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Design and Fabrication of High Activity Retention Al-Based Composite Powders for Mild Hydrogen Generation

机译:用于轻度产氢的高活性铝基复合粉末的设计与制备

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摘要

Al–Bi–Sn–Cu composite powders for hydrogen generation were designed from the calculated phase diagram and prepared by the gas atomization process. The morphologies and structures of the composite powders were investigated using X-ray diffraction (XRD) and a scanning electron microscope (SEM) equipped with energy-dispersive X-ray (EDX) spectroscopy, and the results indicate that the Cu additive enhanced the phase separation between the Al-rich phase and the (Bi, Sn)-rich phase. The hydrogen generation performances were investigated by reacting the materials with distilled water. The Al–Bi–Sn–Cu powders reveal a stable hydrogen generation rate, and the Al–10Bi–7Sn–3Cu (wt%) powder exhibits the best hydrogen generation performance in 50 °C distilled water which reaches 856 mL/g in 800 min. In addition, the antioxidation properties of the powders were also studied. The Al–10Bi–7Sn–3Cu (wt%) powder has a good resistance to oxidation and moisture, which shows great potential for being the hydrogen source for fuel cell applications.
机译:从计算出的相图设计了用于生成氢的Al-Bi-Sn-Cu复合粉末,并通过气体雾化过程进行了制备。利用X射线衍射(XRD)和配备能谱X射线衍射(EDX)的扫描电子显微镜(SEM)对复合粉末的形貌和结构进行了研究,结果表明Cu添加剂可增强相富铝相和(Bi,Sn)富相之间的分离。通过使材料与蒸馏水反应来研究制氢性能。 Al–Bi–Sn–Cu粉末显示出稳定的氢气产生速率,而Al–10Bi–7Sn–3Cu(wt%)粉末在50°C蒸馏水中表现出最佳的氢气产生性能,在800℃时达到856 mL / g分钟此外,还研究了粉末的抗氧化性能。 Al–10Bi–7Sn–3Cu(wt%)粉末具有良好的抗氧化性和抗湿性,显示出作为燃料电池应用氢源的巨大潜力。

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