4.6 Article

Optimization of Fluoride Adsorption on Acid Modified Bentonite Clay Using Fixed-Bed Column by Response Surface Method

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MOLECULES
卷 26, 期 23, 页码 -

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MDPI
DOI: 10.3390/molecules26237112

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adsorption; fluoride remediation; acid-treated bentonite clay; fixed-bed column; response surface methodology

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In this study, column adsorption studies on acid-treated Bentonite for fluoride removal indicated an optimized operating condition with 100% removal rate, adsorptive capacity of 2.46 mg/g, and desirability of 1.0. The relationship between experimental and expected response values was analyzed, and variance analysis determined the importance of independent variables and their interactions, ultimately proving the success of acid activation for field application of Bentonite adsorbent.
Using small-scale batch tests, various researchers investigated the adsorptive removal of fluoride using low-cost clay minerals, such as Bentonite. In this study, Column adsorption studies were used to investigate the removal of fluoride from aqueous solution using acid-treated Bentonite (ATB). The effects of initial fluoride concentration, flow rates, and bed depth on fluoride removal efficiency (R) and adsorption capability (qe) in continuous settings were investigated, and the optimal operating condition was determined using central composite design (CCD). The model's suitability was determined by examining the relationship between experimental and expected response values. The analysis of variance was used to determine the importance of independent variables and their interactions. The optimal values were determined as the initial concentration of 5.51 mg/L, volumetric flow rate of 17.2 mL/min and adsorbent packed-bed depth of 8.88 cm, with % removal of 100, adsorptive capacity of 2.46 mg/g and desirability of 1.0. This output reveals that an acid activation of Bentonite has made the adsorbent successful for field application.

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