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Synthesis and characterization of Fe-modified zeolite for spin conversion of hydrogen at cryogenic temperature

机译:低温下氢自旋转化的铁改性沸石的合成与表征

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Fe-modified zeolite was prepared by ion-exchange of zeolite with ferric chloride and calcination, for effective spin conversion of ortho- to-para-hydrogen. Studies carried out using BET, SEM, EDS, and VSM techniques. Results indicated that spin conversion rate showed great dependence on magnetic properties of the composite according to calcination temperature change. For lower sintering temperatures, the samples showed more paramagnetic behavior. As sintering temperature increased, ferromagnetic state increase, while paramagnetic states decreased. The highest spin conversion was observed at paramagnetic state, comparing with ferromagnetic, at lower calcination temperature. Moreover, Fe-modified zeolite showed a superior hydrodynamic property such as the pressure drop ratio of composite to a commercial iron oxide. These composites can be applied in more efficient hydrogen liquefaction processes. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过将沸石与氯化铁进行离子交换并煅烧来制备铁改性的沸石,以有效地将原氢转化为对氢。使用BET,SEM,EDS和VSM技术进行的研究。结果表明,随着煅烧温度的变化,自旋转化率对复合材料的磁性能有很大的依赖性。对于较低的烧结温度,样品表现出更多的顺磁性行为。随着烧结温度的升高,铁磁态增加,而顺磁态减少。在较低的煅烧温度下,与铁磁性相比,在顺磁性状态下观察到最高的自旋转化率。此外,铁改性的沸石显示出优异的流体力学性能,例如复合材料与市售氧化铁的压降比。这些复合材料可用于更有效的氢液化工艺。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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