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Fuel reactor modelling in chemical looping with oxygen uncoupling process

机译:化学循环与氧气解偶联过程中的燃料反应堆建模

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Solid fuel combustion via chemical looping with oxygen uncoupling (CLOU) represents a novel route for CO2 capture with minimal energy penalty. An essential part of the viability of a CLOU system is based on the behaviour of the fuel reactor. This paper presents a one-dimensional fluidized bed model capable of describing the operation of the fuel reactor involved in CLOU. The model considers physical phenomena relevant to CLOU, such as oxygen carrier decomposition, combustion of coal with molecular oxygen, fluidized bed hydrodynamics, and transfer of heat within the reactor. The performance of a CLOU fuel reactor fed with bituminous coal and a TiO2-supported CuO oxygen carrier was evaluated by means of modelling. A reference case was first defined and simulated, after which the effect of various process parameters on the results was assessed by parameter variation. For the reference case conditions with a temperature of 960 degrees C and solids inventory of 400 kg/MWf in the reactor and without utilization of a carbon separation system, a CO2 capture efficiency of approximately 90% was predicted. A CO2 capture efficiency of 95% could be reached by optimizing the operating conditions. It was found that when using low-reactive coals, a carbon stripper is required to obtain a feasible CO2 capture rate. Overall, the model predictions appeared to be in agreement with results presented in the literature. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过化学循环与氧解偶联(CLOU)进行的固体燃料燃烧代表了一种以最少的能量损失捕获CO2的新颖途径。 CLOU系统可行性的重要部分是基于燃料反应堆的性能。本文提出了一维流化床模型,该模型能够描述CLOU中涉及的燃料反应堆的运行。该模型考虑了与CLOU相关的物理现象,例如氧载体分解,煤与分子氧的燃烧,流化床流体动力学以及反应器内的热传递。通过建模评估了掺有烟煤和TiO2负载的CuO氧载体的CLOU燃料反应堆的性能。首先定义和模拟一个参考案例,然后通过参数变化评估各种工艺参数对结果的影响。对于温度为960摄氏度,反应堆中固体存量为400 kg / MWf且未利用碳分离系统的参考情况,预计CO2捕集效率约为90%。通过优化操作条件,可以实现95%的二氧化碳捕获效率。发现使用低反应性煤时,需要使用碳汽提塔来获得可行的CO2捕集率。总体而言,模型预测似乎与文献中提出的结果一致。 (C)2015 Elsevier Ltd.保留所有权利。

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