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Inorganic Nitrogen Reduction And Stability Under Simulated Hydrothermal Conditions

机译:模拟水热条件下无机氮的还原和稳定性

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Availability of reduced nitrogen is considered a prerequisite for the genesis of life from prebiotic precursors. Most atmospheric and oceanic models for the Hadean Earth predict a mildly oxidizing environment that is conducive to the formation and stability of only oxidized forms of nitrogen. A possible environment where reduction of oxidized nitrogen to ammonium has been speculated to occur is aqueous hydrothermal systems. We examined a suite of transition metal oxides and sulfides for their ability to reduce nitrate and nitrite, as well as oxidize ammonia, under hot (300℃) high-pressure (50-500 MPa) aqueous conditions. In general, iron sulfides exhibited the most rapid and complete conversion noted, followed by nickel and copper sulfides to a much lower degree. Of the oxides examined, only magnetite exhibited any ability to reduce NO_3~- or NO_2~-. Ammonium was stable or exhibited small losses (<20%) in contact with all the mineral phases and conditions tested. The results support the idea that hydrothermal systems could have provided significant amounts of reduced nitrogen to their immediate environments. The enhanced availability of reduced nitrogen in hydrothermal systems also has important implications for prebiotic metabolic pathways where nitrogen availability is critical to the production of amino acids and other nitrogenous compounds.
机译:还原氮的可用性被认为是益生元前体产生生命的先决条件。 Hadean地球的大多数大气和海洋模型都预测有一个温和的氧化环境,这仅有助于氮的氧化形式的形成和稳定性。推测可能发生的氧化氮还原为铵的可能环境是水热液系统。我们研究了一套过渡金属氧化物和硫化物在高温(300℃)高压(50-500 MPa)的水性条件下还原硝酸盐和亚硝酸盐以及氧化氨的能力。通常,硫化铁表现出最快速和最完全的转化率,其次是镍和铜硫化物,转化率要低得多。在所检查的氧化物中,只有磁铁矿具有还原NO_3〜-或NO_2〜-的能力。与所测试的所有矿物相和条件接触时,铵盐稳定或损失很小(<20%)。结果支持了这样的想法,即热液系统可以为其周围环境提供大量的还原氮。热液系统中减少的氮的增加的可用性对益生元代谢途径也具有重要意义,因为氮的可用性对氨基酸和其他含氮化合物的产生至关重要。

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