College of Water Conservancy and Hydropower Engineering, Sichuan Agricultural University, Yaan, 625014, China.
College of Science, Sichuan Agricultural University, Yaan, 625014, China.
Environ Sci Pollut Res Int. 2024 Feb;31(10):15091-15104. doi: 10.1007/s11356-024-32190-8. Epub 2024 Jan 29.
The development of composite photocatalysts with high charge transfer efficiency, great visible light absorption, and quick recovery has aroused the interest of many researchers. Herein, based on the hydrothermal assisted vacuum freeze drying method, CdS, FeO, and N-TiO were, respectively, fixed in the inner, middle, and outer layers of nitrogen-doped graphene aerogel for preparation of the site-specific magnetic porous Z-scheme CdS/FeO@N-doped graphene aerogel microtube/N-doped TiO (CdS/FeO@NGAM/N-TiO) photocatalyst. For the composite, FeO@NGAM carrier with porous and tubular structure not only helps the recycle and reactants/productions mass transport in the photocatalytic process but also ensures the well-steered transfer of electrons and holes from CdS and N-TiO in the Z-type heterojunction system, greatly improving the separation of photogenerated carriers. Besides, FeO can also work as a Fenton catalyst to activate hydrogen peroxide which is generated in situ by CdS. Thus, the CdS/FeO@NGAM/N-TiO composite presents excellent degradation efficiencies towards methyl orange ((MO) 98% removal rate within 50 min), bisphenol A ((BPA) 96% removal rate within 50 min), tetracycline hydrochloride ((TCH) 96% removal rate within 120 min) and strong stabilities after 6 cycles. The free radical removal experiments show that ·O and ·OH are the main active substances of catalysis, which further confirms the synergistic effect of photocatalysis and Fenton catalysis.
具有高效电荷转移效率、良好可见光吸收和快速恢复能力的复合光催化剂引起了许多研究人员的兴趣。在此,基于水热辅助真空冷冻干燥法,分别将 CdS、FeO 和 N-TiO 固定在氮掺杂石墨烯气凝胶的内层、中层和外层,制备了具有特定位置的磁性多孔 Z 型 CdS/FeO@N-掺杂石墨烯气凝胶微管/N-掺杂 TiO (CdS/FeO@NGAM/N-TiO)光催化剂。对于该复合材料,具有多孔和管状结构的 FeO@NGAM 载体不仅有助于在光催化过程中反应物/产物的循环和质量传递,而且确保了 Z 型异质结体系中 CdS 和 N-TiO 中电子和空穴的良好定向转移,极大地提高了光生载流子的分离效率。此外,FeO 还可以作为芬顿催化剂来激活 CdS 原位生成的过氧化氢。因此,CdS/FeO@NGAM/N-TiO 复合材料对甲基橙(MO,50 min 内去除率达 98%)、双酚 A(BPA,50 min 内去除率达 96%)、盐酸四环素(TCH,120 min 内去除率达 96%)具有优异的降解效率,且在 6 次循环后仍具有较强的稳定性。自由基清除实验表明·O 和·OH 是催化的主要活性物质,进一步证实了光催化和芬顿催化的协同作用。