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Research Article Natural Gas Production from Methane Hydrate Deposits Using CO_2 Clathrate Sequestration: State-of-the-Art Review and New Technical Approaches

机译:研究文章使用CO_2笼形螯合技术从甲烷水合物矿床生产天然气:最新技术综述和新技术方法

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This paper focuses on reviewing the currently available solutions for natural gas production from methane hydrate deposits using CO2 sequestration. Methane hydrates are ice-like materials, which form at low temperature and high pressure and are located in permafrost areas and oceanic environments. They represent a huge hydrocarbon resource, which could supply the entire world for centuries. Fossil-fuel-based energy is still a major source of carbon dioxide emissions which contribute greatly to the issue of global warming and climate change. Geological sequestration of carbon dioxide appears as the safest and most stable way to reduce such emissions for it involves the trapping of CO2 into hydrocarbon reservoirs and aquifers. Indeed, CO2 can also be sequestered as hydrates while helping dissociate the in situ methane hydrates. The studies presented here investigate the molecular exchange between CO2 and CH4 that occurs when methane hydrates are exposed to CO_2, thus generating the release of natural gas an
机译:本文的重点是回顾使用二氧化碳封存技术从甲烷水合物矿床生产天然气的当前可用解决方案。甲烷水合物是类冰的物质,在低温和高压下形成,位于多年冻土地区和海洋环境中。它们代表着巨大的碳氢化合物资源,可以供应整个世界数个世纪。基于化石燃料的能源仍然是二氧化碳排放的主要来源,对全球变暖和气候变化问题做出了巨大贡献。二氧化碳的地质隔离似乎是减少这种排放的最安全,最稳定的方法,因为它涉及将CO2捕集到碳氢化合物储层和含水层中。实际上,CO 2也可以作为水合物螯合,同时有助于离解原位甲烷水合物。此处介绍的研究调查了甲烷水合物暴露于CO_2时发生的CO2与CH4之间的分子交换,从而产生了天然气和二氧化碳。

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