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Hydrogen Storage Properties of La0.6M0.4Ni4.8Mn0.2 (M=Y, Nd) Alloys for Metal Hydride Air-conditioning system

机译:La0.6m0.4ni4.8mN0.2(M = Y,Nd)金属氢化物空调系统合金的储氢性能

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Several LaNi5 based CaCu5 hexagonal structured alloys La0.6M0.4Ni4.8Mn0.2 (M=Y, Nd) wereprepared and their hydrogen storage properties were studied in order to develop a suitablematerial for metal hydride air-conditioning system. The metal hydride used in air-conditioningsystem should have a suitable plateau pressure, high hydrogen absorption capacity, lowplateau sloping and hysteresis. La0.6Y0.4Ni4.8Mn0.2 shows good properties for air-conditioningsystem but has poor hysteresis and sloping characteristics. The sloping, hysteresis propertyand hydrogen capacity has been effectively improved by the substitution of Nd for Y, but thehydrogen absorption kinetics decreased. The results show that the addition of Cu is veryeffective in improving the hydrogen absorption kinetics. La0.6Nd0.4Ni4.8Mn0.2Cu0.1 shows goodplateau characteristics with small hysteresis and sloping as well as good kinetics. For eachcompound of La0.6M0.4Ni4.8Mn0.2, a relationship is made between the unit cell parameter c/aand effective hydrogen storage capacity. The effective hydrogen storage capacity increaseswith decrease of the unit cell parameter c/a.
机译:研究了几种基于Lani5的CaCu5六边形结构合金La0.6m0.4Ni4.8mN0.2(m = y,Nd),并研究了它们的储氢性能,以开发金属氢化物空调系统的含水层。空调系统中使用的金属氢化物应具有适当的平台压力,高氢吸收能力,低完整性倾斜和滞后。 LA0.6Y0.4NI4.8MN0.2显示了空调系统的良好性能,但滞后和倾斜特性差。通过将Nd的取代为Y的取代,已经有效地改善了倾斜,滞后颗粒产物,但氢吸收动力学降低。结果表明,在改善氢吸收动力学时,Cu的加入是非常好的。 LA0.6nd0.4ni4.8mn0.2cu0.1显示了具有小滞后和倾斜的Goodplateau特征以及倾斜的倾斜和良好的动力学。对于LA0.6M0.4NI4.8MN0.2的每组,在单位细胞参数C / AAND有效储氢之间进行了关系。单位电池参数C / A的有效储氢容量增加。

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