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Techno-economic and environmental evaluations of large scale gasification-based CCS project in Romania

机译:罗马尼亚基于气化的大型CCS项目的技术经济和环境评估

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Gasification is a promising technology in terms of reducing carbon capture energy and cost penalties as well as for multi-fuel multi-product operation capability. The paper evaluates two carbon capture options in terms of main techno-economic indicators. The first option involves pre-combustion capture, the syngas being catalytically shifted to convert carbon species into CO_2 and H_2. Gas-liquid absorption is used for separate H_2S and CO_2 capture, then clean gas is used for power generation. The second capture option is based on post-combustion capture using chemical absorption. The most promising gasifiers were evaluated in a CCS design. Evaluated coal-based gasification concepts generate 300-500 MW net power with a flexible hydrogen output from zero up to 200 MW with carbon capture rate higher than 90%. The main techno-economic and environmental indicators of evaluated plant concepts with CCS were presented in detail in the context of development of a large scale CCS project in Romania. The evaluations of the IGCC designs with CCS were done in comparison with the conventional IGCC without CCS. The integrated assessments show that IGCC with pre-combustion capture is one promising technology for the future low-carbon economy.
机译:就减少碳捕获能量和成本罚款以及多燃料多产品操作能力而言,气化是一种有前途的技术。本文根据主要技术经济指标评估了两种碳捕集方案。第一种选择涉及燃烧前捕获,合成气被催化转化为将碳物质转化为CO_2和H_2。气液吸收用于分别捕获H_2S和CO_2,然后将清洁的气体用于发电。第二种捕获方式是基于燃烧后利用化学吸收的捕获。最有前途的气化炉在CCS设计中进行了评估。经评估的基于煤的气化概念可产生300-500 MW的净功率,灵活的氢气输出从零到200 MW,碳捕获率高于90%。在罗马尼亚开发大型CCS项目的背景下,详细介绍了使用CCS评估的工厂概念的主要技术经济和环境指标。与没有CCS的常规IGCC相比,采用CCS的IGCC设计进行了评估。综合评估表明,具有燃烧前捕获功能的IGCC是未来低碳经济的一项有前途的技术。

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