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From the Cover: In situ carbonation of peridotite for CO2 storage

机译:从封面开始:橄榄岩原位碳化以储存二氧化碳

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摘要

The rate of natural carbonation of tectonically exposed mantle peridotite during weathering and low-temperature alteration can be enhanced to develop a significant sink for atmospheric CO2. Natural carbonation of peridotite in the Samail ophiolite, an uplifted slice of oceanic crust and upper mantle in the Sultanate of Oman, is surprisingly rapid. Carbonate veins in mantle peridotite in Oman have an average 14C age of ≈26,000 years, and are not 30–95 million years old as previously believed. These data and reconnaissance mapping show that ≈104 to 105 tons per year of atmospheric CO2 are converted to solid carbonate minerals via peridotite weathering in Oman. Peridotite carbonation can be accelerated via drilling, hydraulic fracture, input of purified CO2 at elevated pressure, and, in particular, increased temperature at depth. After an initial heating step, CO2 pumped at 25 or 30 °C can be heated by exothermic carbonation reactions that sustain high temperature and rapid reaction rates at depth with little expenditure of energy. In situ carbonation of peridotite could consume >1 billion tons of CO2 per year in Oman alone, affording a low-cost, safe, and permanent method to capture and store atmospheric CO2.
机译:在风化和低温变化过程中,构造暴露的地幔橄榄岩的自然碳酸化速率可以提高,从而为大气CO2形成显着的汇。萨迈尔蛇绿岩中橄榄岩的天然碳酸化作用是迅速的,这是阿曼苏丹国上空的硬壳和上地幔抬升的一部分。阿曼地幔橄榄岩中的碳酸盐岩脉的平均 14 C年龄约为26,000年,而不是以前认为的30-95百万年。这些数据和勘测图显示,通过阿曼的橄榄岩风化作用,每年约10 4 至10 5 的大气CO2转化为固体碳酸盐矿物。橄榄岩的碳化可以通过钻孔,水力压裂,在高压下输入纯化的CO2以及特别是在深部提高温度来加速。在初始加热步骤之后,可以通过放热碳酸化反应加热泵送至25或30°C的二氧化碳,该反应在深度进行即可维持高温和快速的反应速率,而消耗的能量却很少。仅在阿曼,橄榄岩的原位碳化每年就可以消耗10亿吨以上的CO2,从而提供了一种低成本,安全且永久的捕获和储存大气CO2的方法。

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