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Modeling of a 120 kW chemical looping combustion reactor system using a Ni-based oxygen carrier

机译:使用镍基氧气载体对120 kW化学循环燃烧反应堆系统进行​​建模

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A modeling tool for the investigation of chemical looping combustion (CLC) in a dual circulating fluidized bed (DCFB) reactor system is introduced. CLC is a novel combustion process with inherent CO2 separation, consisting of two fluidized bed reactors. an air reactor (AR) and a fuel reactor (FR). A solid oxygen carrier (OC) that circulates between the reactors, transports the necessary oxygen for the combustion. In the DCFB concept both AR and FR are designed as circulating fluidized beds (CFBs). Each CFB is modeled using a very simple structure in which the reacting gas is only in contact with a defined fraction of the well mixed solids. The solids distribution along the height axis is defined by a void fraction profile. Different parameters that characterize the gas-solids contact are merged into only one parameter: the fraction of solids exposed to the gas passing in plug flow (phi(s.core)) Using this model, the performance of the 120 kW DCFB chemical looping combustor at Vienna University of Technology is investigated. This pilot rig is designed for a Ni-based OC and natural gas as fuel. The influence of the reactor temperatures, solids circulation rate, air/fuel ratio and fuel power are determined. Furthermore, it is shown that with the applied kinetics data, the OC is only fully oxidized in the AR when the AR solids inventory is much larger than the FR solids inventory or when both reactors are very large. To compare different reactor systems, the effect of the solids distribution between AR and FR is studied and both gas and solids conversions are reported. (c) 2008 Elsevier Ltd. All rights reserved.
机译:介绍了一种用于研究双循环流化床(DCFB)反应器系统中化学循环燃烧(CLC)的建模工具。 CLC是一种具有固有CO2分离功能的新型燃烧过程,由两个流化床反应器组成。空气反应堆(AR)和燃料反应堆(FR)。在反应器之间循环的固体氧气载体(OC)输送燃烧所需的氧气。在DCFB概念中,AR和FR均设计为循环流化床(CFB)。每个CFB使用非常简单的结构进行建模,其中反应气体仅与一定比例的充分混合的固体接触。沿高度轴的固体分布由空隙率分布图定义。表征气固接触的不同参数仅合并为一个参数:暴露于活塞流中的气体中所暴露的固体分数(phi(s.core))使用此模型,120 kW DCFB化学回路燃烧器的性能在维也纳工业大学进行了调查。该试验台是为镍基超临界氧化物和天然气为燃料而设计的。确定反应器温度,固体循环速率,空燃比和燃料功率的影响。此外,显示出利用所施加的动力学数据,当AR固体存量远大于FR固体存量或两个反应器都很大时,OC仅在AR中被完全氧化。为了比较不同的反应器系统,研究了AR和FR之间固体分布的影响,并报告了气体和固体转化率。 (c)2008 Elsevier Ltd.保留所有权利。

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