LAPSE:2020.0418
Published Article
LAPSE:2020.0418
Process Parameters Optimization of Gallic Acid Removal from Water by MIEX Resin Based on Response Surface Methodology
Qiang Zhou, Lei Ding, Yunhua Zhu, Meiying Zhong, Chuchu Yang
May 2, 2020
In this work, the response surface methodology was used to optimize the process parameters of gallic acid adsorption on magnetic ion exchange (MIEX) resin. Based on Box-Behnken Design, a quadratic polynomial model equation including solution pH, gallic acid concentration, MIEX resin dosage and adsorption time was established. The reliability of the established regression equation was tested by variance analysis. Based on the regression equation, the technical parameters for gallic acid adsorption on MIEX resin were optimized and the effects of interaction between variables on the removal of gallic acid were analyzed. The results showed that the established regression equation was reliable and could effectively predict the removal of gallic acid. The optimal technical parameters were determined to be a pH of 9.17, a gallic acid concentration of 8.07 mg/L, a resin dosage of 0.98 mL/L and an adsorption time of 46.43 min. The removal efficiency of gallic acid was 97.93% under the optimal parameters. The interaction between pH and adsorption time had the most significant effect on the removal of gallic acid. The results of this study demonstrated that MIEX resin can remove gallic acid efficiently and relatively quickly under the condition of optimal technical parameters.
Keywords
Adsorption, gallic acid, MIEX resin, process parameters optimization, response surface methodology
Suggested Citation
Zhou Q, Ding L, Zhu Y, Zhong M, Yang C. Process Parameters Optimization of Gallic Acid Removal from Water by MIEX Resin Based on Response Surface Methodology. (2020). LAPSE:2020.0418
Author Affiliations
Zhou Q: School of Civil Engineering and Architecture, Anhui University of Technology, 59 Hudong Road, Maanshan 243002, China
Ding L: School of Civil Engineering and Architecture, Anhui University of Technology, 59 Hudong Road, Maanshan 243002, China; Engineering Research Center of Biomembrane Water Purification and Utilization Technology, Ministry of Education, 59 Hudong Road, Maanshan
Zhu Y: School of Civil Engineering and Architecture, Anhui University of Technology, 59 Hudong Road, Maanshan 243002, China; Engineering Research Center of Biomembrane Water Purification and Utilization Technology, Ministry of Education, 59 Hudong Road, Maanshan
Zhong M: School of Civil Engineering and Architecture, Anhui University of Technology, 59 Hudong Road, Maanshan 243002, China; Engineering Research Center of Biomembrane Water Purification and Utilization Technology, Ministry of Education, 59 Hudong Road, Maanshan
Yang C: School of Civil Engineering and Architecture, Anhui University of Technology, 59 Hudong Road, Maanshan 243002, China
Journal Name
Processes
Volume
8
Issue
3
Article Number
E273
Year
2020
Publication Date
2020-02-27
Published Version
ISSN
2227-9717
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Original Submission
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PII: pr8030273, Publication Type: Journal Article
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LAPSE:2020.0418
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doi:10.3390/pr8030273
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May 2, 2020
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Calvin Tsay
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