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首页> 外文期刊>International journal of hydrogen energy >Effect of rare earth (RE - La, Pr, Nd) metal-doped ceria nanoparticles on catalytic hydrogen iodide decomposition for hydrogen production
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Effect of rare earth (RE - La, Pr, Nd) metal-doped ceria nanoparticles on catalytic hydrogen iodide decomposition for hydrogen production

机译:稀土(稀土-镧,,,钕)掺杂的二氧化铈纳米颗粒对碘化氢催化分解制氢的影响

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摘要

In this work, high surface area rare earth (RE = La, Pr, and Nd) metal-doped ceria (CeO2) nanocatalysts have been synthesized by the citric-aided sol-gel method for hydrogen iodide decomposition in thermochemical water-splitting sulfur-iodine (SI) cycle for hydrogen production. This sol-gel method allows the insertion of rare earth metal M3+ ions into the CeO2 material. Incorporation of rare earth metals created a different synergistic effect between RE and Ce components such as increase of oxygen mobility, oxygen vacancy, and thermal stability of the CeO2 material. These doped-CeO2 materials were characterized by various physicochemical techniques, namely, XRD, BET, ICP-AES, TEM, TGA, and RAMAN spectroscopy. XRD and TEM studies revealed 5-10 nm particles of the RE-CeO2 material. Shifting of peaks and increase in lattice parameter values confirmed the formation of Ce-RE solid solutions (XRD and Raman). Incorporation of dopants resulted in an increase in the specific surface area (BET), thermal stability (TGA), and oxygen vacancy concentration (Raman). Among different dopants, CeO2-L (La-doped CeO2) material exhibits the highest specific surface area, thermal stability, and oxygen vacancy concentration, and smallest crystallite size. The catalytic activity of doped-CeO2 materials is explored for hydrogen-iodide decomposition. The order of catalytic activity is as follows: CeO2 CeO2-N (N = Nd) CeO2-P (P = Pr) CeO2-L (L = La). CeO2-L shows higher catalytic activity and stability in comparison to the pure CeO2 material. It also showed an excellent time-on-stream stability for 35 h. The apparent activation energy of CeO2-L, CeO2-P, and CeO2-N was found to be 48.9, 54.8, and 61.4 kJ mol(-1), respectively. The effect of iodine on hydrogen iodide conversion was also studied over a CeO2-L catalyst. Thus, RE-doped CeO2 catalysts show a lot of potential of generating hydrogen from hydrogen iodide in the SI cycle. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中,通过柠檬酸辅助溶胶-凝胶法合成了高表面积稀土(RE = La,Pr和Nd)掺杂金属的二氧化铈(CeO2)纳米催化剂,用于在热化学水分解硫磺中分解碘化氢。碘(SI)循环制氢。这种溶胶-凝胶法允许将稀土金属M3 +离子插入CeO2材料中。稀土金属的掺入在RE和Ce组分之间产生了不同的协同效应,例如增加了氧迁移率,氧空位和CeO2材料的热稳定性。这些掺杂的CeO2材料通过各种物理化学技术进行了表征,即XRD,BET,ICP-AES,TEM,TGA和RAMAN光谱。 XRD和TEM研究显示RE-CeO2材料的5-10 nm颗粒。峰的移动和晶格参数值的增加证实了Ce-RE固溶体(XRD和拉曼)的形成。掺入掺杂剂导致比表面积(BET),热稳定性(TGA)和氧空位浓度(Raman)的增加。在不同的掺杂剂中,CeO2-L(La掺杂的CeO2)材料表现出最高的比表面积,热稳定性,氧空位浓度和最小的微晶尺寸。研究了掺杂的CeO2材料对碘化氢分解的催化活性。催化活性的顺序如下:CeO2

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