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Potassium-Modified Iron Ore as Oxygen Carrier for Coal Chemical Looping Combustion: Continuous Test in 1 kW Reactor

机译:Potassium-Modified铁矿石作为氧载体煤化学循环燃烧:连续测试1千瓦反应堆

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摘要

Chemical looping combustion (CLC) is a promising technology to capture CO2. However, the low conversion efficiency of fuel is the key challenge for the in situ gasification CLC with natural iron ore as an oxygen carrier. The reactivity of the selected 6% K2CO3-modified iron ore (6KMIO) was first determined by H2 and CO in TGA, and an enhanced reduction reactivity of 6KMIO was confirmed. Afterward, the feasibility of 6MKIO for coal CLC was tested in a 1 kW continuous reactor. The continuous reactor could be stably operated without any tendency of agglomeration or sintering among 6KMIO particles. Compared with use of the raw iron ore, the use of 6KMIO enhanced the coal conversion and the gasification-products conversion, promoting the CO2 capture efficiency. Furthermore, the mechanism of the catalyzed coal CLC process and the release of sulfur was explored.
机译:化学循环燃烧(CLC)是一种很有前途的技术来捕捉二氧化碳。燃料转换效率是关键原位气化CLC与挑战天然铁矿石作为氧载体。反应性的选择6% K2CO3-modified铁矿石(6 kmio)最初由H2和CO矫正性大动脉转位,和一个增强的还原反应6 kmio是证实。6 mkio煤炭CLC测试1千瓦连续的反应堆。稳定的操作没有任何趋势聚集或烧结6 kmio粒子。相比之下,使用原始的铁矿石,使用6 kmio增强煤炭转换和气化产品转换,促进二氧化碳捕获效率。催化煤CLC的过程和机制探讨了硫的释放。

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