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The impact of fly ash resistivity and carbon content on electrostatic precipitator performance

机译:粉煤灰的电阻率和碳含量对静电除尘器性能的影响

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Despite the wide use of electrostatic precipitators for particulate control in pulverised coal combustion, there are still some aspects surrounding the performance of these devices which are not fully understood, particularly with respect to high carbon ash. The introduction of low NO_x burners to meet more stringent emissions regulations has also resulted in an increase in the carbon present in fly ash. An investigation was carried to assess how the operating conditions of a pilot-scale single-stage electrostatic precipitator test facility (ESPTF) affected the collection efficiency of two high carbon fly ashes. Whilst our findings demonstrated the effectiveness of the ESPTF in collecting both fly ash and carbon particles, the performance of the high-resistivity fly ash was significantly better than expected, particularly at higher temperatures. It was concluded that ESP performance of any particular fly ash and the separation of the carbon fraction may not necessarily be predicted by its resistivity alone.
机译:尽管在粉煤燃烧中广泛使用了静电除尘器来控制颗粒,但是围绕这些装置的性能仍有一些方面尚未完全了解,特别是对于高碳灰而言。引入低NO_x燃烧器以满足更严格的排放法规,也导致飞灰中碳的含量增加。进行了一项调查,以评估中试规模的单级静电除尘器测试设施(ESPTF)的运行条件如何影响两种高碳飞灰的收集效率。尽管我们的发现证明了ESPTF在收集粉煤灰和碳颗粒方面的有效性,但高电阻粉煤灰的性能明显好于预期,尤其是在较高温度下。得出的结论是,任何特定的粉煤灰的ESP性能以及碳组分的分离不一定都可以通过其电阻率来预测。

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