研究目的
Investigating the removal performance for rhodamine B (RB) by persulfate (PS) activated by the CuFe2O4 catalyst in a heterogeneous catalytic system under LED light irradiation.
研究成果
The CuFe2O4/PS/LED system demonstrated high efficiency in the removal of RB, with over 96% removal in 60 min under optimal conditions. The system showed good reusability and stability, with limited metal leaching. The study provides a foundation for the application of CuFe2O4/PS/LED systems in wastewater treatment.
研究不足
The study focused on the degradation of RB under specific conditions and may not be directly applicable to other pollutants or under different environmental conditions. The TOC removal efficiency was partial, indicating incomplete mineralization of RB.
1:Experimental Design and Method Selection
The study employed a heterogeneous catalytic system with CuFe2O4 as the catalyst under LED light irradiation to activate persulfate for the degradation of rhodamine B (RB). The effect of various experimental factors was systematically studied.
2:Sample Selection and Data Sources
RB was chosen as the target compound due to its toxicity and wide application in numerous industries. The CuFe2O4 catalyst was synthesized through the co-precipitation method.
3:List of Experimental Equipment and Materials
LED lamp (30 W, 460 nm, Xujia Company, China), UV-vis spectrophotometer (UV3600 II, Shanghai, China), ICP-MS (Agilent 7000), TOC analyser (Elementar Vario), pH meter (Shanghai LeiCi PHS-25), ESR (JES FA200, JEOL), GC/MS (Agilent 7890B gas chromatograph equipped with an Agilent 7000C mass spectroscopy instrument).
4:Experimental Procedures and Operational Workflow
Batch experiments were carried out in a 50 mL cylindrical reactor at room temperature. The initial pH was adjusted using 0.1 M H2SO4 or 0.1 M NaOH. The catalyst was suspended in RB solution for 30 min to achieve absorption equilibrium in the dark before adding persulfate and turning on the LED lamp.
5:Data Analysis Methods
The concentration of RB was measured by UV-vis spectrophotometry. The removal efficiency was calculated based on the absorbance at the characteristic wavelength of RB. The kinetics of RB removal were analyzed using pseudo-first-order reaction kinetics.
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ICP-MS
Agilent 7000
Agilent
Metal leaching measurements
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ESR
JES FA200
JEOL
Measurement of free radicals intensity
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GC/MS
Agilent 7890B gas chromatograph equipped with an Agilent 7000C mass spectroscopy instrument
Agilent
Detection of degradation products
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LED lamp
30 W, 460 nm
Xujia Company
Light source for photocatalytic reaction
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UV-vis spectrophotometer
UV3600 II
Shanghai
Measurement of RB concentration
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TOC analyser
Elementar Vario
Elementar
Mineralization analysis of RB
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pH meter
PHS-25
Shanghai LeiCi
pH monitoring
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