Li Yun, Wu Shaolong, Zhu Dongdong, He Jun, Xiao Xuezhang, Chen Lixin
School of Mechanical and Electrical Engineering, Quzhou College of Technology, Quzhou, China.
Key Laboratory of Advanced Materials and Applications for Batteries of Zhejiang Province, Zhejiang University, Hangzhou, China.
Front Chem. 2020 Apr 15;8:227. doi: 10.3389/fchem.2020.00227. eCollection 2020.
Hydrogen has become a promising energy source due to its efficient and renewable properties. Although promising, hydrogen energy has not been in widespread use due to the lack of high-performance materials for hydrogen storage. Previous studies have shown that the addition of Al-based compounds to LiBH can create composites that have good properties for hydrogen storage. In this work, the dehydrogenation performances of different composite systems of 2LiBH+ M (M = Al, LiAlH, LiAlH) were investigated. The results show that, under a ball to powder ratio of 25:1 and a rotation speed of 300 rpm, the optimum ball milling time is 50 h for synthesizing LiAlH from LiH and LiAlH. The three studied systems destabilized LiBH at relatively low temperatures, and the 2LiBH-LiAlH composite demonstrated excellent behavior. Based on the differential scanning calorimetry results, pure LiBH released hydrogen at 469°C. The dehydrogenation temperature of LiBH is 416°C for 2LiBH-LiAlH versus 435°C for 2LiBH-LiAlH and 445°C for 2LiBH-Al. The 2LiBH-LiAlH, 2LiBH-LiAlH, and 2LiBH-Al samples released 9.1, 8, and 5.7 wt.% of H, respectively. Additionally, the 2LiBH-LiAlH composite released the 9.1 wt.% H within 150 min. An increase in the kinetics was achieved. From the results, it was concluded that 2LiBH-LiAlH exhibits the best dehydrogenation performance. Therefore, the 2LiBH-LiAlH composite is considered a promising hydrogen storage material.
由于其高效和可再生的特性,氢已成为一种有前景的能源。尽管前景广阔,但由于缺乏用于储氢的高性能材料,氢能尚未得到广泛应用。先前的研究表明,向LiBH中添加铝基化合物可以制备出具有良好储氢性能的复合材料。在这项工作中,研究了2LiBH + M(M = Al、LiAlH、LiAlH)不同复合体系的脱氢性能。结果表明,在球料比为25:1和转速为300 rpm的条件下,由LiH和LiAlH合成LiAlH的最佳球磨时间为50 h。所研究的三个体系在相对较低的温度下使LiBH失稳,2LiBH-LiAlH复合材料表现出优异的性能。基于差示扫描量热法结果,纯LiBH在469°C时释放氢气。2LiBH-LiAlH体系中LiBH的脱氢温度为416°C,而2LiBH-LiAlH体系为435°C,2LiBH-Al体系为445°C。2LiBH-LiAlH、2LiBH-LiAlH和2LiBH-Al样品分别释放出9.1 wt.%、8 wt.%和5.7 wt.%的H。此外,2LiBH-LiAlH复合材料在150分钟内释放出9.1 wt.%的H,实现了动力学的提高。从结果可以得出结论,2LiBH-LiAlH表现出最佳的脱氢性能。因此,2LiBH-LiAlH复合材料被认为是一种有前景的储氢材料。