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Research on Flue Gas Mercury Removal on a Lab-Scale and a Pilot-Scale Reactor

机译:实验室规模和中试反应堆烟气脱汞研究

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Due to its harm to human health, mercury emission from coal combustion power stations has brought more and more concern. The existed APCDs such as bag filter, electrostatic precipitator and wet FGD may remove the oxidized mercury from the flue gas. However, they have no obvious removal efficiency on the elemental mercury. The main direction in the development of new mercury removal technology is to transform the elemental mercury into oxidized mercury and particulate-bounded mercury, which may be effectively removed. A lab-scale reation system and a pilot-scale reactor were set up to conduct the experiment on removal of Hg in the sorbent evaluation test-bed in order to research different sorbents for the mercury removal efficiency. The experimental results indicate that the experimental systems can provide accurate information of sorbent evaluation under real flue gas atmosphere. The mercury removal efficiency of different sorbents vary in a wide range, from 28.6% to 91.2%. For a same sorbent, the mercury removal efficiency shows a better performance on lab-scale reactor. Under the same condition, the sorbent would have higher mercury capturing efficiency with higher injection rate and longer residence time.
机译:由于其对人体健康的危害,燃煤发电厂的汞排放引起了越来越多的关注。现有的袋式除尘器,袋式除尘器和湿式烟气脱硫等APCDs可能会将烟气中的氧化汞去除。但是,它们对元素汞没有明显的去除效率。开发新的除汞技术的主要方向是将元素汞转化为可以有效去除的氧化汞和结合微粒的汞。建立了实验室规模的反应系统和中试规模的反应器,以在吸附剂评估试验台上进行汞去除实验,以研究不同吸附剂的除汞效率。实验结果表明,该实验系统可以提供真实烟气气氛下吸附剂评估的准确信息。不同吸附剂的除汞效率在28.6%至91.2%的较大范围内变化。对于相同的吸附剂,除汞效率在实验室规模的反应器中显示出更好的性能。在相同条件下,吸附剂的汞捕获效率更高,注入速率更高,停留时间更长。

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