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Supply of phosphate to early Earth by photogeochemistry after meteoritic weathering

机译:通过光电风化后通过光摄影化学向早期地球供应磷酸盐

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During terrestrial differentiation, the relatively small amount of phosphorus that migrated to the lithosphere was incorporated into igneous rock, predominantly in the form of basic calcium orthophosphate (Ca-10(PO4)(6)(OH,F,Cl)(2), apatite). Yet the highly insoluble nature of calcium apatite presents a significant problem to those contemplating the origin of life given the foundational role of phosphate (PO43-) in extant biology and the apparent requirement for PO43- as a catalyst, buffer and reagent in prebiotic chemistry. Reduced meteorites such as enstatite chondrites are highly enriched in phosphide minerals, and upon reaction with water these minerals can release phosphorus species of various oxidation states. Here, we demonstrate how reduced phosphorus species can be fully oxidized to PO43- simply by the action of ultraviolet light on H2S/HS-. We used low-pressure Hg lamps to simulate ultraviolet output from the young Sun and P-31 nuclear magnetic resonance spectroscopy to monitor the progress of reactions. Our experimental findings provide a cosmochemically and geochemically plausible means for supply of PO43- that was widely available to prebiotic chemistry and nascent life on early Earth and potentially on other planets.
机译:在陆地分化期间,将岩石圈迁移到岩石的相对少量的磷掺入火炭岩石中,主要以碱性磷酸钙(CA-10(PO4)(6)(OH,F,Cl)(2)的形式掺入火成岩中,磷灰石)。然而,钙磷灰石的高度不溶性性质对鉴于磷酸盐(PO43-)在现存生物学中的基本作用以及PO43-作为催化剂化学中的催化剂,缓冲剂和试剂中的磷酸盐的基本作用,鉴于生物起源的那些具有重要问题。减少常规诸如Enstatite Chondrites的陨石在磷化物矿物中高度富集,并且在与水反应后,这些矿物可以释放各种氧化态的磷种类。在这里,我们证明了磷物种可以将降低的磷物质完全氧化成PO43-仅通过紫外线对H 2 S / HS-的作用完全氧化至PO43。我们使用低压HG灯来模拟从年轻的太阳和P-31核磁共振光谱的紫外线输出,以监测反应的进展。我们的实验结果提供了一种宇化化学和地球织化学合理的供应方法,供应PO43-广泛可用于益生元化学和早期地球的新生寿命,并且可能在其他行星上。

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