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氧化石墨烯作为新型促进剂加速CO_2水合物生成实验 被引量:14
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作者 代文杰 王树立 +3 位作者 饶永超 吕晓方 刘波 郑亚星 《天然气工业》 EI CAS CSCD 北大核心 2016年第11期83-88,共6页
为了解决气体水合物生成速率慢、储气密度低、生成条件苛刻等难题,利用高压反应釜生成实验装置,探究了添加质量浓度为0.2g/L的氧化石墨烯对CO2水合物生成的诱导时间、气体消耗量及CO2水合物相平衡压力的影响,揭示了温度和压力的变... 为了解决气体水合物生成速率慢、储气密度低、生成条件苛刻等难题,利用高压反应釜生成实验装置,探究了添加质量浓度为0.2g/L的氧化石墨烯对CO2水合物生成的诱导时间、气体消耗量及CO2水合物相平衡压力的影响,揭示了温度和压力的变化规律,与去离子水中CO2水合物生成实验进行了比较并分析了其促进机理。结果表明:①氧化石墨烯具有动力学促进和热力学促进的双重作用,能够加快CO2水合物体系的传热传质效率,促进气体溶解,提高成核速率和气体消耗量,降低相平衡压力;②与去离子水相比,氧化石墨烯体系下CO2水合物生成诱导时间缩短了74%~85%;③温度为6℃时,随着初始压力的不同氧化石墨烯均能提高气体消耗量,在4MPa时气体消耗量增长幅度最大,达17.2%,提高了水合物储气密度;④氧化石墨烯降低CO2水合物相平衡压力的最大降幅为20%。结论认为,该新型促进剂能够提高CO2水合物的生成速率和储气密度。 展开更多
关键词 水合物技术应用 CO2水合物 氧化石墨烯 新型促进剂 传热效率 诱导时间 气体消耗量 相平衡压力
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Carbon Dioxide Capture Using Gas Hydrate Technology 被引量:3
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作者 Beatrice Castellani Mirko Filipponi Andrea Nicolini Franco Cotana Federico Rossi 《Journal of Energy and Power Engineering》 2013年第5期883-890,共8页
According to IPCC (Intergovemmental Panel on Climate Change) Fourth Report, carbon dioxide emissions from the combustion of fossil fuels have been identified as the major contributor to global warming and climate ch... According to IPCC (Intergovemmental Panel on Climate Change) Fourth Report, carbon dioxide emissions from the combustion of fossil fuels have been identified as the major contributor to global warming and climate change. One of the new approaches for capturing carbon dioxide and subsequently lowering the emissions is based on gas hydrate crystallization. Gas hydrates have a large capacity for the storage of gases which also resemble an attractive method for gas filtration. The basis of the separation is the selective partition of the target component between the hydrate phase and the gaseous phase. It is expected that carbon dioxide is preferentially encaged into the hydrate crystal phase compared to the other components. In the present paper, after a comparison of gas hydrates with existing capture technologies, a novel apparatus for gas hydrate production is illustrated and results of a first set of experimental applications of the reactor for CO2 hydrate formation and separation are presented. In particular, the effects of two different promoters were investigated. Results show that the reactor allows a good level of temperature control, resulting in rapid hydrate formation and mild operating conditions. Results are a basis for setting up a procedure for CO2 separation and capture. 展开更多
关键词 Carbon dioxide capture gas hydrate gas separation promoters water spraying.
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