光催化
化学
降级(电信)
盐酸四环素
催化作用
竹子
流出物
化学工程
杂原子
反应速率常数
复合数
共价键
核化学
热液循环
碳纤维
电子转移
光化学
急性毒性
抗菌活性
罗丹明B
组合化学
电子受体
盐酸盐
纳米颗粒
竹炭
作者
Yawei Zhu,Guigan Fang,Kuizhong Shen,Qingwen Tian,Yonghao Ni
标识
DOI:10.1016/j.indcrop.2026.122679
摘要
Biomass-derived carbon quantum dots (CQDs) offer a sustainable approach to design efficient photocatalysts due to their inherent heteroatoms and tunable surface functional groups. In this study, N and Si codoped CQDs (N,Si-CQDs) were synthesized from bamboo residues via a hydrothermal process, leveraging bamboo’s natural N and Si elements. Subsequently, Z-scheme BiOCl/N,Si-CQDs/C 3 N 4 photocatalysts were prepared, where N,Si-CQDs combine with BiOCl via Bi-O-C bonds to form atomic-scale charge-separation channels and interact with C 3 N 4 via π-π conjugation to enhance electron transfer and catalyst stability. The optimized sample (5CB-CN-10–2) exhibits TCH removal efficiency of 87.6 % at 120 min under simulated solar light irradiation, with apparent rate constant of 0.286 min −1 , which is 8.9-fold and 3.1-fold greater than those of BiOCl and BiOCl-C 3 N 4 , respectively. Notably, the catalyst sample achieves a COD removal efficiency of 81.4 % from industrial bamboo pulping effluent under conditions of 200 mg/L catalyst dosage, pH 7.5, 6 h and 40 ℃. Mechanistic investigations revealed that N,Si-CQDs acted as effective electron mediators, enhancing charge separation via Bi-O-C bonds and π-π interactions. Furthermore, the catalyst demonstrates notable antibacterial activity against Staphylococcus aureus and reduced toxicity of the degradation products. This study highlights the potential of naturally N and Si doped CQDs composite photocatalysts for environmental applications. • Bamboo was used to synthesize N,Si-CQDs with dual-doping from inherent elements. • Z-scheme BiOCl/N,Si-CQDs/C 3 N 4 composites were constructed with Bi-O-C bonds and π-π interactions for efficient charge transfer. • The 5CB-CN-10–2 catalyst achieved high photocatalytic pollutant removal. • The catalyst exhibited strong antibacterial activity against S . aureus .
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