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首页> 外文期刊>Journal of the air & waste management association >Inhibition and promotion of trace pollutant adsorption within electrostatic precipitators
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Inhibition and promotion of trace pollutant adsorption within electrostatic precipitators

机译:抑制和促进静电除尘器中微量污染物的吸附

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Among the technologies available for reducing mercury emissions from coal-fired electric utilities is the injection of a powdered sorbent, often some form of activated carbon, into the flue gas upstream of the particulate control device, most commonly an electrostatic precipitator (ESP). Detailed measurements of mercury removal within ESPs are lacking due to the hazardous environment they pose, increasing the importance of analysis and numerical simulation in understanding the mechanisms involved. Our previous analyses revealed that mercury adsorption by particles suspended in the gas and mercury adsorption by particles collected on internal ESP surfaces are not additive removal mechanisms but rather are competitive. The present study expands on this counterintuitive finding. Presented are results from numerical simulations reflecting the complete range of possible mass transfer boundary conditions representing mercury adsorption by the accumulated dust cake covering internal ESP collection electrodes. Using the two mercury removal mechanisms operating concurrently and interdependently always underperforms the sum of the two mechanisms’ individual contributions. Implications: The dual use of electrostatic precipitators (ESPs) for particulate removal and adsorption of trace gaseous pollutants such as mercury is increasing as mercury regulations become more widespread. Under such circumstances, mercury adsorption by particles suspended in the gas and mercury adsorption by particles collected on internal ESP surfaces are competitive. Together, the two mercury removal mechanisms always underperform the sum of their two independent contributions. These findings can inform strategies sought by electric utilities for reducing the usage costs of mercury sorbents.
机译:减少燃煤电力企业汞排放的可用技术包括将粉状吸附剂(通常为某种形式的活性炭)注入颗粒控制装置上游的烟道气中,最常见的是静电除尘器(ESP)。由于电除尘器所构成的危险环境,因此缺乏对除汞器中除汞的详细测量,这增加了分析和数值模拟在理解所涉及机制方面的重要性。我们以前的分析表明,悬浮在气体中的颗粒对汞的吸附和内部ESP表面收集的颗粒对汞的吸附不是添加剂去除机制,而是竞争性的。本研究扩展了这一违反直觉的发现。所呈现的是数值模拟的结果,反映了可能的传质边界条件的完整范围,该条件表示汞被覆盖在内部ESP收集电极上的累积粉尘蛋糕吸附。使用两个同时且相互依存的除汞机制,总是不能达到这两个机制各自贡献的总和。含义:随着汞法规的日益广泛,越来越多地使用静电除尘器(ESP)去除和吸附痕量气态污染物(如汞)。在这种情况下,悬浮在气体中的颗粒对汞的吸附和内部ESP表面收集的颗粒对汞的吸附具有竞争性。两种除汞机制加在一起总是不如它们两种独立贡献的总和。这些发现可以为电力公司寻求降低汞吸附剂使用成本的策略提供参考。

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