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Study on Low-Temperature SCR Denitration Mechanisms of Manganese-Based Catalysts with Different Carriers

机译:不同载体的锰催化剂低温SCR脱硝机制研究

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摘要

Micro-physicochemical characteristics and low-temperature SCR activities of the Mn-Ce-Cr catalysts on different carriers were investigated with SEM, XRD, XPS, FTIR, and denitration experiments. Mn-Ce-Cr catalysts carried on TiO2 and ZrO2, and composite carrier containing Al2O3 and TiO2 had visible element interactions on the surfaces, and Mn presented the mixed valences of Mn3+ and Mn4+. Mn3+ was transferred to Mn4+ due to the oxidation processes of Ce3+ to Ce4+ and Cr3+ to Cr6+, and the O-alpha/O-beta ratio decreased during the SCR process. Compared with single carriers such as TiO2 or ZrO2, the catalysts on the composite carriers of Al2O3 and TiO2 had better pore structures and higher fractions of Mn4+, Ce3+, Cr6+, and chemisorbed oxygen. It could also absorb the coordination-state NH3 well, especially the higher activity l-acid sites during the SCR process, and contribute to the formation of composite oxide MnxTi1-xO on Mn-Ce-Cr/Al2O3+TiO2 catalyst. All the above factors had positive effects on the low-temperature SCR. However, Co-doping in Mn-Ce-Cr catalysts could not improve the pore structures or promote the dispersions of Mn-Ce-Cr active substances on the carrier surface. Groups such as nitrates and nitrites produced by NO adsorption would hinder the adsorption of NH3 and low-temperature SCR. Mn-Ce-Cr/Al2O3+TiO2 catalyst had high low-temperature SCR activity, while Mn-Ce-Cr/ZrO2 catalyst was the most unstable with the lowest denitration efficiency. Moreover, for the scrapped catalyst from coal-fired power plants, it could still be used as the carrier of the Mn-Ce-Cr catalyst, and its SCR characteristics were much better than the above catalysts, especially at broader temperature range.
机译:用SEM,XRD,XPS,FTIR和脱硝实验研究了不同载体上MN-CE-CR催化剂的MN-CE-CR催化剂的微观化学特性和低温SCR活性。在TiO 2和ZrO 2上携带的Mn-Ce-Cr催化剂以及含有Al 2 O 3和TiO 2的复合载体在表面上具有可见的元件相互作用,并且Mn呈现Mn3 +和Mn4 +的混合效果。由于Ce3 +至Ce4 +和Cr3 +至Cr6 +的氧化方法,Mn3 +转移至Mn4 +,并且在SCR过程中O-α/ O-β比下降。与如TiO 2或ZrO2如TiO 2或ZrO 2相比,Al 2 O 3和TiO 2的复合载体上的催化剂具有更好的孔隙结构和更高的Mn4 +,Ce3 +,Cr6 +和化学吸附氧。它还可以吸收舒适性的CO-CE-Cr / Al 2 O 3 + TiO2催化剂上的较高活性L-酸位点,特别是较高的活性L-酸位点,特别是在Mn-Ce-Cr / Al2O3 + TiO 2催化剂上形成复合氧化物Mnxti1-XO。所有上述因素对低温SC具有积极影响。然而,Mn-Ce-Cr催化剂中的共掺杂不能改善孔结构或促进Mn-Ce-Cr活性物质的分散体在载体表面上。诸如未吸附产生的硝酸盐和亚硝酸盐的组将阻碍NH 3和低温SCR的吸附。 Mn-Ce-Cr / Al 2 O 3 + TiO2催化剂具有高温SCR活性,而Mn-Ce-Cr / ZrO2催化剂是最不稳定的,脱硝效率最低。此外,对于来自燃煤发电厂的废催化剂,它仍然可以用作Mn-Ce-Cr催化剂的载体,其SCR特性远优于上述催化剂,特别是在更宽的温度范围内。

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  • 来源
    《Water, Air, and Soil Pollution》 |2020年第6期|289.1-289.16|共16页
  • 作者单位

    Yangzhou Univ Coll Elect Energy & Power Engn Yangzhou 225127 Jiangsu Peoples R China;

    Yangzhou Univ Coll Elect Energy & Power Engn Yangzhou 225127 Jiangsu Peoples R China;

    Yangzhou Univ Coll Elect Energy & Power Engn Yangzhou 225127 Jiangsu Peoples R China;

    Yangzhou Univ Coll Elect Energy & Power Engn Yangzhou 225127 Jiangsu Peoples R China;

    Xian Thermal Power Res Inst Co Ltd Suzhou Branch Suzhou 215153 Peoples R China;

    Yangzhou Univ Coll Elect Energy & Power Engn Yangzhou 225127 Jiangsu Peoples R China;

    Shanghai Univ Elect Power Coll Energy & Mech Engn Shanghai 200090 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mn-Ce-Cr; Scrapped industrial catalyst; Low-temperature; SCR; Different carriers;

    机译:Mn-CE-CR;报废产业催化剂;低温;SCR;不同的载体;

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