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Experimental Research on Mercury Emission and Its Speciation in the Flue Gas from Coal-fired Power Station

机译:燃煤发电站烟气排放及其品种的实验研究

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Mercury is harmful to our health and environment, so research on mercury emission from coal-fired power station, the main source of anthropogenic mercury emission, is very important. In this paper, mercury emission and speciation in the flue gas from a coal-fired power station was measured by three methods, i.e., OHM (Ontario Hydro method), Hg SCEM (semi-continuous emission monitors), and EPA Appendix K (carbon trap method). The effects of boiler load, flue gas characteristics on mercury emission and its speciation were analyzed. Mercury mass balance was calculated based on the analyses of mercury contents in coal, pyrite, bottom ash, fly ash, FGD (flue gas desulphurization) slurry, and flue gas at FGD inlet and stack. The results indicate that data by the three methods have good consistency within acceptable range. The total mercury emission increases with the increasing of mercury content in fuel and boiler load. The percentages of elemental mercury in the flue gas at FGD inlet and stack are around 26%-48% and 70%-85% respectively. Wet FGD would capture more than 80% of oxidized mercury.
机译:汞对我们的健康和环境有害,因此研究燃煤发电站的汞排放,是人为汞排放的主要来源,非常重要。在本文中,通过三种方法,即欧姆(Ontario Hydro方法),HG Scem(半连续发射显示器)和EPA附录K(碳)测量来自燃煤发电站的烟气中的烟气排放和物质测量陷阱方法)。分析了锅炉负荷,烟气特征对汞排放的影响及其物种。基于煤,硫铁矿,底灰,粉煤灰,FGD(烟道气脱硫)浆料和烟气在FGD入口和堆叠中的汞含量分析汞质量平衡。结果表明,三种方法的数据在可接受范围内具有良好的一致性。随着燃料和锅炉负荷中的汞含量的增加而增加,汞排放增加。 FGD入口和堆中烟气中的元素汞的百分比分别为约26%-48%和70%-85%。湿法FGD将捕获超过80%的氧化汞。

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