Enhanced charge transfer over sustainable biochar decorated Bi2WO6 composite photocatalyst for highly efficient water decontamination

被引:32
作者
Zhou, Heng [1 ]
Zhang, Rui [2 ]
Yue, Caiyan [1 ]
Wu, Xu [1 ]
Yan, Qiong [1 ]
Wang, Hao [1 ]
Zhang, Heng [1 ]
Ma, Tianyi [3 ]
机构
[1] Guizhou Univ, Ctr R&D Fine Chem, State Local Joint Lab Comprehens Utilizat Biomass, Key Lab Green Pesticide & Agr Bioengn,Minist Educ,, Guiyang 550025, Guizhou, Peoples R China
[2] Shenyang Pharmaceut Univ, Sch Pharmaceut Engn, Shenyang 110036, Peoples R China
[3] RMIT Univ, Sch Sci, Melbourne, Vic 3000, Australia
来源
CHINESE JOURNAL OF CATALYSIS | 2024年 / 59卷
基金
中国国家自然科学基金; 澳大利亚研究理事会;
关键词
Photocatalysis; Biochar; Bi2WO6; Chlorpyrifos; Toxicity assessment;
D O I
10.1016/S1872-2067(23)64613-3
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
As a green and efficient technology, photocatalysis has practical application value, especially in terms of remediating environmental contamination issues. Biochar, the carbon material derived from sustainable calcined biomass waste, has attracted attention for its efficient adsorption capacity for pollutants. Herein, nitrogen(N)-doped biochar is prepared from sawdust biomass and dexterously coupled with Bi 2 WO 6 to synthesize a range of Bi 2 WO 6 /N-doped biochar composites (BWO/N x-BC), which are successfully utilized for photodegradation of chlorpyrifos (CPs). After introducing N atoms, BWO/N3-BC improves conductivity of electrons while maintaining strong adsorption properties, effectively preventing the charge recombination. BWO/N3-BC demonstrates high efficiency in ultrafast photodegradation of recalcitrant pesticides, destroying 99.0% of CPs in only 0.5 h. Besides, the degradation rate constants are 2.91 and 12.13 times higher than those of pure BWO and N3-BC, respectively. Given the complexity of real water environments, the effects of different operating parameters on photocatalytic activity are explored. Free radical scavenging assay and electron paramagnetic resonance are employed to uncover the key active species (center dot O-2(-), center dot OH, and h + ), with center dot O-2(-) being the predominant contributor, and the synergistic enhancement mechanism of adsorption-photodegradation of BWO/N3-BC is successfully revealed. Also, the intermediates of CPs are identified by HPLC-MS, and three possible degradation pathways are proposed. In addition, the ecotoxicity of CPs and their intermediates are evaluated by ecotoxicity test ( E. coli culture) and Toxicity Evaluation Software Tool. This work may provide an opening for environmental remediation via photocatalysis integrated with waste biomass high-value valorization. (c) 2024, Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:169 / 184
页数:16
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