Dong Han, Ding Lijie, Wu Lei, Mamatjan Yimit
Xinjiang University, College of Chemical Engineering, Key Laboratory of Oil and Gas Fine Chemicals, Ministry of Education and Xinjiang Uyghur Autonomous Region, 666 Shengli Road, Tianshan District, Urumqi City, Xinjiang Province, People's Republic of China.
Nanotechnology. 2022 Sep 9;33(48). doi: 10.1088/1361-6528/ac7240.
Based on the realization of efficient utilization of cotton stalk lignin, the degradation of cotton stalk lignin by a CDs/CuO synergistic emulsion system was investigated. Copper oxide (CuO) nanoparticles with monoclinic crystal structure were prepared and carbon dots (CDs) synthesized by microwave method was combined with CuO. Under visible light, water and n-butanol were used to construct a water-oil (W/O) emulsion reaction system to achieved depolymerisation of lignin into small molecule compounds. The involvement of hydrogen peroxide (HO) makes the degradation of lignin in this system even more effective. The final high value-added monophenolic compound of 57.70 mg gwas obtained, among which the most abundant were six monophenolic compounds such as vanillin, eugenol and vinyl guaiacol and so on. The results of GC-MS and FTIR characterization indicated that H-type monomers were the main products of lignin degradation in this system. The process conditions for lignin hydrogenolysis in this system were optimized and the best ratio of CDs/CuO was obtained by product analysis. There were characterized by SEM, TEM, XRD, XPS, FTIR, and US-vis. The results show that CDs/CuO aggregates into flower clusters, in which CDs are uniformly distributed on the surface of rhomboidal CuO monoliths. The analysis shows that the doping of CDs improves the absorption efficiency of CuO in the visible region, while reducing the complexation of CuO photogenerated electrons and holes, which achieves the purpose of improved photocatalytic activity of CuO.
基于对棉秆木质素高效利用的认识,研究了 CDs/CuO 协同乳液体系对棉秆木质素的降解作用。制备了具有单斜晶体结构的氧化铜(CuO)纳米颗粒,并将微波法合成的碳点(CDs)与 CuO 复合。在可见光下,以水和正丁醇构建水 - 油(W/O)乳液反应体系,实现木质素解聚为小分子化合物。过氧化氢(HO)的参与使该体系中木质素的降解更有效。最终获得了 57.70 mg g 的高附加值单酚类化合物,其中含量最多的是香草醛、丁香酚和乙烯基愈创木酚等六种单酚类化合物。GC-MS 和 FTIR 表征结果表明,H 型单体是该体系中木质素降解的主要产物。对该体系中木质素氢解的工艺条件进行了优化,并通过产物分析获得了最佳的 CDs/CuO 比例。通过 SEM、TEM、XRD、XPS、FTIR 和 UV-vis 对其进行了表征。结果表明,CDs/CuO 聚集成花簇状,其中 CDs 均匀分布在菱形 CuO 整体的表面。分析表明,CDs 的掺杂提高了 CuO 在可见光区域的吸收效率,同时减少了 CuO 光生电子和空穴的复合,实现了提高 CuO 光催化活性的目的。