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通过黄铁矿结构转化原位构建 Z 型 FeS/FeO 光催化剂用于卡马西平的光催化降解和 Cr(VI)的协同还原。

In situ construction of Z-scheme FeS/FeO photocatalyst via structural transformation of pyrite for photocatalytic degradation of carbamazepine and the synergistic reduction of Cr(VI).

机构信息

Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, China.

Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, China.

出版信息

J Environ Sci (China). 2021 Mar;101:351-360. doi: 10.1016/j.jes.2020.08.029. Epub 2020 Sep 14.

DOI:10.1016/j.jes.2020.08.029
PMID:33334529
Abstract

Pyrite is the most abundant sulfide semiconductor mineral with excellent optical properties. However, few reports have investigated its photocatalytic activity because of the low photogenerated carrier separation efficiency. In this work, a Z-scheme FeS/FeO composite photocatalyst was fabricated in situ via structural transformation of pyrite through heat treatment. A remarkably enhanced photocatalytic performance was observed over the FeS/FeO composite photocatalyst. Compared with the pristine pyrite, the degradation efficiency of carbamazepine (CBZ) reached 65% at the added hexavalent chromium (Cr(Ⅵ)) concentration of 20 mg/L and the Cr(Ⅵ) was nearly completely reduced in the mixed system using FeS/FeO within 30 min under simulated solar light irradiation. The enhanced photocatalytic activity can be attributed to the efficient separation and transfer of photogenerated carriers in the FeS/FeO composite photocatalyst. This facilitated the generation of •OH, hole (h) and •O species, which participated in the photocatalytic reaction with CBZ. Based on the measurement of the active species and electric properties, a Z-scheme electron transfer pathway was proposed for the FeS/FeO composite photocatalyst. This work broadens the application potential of pyrite in environmental remediation.

摘要

黄铁矿是最丰富的硫化物半导体矿物,具有优异的光学性能。然而,由于光生载流子分离效率低,很少有报道研究其光催化活性。在这项工作中,通过热处理原位构建了一种 Z 型 FeS/FeO 复合光催化剂,实现了黄铁矿的结构转化。在 FeS/FeO 复合光催化剂上观察到了显著增强的光催化性能。与原始黄铁矿相比,在添加六价铬 (Cr(Ⅵ)) 浓度为 20 mg/L 的条件下,使用 FeS/FeO 在模拟太阳光照射下 30 分钟内,卡马西平 (CBZ) 的降解效率达到 65%,混合体系中 Cr(Ⅵ) 几乎完全被还原。增强的光催化活性可归因于 FeS/FeO 复合光催化剂中光生载流子的有效分离和转移。这促进了 •OH、空穴 (h) 和 •O 物种的生成,它们与 CBZ 参与了光催化反应。基于活性物种和电性能的测量,提出了 FeS/FeO 复合光催化剂的 Z 型电子转移途径。这项工作拓宽了黄铁矿在环境修复中的应用潜力。

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