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Application of sorption enhanced water gas shift for carbon capture in integrated steelworks

机译:吸附增强水煤型在碳捕获中的应用

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In integrated steelworks a large fraction of total CO2 is emitted from the power plant, where carbon-rich blast furnace gas (BFG) is burned to produce electricity by means of a steam cycle or a gas-steam combined cycle. The aim of the present paper is to assess the potential of Sorption Enhanced Water Gas Shift (SEWGS) process for CO2 capture from blast furnace gas. Firstly, a reference combined cycle applied to blast furnace steel plant is defined. Mass flow rate and composition of the steel plant off-gas used as fuel in the combined cycle have been derived from a large integrated steel plant. Then, the application of the SEWGS process is investigated and compared to a reference monoethanolamine (MEA)-based post-combustion absorption option. Two different SEWGS plant layouts are proposed together with two different sorbents. SEWGS achieves 85% of CO2 avoided with electric efficiency of 39% with the advanced sorbent.
机译:在集成的钢厂中,从发电厂发射大部分总共CO 2,其中富含碳的高炉气体(BFG)致燃烧以通过蒸汽循环或气体蒸汽组合循环产生电力。本文的目的是评估来自高炉气体的CO2捕获的吸附增强的水气体换水(SEWGS)过程的潜力。首先,定义了应用于高炉钢厂的参考组合循环。在组合循环中使用的钢铁厂废气的质量流量和组成是来自大型集成钢铁厂的燃料。然后,研究了缝合工艺的施加,并与基于燃烧后吸收选择的参考单乙醇胺(MEA)进行比较。两个不同的缝合植物布局与两种不同的吸附剂一起提出。 SEWGS达到85%的二氧化碳,电效率为39%,高级吸附剂避免。

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