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Study on mercury oxidation by SCR catalyst in coal-fired power plant

机译:燃煤发电厂SCR催化剂汞氧化研究

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The mercury speciation and concentration in flue gas before and after selective catalytic reduction (SCR) system of a 300MW coal-fired utility boiler has been determined using Ontario Hydro method (OHM). The effect of SCR catalyst on mercury speciation transformation is investigated and the impact of chlorine content in coal and ammonia on mercury oxidation by SCR catalyst are examined. The results show that SCR has little effect on mercury emission reduction and the concentration of particulate mercury changes little before and after SCR. SCR catalyst promotes the oxidation of elemental mercury to oxidized mercury and has significant impact on mercury emission. The oxidation of elemental mercury by SCR catalyst is greatly affected by chlorine content in coal and the higher the chlorine content in coal, the higher the concentration of oxidized mercury at SCR outlet. NH3 is detrimental to oxidation of elemental mercury by SCR catalyst.
机译:使用Ontario水电方法(欧姆)确定了300MW燃煤型锅炉的选择性催化还原(SCR)系统之前和之后的烟气中的汞形态和浓度。研究了SCR催化剂对汞形态转化的影响,研究了SCR催化剂煤中氯含量对汞氧化的影响。结果表明,SCR对汞排放的影响几乎没有影响,并且颗粒汞的浓度在SCR之前和之后几乎没有变化。 SCR催化剂促进元素汞对氧化汞的氧化,对汞排放产生显着影响。通过SCR催化剂的元素汞氧化受煤中氯含量的大大影响,煤中氯含量越高,SCR出水中氧化汞的浓度越高。 NH3对SCR催化剂对元素汞的氧化有害。

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