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Techno-economical and environmental evaluations of IGCC power generation process with carbon capture and storage (CCS)

机译:使用碳捕获和存储(CCS)的IGCC发电过程的技术经济和环境评估

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Integrated Gasification Combined Cycle (IGCC) is a power generation technology in which the solid feedstock (coal, lignite, biomass etc.) is partially oxidized with oxygen and steam to produce syngas. In a conventional IGCC design for power generation without carbon capture, the syngas is purified for dust and hydrogen sulphide removal and then sent to a Combined Cycle Gas Turbine (CCGT) for power production. Carbon capture and storage (CCS) technologies are expected to play a significant role in the coming decades for reducing the greenhouse gas emissions. IGCC is one of the power generation technologies having the highest potential to capture carbon dioxide with low penalties in term of plant energy efficiency, capital and operational costs.This paper investigates the most important techno-economical and environmental indicators (e.g. net and gross power output, ancillary power consumption, plant efficiency, specific capital cost investment, operational costs, specific carbon dioxide emissions etc.) for power generation with CCS applied to an IGCC scheme. The coal-based IGCC case study investigated in the paper produces around 400 MW net electricity with 90 % carbon capture rate. Similar power plant schemes without carbon capture step were used as references for comparison.
机译:整体气化联合循环(IGCC)是一种发电技术,其中固体原料(煤,褐煤,生物质等)被氧气和蒸汽部分氧化以产生合成气。在常规的IGCC设计中,在没有碳捕集的情况下进行发电,将合成气净化以去除灰尘和硫化氢,然后将其送至联合循环燃气轮机(CCGT)进行发电。碳捕集与封存(CCS)技术有望在未来几十年中为减少温室气体排放发挥重要作用。 IGCC是一种捕集二氧化碳的潜力最大的发电技术,其在工厂能效,资本和运营成本方面的罚款较低。 ,CCS应用于IGCC计划发电的辅助电力消耗,工厂效率,特定的资本成本投资,运营成本,特定的二氧化碳排放量等)。本文研究的基于煤炭的IGCC案例研究产生了约400 MW的净电力,碳捕获率达90%。没有碳捕获步骤的类似发电厂方案被用作比较的参考。

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