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CO_2 valorization through direct methanation of flue gas and renewable hydrogen: A technical and economic assessment

机译:通过烟气和可再生氢的直接甲烷化来CO_2增值:技术和经济评估

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Under the scenario of an increasing sharing of renewable energy, Power to Gas technology may offer an effective and valuable solution for surplus energy management, accounting for a large and long-term chemical storage. In the present study an innovative Power to Synthetic Natural Gas (SNG) process has been described and investigated from a techno-economic and environmental point of view. The configuration is based on a methanation process, directly applied on flue gas stream thus acting both as a CO2 capture and sequestration technology and as renewable energy storage mechanism. Reacting hydrogen is produced via water electrolysis powered by surplus of renewable energy, normally low-priced otherwise wasted. With a reference capacity factor around 4000 h/y, the resulting SNG cost is 0.34 (sic)/Nm(3) based on a carbon tax equal to 30 (sic)/t CO2. The obtained results are attractive and consistent with the fact that future investment cost for water electrolysis is decreasing accordingly. (C) 2018 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:在可再生能源共享日益增加的情况下,“电力制气”技术可能为过剩的能源管理提供有效且有价值的解决方案,从而解决了长期和长期的化学品存储问题。在本研究中,已经从技术经济和环境的角度对创新的合成天然气(SNG)流程进行了描述和研究。该配置基于甲烷化工艺,直接应用于烟气流中,因此既充当了CO2捕集和封存技术,又充当了可再生能源的存储机制。氢气的反应是通过水电解产生的,而水电解则由多余的可再生能源提供动力,否则通常会廉价出售。当参考容量系数约为4000 h / y时,基于等于30(sic)/ t CO2的碳税,所得的SNG成本为0.34(sic)/ Nm(3)。所获得的结果是有吸引力的,并且与水电解的未来投资成本相应降低的事实一致。 (C)2018年由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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