Mirante Fátima, Leo Pedro, Dias Catarina N, Cunha-Silva Luís, Balula Salete S
LAQV/REQUIMTE, Department of Chemistry and Biochemistry, Faculty of Sciences, University of Porto, 4169-007 Porto, Portugal.
Department of Chemical and Environmental Technology, Universidad Rey Juan Carlos, Calle Tulipán s/n, 28933 Móstoles, Spain.
Materials (Basel). 2023 Nov 3;16(21):7023. doi: 10.3390/ma16217023.
Glycerol is the main residue in the biodiesel production industry; therefore, their valorization is crucial. The acetalization of glycerol toward fuel additives such as solketal (2,2-dimethyl-1,3-dioxolan-4-methanol) is of high interest, promoting circular economy since it can be added to biodiesel or even fossil diesel to improve their quality and efficiency. Straightforward-prepared metal-organic framework (MOF) materials of the MOF-808 family were applied to the valorization of glycerol for the first time. In particular, MOF-808(Hf) was revealed to be an effective heterogeneous catalyst to produce solketal under moderate conditions: a small amount of the MOF material (only 4 wt% of glycerol), a 1:6 ratio of glycerol/acetone, and a temperature of 333 K. The high efficiency of MOF-808(Hf) was associated with the high amount of acid centers present in its structure. Furthermore, its structural characteristics, such as window opening cavity size and pore diameters, were shown to be ideal for reusing this material for at least ten consecutive reaction cycles without losing activity (conversion > 90% and selectivity > 98%). Remarkably, it was not necessary to wash or activate the MOF-808(Hf) catalyst between cycles (no pore blockage occurred), and it maintained structural integrity after ten cycles, confirming its ability to be a sustainable heterogeneous catalyst for glycerol valorization.
甘油是生物柴油生产行业的主要残留物;因此,对其进行增值利用至关重要。甘油向燃料添加剂如缩酮(2,2-二甲基-1,3-二氧戊环-4-甲醇)的缩醛化反应备受关注,因为它可以添加到生物柴油甚至化石柴油中以提高其质量和效率,从而促进循环经济。首次将简单制备的MOF-808家族金属有机框架(MOF)材料应用于甘油的增值利用。特别是,MOF-808(Hf)被证明是一种有效的多相催化剂,可在温和条件下生产缩酮:少量的MOF材料(仅占甘油的4 wt%)、甘油/丙酮的比例为1:6以及温度为333 K。MOF-808(Hf)的高效率与其结构中存在的大量酸性中心有关。此外,其结构特征,如窗口开孔腔尺寸和孔径,被证明非常适合将该材料至少连续重复使用十个反应循环而不丧失活性(转化率>90%且选择性>98%)。值得注意的是,在循环之间无需洗涤或活化MOF-808(Hf)催化剂(未发生孔堵塞),并且在十个循环后它保持了结构完整性,证实了其作为甘油增值利用的可持续多相催化剂的能力。