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Research progress, challenges and perspectives on the sulfur and water resistance of catalysts for low temperature selective catalytic reduction of NOx by NH3

机译:NH3对低温选择性催化还原的催化剂硫和耐水性降低NOx的研究进展,挑战和观点

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摘要

Low temperature selective catalytic reduction (SCR) is an efficient and promising technology to transform NOx into N-2 from flue gases, which has broad application prospects. However, the vulnerability of low temperature DeNO(x) catalysts to poisoning by SO2 and H2O restricts their industrial application. Therefore, it is vitally important to develop new low temperature DeNO(x) catalysts that resist poisoning. This paper reviews the mechanisms of SO2 & H2O poisoning of low temperature SCR catalysts, the strategies for improving the resistance of low temperature SCR catalysts to SO2 & H2O poisoning, application of theoretical calculations in the development of SO2 & H2O resistant low temperature SCR catalysts as well as novel ideas for developing poisoning resistant low temperature SCR catalysts. Moreover, the studies dealing with the regeneration of low temperature DeNO(x) catalysts are also included. Based on the problems detailed in this review, the challenges and the emphasis for future research in this area are also proposed. We believe that this review will provide an excellent foundation and good guidance for the future design and the development of improved SO2 & H2O-tolerant low temperature DeNO(x) catalysts.
机译:低温选择性催化还原(SCR)是一种有效且有前途的技术,可从烟道气体转化为N-2,这具有广泛的应用前景。然而,低温Deno(X)催化剂通过SO2和H2O中毒的脆弱性限制了其工业应用。因此,开发抵抗中毒的新低温Deno(X)催化剂至关重要。本文综述了低温SCR催化剂的SO2&H2O中毒机制,改善低温SCR催化剂对SO2&H2O中毒的抗性,在SO2&H2O耐低温SCR催化剂的发育中的应用应用于SO2和H2O中毒。以及开发中毒低温SCR催化剂的新颖思想。此外,还包括处理低温丹麦(X)催化剂再生的研究。基于本综述中详述的问题,还提出了该地区未来研究的挑战和重点。我们认为,本综述将为未来的设计和改进的SO2和H2O耐性低温Deno(X)催化剂提供优异的基础和良好的指导。

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