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Mercury capture by native fly ash carbons in coal-fired power plants

机译:燃煤电厂中的天然粉煤灰碳捕获汞

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The control of mercury in the air emissions from coal-fired power plants is an ongoing challenge. The native unburned carbons in fly ash can capture varying amounts of Hg depending upon the temperature and composition of the flue gas at the air pollution control device, with Hg capture increasing with a decrease in temperature; the amount of carbon in the fly ash, with Hg capture increasing with an increase in carbon; and the form of the carbon and the consequent surface area of the carbon, with Hg capture increasing with an increase in surface area. The latter is influenced by the rank of the feed coal, with carbons derived from the combustion of low-rank coals having a greater surface area than carbons from bituminous- and anthracite-rank coals. The chemistry of the feed coal and the resulting composition of the flue gas enhances Hg capture by fly ash carbons. This is particularly evident in the correlation of feed coal Cl content to Hg oxidation to HgCl_2, enhancing Hg capture. Acid gases, including HC1 and H_2SO_4 (at small concentrations) and the combination of HC1 and NO_2, in the flue gas can enhance the oxidation of Hg. In this presentation, we discuss the transport of Hg through the boiler and pollution-control systems, the mechanisms of Hg oxidation, and the parameters controlling Hg capture by coal-derived fly ash carbons.
机译:控制燃煤电厂废气中的汞是一项持续的挑战。飞灰中天然的未燃烧碳可以根据空气污染控制装置中的烟气温度和烟气成分捕获不同量的汞,汞捕获量随温度的降低而增加。飞灰中的碳含量,汞的捕获量随碳含量的增加而增加;碳的形式和随之产生的表面积,汞的捕获量随表面积的增加而增加。后者受进料煤等级的影响,与低烟煤和无烟煤相比,低烟煤燃烧产生的碳具有更大的表面积。进料煤的化学性质和所产生的烟道气成分提高了粉煤灰碳对汞的捕获。这在进料煤Cl含量与Hg氧化为HgCl_2,增强Hg捕获的相关性中特别明显。烟气中的酸性气体(包括HCl和H_2SO_4(低浓度)以及HC1和NO_2的组合)可以增强Hg的氧化。在本演讲中,我们讨论了汞通过锅炉和污染控制系统的运输,汞氧化的机理以及控制煤衍生粉煤灰碳捕集汞的参数。

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