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首页> 外文期刊>Journal of Mechanical Science and Technology >Performance characteristics of an integrated power generation system combining gas turbine combined cycle, carbon capture and methanation
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Performance characteristics of an integrated power generation system combining gas turbine combined cycle, carbon capture and methanation

机译:集成发电系统的性能特征结合燃气涡轮机联合循环,碳捕获和甲烷化

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摘要

This study analyzes the performance of an integrated power generation system that combines a gas turbine combined cycle (GTCC) with a methanation process. The methanation process uses hydrogen provided by a power-to-gas (PtG) process and carbon dioxide captured from the exhaust gas of the GTCC. The research aim was to maximize the GTCC performance through an effective integration between the GTCC and methanation. Two methods were proposed to utilize the steam generated from the methanation process. One was to supply it to the steam turbine bottoming cycle of the GTCC, and the other was to inject it into the GT combustor. Also investigated was the injection of oxygen generated in the PtG process into the gas turbine combustor. The largest improvements in the power and efficiency were predicted to be 19.3 % and 4.9 % through the combination of the steam supply to the bottoming cycle and the oxygen injection to the combustor.
机译:本研究分析了集成发电系统的性能,该系统将燃气涡轮机组组合循环(GTCC)与甲烷化过程结合起来。 甲烷化工艺使用由电力到气体(PTG)工艺提供的氢气和从GTCC的废气捕获的二氧化碳。 研究目的是通过GTCC和甲烷化之间的有效融合来最大化GTCC性能。 提出了两种方法来利用甲烷化过程产生的蒸汽。 一个是向GTCC的蒸汽轮机底循环供应它,另一个是将其注入GT燃烧器中。 还研究了将PTG工艺中产生的氧气注入燃气涡轮机燃烧器中。 通过蒸汽供应与燃烧器的蒸汽供应的组合,预计电力和效率的最大改善是19.3%和4.9%。

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