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首页> 外文期刊>Fuel Processing Technology >The use of a low-cost oxygen carrier prepared from red mud and copper ore for in situ gasification chemical looping combustion of coal
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The use of a low-cost oxygen carrier prepared from red mud and copper ore for in situ gasification chemical looping combustion of coal

机译:使用由红泥和铜矿制备的低成本氧载体,用于原位气化化学循环燃烧

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摘要

In this work, cement bonded fine waste particles (< 0.1 mm) of copper ore and red mud are used as a kind of low-cost oxygen carrier (OC) for potential application in in situ gasification chemical looping combustion (iG-CLC) of coal. The mixing ratio of copper ore to red mud is selected as 10.9:89.1 (by mass) based on the consideration of thermoneutrality in the fuel reactor, and the cement content accounts for 20 wt% in the prepared OC. The CLC performance with coal char as fuel indicates that this OC can facilitate the char gasification process and exhibits good reactivity towards char gasification products, which can be ascribed to the catalytic effect of alkali metal contents on char gasification and the excellent oxygen transfer capability of the OC. Moreover, when lignite is used as fuel, the escape of pyrolysis products would decrease the CO2 yield in comparison to that with lignite char as fuel, and the OC still exhibits better CLC reaction performance than pure red mud. Additionally, the effect of coal/char type on the combustion efficiency is also investigated. Twenty cyclic redox tests with lignite as fuel show that this OC maintains stable redox reactivity and good anti-agglomeration property. Overall, this work demonstrates that the proposed OC can be attractive for industrial application in iG-CLC processes.
机译:在这项工作中,水泥键合细废颗粒(<0.1mm)的铜矿和红泥用作一种低成本的氧载体(OC),用于潜在应用于原位气化化学循环燃烧(IG-CLC)煤炭。基于对燃料反应器中的热源性的考虑,选择10.9:89.1(按质量)的铜矿与红色泥浆的混合比,并且水泥含量在制备的OC中占20wt%。具有燃料的CLC性能作为燃料表明该OC可以促进炭气化过程,并且对炭气化产品表现出良好的反应性,这可以归因于碱金属含量对炭气化和优异的氧气转移能力的催化作用。 OC。此外,当褐煤用作燃料时,热解产品的逃逸将降低与褐煤作为燃料相比的CO 2产率,并且OC仍然表现出比纯红色泥浆更好的CLC反应性能。另外,还研究了煤/炭型对燃烧效率的影响。 20个循环氧化还原试验用褐煤作为燃料表明,该OC保持稳定的氧化还原反应性和良好的抗凝聚性。总体而言,这项工作表明,拟议的OC可以对IG-CLC工艺的工业应用具有吸引力。

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