic intervals, suggesting changes in Hg sources or transformations in oceans coincident with the development of PZE. We propose that the negative shift of Hg MIF was most likely caused by (i) photoreduction of Hg(II) complexed by reduced sulfur ligands in a sulfide-rich PZ, and (ii) enhanced sequestration of atmospheric Hg(0) to the sediments by thiols and sulfide that were enriched in the surface ocean as a result of PZE. This study thus demonstrates that Hg isotope compositions in ancient marine sedimentary rocks can be a promising proxy for PZE and therefore may provide valuable insights into changes in ocean chemistry and its impact on the evolution of life.
机译:磷化区(PZE)是在磷化区(PZ)中发生缺氧,富含H2S的水的情况。已将PZE用作地球早期复杂生命进化的障碍,并作为致死古生物大规模灭绝的机制。在这里,我们通过测量晚间元古生代(〜1.1 Ga)页岩中的汞同位素组成来研究海洋沉积岩中汞(Hg)稳定同位素作为PZE的潜在应用,这些页岩在离散时间间隔内具有独立的PZE证据。令人惊讶的是,在富氧间隔期间观察到了汞质量无关的同位素分馏(MIF)的显着负向变化,表明汞源的变化或海洋的转变与PZE的发展相吻合。我们认为Hg MIF的负移最可能是由于(i)富硫化物PZ中还原的硫配体与Hg(II)的光还原以及(ii)大气中Hg(0)对沉积物的螯合增强PZE导致硫磺和硫化物在海洋表层富集。因此,这项研究表明,古代海洋沉积岩中的Hg同位素组成可能是PZE的有前途的代名词,因此可以为海洋化学变化及其对生命演化的影响提供有价值的见解。

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