研究目的
To synthesize, characterize, and investigate the photocatalytic activity of P-doped Fe2O3-TiO2 under visible light for the degradation of sulfamethazine (SMTZ).
研究成果
The P-doped Fe2O3-TiO2 catalyst exhibited enhanced photocatalytic activity under visible light due to reduced crystallite size, increased surface area, and band gap narrowing. Optimal conditions led to complete degradation of SMTZ with good reusability over three cycles, demonstrating potential for water treatment applications.
研究不足
The study is limited to specific operational conditions (e.g., pH, catalyst loading) and may not generalize to other pollutants or light sources. The mineralization percentage was low (30%), indicating incomplete degradation of byproducts.
1:Experimental Design and Method Selection:
A microwave-assisted sol-gel method was used for synthesis, with characterization via various spectroscopic and analytical techniques. Box Behnken design and response surface methodology were applied for optimization.
2:Sample Selection and Data Sources:
Catalyst samples were synthesized with varying P and Fe content; sulfamethazine (SMTZ) was used as the pollutant.
3:List of Experimental Equipment and Materials:
Included SEM (Hitachi Se3400 N), XRD (Bruker AXS D2 Phaser), XPS (PHI 5000 Versa Probe II), FTIR (Perkin Elmer Spectrum One), UV-vis DRS (Thermo Fisher Scientific Evolution 300 PC), PL (Horiba FL-1000), AAS (Varian SpectrAA 220FS), ICP-OES (Perkin Elmer Optima 4300DV), BET (TriStar II 3020), HPLC (Perkin Elmer Series 200), TOC analyzer (Shimadzu TOC-V CSH), and microwave oven (CEM MARS 6).
4:6). Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: Synthesis involved sol-gel method with specific molar ratios; photocatalytic tests were conducted in a batch reactor under visible light, with samples analyzed at intervals.
5:Data Analysis Methods:
Statistical analysis using Design Expert software, kinetic modeling with pseudo-first-order kinetics, and ANOVA for significance testing.
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SEM
Se3400 N
Hitachi
Morphological study of catalyst samples
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FTIR
Spectrum One
Perkin Elmer
Recording FTIR spectra
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UV-vis DRS
Evolution 300 PC
Thermo Fisher Scientific
Recording UV-vis diffuse reflectance spectra
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ICP-OES
Optima 4300DV
Perkin Elmer
Quantifying phosphorus content
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HPLC
Series 200
Perkin Elmer
Analyzing SMTZ concentration
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TOC Analyzer
TOC-V CSH
Shimadzu
Determining total organic carbon content
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XRD
D2 Phaser
Bruker AXS
Determination of crystalline structure and crystallite size
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XPS
5000 Versa Probe II
PHI
Chemical surface composition analysis
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PL Spectrofluorometer
FL-1000
Horiba
Acquiring photoluminescence spectra
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AAS
SpectrAA 220FS
Varian
Quantifying iron content
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BET Analyzer
TriStar II 3020
Micromeritics Instrument Corporation
Measuring nitrogen adsorption-desorption isotherms
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Microwave Oven
MARS 6
CEM
Digesting catalyst samples
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Lamp
Philips
Providing visible light irradiation
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