Luo Suyue, Li Shaopeng, Zhang Shuo, Cheng Zhuoying, Nguyen Tat Thang, Guo Minghui
Key Laboratory of Bio-based Material Science & Technology, Northeast Forestry University, Ministry of Education, Harbin 150040, China.
College of Wood Industry and Interior Design, Vietnam National University of Forestry, Xuan Mai, Hanoi 13417, Viet Nam.
Sci Total Environ. 2022 Feb 1;806(Pt 2):150662. doi: 10.1016/j.scitotenv.2021.150662. Epub 2021 Sep 29.
For the simultaneous photocatalytic reduction of hexavalent chromium (Cr(VI)) and the degradation of rhodamine B (RhB), directional charge-transfer channels and efficient separation of photogenerated holes and electrons are important. Herein, a Z-scheme heterojunction photocatalyst, protonated g-CN/BiVO decorated with wood flour biochar (pCN/WFB/BiVO), was prepared through a hydrothermal reaction and electrostatic self-assembly for Cr(VI) photoreduction and RhB photodegradation. The morphological features, crystalline structure, chemical composition, optical properties, specific surface area, and photoelectrochemical properties of the prepared samples were investigated. The pCN/WFB/BiVO photocatalyst exhibited superior removal performance when used to remove Cr(VI) and RhB separately or RhB-Cr(VI) system. The biochar bridge served as a charge-transfer channel between two semiconductors, and the electrons in protonated g-CN (pCN) and BiVO achieved a charge balance. This led to the formation of a Z-scheme heterojunction, fast photogenerated charge separation, and a powerful redox ability. The pCN/WFB/BiVO photocatalyst provides new insight into the mechanisms responsible for boosting multicomponent photocatalytic reactions, while constituting a promising candidate for wastewater treatment.
对于六价铬(Cr(VI))的同步光催化还原和罗丹明B(RhB)的降解而言,定向电荷转移通道以及光生空穴和电子的有效分离至关重要。在此,通过水热反应和静电自组装制备了一种Z型异质结光催化剂——木粉生物炭修饰的质子化g-CN/BiVO(pCN/WFB/BiVO),用于Cr(VI)的光还原和RhB的光降解。研究了所制备样品的形态特征、晶体结构、化学成分、光学性质、比表面积和光电化学性质。pCN/WFB/BiVO光催化剂在单独去除Cr(VI)和RhB或RhB-Cr(VI)体系时表现出优异的去除性能。生物炭桥充当了两种半导体之间的电荷转移通道,质子化g-CN(pCN)和BiVO中的电子实现了电荷平衡。这导致形成Z型异质结、快速的光生电荷分离以及强大的氧化还原能力。pCN/WFB/BiVO光催化剂为促进多组分光催化反应的机制提供了新的见解,同时构成了一种有前途的废水处理候选材料。