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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Preparation of beta-coated cordierite honeycomb monoliths by in situ synthesis - Utilisation as Pt support for NOx abatement in diesel exhaust
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Preparation of beta-coated cordierite honeycomb monoliths by in situ synthesis - Utilisation as Pt support for NOx abatement in diesel exhaust

机译:通过原位合成制备β涂层堇青石蜂窝整料-用作Pt载体以减少柴油机废气中的NOx

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In this paper, a method for the preparation of beta-coated cordierite honeycomb monoliths suitable as Pt supports for deNO(x) application is described. The main advantage of this in situ process is the elimination of the need for a binder. The presence of beta zeolite on the supports was confirmed by XRD and SEM. SEM characterisation clearly showed that zeolite grows both into the cordierite macroporous structure and on the surface of the monolith channels. The formation of a compact zeolite network may be the reason of the strong anchorage of zeolite to the cordierite support. Maximum thickness of the zeolite-coating layer is 10 μ m and coating is stable up to 600 ° C in air. Single- and two-step syntheses have been performed in order to increase zeolite loading. Single-step syntheses yielded monolith samples with average size of beta crystallites ca. 0.5 μ m and BET surface areas that present a linear relationship with zeolite loading. Samples prepared in a two-step synthetic procedure had an average crystal size of I μ m and present diffusion limitations in N-2 adsorption measurements.NOx conversion of 70% with 0.5 wt.% Pt-beta-coated monolith has been reached at 210 ° C under a simulated diesel exhaust (5600 h(-1)) containing 1000 ppm NOx, 1500 ppm C3H6 and 5% O-2 in He. This value is similar to the previously observed for Pt-beta powder catalysts. © 2004 Elsevier B.V. All rights reserved.
机译:在本文中,描述了一种制备β涂层堇青石蜂窝整料的方法,该整料适合用作deNO(x)应用的Pt载体。该原位方法的主要优点是消除了对粘合剂的需求。通过XRD和SEM证实了载体上β沸石的存在。 SEM表征清楚地表明,沸石既生长到堇青石大孔结构中,又生长在整料通道的表面上。致密的沸石网络的形成可能是沸石牢固地固定在堇青石载体上的原因。沸石涂层的最大厚度为10μm,并且涂层在高达600&DEG下稳定。 C在空气中。为了增加沸石负载,已经进行了单步和两步合成。单步合成产生整体样品,平均尺寸约为β微晶。 0.5μm和BET表面积与沸石负载量呈线性关系。通过两步合成程序制备的样品的平均晶体尺寸为1μm,并且在N-2吸附测量中存在扩散限制.210时,在0.5%(重量)的Pt-β涂层整料中NOx转化率达到70% ° C在模拟的柴油机废气中(5600 h(-1))在He中包含1000 ppm NOx,1500 ppm C3H6和5%O-2。该值类似于先前对于Pt-β粉末催化剂观察到的值。 &复制; 2004 Elsevier B.V.保留所有权利。

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