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首页> 外文期刊>Chemical engineering journal >Influence of geometrical parameters of honeycomb commercial SCR-DeNOx-catalysts on DeNOx-activity, mercury oxidation and S02/SO3-conversion
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Influence of geometrical parameters of honeycomb commercial SCR-DeNOx-catalysts on DeNOx-activity, mercury oxidation and S02/SO3-conversion

机译:蜂窝商业SCR-DeNOx催化剂的几何参数对DeNOx活性,汞氧化和SO2 / SO3转化的影响

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摘要

A systematic study on the influence of geometrical parameters (pitch and wall thickness) of commercial high-dust honeycomb SCR-DeNOx catalysts on DeNOx-activity, mercury oxidation and SO2/SO3-conver-sion is described. All catalysts had an identical chemical composition of 0.6 wt.% V2O5. The study was conducted in a laboratory micro reactor and a technical scale bench reactor and focuses on the effect of different honeycomb geometrical parameters on the reactions at the catalysts. The combined variation of pitch and wall thickness showed lower DeNOx-activity at catalysts with larger channel openings. This indicates mass transfer limitations when the flow regimes are developed in the catalyst's channels due to the relatively fast reaction kinetics of the DeNOx-reaction. Results showed that the S02/SO3-conversion is linearly dependent on catalysts wall thickness. Mercury oxidation increased slightly linear with increasing wall thickness of the catalyst, indicating that the reaction takes also place in the catalysts bulk because of its slow chemical reaction kinetics in contrast to DeNOx-reaction being controlled by diffusion. The importance of flue gas HCl-concentration on mercury oxidation was pointed out. Additionally, research on the co-influence of DeNOx-reaction and S02/SO3-conversion was performed. A strong inhibition of S02/SO3-conversion by flue gas ammonia was shown. However, DeNOx-activity is enhanced by conditioning with SO2 due to superior acidity of active sites. Summarising the results, due to the drawback of elevated S02/SO3-conversion, higher risk of channel blocking and material costs, increasing wall thickness cannot be considered a reasonable strategy to enhance mercury oxidation by SCR catalysts.
机译:对商用高粉尘蜂窝SCR-DeNOx催化剂的几何参数(节距和壁厚)对DeNOx活性,汞氧化和SO2 / SO3-转化率的影响进行了系统的研究。所有催化剂具有0.6重量%的V 2 O 5的相同化学组成。该研究是在实验室微型反应器和工业规模的台式反应器中进行的,重点研究了不同蜂窝几何参数对催化剂反应的影响。螺距和壁厚的综合变化表明,在具有较大通道开口的催化剂上,DeNOx活性较低。这表明,由于脱硝反应的相对较快的反应动力学,当在催化剂通道中形成流动状态时,传质受到限制。结果表明,SO 2 / SO 3转化率与催化剂壁厚线性相关。汞氧化随催化剂壁厚的增加而呈线性增加,这表明该反应也发生在催化剂本体中,因为与通过扩散控制的DeNOx反应相反,其缓慢的化学反应动力学。指出了烟气中HCl浓度对汞氧化的重要性。另外,进行了关于脱硝反应和SO 2 / SO 3转化的共同影响的研究。显示了烟道气氨强烈抑制SO 2 / SO 3转化。但是,由于活性位点的优异酸性,通过用SO2进行处理可以提高DeNOx活性。总结结果,由于SO 2 / SO 3转化率升高,通道阻塞和材料成本较高的缺点,增加壁厚不能被认为是通过SCR催化剂增强汞氧化的合理策略。

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