Interdisciplinary results of an Italian research project on methane recovery and carbon dioxide storage in natural gas hydrate reservoirs

Beatrice Castellani , Rita Giovannetti , Umberta Tinivella , Salvatore F. Cannone , Roberto Fazioli , Fabio Trippetta , Michele Ciulla , Valentino Canale , Pietro Di Profio , Alberto Maria Gambelli , Andrea Nicolini , Giorgio Minelli , Massimiliano Barchi , Marco Zannotti , Andrea Rossi , Michela Giustiniani , Andrea Lanzini , Massimo Santarelli , Federico Rossi
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Abstract

Natural gas hydrates (NGH) are found in marine sediments on continental and island slopes, deep-water sediments of inland lakes and seas, and polar sediments on continents and continental shelves. NGH constitutes the largest hydrocarbon resource on Earth, representing a reservoir of sustainable fuel owing to the possibility of a so-called CO2–CH4 replacement process. If CO2 is injected into NGH sediments, CH4 is released and CO2 hydrate formed. The extraction of gas from NGH, combined with carbon capture, presents significant potential advantages in the energy infrastructure and various economic and political contexts, aligning with future green policies. This study contributes to the advancement of knowledge by reviewing the findings of a three-year Italian research project focused on methane recovery and carbon dioxide disposal in NGH. The consortium comprises seven multidisciplinary Italian partners. This study introduces a novel process wherein the CO2–CH4 replacement process is integrated with methane purification and CO2 recirculation, which has been experimentally tested and represents a new advancement in gas hydrate science. Experimental tests at the microscopic and macroscopic levels showed that the efficiency of the process strongly depends on the mutual influence of the properties of water, sediment, and the involved gaseous species. Energy evaluations show that the ratio between the energy spent to complete an entire cycle of replacement and recirculation over the stored energy in the recovered methane is 17%, resulting in a beneficial energy balance, while economic analysis shows that the transition could generate—even in the short term—large high-impact cash-out.
意大利关于天然气水合物储层中甲烷回收和二氧化碳储存的跨学科研究项目的成果
天然气水合物主要存在于大陆和岛屿斜坡的海洋沉积物、内陆湖泊和海洋的深水沉积物以及大陆和大陆架的极地沉积物中。天然气水合物是地球上最大的碳氢化合物资源,由于所谓的CO2-CH4替代过程的可能性,它代表了可持续燃料的储存库。如果向天然气水合物沉积物中注入CO2,则释放CH4并形成CO2水合物。从天然气水合物中提取天然气,结合碳捕获,在能源基础设施和各种经济和政治环境中具有显著的潜在优势,与未来的绿色政策相一致。这项研究通过回顾意大利一项为期三年的研究项目的研究结果,促进了知识的进步,该项目专注于天然气水合物中的甲烷回收和二氧化碳处理。该联盟由七个多学科意大利合作伙伴组成。本研究提出了一种CO2 - ch4置换过程与甲烷净化和CO2再循环相结合的新工艺,该工艺已经过实验验证,代表了天然气水合物科学的新进展。微观和宏观水平的实验测试表明,该过程的效率在很大程度上取决于水、沉积物和所涉及的气体种类的性质的相互影响。能源评估表明,完成整个替换和再循环周期所消耗的能量与回收甲烷中储存的能量之比为17%,从而实现了有益的能量平衡,而经济分析表明,即使在短期内,这种转变也可能产生巨大的高影响现金流出。
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