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An experimental study of ash particles adhesion force in flue gas

机译:烟气中灰粒粘附力的实验研究

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In this study, experiments and analyses have been carried out to investigate the influences of denitrification and flue gas Waste Heat Recovery Systems (WHRS) on ash particles adhesion force. With use of a denitrification system, it is found that the ash particles adhesion force is strongly influenced by the mass ratio, R, of (NH4)HSO4 to ash. Three influencing zones are identified, i.e., little effect zone (R 1: 60). It is necessary to operate in the little effect zone in order to avoid ash deposition in the air preheater. With use of a WHRS, it is found that the ash adhesion force is strongly affected by the flue gas temperature in comparison with the Engineering Acid Dew Temperature (EADT). With decreasing temperature below the EADT, both the collected ash amount and ash adhesion force rise, and the detected particles size increases, indicating particle accumulation that improves ash collection efficiency. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:本研究通过实验分析研究了反硝化和烟气余热回收系统(WHRS)对灰粒粘附力的影响。利用反硝化系统发现,灰粒粘附力受(NH4)HSO4与灰分的质量比R的强烈影响。确定了三个影响区,即小效应区(R 1:60)。有必要在小影响区运行,以避免灰分沉积在空气预热器中。使用WHRS发现,与工程酸露温度(EADT)相比,烟气温度对灰分粘附力的影响很大。随着温度的降低,收集的灰分量和灰分粘附力均升高,检测到的颗粒尺寸增加,表明颗粒堆积提高了灰分收集效率。(C) 2017年日本粉末技术学会。由Elsevier B.V.和日本粉末技术协会出版。保留所有权利。

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