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Mg(AlH4)2是一种理想的储氢材料,理论储氢容量高达7.5%(质量分数)。然而较高的起始放氢温度在很大程度上制约了Mg(AlH4)2的应用。正交试验设计方法能够在较少的试验次数中掌握可靠的实验数据以及各因素之间的内在联系从而确定最优的实验方案,特别适用与多因素多水平的实验条件研究。利用高能球磨法成功地制备了Mg(AlH4)2,并将NaAlH4和TiF3引入到该体系中。利用傅里叶红外转换测试仪(FTIR)对产物的结构进行表征,程序控温脱附(TPD)对产物的放氢温度和放氢量进行测定。此外,采用三因素三水平的L9(33)正交试验法,以Mg(AlH4)2的起始放氢温度为指标,以NaAlH4的添加量、TiF3的添加量和球磨间隔时间为因素,同时考察以上3项重要因素对降低Mg(AlH4)2起始放氢温度的影响。通过对正交试验的系统分析发现,NaAlH4的添加量对降低Mg(AlH4)2的起始放氢温度影响最显著,其次为TiF3的添加量,最后为球磨间隔时间。得到最佳试验条件,在最佳条件下Mg(AlH4)2的起始放氢温度仅为72℃,与未添加的相比放氢温度降低了67℃,放氢性能明显提高。 相似文献
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The La0.8Mg0.2Ni2.4Mn0.10Co0.55Al0.10 alloy was prepared by induction melting. The structural and morphological characterizations were performed by means of X-ray powder diffraction (XRD) and scanning electron microscopy (SEM). The electrochemical measurements were performed using LAND and CH/660b electrochemical workstation. The main phases of the alloy were LaNi5 and (La,Mg)Ni3. After annealing, the maximum discharge capacity, cycle stability and high rate dischargeability (HRD) were improved obviously. The maximum discharge capacity reached 373.80 mAh/g (T=1173 K), the C100/Cmax(%) was 72.63% (T=1173 K), and the value of HRD reached 51.8% at a discharge current density of 1150 mA/g (T=1173 K). The cyclic voltammetry (CV) and potentiodynamic polarization were also studied. 相似文献
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利用NaBH4溶液还原PdCl2的方法在具有纳米刺状表面的α-MnO2中空微球上沉积Pd,制备一种α-MnO2/Pd核壳型复合催化剂作为新一代可充锂-空气电池的催化剂。TEM、XRD和EDS等方法的分析结果表明,在催化剂中纳米Pd颗粒均匀地分布在刺状α-MnO2中空微球表面,Pd在催化剂中的质量分数约为8.88%。充放电测试结果表明,与纳米刺状的α-MnO2中空微球催化剂相比,α-MnO2/Pd复合催化剂提高了空气电极的能量转化效率和充放电循环性能。由Super P碳材料和所制备的α-MnO2/Pd复合催化剂所构成的空气电极在0.1mA/cm2电流密度下的首次放电比容量可以达1220 mA·h/g,经13次充放电循环后的容量保持率为47.3%。该纳米刺状α-MnO2/Pd核壳型复合催化剂是一种有前途的空气电池催化剂。 相似文献
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The La0.8Mg0.2Ni2.4Mn0.10Co0.55Al0.10 alloy was prepared by induction melting. The structural and morphological characterizations were performed by means of X-ray powder diffraction (XRD) and scanning electron microscopy (SEM). The electrochemical measurements were performed using LAND and CHI 660b electrochemical workstation. The main phases of the alloy were LaNi5 and (La,Mg)Ni3. After annealing, the maximum discharge capacity, cycle stability and high rate dischargeability (HRD) were improved obviously. The maximum discharge capacity reached 373.80 mAh/g (T=1173 K), the C100/Cmax(%) was 72.63% (T=1173 K), and the value of HRD reached 51.8% at a discharge current density of 1150 mA/g (T=1173 K). The cyclic voltammetry (CV) and potentiodynamic polarization were also studied. 相似文献
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以摩洛哥某水电站具有复杂围岩条件的有压引水隧洞为例,选取围岩条件最差的隧洞断面,运用非线性有限元法,对隧洞开挖、衬砌及运行过程中的应力变形进行了有限元仿真分析,探讨了复杂围岩条件下有压隧洞施工期及运行期应力变形的分布与变化规律。 相似文献
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可充镁电池有机电解液的研究进展 总被引:6,自引:1,他引:6
对有机格氏试剂盐系列电解质的研究进行了总结.镁的沉积过程是复杂的吸附过程.吸附物决定了沉积的形貌,时循环效率有很大影响.Mg(AX4-nRn)2型有机镁盐(其中A=Al、B、As、P、Sb、Ta和Fe等,X=Cl、Br和F,R=烷基或芳基)可以看作是Lewis碱R2Mg和Lewis酸AX3-nRn的反应产物,溶液中Lewis酸的浓度决定了电液的分解电位,R基的含量决定可逆性的好坏,以THF/Bu2Mg-(AlCl2Et)2体系性能最佳. 相似文献
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