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Simulation of a Fuel Reactor for Chemical Looping Combustion with Oxygen Uncoupling
Theoretical Foundations of Chemical Engineering ( IF 0.8 ) Pub Date : 2024-01-17 , DOI: 10.1134/s0040579523050299
R. A. Shishkin

Chemical looping with oxygen uncoupling (CLOU), an environmentally friendly method for power generation, has been extensively developed in recent years. The main disadvantages of this method, associated with incomplete fuel combustion, ash withdrawal, and dust entrainment, can be solved by changing the structural and process parameters. The simplest fuel reactor for the combustion of methane gas is considered using computer simulation. The gas-phase pressure distribution and its velocity gradient in transverse and longitudinal cross-sections of the reactor are studied in the present work. Using the obtained data, the maximum power of the fuel reactor for implementing the CLOU process is calculated and the requirements for an oxygen accumulator to achieve the claimed performance are formulated.



中文翻译:

氧解偶联化学循环燃烧燃料反应器的模拟

氧解偶联化学循环(CLOU)是一种环保的发电方法,近年来得到了广泛的发展。该方法的主要缺点是燃料燃烧不完全、排灰和夹带粉尘,可以通过改变结构和工艺参数来解决。使用计算机模拟考虑了最简单的甲烷气体燃烧燃料反应堆。本工作研究了反应器横向和纵向截面上的气相压力分布及其速度梯度。利用获得的数据,计算用于实施CLOU过程的燃料反应堆的最大功率,并制定氧气储存器达到所要求性能的要求。

更新日期:2024-01-18
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