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CLOU process performance with a Cu-Mn oxygen carrier in the combustion of different types of coal with CO2 capture

机译:使用Cu-Mn氧载体在不同类型的煤中燃烧并捕获CO2的CLOU工艺性能

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摘要

The Chemical Looping with Oxygen Uncoupling (CLOU) process is a Chemical Looping Combustion (CLC) technology that allows the combustion of solid fuels with inherent CO2 separation by using oxygen carriers based on metal oxides. This technology has a low energy penalty and thus low CO2 capture costs. The oxygen carrier used in the CLOU process must be able to release gaseous oxygen, an aspect that limits the availability of metal oxides for this process. This work investigated the suitability of an oxygen carrier containing 34 wt% CuO and 66 wt% Mn-3 O-4 (active phase Cu1.5Mn1.5O4) prepared by granulation regarding the CO2 capture, combustion efficiency and lifetime of the particles. The effect of the different types of coal (two sub-bituminous and a lignite) on combustion and CO2 capture efficiencies by CLOU was studied at different oxygen carrier to coal ratios in a continuous 1.5 kWth rig. It was found that full combustion could be reached regardless of the coal used. However, CO2 capture efficiencies were highly determined by coal rank. Finally, it was found that working with oxygen carrier to coal ratios higher than phi = 4, which corresponded to values of the variation of the oxygen carrier conversion lower than Delta X-oc = 0.25, decreased the effect of chemical stress on the attrition rate. Therefore, it is clearly beneficial for the lifetime of oxygen carrier particles to operate with low variations of the oxygen carrier conversion (Delta X-oc) between fuel and air reactors.
机译:化学循环与氧气解耦(CLOU)工艺是化学循环燃烧(CLC)技术,该技术允许通过使用基于金属氧化物的氧载体来燃烧具有固有CO2分离作用的固体燃料。该技术能耗低,因此二氧化碳捕获成本低。 CLOU工艺中使用的氧气载体必须能够释放气态氧气,这限制了该工艺中金属氧化物的可用性。这项工作研究了通过制粒制备的含34 wt%CuO和66 wt%Mn-3 O-4(活性相Cu1.5Mn1.5O4)的氧载体的颗粒捕集率,燃烧效率和颗粒寿命。在连续1.5 kWth的试验台上,研究了在不同的氧气载气与煤炭比率下,CLOU研究了不同类型的煤(两种亚烟煤和褐煤)对燃烧和CO2捕集效率的影响。已经发现,不管使用哪种煤,都可以达到完全燃烧。但是,二氧化碳捕集效率在很大程度上取决于煤的等级。最后,发现以高于phi = 4的氧气载体与煤的比率工作(对应于低于Delta X-oc = 0.25的氧气载体转化率的变化值),减少了化学应力对磨损率的影响。 。因此,对于氧气载体颗粒的寿命显然有利的是在燃料和空气反应器之间的氧气载体转化率(ΔX-oc)的低变化下运行。

著录项

  • 来源
    《Fuel》 |2018年第15期|605-612|共8页
  • 作者单位

    Inst Carboquim ICB CSIC, Dept Energy & Environm, Miguel Luesma Castan 4, Zaragoza 50018, Spain;

    Inst Carboquim ICB CSIC, Dept Energy & Environm, Miguel Luesma Castan 4, Zaragoza 50018, Spain;

    Inst Carboquim ICB CSIC, Dept Energy & Environm, Miguel Luesma Castan 4, Zaragoza 50018, Spain;

    Inst Carboquim ICB CSIC, Dept Energy & Environm, Miguel Luesma Castan 4, Zaragoza 50018, Spain;

    Inst Carboquim ICB CSIC, Dept Energy & Environm, Miguel Luesma Castan 4, Zaragoza 50018, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CO2 capture; Coal combustion; CLOU; Mixed oxide; Copper; Manganese;

    机译:二氧化碳捕集;煤燃烧;CLOU;混合氧化物;铜;锰;

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