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首页> 外文期刊>Catalysis Today >Cobalt-zinc spinel dispersed over cordierite monoliths for catalytic N2O abatement from nitric acid plants
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Cobalt-zinc spinel dispersed over cordierite monoliths for catalytic N2O abatement from nitric acid plants

机译:钴锌尖晶石分散在堇青石整料上,用于催化硝酸厂中的N2O减排

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A series of monolithic catalysts with the 0.3 wt.% loading of the (Co,Zn)Co2O4 spinel active phase dispersed on bare and ceria and zincite washcoated cordierite substrates was prepared by impregnation method: (Co,Zn)Co2O4/cordierite, (Co,Zn)Co2O4/ZnO/cordierite and (Co,Zn)Co2O4/CeO2/cordierite. The catalysts were thoroughly characterized (XRD, RS, SEM/TEM/EDX, XRF), and their catalytic deN(2)O activity was investigated using model gas mixture (2000 ppm N2O/N-2), and tail gases (1400 +/- 50 ppm N2O, 900 +/- 100 ppm NO, 0.8 +/- 0.2 vol.% H2O, 2.0 +/- 0.2 vol.% O-2) of the nitric acid pilot plant. The reported data points correspond to the measurements performed at possibly the closest tail gas composition. Morphological SEM analysis of the monolith cross-sections indicated the segregation of both ZnO and CeO2 washcoats in the form of islands covered by the (Co,Zn)Co2O4 active phase. The catalytic tests revealed that the monolithic catalysts exhibit high catalytic deN(2)O activity, reaching X > 96% at 400 degrees C (model gas) and 450 degrees C (tail gases) for the best (Co,Zn)Co2O4/CeO2/cordierite system. It was also found that the specific reaction rate per cobalt spinel weight loading for the monolithic catalysts is even two orders of magnitude higher than in the case of the optimized bulk spinel phase. Yet, the beneficial effect of ceria, dominant in the model gas mixture, is largely dumped in tail gases at low temperature. It is however restored above 400 degrees C, when the poisoning H2O and NO, molecules are desorbed. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过浸渍方法制备了一系列的整体催化剂,其负载量为(Co,Zn)Co2O4尖晶石活性相的0.3 wt。%,分散在裸露的和二氧化铈和锌矿化的堇青石基体上:(Co,Zn)Co2O4 /堇青石( ,Zn)Co2O4 / ZnO /堇青石和(Co,Zn)Co2O4 / CeO2 /堇青石。彻底表征了催化剂(XRD,RS,SEM / TEM / EDX,XRF),并使用模型气体混合物(2000 ppm N2O / N-2)和尾气(1400 +)研究了它们的催化deN(2)O活性。 -硝酸试验装置的50ppm N 2 O,900 +/- 100ppm NO,0.8 +/- 0.2vol。%H 2 O,2.0 +/- 0.2vol。%O-2。报告的数据点对应于可能在最接近的尾气成分下执行的测量。整体截面的SEM形貌分析表明,ZnO和CeO2修补基面涂层均被(Co,Zn)Co2O4活性相覆盖的岛状偏析。催化测试表明,整体式催化剂表现出较高的催化deN(2)O活性,对于最佳(Co,Zn)Co2O4 / CeO2,在400摄氏度(模型气体)和450摄氏度(尾气)下,X> 96% / cordierite系统。还发现,对于整体式催化剂,每单位钴尖晶石重量负载的比反应速率甚至比优化的本体尖晶石相的情况高两个数量级。然而,在模型气体混合物中占主导地位的二氧化铈的有益效果在低温下很大程度上被倾倒在尾气中。但是,当中毒的H2O和NO分子解吸时,温度会在400摄氏度以上恢复。 (C)2015 Elsevier B.V.保留所有权利。

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