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Impact of Carbon-in-Ash on Mercury Removal Across Particulate Control Devices in Coal-Fired Power Plants

机译:碳粉碎机对燃煤发电厂微粒控制装置汞去除的影响

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Emissions of mercury to the environment, in particular air emissions, are of increasing concern in the US. US EPA has studied sources of mercury emissions, and coal-fired power plants were found to discharge the largest amount of mercury into the atmosphere as compared to other manmade sources. In December 2000, US EPA made a determination to regulate mercury emissions from coal-fired electric utility boilers. Compliance with the as yet-to-be-determined regulations may necessitate additional air pollution control devices being installed at utility power plants. There is a considerable amount of data in the literature showing that high levels of mercury removal can occur in existing control devices. Particulate control devices such as electrostatic precipitators and fabric filters are capable of removing mercury, but the level of removal is highly variable, depending on coal type, boiler configuration, mercury speciation in flue gas, and operating conditions in the control device. The composition of the fly ash has been shown to be an important factor in mercury removal (and oxidation). However, the evidence has been, until recently, largely anecdotal. In this paper, we review recent literature on the effect of fly ash carbon content on mercury as well as present the results of current sampling campaigns on full-scale coal-fired power plants on which mercury control processes are being demonstrated. Correlations of Hg removal with C/Hg are developed for a range of coal and boiler types, and particulate control device operating conditions.
机译:对环境的汞排放,特别是空气排放,对美国的关注越来越大。美国EPA研究了汞排放来源,与其他人类来源相比,发现燃煤发电厂将最大数量的汞排放到大气中。 2000年12月,美国EPA决心调节燃煤电厂锅炉的汞排放。遵守尚未确定的规定可能需要在公用事业电厂安装额外的空气污染控制装置。在文献中存在相当大的数据,显示在现有的控制装置中可能发生高水平的汞去除。诸如静电除尘器和织物过滤器的颗粒控制装置能够去除汞,但取决于煤型,锅炉配置,烟气中的烟气中的烟气,以及控制装置的运行条件,去除水平是高度可变的。粉煤灰的组成已被证明是汞去除(和氧化)的重要因素。但是,证据已经迄今为止,最近,轶事。在本文中,我们审查了最近关于粉煤灰碳含量对汞的影响的文献,以及目前对汞控制过程的全规模燃煤电厂采样运动的结果。用C / HG的Hg去除的相关性用于一系列煤和锅炉类型,以及微粒控制装置的操作条件。

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