Underground carbon sequestration as a component of decarbonization in anthropogenic activity

Д . С . Голдобин, Институт механики сплошных сред УрО, Ран А . А . Барях, Горный институт, УрО Ран
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Abstract

The article discusses why it is appropriate to talk about carbon utilization even in cases where the goal is to reduce carbon dioxide emissions into the environment. An explanation is given as to why underground carbon dioxide burial (geosequestration) is the main feasible solution for the decarbonization of anthropogenic activity at the planetary scale. A brief review of existing or promising practices of carbon dioxide geosequestration is provided. The economic and technological aspects of the implementation of geosequestration projects, affecting their feasibility, are viewed, as well as the relevant statistics of such projects over the first two decades of the XXI century. In particular, the extremely low percentage of implementation of planned projects is noted in the majority of industrial sectors consuming fossil hydrocarbon fuels. The regional aspect of the problem is considered in relation to the work of industrial companies of the Perm Region and their foreign economic activity under the conditions of the enacted and planned legislation. The available potential of the regions’s subsoil for geosequestration of carbon dioxide is stated - oil collectors, coal seams of the sealed mines of the Kizelovsky basin, salt deposits of the Verkhnekamsky deposit.
地下固碳是人为活动脱碳的组成部分
文章讨论了为什么即使在以减少环境中二氧化碳排放为目标的情况下,谈论碳利用也是适当的。文章解释了为什么地下二氧化碳埋藏(地质封存)是地球范围内人类活动脱碳的主要可行解决方案。简要回顾了二氧化碳地质封存的现有或有前景的做法。对实施影响其可行性的地质封存项目的经济和技术方面,以及二十一世纪头二十年此类项目的相关统计数据进行了审查。特别是在大多数消耗化石碳氢化合物燃料的工业部门,计划项目的实施比例极低。地区方面的问题是与彼尔姆地区的工业企业的工作及其在已颁布的和计划的法律条件下的对外经济活动有关的。在彼尔姆边疆区的底土上有可能进行二氧化碳的地质封存:石油采集器,"基泽洛夫斯基 "盆地密封矿井的煤层,"上涅卡姆斯基 "矿床的盐层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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