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Ammonia decomposition reaction to produce COx-free hydrogen using carbon supported cobalt catalysts in microwave heated reactor system

机译:氨分解反应在微波加热反应器系统中使用碳负载的钴催化剂生产不含羰基氢的氢气

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In this study, COx-free hydrogen production via decomposition of ammonia was investigated in the microwave reactor using carbon supported cobalt-containing catalysts. Two different carbon sources, namely mesoporous carbon and activated carbon, were utilized and catalysts were successfully synthesized following an impregnation procedure. Different characterization techniques, such as ICP-OES, X-Ray Diffraction (XRD), Nitrogen Physisorption, Transmission Electron Microscopy (TEM), Raman Spectroscopy were applied to determine the structural properties of the catalysts. Total conversion of ammonia was achieved over carbon supported cobalt catalysts at about 350-400 degrees C under pure ammonia flow (GHSVNH3 of 36,000 ml/gcat.h). Significantly higher conversion values could be achieved in microwave reactor due to the its superior properties, such as selective heating, compared to conventional reactor. Microwave energy would probably facilitate the recombinative desorption of bonded N atoms from cobalt active species during ammonia decomposition reaction resulted in higher conversion values comparatively lower reaction temperature. (c) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在该研究中,使用含碳含碳钴催化剂在微波反应器中研究通过分解氨的无氨氢产生。利用两种不同的碳源,即介孔的碳和活性炭,在浸渍程序后成功地合成了催化剂。应用不同的表征技术,例如ICP-OES,X射线衍射(XRD),氮原吸,透射电子显微镜(TEM),拉曼光谱法以确定催化剂的结构性质。在纯氨流(36,000mL / gcat.h的GHSVNH3)下,在约350-400℃的碳负载的钴催化剂上达到氨的总转化。与常规反应器相比,在微波反应器中可以在微波反应器中实现显着较高的转化值,例如选择性加热。微波能量可能促进在氨分解反应期间从钴活性物质中重新组织解吸,导致更高的转化值相对较低的反应温度。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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