首页> 外文期刊>International journal of hydrogen energy >Hydrogenation and dehydrogenation cycle properties of Ti-Mn based alloy Ti_(0.93)Zr_(0.07)Mn_(1.15)Cr_(0.35) in hydrogen gas
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Hydrogenation and dehydrogenation cycle properties of Ti-Mn based alloy Ti_(0.93)Zr_(0.07)Mn_(1.15)Cr_(0.35) in hydrogen gas

机译:Ti-Mn基合金Ti_(0.93)Zr_(0.07)Mn_(1.15)Cr_(0.35)在氢气中的加氢和脱氢循环特性

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Hydrogenation and dehydrogenation cycle tests at 0 degrees C for Ti(0.93)Zr(0.07)Mn(1.15)Cr(0.3)5 were carried out 2000 cycles and more in the hydrogen gas with purity of 99.99% and 99.99999%. The capacity maintenance rates at the 2000th cycle for the first cycle were 82% and 97% for each purity hydrogen gas, respectively. It was found that the cycle durability of this alloy depends on the gas purity. By the X-ray diffraction and light element analysis, it was confirmed that the C14 type crystal structure of this alloy was maintained but the nitrogen concentration in the sample with large capacity reduction was increased after the cycle test. The main factor of the decrease in capacity of this alloy is degradation due to reaction with impurity gas components such as nitrogen. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:Ti(0.93)Zr(0.07)Mn(1.15)Cr(0.3)5在0摄氏度下进行了2000次循环以上的氢化和脱氢循环测试,纯度为99.99%和99.99999%。对于每种纯度的氢气,第一个循环在第2000个循环时的容量维持率分别为82%和97%。发现该合金的循环耐久性取决于气体纯度。通过X射线衍射和光元素分析,证实了该合金的C14型晶体结构得以维持,但是容量降低大的样品中的氮浓度在循环试验后增加。该合金容量降低的主要因素是由于与杂质气体成分如氮气反应而引起的降解。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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