Rodríguez-Fernández José-Enrique, Rojo María, Avilés-Moreno Juan Ramón, Ocón Pilar
Departamento de Química Física Aplicada, Universidad Autónoma de Madrid (UAM), C/Francisco Tomás y Valiente 7, 28049 Madrid, Spain.
Materials (Basel). 2023 May 4;16(9):3525. doi: 10.3390/ma16093525.
Biomass-derived products, such as lignin, are interesting resources for energetic purposes. Lignin is a natural polymer that, when added to the anode of an alkaline exchange membrane water electrolyser, enhances H production rates and efficiencies due to the substitution of the oxygen evolution reaction. Higher efficiencies are reported when different catalytic materials are employed for constructing the lignin anolyte, demonstrating that lower catalytic loadings for the anode improves the H production when compared to higher loadings. Furthermore, when a potential of -1.8 V is applied, higher gains are obtained than when -2.3 V is applied. An increase of 200% of H flow rates with respect to water electrolysis is reported when commercial lignin is used coupled with Pt-Ru at 0.09 mg cm and E = -1.8 V is applied at the cathode. This article provides deep information about the oxidation process, as well as an optimisation of the method of the lignin electro-oxidation in a flow-reactor as a pre-step for an industrial implementation.
生物质衍生产品,如木质素,是用于能源目的的有趣资源。木质素是一种天然聚合物,当添加到碱性交换膜水电解槽的阳极时,由于析氧反应的替代作用,可提高氢气产生速率和效率。当采用不同的催化材料构建木质素阳极电解液时,报告显示效率更高,这表明与较高负载相比,阳极较低的催化负载量可提高氢气产量。此外,当施加-1.8V的电位时,比施加-2.3V时获得更高的增益。当在阴极使用商业木质素与0.09mg/cm²的Pt-Ru耦合并施加E = -1.8V时,报告显示氢气流量相对于水电解增加了200%。本文提供了有关氧化过程的深入信息,以及作为工业实施前体步骤的流动反应器中木质素电氧化方法的优化。