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Comparative evaluation of the performance of coal combustion in 0.5 and 50 kWth chemical Looping combustion units with ilmenite, redmud or iron ore as oxygen carrier.

机译:在以钛铁矿,赤泥或铁矿石为氧气载体的0.5和50 kWth化学循环燃烧装置中煤燃烧性能的比较评估。

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摘要

Chemical Looping Combustion (CLC) is one of the most promising technologies to achieve the CO2 capture at a low economic and energetic penalty. In CLC the combustion is split in two steps: fuel combustion assisted by an oxygen carrier in the fuel reactor, and oxygen carrier regeneration in the air reactor by oxygen in air. Usually, the air and fuel reactors are interconnected fluidized beds, with the oxygen carrier circulating between them. Thus, the CO2 capture is inherent to the CLC process. The use of solid fuels in CLC is attracting great attention due to coal is the most abundant fuel, and burning biomass with CO2 capture would allow to reduce the atmospheric CO2 concentration. The in situ Gasification CLC (iG-CLC) allows the conversion of the solid fuel by performing both gasification and combustion of gasification products in the fuel reactor. In iG-CLC complete combustion is not reached, and an oxygen polishing step is required downstream by using a small fraction of pure oxygen.
机译:化学循环燃烧(CLC)是实现CO2捕集的最有前途的技术之一,其经济性和能耗低。在CLC中,燃烧分为两个步骤:在燃料反应器中借助氧气载体辅助燃料燃烧,以及在空气反应器中通过空气中的氧气再生氧气载体。通常,空气和燃料反应器是相互连接的流化床,氧气载体在它们之间循环。因此,CO2捕获是CLC过程所固有的。由于煤是最丰富的燃料,因此在CLC中使用固体燃料备受关注,燃烧具有CO2捕集量的生物质可以降低大气中的CO2浓度。原位气化CLC(iG-CLC)通过在燃料反应器中进行气化和气化产物的燃烧来实现固体燃料的转化。在iG-CLC中,无法达到完全燃烧,并且在下游需要使用一小部分纯氧进行氧气抛光步骤。

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