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Separiting Al2O3 particles from high-speed flue gas by an induced flow recirculation in two-stage electrostatic precipitator

机译:通过诱导的两级静电除尘器中的诱导流动再循环从高速烟气中分离Al2O3颗粒

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摘要

Although fly ash is known to be harmful to human health, fly ash is full of metals and compounds that are useful in certain applications. Aluminum oxide is one of the economic compounds in fly ash emitted from coal-fired power plants where electrostatic precipitators (ESPs) are commonly used to collect fly ash. The collection efficiency of an ESP decreases rapidly when the passing airflow velocity increases and could get even worse because of particle reentrainment when rapping the collecting electrode for cleaning purposes. This paper presents how the flow recirculation, induced by square-wave structure, prevents the collection efficiency from dropping too fast by suppressing particle reentrainment. The results show that the ESP comes with the square-wave collecting electrode (ESP-SW) has higher collection efficiency than that comes with the traditional flat-plate collecting electrode (ESP-FP), and the difference gets larger when the airflow velocity increases. The particle reentrainment rate of the ESP-SW is up to 22% lower than that of the ESP-FP. Furthermore, when the airflow velocity goes higher, the square-wave collecting electrode collects more and more percentage of particles, while the flat-plate collecting electrode collects a fewer and fewer percentage of particles.
机译:虽然已知粉煤灰对人体健康有害,但粉煤灰充满金属和在某些应用中有用的化合物。氧化铝是从燃煤发电厂发射的粉煤灰中的经济化合物之一,其中静电除尘器(ESP)通常用于收集粉煤灰。当通过气流速度的增加时,ESP的收集效率随着颗粒重新制定而变得更糟,因为在敲击收集电极以进行清洁目的时。本文介绍了方波结构诱导的流动再循环如何防止收集效率通过抑制颗粒重新制定来脱落太快。结果表明,ESP随着方波收集电极(ESP-SW)具有比传统平板收集电极(ESP-FP)的收集效率更高,并且当气流速度增加时,差异变大。 ESP-SW的粒子再置率高于ESP-FP的22%。此外,当气流速度更高时,方波收集电极收集越来越多的颗粒,而平板收集电极收集较少且较少的颗粒百分比。

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