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首页> 外文期刊>International journal of hydrogen energy >A more efficient way to shape metal-organic framework (MOF) powder materials for hydrogen storage applications
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A more efficient way to shape metal-organic framework (MOF) powder materials for hydrogen storage applications

机译:一种用于储氢应用的金属-有机骨架(MOF)粉末材料成形的更有效方法

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Shaping of Zr-MOF powder material into spherical pellets with diameters of 0.5-15 mm in the presence of 10 wt.% sucrose as a binder was successfully demonstrated using a granulator. Zr-MOF pellets were produced in a kilogram batch within 30 min operation time. This granulation approach is a more efficient way to shape MOP-type powder materials into application-specific configurations compared to the mechanical pressing method. The pellets could be conveniently packed in a small hydrogen storage tank. The physical degradation characteristics of the Zr-MOF pellets were studied by drop test and simulated tumbler drum test. The results showed zero breakage of the pellets after 70 consecutive drops at a height of 0.5 m and 5% breakage after 60 min of tumbling time at a speed of 25 rpm. Although the compromised value of the surface area led to a decreased hydrogen storage capacity, this shaping approach still holds promise given an appropriate choice of binder. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用制粒机成功地证明了在存在10 wt。%蔗糖作为粘合剂的情况下将Zr-MOF粉末材料成型为直径为0.5-15 mm的球形小球。 Zr-MOF粒料在30分钟的操作时间内以公斤为单位生产。与机械压制方法相比,这种造粒方法是将MOP型粉末材料成型为特定应用程序配置的更有效方法。粒料可方便地包装在小型氢气存储罐中。通过跌落试验和模拟转鼓试验研究了Zr-MOF颗粒的物理降解特性。结果表明,在高度为0.5 m的高度上连续跌落70次后,颗粒的零断裂,在25 rpm的转速下滚动60分钟后,断裂为5%。尽管表面积的折衷值导致储氢能力降低,但是在适当选择粘合剂的情况下,这种成型方法仍然有希望。 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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