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Study on formation, deposition and fouling prediction of Ammonium bisulfate (ABS) at air preheater in utility boiler

机译:公用事业锅炉空气预热器中双硫酸铵(ABS)的形成,沉积和污垢预测研究

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The ammonium bisulfate (ABS) widely exists at air preheater. The ABS may deposit and foul at the heating elements of air preheater because of the chemical reaction between SO_3 at flue gas side and ammonia slip from SCR excess injection. The heat transfer equation between flue gas side and air side is constructed and simplified using physical and mathematical models accordingly. The finite difference method is applied to solve numerically by means of iterative computation. Based on the NH_3 and SO_3 concentration data from the real time data in the actual operation and the discrete calculation of the temperature field, the Radian number (Ra) is used to evaluate the possibility of ABS fouling and the developing trend of heating elements at the air preheater. A 1000MW ultra supercritical boiler is selected as example. The ABS deposit area is simulated under different working conditions 100%BMCR, 75% BMCR and 50% BMCR. The possible ABS deposition and fouling is analyzed for operators to evaluate the risk of cold-end and hot-end heating elements plate at air preheater. As the working load decreases lower than 50%BMCR. the deposition and fouling position could extend to the hot-end area of heating elements at air preheater.
机译:双硫酸铵(ABS)广泛存在于空气预热器。由于烟道气侧的SO_3之间的化学反应和来自SCR过量注射的氨滑动的化学反应,ABS可以在空气预热器的加热元件上沉积和污染。烟道气侧和空气侧之间的传热方程是使用物理和数学模型的构造和简化。应用有限差分法通过迭代计算数值求解。基于来自实际操作中的实际数据的NH_3和SO_3浓度数据和温度场的离散计算,弧度数(RA)用于评估ABS FOULLING的可能性以及加热元件的发展趋势空气预热器。选择1000MW超超临界锅炉作为示例。在100%BMCR,75%BMCR和50%BMCR下模拟ABS沉积区域。分析了可能的ABS沉积和污垢,以评估空气预热器处的冷端和热端加热元件板的风险。随着工作负荷降低低于50%BMCR。沉积和污垢位置可以延伸到空气预热器的加热元件的热​​端区域。

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