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The Interpretation of Biogeochemical Growths on Gold Coins from the SS Central America Shipwreck: Applications for Biogeochemistry and Geoarchaeology

机译:SS中美洲沉船中金币上的生物地球化学增长的解释:生物地球化学和地球考古学的应用

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Black crusts that formed on gold coins recovered from the 1857 shipwreck of the SS Central America played a key role in their preservation in a near original state. Within a few years of the sinking, the significant quantities of iron and steel on the shipwreck produced laminar geochemical precipitates of fine-grained iron minerals on the coins. This coating served to armor the coins from future chemical or biological attacks. Once coated, the coins were colonized by at least two distinct populations of gold-tolerant bacteria that precipitated abundant nanoparticulate gold in the black crust material and produced biomineralized bacteria in a web-like mat. Above this middle layer of black crust, the outer layer consisted of a geochemical reaction front of euhedral crystals of iron sulfate and iron oxy-hydroxide species, formed by the interaction of seawater with the chemical wastes of the bacterial mat. Understanding this process has application for assessing the diverse and extreme conditions under which nano-particulate gold may form through biological processes, as well as understanding the conditions that contribute to the preservation or degradation of marine archaeological materials.
机译:从1857年中美洲SS海难中回收的金币上形成的黑皮在将其保存为接近原始状态时起着关键作用。在沉没的几年内,沉船上大量的钢铁在硬币上产生了细粒铁矿物的层状地球化学沉淀。这种涂层可以保护硬币免受未来化学或生物攻击。镀金后,硬币将被至少两个不同的耐金细菌种群定殖,这些细菌会在黑壳材料中沉淀出大量的纳米颗粒金,并在网状垫中产生生物矿化细菌。在这一黑壳中间层的上方,外层由硫酸铁和羟基氧化铁物种的全面晶体的地球化学反应前沿组成,这是由海水与细菌垫的化学废物相互作用形成的。了解该过程可用于评估通过生物过程可形成纳米颗粒金的各种极端条件,以及了解有助于海洋考古材料保存或降解的条件。

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