首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Comparison of pyrite (FeS_2) synthesis mechanisms to reproduce natural FeS_2 nanoparticles found at hydrothermal vents
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Comparison of pyrite (FeS_2) synthesis mechanisms to reproduce natural FeS_2 nanoparticles found at hydrothermal vents

机译:比较黄铁矿(FeS_2)合成机制来重现在热液喷口发现的天然FeS_2纳米颗粒

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Here we report the synthesis of pyrite in micrometer and nanometer sizes and with varied morphology. The purpose of these syntheses was to mimic natural pyrite nanoparticles recently found at hydrothermal vents, and to better understand the formation processes of these nano and micrometer sized particles. The duration of synthesis, surfactant used, and chemical mechanism of pyrite formation were all found to have an effect on resultant size and morphology. Yields of pyrite were sometimes low as our goal was to stop growth quickly after nucleation, in order to mimic hot vent fluids (350°C) emanating to cold ocean bottom waters (2°C). Natural nanoparticles forming under these conditions have currently been identified at diverse hydrothermal vents including Lau Basin, the Mid Atlantic Ridge (MAR), and the East Pacific Rise (EPR). These natural nanoparticles were variable in size and morphology, with aggregates of 50-350nm diameter being the most prevalent. Syntheses occurring via the H_2S pathway mimicked natural nanoparticles more closely than syntheses via the polysulfide pathway. One synthesis reported is suggestive of a pyrite/pyrrhotite equilibrium, indicating that we have succeeded in mimicking redox conditions similar to those that occur at certain hydrothermal vents.
机译:在这里,我们报告了黄铁矿的合成,具有微米和纳米尺寸,形态各异。这些合成的目的是模仿最近在热液喷口发现的天然黄铁矿纳米粒子,并更好地了解这些纳米和微米级粒子的形成过程。发现合成的持续时间,使用的表面活性剂以及黄铁矿形成的化学机理均对所得的尺寸和形态有影响。由于我们的目标是在成核后迅速停止生长,以便模拟发往冷海底水(2°C)的热排放流体(350°C),因此黄铁矿的产量有时较低。在这些条件下形成的天然纳米颗粒目前已在包括劳盆地,中大西洋海脊(MAR)和东太平洋上升带(EPR)在内的各种热液喷口中得到确认。这些天然纳米颗粒的大小和形态各不相同,其中直径最集中的是50-350nm的聚集体。与通过多硫化物途径进行的合成相比,通过H_2S途径进行的合成与天然纳米粒子的模仿更为紧密。报道的一种合成表明黄铁矿/硫铁矿的平衡,表明我们已经成功地模拟了与某些热液喷口类似的氧化还原条件。

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