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首页> 外文期刊>Environmental Science & Technology >Unveiling the Remarkable Arsenic Resistance Origin of Alumina Promoted Cerium-Tungsten Catalysts for NH_3-SCR
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Unveiling the Remarkable Arsenic Resistance Origin of Alumina Promoted Cerium-Tungsten Catalysts for NH_3-SCR

机译:揭示氧化铝的显着砷抗性源于NH_3-SCR的铈 - 钨催化剂

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摘要

The deactivation of selective catalytic reduction (SCR) catalysts by arsenic is a serious problem for NH_3-SCR- However, it is tough to design catalysts with good resistance to arsenic compared to other poisons such as alkali metal, SO_2, etc., because As not only deteriorates surface acidity but also redox property, causing excessive N_2O generation. A novel CeO_2-WO_3-Al_2O_3 catalyst is developed with excellent arsenic resistance in this study, which presents only less than 10% activity loss compared to nearly 40% loss for CeO_2-WO_3 with same arsenic loading (As: 2.1 wt %). Moreover, a significant negative impact on the N_2O generation for poisoning catalysts from 26.7 to 7.5 ppm has also been found. The characterization results demonstrated that the interaction between cerium and arsenic lead to Lewis acid sites and oxygen vacancies loss as well as unexpected oxidation sites formation. However, the introduction of Al weakens the deactivation effect by replacing cerium to interact with arsenic. Three aspects are proposed for obtaining excellent arsenic-resistant performance: (1) the protection of Lewis acid sites, (2) release of oxygen vacancies from As restriction, and (3) confinement of As~(5+) oxidizing capacity. This study may provide an effective strategy to design and develop novel virtuous antipoisoning catalysts.
机译:砷的选择性催化还原(SCR)催化剂的失活是NH_3-SCR的严重问题,但是,与诸如碱金属,SO_2等的其他毒药相比,设计具有良好抗砷的催化剂,因为如不仅劣化表面酸度,而且氧化还原性能,引起过多的N_2O。在该研究中,具有优异的砷抗性的新型CEO_2-WO_3-AL_2O_3催化剂,这仅呈现小于10%的活性损失,而CEO_2-WO_3具有相同的砷载荷(如下:2.1wt%)。此外,还发现了对中毒催化剂的N_2O产生的显着负面影响,也已经发现了26.7至7.5ppm。表征结果表明,铈和砷之间的相互作用导致Lewis酸部位和氧空位损失以及意外的氧化位点形成。然而,通过替代铈以与砷相互作用来削弱去激活效果。提出了三个方面,以获得优异的抗砷性能:(1)保护路易斯酸部位,(2)从限制中释放氧空位,(3)氧化能力的限制为〜(3)。本研究可以提供有效的设计和开发新颖性抗嗜酸性催化剂的策略。

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  • 来源
    《Environmental Science & Technology》 |2020年第22期|14740-14749|共10页
  • 作者单位

    School of Space and Environment Beihang University Beijing 100191 P. R China;

    State Key Laboratory of Coal Conversion Institute of Coal Chemistry Chinese Academy of Sciences Taiyuan 030001 China;

    School of Space and Environment Beihang University Beijing 100191 P. R China;

    School of Space and Environment Beihang University Beijing 100191 P. R. China;

    School of Space and Environment Beihang University Beijing 100191 P. R China;

    School of Space and Environment Beihang University Beijing 100191 P. R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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