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Delineation of Magnesium-rich Ultramafic Rocks Available for Mineral Carbon Sequestration in the United States

机译:划分富含镁的超微岩石,可用于美国矿物碳封存

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The 2005 Intergovernmental Panel on Climate Change report on Carbon Dioxide Capture and Storage suggested that a major gap in mineral carbon sequestration is locating the magnesium-silicate bedrock available to sequester CO_2. It is generally known that silicate minerals with high concentrations of magnesium are suitable for mineral carbonation. However, no assessment has been made covering the entire United States detailing their geographical distribution and extent, or evaluating their potential for use in mineral carbonation. Researchers at Columbia University and the U.S. Geological Survey have developed a digital geologic database of ultramafic rocks in the continental United States. Data were compiled from varied-scale geologic maps of magnesium-silicate ultramafic rocks. These rock types are potentially suitable as source material for mineral carbon-dioxide sequestration. The focus of the national-scale map is entirely on suitable ultramafic rock types, which typically consist primarily of olivine and serpentine minerals. By combining the map with digital datasets that show non-mineable lands (such as urban areas and National Parks), estimates on potential depth of a surface mine, and the predicted reactivities of the mineral deposits, one can begin to estimate the capacity for CO_2 mineral sequestration within the United States.
机译:2005年关于二氧化碳捕获和储存的气候变化报告的政府间变化报告表明,矿物碳封存中的主要间隙是将镁 - 硅酸盐的基岩定位为螯合CO_2。通常已知具有高浓度镁的硅酸盐矿物适用于矿物碳酸化。但是,没有涵盖整个美国的评估,详细介绍了他们的地理分布和范围,或评估其在矿物质碳化中使用的潜力。哥伦比亚大学的研究人员和美国地质调查已经开发了美国大陆的超微岩石数字地质数据库。数据由镁 - 硅酸盐超岩岩石的不同尺寸的地质地图编制。这些岩石类型可能适合作为矿物碳二氧化氧化物封存的源材料。国家规模地图的焦点完全是合适的超空岩类型,通常主要由橄榄石和蛇纹石矿物组成。通过将地图与数字数据集相结合,显示不可采取的土地(如城市地区和国家公园),估计表面矿井的潜在深度,以及矿物沉积物的预测收集,可以开始估计CO_2的能力美国内的矿物封存。

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