首页> 外文期刊>International Journal of Greenhouse Gas Control >Demonstration of chemical-looping with oxygen uncoupling (CLOU) process in a 1.5 kW(th) continuously operating unit using a Cu-based oxygen-carrier
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Demonstration of chemical-looping with oxygen uncoupling (CLOU) process in a 1.5 kW(th) continuously operating unit using a Cu-based oxygen-carrier

机译:演示了使用基于铜的氧气载体在1.5 kW(th)连续运行单元中采用氧气解耦(CLOU)工艺进行化学循环

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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. As in the CLC technology, in the CLOU process the oxygen necessary for the fuel combustion is supplied by a solid oxygen-carrier, which contains a metal oxide. The CLOU technology uses the property of the copper oxide which can generate gaseous oxygen at high temperatures. The oxygen generated by the oxygen-carrier reacts directly with the solid fuel, which is mixed with the oxygen-carrier in the fuel-reactor. The reduced oxygen-carrier is transported to the air-reactor where it is oxidized by air. The flue gases from the fuel-reactor are only CO2 and H2O, since fuel is not mixed with air. This work demonstrates the proof of the concept of the CLOU technology burning coal in a 1.5 kW(th) continuously operated unit consisting of two interconnected fluidized-bed reactors. A bituminous coal was used as fuel. An oxygen-carrier prepared by spray drying containing 60 wt.% CuO and MgAl2O4 as supporting material was used as oxygen-carrier. The effects of fuel-reactor temperature, coal feeding rate, and solids circulation flow rate on the combustion and on the CO2 capture efficiencies were investigated. Fast reaction rates of oxygen generation were observed with the oxygen-carrier and full combustion of coal was attained in the plant using a solids inventory approximate to 235 kg/MWth in the fuel-reactor. In addition, values close to 100% in carbon capture efficiency were obtained at 960 degrees C. Results obtained are analyzed and discussed in order to be useful for the scale-up of a CLOU process fuelled with coal. (C) 2011 Elsevier Ltd. All rights reserved.
机译:氧气解耦(CLOU)工艺进行化学循环是一种化学循环燃烧(CLC)技术,可通过固有的CO2分离燃烧固体燃料。与CLC技术一样,在CLOU过程中,燃料燃烧所需的氧气由包含金属氧化物的固体氧气载体提供。 CLOU技术利用了氧化铜的特性,该氧化铜可以在高温下生成气态氧气。由氧载体产生的氧直接与固体燃料反应,该固体燃料在燃料反应器中与氧载体混合。还原的氧载体被输送到空气反应器中,在此被空气氧化。来自燃料反应器的烟道气仅是CO2和H2O,因为燃料不会与空气混合。这项工作证明了CLOU技术在1.5 kW(th)连续运行的单元中燃烧煤炭的概念的证明,该单元由两个相互连接的流化床反应器组成。烟煤用作燃料。通过喷雾干燥制备的包含60重量%的CuO和MgAl 2 O 4作为载体材料的氧气载体被用作氧气载体。研究了燃料反应器温度,给煤速率和固体循环流速对燃烧和CO2捕集效率的影响。观察到氧气与氧气载体的快速反应速率,并且使用燃料反应器中约235 kg / MWth的固体存量在工厂中使煤完全燃烧。此外,在960摄氏度下获得了接近100%的碳捕集效率值。对获得的结果进行了分析和讨论,以便用于以煤为燃料的CLOU工艺的规模放大。 (C)2011 Elsevier Ltd.保留所有权利。

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