首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Oxidation and reduction of mercury by SCR DeNOx catalysts under flue gas conditions in coal fired power plants
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Oxidation and reduction of mercury by SCR DeNOx catalysts under flue gas conditions in coal fired power plants

机译:燃煤电厂烟气条件下SCR DeNOx催化剂对汞的氧化和还原

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The co-oxidation of elemental mercury (Hg) in SCR DeNOx reactors to water soluble oxidised species fol lowed by co-removal in flue gas desulphurisation scrubbers is a promising way to reduce these emissions from fossil fuel fired power plants. This paper looks at the results of a series of lab experiments on the oxidation and reduction of Hg by commercial V2O5/WO3(MoO3)/TiO2 honeycomb and plate type DeNOx catalysts. It could be shown that at a given hydrogen halide content the oxidation of elemental Hg on DeNOx inactive material follows a first order reaction with respect to the Hg concentration. On the basis of mass concentration, HBr was ten times more effective than HCl in promoting the oxidation of elemental Hg under otherwise identical conditions. The oxidation of elemental Hg increased with increasing vanadium content in the catalysts. The Hg oxidation activities of several commercial SCR catalysts were determined for the DeNOx inactive case and compared with their DeNOx activities. In this way, it was possible to show that the velocities of Hg oxidation and DeNOx reaction are of the same order of magnitude. The DeNOx-active state of the catalysts had a strongly negative impact on the oxidation of elemental Hg that could not be explained solely by an inhibition effect of ammonia. Under these conditions, even reduction of oxidised Hg occurred on the catalyst. The same reduction occurred for SCR DeNOx catalysts when oxidising volatile organic hydrocarbons. This effect was called induced mercury reduction. The observed oxidation rate of Hg on DeNOx- and VOC-active catalysts is the net sum of an oxidation and ; a reduction reaction which take place in parallel. Our understanding of the control variables for Hg i oxidation in SCR DeNOx plants has to be amended in light of these slowing effects and has to take the ■ induced reduction into account.
机译:SCR DeNOx反应器中元素汞(Hg)的共氧化成水溶性氧化物质,再通过烟道气脱硫洗涤塔中的共同去除而减少,这是减少化石燃料发电厂排放的一种有前途的方法。本文研究了一系列实验实验的结果,这些实验是通过工业V2O5 / WO3(MoO3)/ TiO2蜂窝和板式DeNOx催化剂氧化和还原Hg的结果。可以证明,在给定的卤化氢含量下,DeNOx惰性材料上元素Hg的氧化遵循相对于Hg浓度的一级反应。在质量浓度的基础上,在其他条件相同的条件下,HBr在促进元素Hg氧化方面的效率比HCl高十倍。元素汞的氧化随着催化剂中钒含量的增加而增加。确定了几种非活性DeNOx情况下商用SCR催化剂的Hg氧化活性,并将其与其DeNOx活性进行了比较。以此方式,可以证明Hg氧化和DeNOx反应的速度处于相同数量级。催化剂的DeNOx活性状态对元素Hg的氧化有很大的负面影响,这不能仅通过氨的抑制作用来解释。在这些条件下,催化剂上甚至发生了氧化汞的还原。当氧化挥发性有机烃时,SCR DeNOx催化剂也会发生同样的还原反应。这种效应称为诱导汞还原。在DeNOx和VOC活性催化剂上观察到的Hg氧化速率是氧化和的净和。并行发生的还原反应。鉴于这些减缓作用,我们对SCR脱硝装置中Hg i氧化控制变量的理解必须加以修正,并且必须考虑到■引起的还原。

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