Photocatalytic degradation of ciprofloxacin antibiotic from aqueous solution by BiFeO3 nanocomposites using response surface methodology

被引:24
|
作者
Mostafaloo, R. [1 ]
Asadi-Ghalhari, M. [2 ]
Izanloo, H. [2 ]
Zayadi, A. [3 ]
机构
[1] Qom Univ Med Sci, Student Res Comm, Qom, Iran
[2] Qom Univ Med Sci, Res Ctr Environm Pollutants, Qom, Iran
[3] Qom Univ Med Sci, Cellular & Mol Res Ctr, Qom, Iran
关键词
Aqueous Solution; BiFeO3 (BFO); Ciprofloxacin (CIP); Magnetic nanocomposites; Photocatalytic degradation; Response surface methodology; LIGHT-DRIVEN DEGRADATION; ADSORPTIVE REMOVAL; CARBON NITRIDE; WASTE-WATER; AMOXICILLIN; ELECTROCOAGULATION; MONTMORILLONITE; SULFAMETHAZINE; NANOPARTICLES; TETRACYCLINE;
D O I
10.22034/gjesm.2020.02.05
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Ciprofloxacin antibiotic that is used to cure several kinds of bacterial infections have a high solubility capacity in water. The influent of ciprofloxacin to water resources in a low concentration affect the photosynthesis of plants, transforms the morphological structure of the algae, and then disrupts the aquatic ecosystem. 75% of this compound is excreted from the body down to the wastewater which should be removed. BiFeO3, a bismuth-based semiconductor photocatalyst that is responsive to visible light, has been recently used to remove organic pollutants from water. In this study, the optimal conditions for removing ciprofloxacin from aqueous solutions by the BiFeO3 process were investigated. Effective parameters namely pH, reaction time, ciprofloxacin initial concentration, BiFeO3 dose, and temperature on ciprofloxacin removal were studied by using response surface methodology. The validity and adequacy of the proposed model was confirmed by the corresponding statistics (i.e. F-values of 14.79 and 1.67 and p-values of <0.0001 and 0.2505 for the own model and its lack of fit, respectively, R-2 = 0.9107, R(2)adjusted = 0.8492, R-2 predicted = 0.70, AP = 16.761). Hence the Ciprofloxacin removal efficiency reached 100% in the best condition (pH 6, initial concentration of 1 mg/L, BiFeO3 dosage of 2.5 g/L, reaction temperature of 30 degrees C, and process time of 46 min). (C) 2020 GJESM. All rights reserved.
引用
收藏
页码:191 / 202
页数:12
相关论文
共 50 条
  • [41] Removal of brilliant green dye from aqueous solution by electrocoagulation using response surface methodology
    Mariah, Ghufran K.
    Pak, Kamal S.
    MATERIALS TODAY-PROCEEDINGS, 2020, 20 : 488 - 492
  • [42] OPTIMIZATION OF LEVOFLOXACIN REMOVAL FROM AQUEOUS SOLUTION USING ELECTROCOAGULATION PROCESS BY RESPONSE SURFACE METHODOLOGY
    Mohammed, S. J.
    Mohammed-Ridha, M. J.
    IRAQI JOURNAL OF AGRICULTURAL SCIENCES, 2021, 52 (01): : 204 - 217
  • [43] Optimization of ammonia removal by natural zeolite from aqueous solution using response surface methodology
    Mokhtari-Hosseini, Zahra Beagom
    Kazemian, Ehsan
    Tayebee, Reza
    Shenavaei-Zare, Toktam
    HEMIJSKA INDUSTRIJA, 2016, 70 (01) : 21 - 29
  • [44] Amoxicillin Extraction from Aqueous Solution by Emulsion Liquid Membranes Using Response Surface Methodology
    Seifollahi, Zahra
    Rahbar-Kelishami, Ahmad
    CHEMICAL ENGINEERING & TECHNOLOGY, 2019, 42 (01) : 156 - 166
  • [45] Removal of fluoride from aqueous solution by adsorption on hydroxyapatite (HAp) using response surface methodology
    Mourabet, M.
    El Rhilassi, A.
    El Boujaady, H.
    Bennani-Ziatni, M.
    El Hamri, R.
    Taitai, A.
    JOURNAL OF SAUDI CHEMICAL SOCIETY, 2015, 19 (06) : 603 - 615
  • [46] Modeling Cu removal from aqueous solution using sawdust based on response surface methodology
    Jiang, Xiaoxue
    Mostafa, Loghman
    ENVIRONMENTAL MONITORING AND ASSESSMENT, 2024, 196 (02)
  • [47] Modeling Cu removal from aqueous solution using sawdust based on response surface methodology
    Xiaoxue Jiang
    Loghman Mostafa
    Environmental Monitoring and Assessment, 2024, 196
  • [48] Green-synthesized BiFeO3 nanoparticles for efficient photocatalytic degradation of organic dyes, antibiotic and catalytic reduction of 4-nitrophenol
    Parida, Sridhar
    Sarangi, Biswaprakash
    Nanda, Jyotirmayee
    Pany, Biswajit
    INORGANIC CHEMISTRY COMMUNICATIONS, 2024, 170
  • [49] Photocatalytic degradation of ciprofloxacin using a novel carbohydrate-based nanocomposite from aqueous solutions
    Yousefi M.
    Farzadkia M.
    Mahvi A.H.
    Kermani M.
    Gholami M.
    Esrafili A.
    Chemosphere, 2024, 349
  • [50] First Utilization of Magnetically-Assisted Photocatalytic Iron Oxide-TiO2 Nanocomposites for the Degradation of the Problematic Antibiotic Ciprofloxacin in an Aqueous Environment
    Radic, Josip
    Zerjav, Gregor
    Jurko, Lucija
    Boskovic, Perica
    Zemljic, Lidija Fras
    Vesel, Alenka
    Mavric, Andraz
    Gudelj, Martina
    Plohl, Olivija
    MAGNETOCHEMISTRY, 2024, 10 (09)