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Effects of Coal Ash on CuO as an Oxygen Carrier for Chemical Looping with Oxygen Uncoupling

机译:粉煤灰对CuO作为氧解耦化学环的氧载体的影响

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摘要

Chemical looping with oxygen uncoupling (CLOU) features the natural release of gaseous oxygen from oxygen carriers to efficiently burn solid fuels, producing a nearly nitrogen-free CO, stream for carbon capture while eliminating the need to install energy-intensive air separation units. When it comes to the combustion of coal with CLOU, there is a risk that coal ash may interact with oxygen carriers, which could lead to undesired agglomeration or form complexes that do not efficiently transport oxygen. To investigate the potential influence of coal ash on Cu-based oxygen carriers, the equilibrium compositions of coal ash/CuO systems were calculated through thermodynamic modeling and the oxygen transport capacity of CuO in the presence of coal ash during redox cycles was measured using a thermogravimetric analyzer (TGA). Two possible mechanisms of coal ash/CuO interaction were predicted: (1) the formation of the molten phase at a lower temperature driven by the alkali species in ash and Cu2O and (2) the solid solid reaction between ash-derived Al2O3/Fe2O3 and CuO/Cu2O to yield Cu Al and Cu Fe complexes with high equilibrium O-2 partial pressures. The effects of coal ash on the agglomeration propensity and oxygen transport efficiency of CuO depend strongly upon ash composition, temperature, ash/CuO ratio, and gas atmosphere. Consistent with thermodynamic modeling predictions, TGA tests revealed the significant deactivating effect of Illinois #6 (IL6) coal ash and the formation of a complex compound. Sintering was detected for the IL6 ash/CuO mixture at 900 degrees C. The formation of CuAl2O4 and CuFe2O4 in the IL6 ash/CuO mixture was further confirmed by X-ray diffraction, and scanning electron microscopy energy-dispersive X-ray spectroscopy displayed the adhesion and spread of CuO on the surface of IL6 ash. Powder River Basin coal ash was theoretically predicted and experimentally proven to be much less risky to CuO.
机译:带有氧气解偶联(CLOU)的化学循环的特点是从氧气载体中自然释放出气态氧气,以有效燃烧固体燃料,产生几乎不含氮的CO气流以进行碳捕集,同时无需安装能耗大的空气分离装置。当使用CLOU燃烧煤炭时,煤灰有可能与氧气载体相互作用,这可能导致不希望的团聚或形成不能有效输送氧气的配合物。为了研究粉煤灰对铜基氧载体的潜在影响,通过热力学模型计算了粉煤灰/ CuO系统的平衡组成,并利用热重法测量了粉煤灰存在下氧化还原循环中CuO的输氧能力。分析仪(TGA)。预测了煤灰/ CuO相互作用的两种可能机理:(1)由灰分和Cu2O中的碱物质驱动,在较低温度下形成熔融相;(2)灰分衍生的Al2O3 / Fe2O3和CuO / Cu2O生成具有高平衡O-2分压的Cu Al和Cu Fe配合物。煤灰对CuO的团聚倾向和氧传输效率的影响在很大程度上取决于灰分的组成,温度,灰分/ CuO的比例和气体气氛。与热力学模型预测一致,TGA测试表明伊利诺伊州#6(IL6)煤灰具有显着的钝化作用,并形成了复杂的化合物。在900摄氏度下检测到IL6灰分/ CuO混合物的烧结。通过X射线衍射进一步证实了IL6灰分/ CuO混合物中CuAl2O4和CuFe2O4的形成,并且扫描电子显微镜能量色散X射线光谱显示CuO在IL6灰分表面上的附着和扩散。从理论上预测并通过实验证明,粉河流域的煤灰对CuO的危害要小得多。

著录项

  • 来源
    《Energy & fuels》 |2018年第11期|11656-11665|共10页
  • 作者

    Dai Jinze; Whitty Kevin;

  • 作者单位

    Univ Utah, Dept Chem Engn, 50 South Cent Campus Dr,MEB Room 3290, Salt Lake City, UT 84112 USA;

    Univ Utah, Dept Chem Engn, 50 South Cent Campus Dr,MEB Room 3290, Salt Lake City, UT 84112 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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