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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >A study of wellbore cement alteration controlled by CO2 leakage in a natural analogue for geological CO2 storage
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A study of wellbore cement alteration controlled by CO2 leakage in a natural analogue for geological CO2 storage

机译:基于地质二氧化碳储存自然模拟中CO2泄漏控制的井筒水泥改变研究

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摘要

This study presents the results obtained by studying well integrity in the natural analogue for the geological storage of CO2 of Sant'Albino, Southern Tuscany, which is affected by intense CO2 degassing and where a thermal spa and a CO2 production plant are present. Reaction Path Modeling (RPM) of cement hydration and carbonation as well as Reactive Transport Modeling (RTM) of cement alteration were used to investigate the processes occurring near a hypothetical average production well with a damaged leaking zone, affecting casing and cement, assuming a defined composition of class G Portland cement. It turns out that the advective flow of CO2 from the damaged zone, first, leads to completion of cement carbonation and, second, promotes further cement alteration through considerable dissolution of carbonate minerals. These processes takes place in a relatively short time, in the order of some years. The ultimate consequence of these CO2-promoted comparatively fast chemical reactions is most likely CO2 leakage to the surface. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究介绍了通过研究Sant'albino的Co2的地质储存的天然类似物中的良好正常所获得的结果,这受激烈的CO2脱气的影响,并且存在热水疗中心和二氧化碳生产植物。使用水泥改变的水泥水合和碳酸化合物和碳酸化合物的反应路径建模(RPM)以及使用损坏的泄漏区,影响壳体和水泥的假假设平均产量附近发生的方法,假设定义G级波特兰水泥的组成。事实证明,二氧化碳从受损区域的平均流动,首先导致水泥碳化,第二,通过相当大的碳酸盐矿物溶解来促进进一步的水泥改变。这些过程在相对较短的时间内进行,大约一年。这些二氧化碳的最终结果是促进的相对快速的化学反应很可能与表面渗漏。 (c)2017 Elsevier Ltd.保留所有权利。

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