Mehrbakhsh Moin, Honarmand Moones, Aryafar Ahmad
Department of Mining Engineering, Faculty of Engineering, University of Birjand, Birjand, Iran.
Department of Chemical Engineering, Birjand University of Technology, Birjand, Iran.
Sci Rep. 2024 Dec 30;14(1):31950. doi: 10.1038/s41598-024-83427-y.
To tackle the challenges of increasing the efficiency of photocatalysts, a ternary magnetic heterojunction photocatalyst containing spinel cobalt and zinc ferrites, and zeolite (CZZ) was designed and fabricated. The physicochemical properties of the novel photocatalyst were verified using characterization techniques such as XRD, FT-IR, FE-SEM, EDS mapping, N adsorption-desorption, VSM, PL, and UV-Vis DRS. The CZZ photocatalyst exhibited a significant Cr (VI) reduction rate of 0.1535 min, which was 9.27, 5.37 and 3.58 times higher than those of single ZnFeO nanoparticles (0.0166 min), CoFeO nanoparticles (0.0286 min), and CoFeO-ZnFeO (0.0428 min) respectively. CZZ showed an excellent reusability after three consecutive cycles of Cr(VI) reduction. The results from the experiments in different aqueous environments displayed that CZZ could be a promising photocatalyst to reduce Cr(VI) in the treatment of actual aqueous matrices. The present study not only provides a highly active catalytic system for the practical removal of Cr(VI) but also paves the way for the fabrication of high-performance heterojunction photocatalysts.
为应对提高光催化剂效率的挑战,设计并制备了一种包含尖晶石钴铁氧体、锌铁氧体和沸石的三元磁性异质结光催化剂(CZZ)。采用XRD、FT-IR、FE-SEM、EDS映射、N吸附-脱附、VSM、PL和UV-Vis DRS等表征技术对新型光催化剂的物理化学性质进行了验证。CZZ光催化剂对Cr(VI)的还原速率显著,为0.1535 min,分别是单一ZnFeO纳米颗粒(0.0166 min)、CoFeO纳米颗粒(0.0286 min)和CoFeO-ZnFeO(0.0428 min)的9.27倍、5.37倍和3.58倍。在连续三个循环的Cr(VI)还原实验后,CZZ表现出优异的可重复使用性。在不同水环境中的实验结果表明,CZZ可能是一种在实际水基质处理中还原Cr(VI)的有前景的光催化剂。本研究不仅为实际去除Cr(VI)提供了一种高活性催化体系,也为高性能异质结光催化剂的制备铺平了道路。