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Overcoming Impediments to Offshore CO_2 Storage: Legal Issues in the United States and Canada

机译:克服海上Co_2储存的障碍:美国和加拿大的法律问题

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摘要

Limiting future temperature increases and associated climate change requires immediate action to prevent additional carbon dioxide being released into the atmosphere and to lower the existing atmospheric carbon dioxide load. This could be advanced through carbon capture and storage (CCS), which involves collecting carbon dioxide that would otherwise be released by power plants or similar facilities and injecting it into underground geologic formations, where it will remain permanently sequestered. The techniques developed for CCS can also be used to sequester carbon dioxide that has been removed from the atmosphere using direct air capture or other negative emission technologies. Past CCS research has primarily focused on sequestering carbon dioxide onshore, for example, in depleted oil and gas reservoirs or deep saline aquifers. This Article explores the legal framework governing sub-seabed carbon dioxide injection (offshore CCS) in U.S. and Canadian waters, particularly the Cascadia Basin, where there is a large sub-seabed basalt rock formation with significant storage potential.
机译:限制未来的温度升高,相关的气候变化需要立即采取的作用,以防止额外的二氧化碳被释放到大气中并降低现有的大气二氧化碳载荷。这可以通过碳捕获和储存(CCS)进行,涉及收集电力设备或类似设施释放的二氧化碳,并将其注入地下地质形成,在那里它将保持永久隔离。为CCS开发的技术也可用于使用直接空气捕获或其他负发射技术从大气中除去的二氧化碳。过去的CCS研究主要集中在例如耗尽的石油和天然气储层或深盐含水层中的二氧化碳。本文探讨了美国和加拿大水域的亚海底二氧化碳注射(近海CCS)的法律框架,特别是Cascadia盆地,其中有一个大的亚海底座玄武岩岩层,具有显着的储存潜力。

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