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A novel low temperature catalyst regenerated from deactivated SCR catalyst for Hg-0 oxidation

机译:由失活的SCR催化剂再生的新型低温催化剂,用于Hg-0氧化

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In order to address the problems of treatment of deactivated SCR catalysts and explore the potential of the MnOx-based low temperature catalysts, a procedure was proposed in the present work. In the procedure, the deactivated SCR catalyst served as the catalyst support and MnOx was loaded on it. The supported catalyst was used for He oxidation in the coal-fired flue gas. Characterization of X-ray fluorescence, N-2 adsorption-desorption, X-ray diffraction, scanning electron microscope, X-ray photoelectron spectroscopy and thermogravimetry were conducted to study the properties of the fresh and spent samples and explore the Hg-0 oxidation mechanism. The synthesized catalysts showed good performance on Hg-0 oxidation in a broad temperature range (150 degrees C-350 degrees C) and exhibited superior Hg-0 oxidation activity at 250 degrees C. The results indicated that the unpoisoned V2O5 and MnOx were active for Hg-0 oxidation in the presence of HCI and O-2, but they played different roles at different temperature. At 150 degrees C and 250 degrees C, the MnOx was the active species for the oxidation reaction while the unpoisoned V2O5 inhibited the Hg-0 oxidation process indirectly. However, at 350 degrees C, the V2O5 was mainly involved in Hg-0 oxidation. The results also indicated that both Hg-0 and HCI were adsorbed by the catalysts at different temperatures, and the adsorbed species reacted to form oxidized mercury. Therefore, the regenerated SCR catalyst might be a promising catalyst for the control of Hg-0 emission from the coal-fired flue gas at low temperature. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了解决失活SCR催化剂的处理问题并探索MnOx基低温催化剂的潜力,在本工作中提出了一种方法。在该程序中,失活的SCR催化剂用作催化剂载体,并在其上负载MnOx。负载型催化剂用于燃煤烟气中的He氧化。通过表征X射线荧光,N-2吸附-解吸,X射线衍射,扫描电子显微镜,X射线光电子能谱和热重分析,研究了新鲜和废样品的性质,并探讨了Hg-0的氧化机理。 。合成的催化剂在较宽的温度范围(150摄氏度至350摄氏度)下均具有良好的Hg-0氧化性能,并在250摄氏度下具有优异的Hg-0氧化活性。结果表明,未中毒的V2O5和MnOx具有活性Hg-0和H-2存在下Hg-0氧化,但它们在不同温度下起不同的作用。在150摄氏度和250摄氏度,MnOx是氧化反应的活性物种,而未中毒的V2O5间接抑制了Hg-0氧化过程。但是,在350摄氏度时,V2O5主要参与了Hg-0的氧化。结果还表明,Hg-0和HCl在不同温度下均被催化剂吸附,吸附的物质发生反应形成氧化汞。因此,再生的SCR催化剂可能是控制低温下燃煤烟气中Hg-0排放的有前途的催化剂。 (C)2016 Elsevier B.V.保留所有权利。

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