Prabu Samikannu, Chiang Kung-Yuh
Graduate Institute of Environmental Engineering, National Central University, Tao-Yuan City 32001, Taiwan.
Graduate Institute of Environmental Engineering, National Central University, Tao-Yuan City 32001, Taiwan.
J Colloid Interface Sci. 2021 Dec 15;604:584-595. doi: 10.1016/j.jcis.2021.06.160. Epub 2021 Jul 2.
The novel catalyst with yolk-shell SiO NiMo/SiO spheres immobilized by zeolitic imidazolate framework (ZIF-67) materials has been successfully prepared. The experimental results indicated that the prepared catalyst exhibits superior performance for hydrogen generation from Formic acid (FA) dehydrogenation without any additives at low temperatures. The catalytic performances of the NiMo/ZIF-67@SiO yolk-shell increased with Ni addition ratio increasing. In this research, NiMo/ZIF-67@SiO yolk-shell could provide the highest catalytic conversion efficiency. This is due to the uniform dispersion of fine metal nanoparticles (NPs) and synergistic effect between the NiMo NPs and ZIF-67@SiO supporter. The turn over frequency (TOF) value was approximately 13,183 h at 25 °C through complete FA conversion. H selectivity was also approximately 100% with obvious CO-free hydrogen production at 25 °C. Meanwhile, the prepared NiMo/ZIF-67@SiO yolk-shell catalyst also shows superior catalytic stability with corresponding 99% activity after 10 cycles. In summary, the catalyst preparation and hydrogen generated from FA dehydrogenation obtained from this research could provide the important information for application in catalyst innovation and waste FA recycling and recovery in the future.
通过沸石咪唑酯骨架(ZIF-67)材料固定化制备了具有蛋黄壳结构SiO₂的新型NiMo/SiO₂催化剂。实验结果表明,所制备的催化剂在低温下无需任何添加剂,对甲酸(FA)脱氢制氢表现出优异的性能。随着Ni添加比例的增加,NiMo/ZIF-67@SiO₂蛋黄壳的催化性能提高。在本研究中,NiMo/ZIF-67@SiO₂蛋黄壳可提供最高的催化转化效率。这是由于细小金属纳米颗粒(NPs)的均匀分散以及NiMo NPs与ZIF-67@SiO₂载体之间的协同效应。在25℃下通过FA完全转化,周转频率(TOF)值约为13183 h⁻¹。在25℃下,H₂选择性也约为100%,且明显无CO产生。同时,所制备的NiMo/ZIF-67@SiO₂蛋黄壳催化剂还表现出优异的催化稳定性,在10次循环后活性相应为99%。总之,本研究中催化剂的制备以及FA脱氢制氢可为未来催化剂创新和废FA回收利用提供重要信息。