生物炭
光催化
罗丹明B
降级(电信)
流出物
污染物
废水
制浆造纸工业
化学
环境修复
吸附
复合数
环境化学
中心组合设计
化学工程
污水处理
污染
人体净化
材料科学
废物管理
可见光谱
环境工程
色散(光学)
高级氧化法
光降解
猝灭(荧光)
环境科学
作者
Rajesh Chanda,Toslim Jahid,Seamul Islam,Mohit Dhali,Mohammad Forrukh Hossain Khan,Md․Saiful Islam,Shimul Saha,Biplob Kumar Biswas
标识
DOI:10.1016/j.hazadv.2025.100897
摘要
• N, S co-doped municipal sludge-derived biochar as a photocatalyst promoter. • Enhanced RhB and CIP photocatalytic degradation of BVO–NSMS composites. • Operating parameter optimization using RSM and ANOVA analysis. • The BVO–NSMS is an efficient photocatalyst for organic pollutant decontamination. Environmental pollution stemming from pharmaceutical products and textile effluents is increasing daily. Photocatalytic degradation is a viable remediation technique for such organic compounds. BiVO 4 (BVO) has gained attention as a visible light photocatalyst due to its easy preparation process and low cost. However, the high recombination rate of photogenerated charges limits the photocatalytic efficiency of BVO. To overcome such limitations and enhance the overall wastewater decontamination performance, a N, S-co-doped municipal sludge (NSMS)-derived biochar is utilized as support material. Composites having various BVO and NSMS biochar mass ratios were prepared to study the effect of NSMS biochar addition. The photocatalytic performance was evaluated using Rhodamine B and Ciprofloxacin as representative compounds for textile dye and pharmaceutical products, respectively. The BVO–NSMS composites demonstrated 2- and 3.5 times faster degradation for Rhodamine B and Ciprofloxacin, respectively, compared to the pristine BVO material. The XRD, FT-IR, UV-DRS, XPS, and EIS techniques were carried out to elucidate the observed synergistic effect of NSMS biochar inclusion in the BVO-based composite. The NSMS biochar provides adsorption sites for pollutant molecules and delays the recombination of the generated electron-hole pair of BVO material. Additionally, the RSM and ANOVA statistical tools were employed to determine the optimized degradation parameters. The presented NSMS-incorporated BVO composite valorizes the municipal sludge waste and can be applied as a photocatalyst for mitigating organic contamination.
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