A novel S-scheme photocatalyst Fe2O3/Bi2O3/g-C3N4 with enhanced visible-light photocatalytic performance for antibiotic degradation and CO2 reduction: RSM-based optimization

被引:4
|
作者
Amari, Abdelfattah [1 ]
Aljibori, Hakim S. Sultan [2 ]
Algarni, Zaina [3 ]
Elboughdiri, Noureddine [4 ,5 ]
Diab, M. A. [6 ,7 ]
Baek, Kwang-Hyun [6 ]
Mahariq, Ibrahim [8 ,9 ]
机构
[1] King Khalid Univ, Coll Engn, Dept Chem Engn, Abha 61411, Saudi Arabia
[2] Univ Warith Al Anbiyaa, Coll Engn, Karbala 56001, Iraq
[3] Univ Bisha, Fac Sci Bisha, Dept Phys, POB 199, Bisha 61922, Saudi Arabia
[4] Univ Hail, Coll Engn, Chem Engn Dept, POB 2440, Hail 81441, Saudi Arabia
[5] Univ Gabes, Natl Sch Engineers Gabes, Chem Engn Proc Dept, Gabes 6029, Tunisia
[6] Yeungnam Univ, Dept Biotechnol, Gyongsan 38541, Gyeongbuk, South Korea
[7] Minist Hlth & Populat, Water Anal Dept, Cent Publ Hlth Labs, Cairo 11613, Egypt
[8] Gulf Univ Sci & Technol, GUST Engn & Appl Innovat Res Ctr GEAR, Mishref, Kuwait
[9] China Med Univ, China Med Univ Hosp, Dept Med Res, Taichung, Taiwan
关键词
CO2; reduction; Environmental remediation; Photocatalysis Process; S-scheme photocatalyst; RSM-CCD optimization; ORGANIC POLLUTANTS; COMPOSITE; BI2O3/G-C3N4; CARBON; NANOCOMPOSITES; FABRICATION; MECHANISM; EVOLUTION; REMOVAL; G-C3N4;
D O I
10.1016/j.jiec.2024.08.002
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The degradation of pollutants and reduction of CO2 to hydrocarbon fuels using photocatalysis is a potential approach to reducing CO2 emissions and decreasing environmental contamination. This study introduces an innovative S-scheme photocatalyst (Fe2O3/Bi2O3/g-C3N4) synthesized through simple methods for the first time. The structural, morphological, and optical properties of the synthesized photocatalysts were comprehensively characterized using XRD, XPS, FTIR, SEM, TEM, HR-TEM, BET, UV-vis DRS, PL, ESR, and mott-Schottky analyses, respectively. The visible light photodegradation of tetracycline (TC) antibiotic and CO2 conversion were carried out in order to evaluate the photocatalytic performance of these synthesized materials. Using the RSMCCD approach, the influence of key variables on TC degradation were optimized. The results indicated that the optimized photocatalyst (45-FeBiC) exhibited higher photocatalytic performance (99.87 %) compared to other samples via photogenerated center dot O-2(-), and center dot OH. Additionally, four cycle studies verified that the 45-FeBiC nanocomposite had adequate photostability. After 6 h of visible light illumination, the 45-FeBiC catalyst generated 33.84 mu mol/g of CO and maintained 96.2 % of its initial photocatalytic activity after 30 h of reaction. The enhanced photocatalytic efficiency of the 45-FeBiC nanocomposite is attributed to the photosensitization effect of 3 wt%-Fe2O3/Bi2O3 on g-C3N4 within the S-scheme photocatalytic framework.
引用
收藏
页码:599 / 616
页数:18
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