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首页> 外文期刊>The Korean journal of chemical engineering >Experimental and numerical predictions of ash particle erosion in SCR monolithic catalysts for coal-fired utility boilers
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Experimental and numerical predictions of ash particle erosion in SCR monolithic catalysts for coal-fired utility boilers

机译:燃煤电站锅炉SCR整体式催化剂中灰分颗粒侵蚀的实验和数值预测

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摘要

Erosion by particles in monolithic selective catalyst reduction (SCR) processes can reduce the operational life of a catalyst and threaten the performance of the SCR system. We present an integrated approach implemented in two stages to predict the erosion condition of SCR processes. First, a 3D computational fluid dynamics (CFD) model was established for a full-sized SCR reactor to obtain information on the flue gas and ash particles at the entrance of the catalyst layer. Second, the detailed inner catalyst structure layers were simulated using MATLAB and a catalyst erosion model was developed, according to the initial and boundary conditions obtained using the CFD models. Relative cold state tests and erosion measurements were conducted to validate the simulation results. The model was applied to investigate the relationship between the reactor installment, the gas-solid flow field and the catalyst erosion. Moreover, a series of retrofit schemes were implemented to confirm that this method can be used in engineering applications.
机译:整体式选择性催化剂还原(SCR)过程中颗粒的侵蚀会缩短催化剂的使用寿命,并威胁SCR系统的性能。我们提出了在两个阶段实施的集成方法,以预测SCR工艺的腐蚀状况。首先,为全尺寸SCR反应器建立了3D计算流体动力学(CFD)模型,以获取有关催化剂层入口处的烟气和粉尘颗粒的信息。其次,根据使用CFD模型获得的初始条件和边界条件,使用MATLAB仿真详细的内部催化剂结构层,并开发了催化剂侵蚀模型。进行了相对冷态测试和腐蚀测量,以验证模拟结果。该模型用于研究反应器装置,气固流场和催化剂侵蚀之间的关系。此外,实施了一系列改造方案以确认该方法可用于工程应用。

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