National & Local Joint Engineering Laboratory for New Petro-chemical Materials and Fine Utilization of Resources, Key Laboratory of the Assembly and Application of Organic Functional Molecules of Hunan Province, Hunan Normal University, Changsha 410081, PR China.
National & Local Joint Engineering Laboratory for New Petro-chemical Materials and Fine Utilization of Resources, Key Laboratory of the Assembly and Application of Organic Functional Molecules of Hunan Province, Hunan Normal University, Changsha 410081, PR China.
Bioresour Technol. 2024 Jul;403:130858. doi: 10.1016/j.biortech.2024.130858. Epub 2024 May 21.
Pentanediols are substances with significant market potential as the key monomers for advanced polymeric materials. In this study, we successfully achieved directly hydrogenolysis of biomass-based furfural to 1,5-pentanediol with a remarkable yield of 53.4 % using Cu-modified cobalt supported on cerium dioxide catalysts. Through comprehensive characterization techniques, including H-TPR, NH-TPD, XPS, EPR and Raman analysis, the study revealed that the introduction of Cu altered the dispersion of Co species, attenuated the interaction between Co species and cerium dioxide, enhanced its reduction extent, and fostered the formation of plentiful cobalt oxide species and oxygen vacancies on the catalyst's surface. The cooperative influence of Cu and Co heightened the selectivity of the hydrogenolysis reaction. This work provides a novel strategy for the development of greener and more efficient catalytic processes based on non-precious metals that for the selective conversion of biomass-derived furfural to high-value pentanediols.
戊二醇是一种具有重要市场潜力的物质,可用作先进聚合材料的关键单体。在这项研究中,我们使用铜改性的负载在二氧化铈上的钴催化剂,成功地将生物质基糠醛直接氢解为戊二醇,产率高达 53.4%。通过包括 H-TPR、NH-TPD、XPS、EPR 和拉曼分析在内的综合表征技术,研究表明,铜的引入改变了钴物种的分散度,减弱了钴物种与二氧化铈之间的相互作用,增强了其还原程度,并促进了大量的钴氧化物物种和氧空位在催化剂表面的形成。铜和钴的协同作用提高了氢解反应的选择性。这项工作为开发基于非贵金属的绿色、高效催化工艺提供了一种新策略,可用于选择性地将生物质衍生的糠醛转化为高价值的戊二醇。