Simultaneous removal of five triazole fungicides from synthetic solutions on activated carbons and cyclodextrin-based adsorbents
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Titre | Simultaneous removal of five triazole fungicides from synthetic solutions on activated carbons and cyclodextrin-based adsorbents |
Type de publication | Journal Article |
Year of Publication | 2017 |
Auteurs | Crini G, Saintemarie AExposito, Rocchi S, Fourmentin M, Jeanvoine A, Millon L, Morin-Crini N |
Journal | HELIYON |
Volume | 3 |
Pagination | e00380 |
Date Published | AUG |
Type of Article | Article |
ISSN | 2405-8440 |
Mots-clés | Materials Chemistry, materials science |
Résumé | In this study, an adsorption-oriented process for the removal of fungicides from polycontaminated aqueous solutions was applied. To remove triazole fungicides from aqueous mixtures of propiconazole (PROPI), tebuconazole (TEBU), epoxiconazole (EPDXI), bromuconazole (BROMU) and difenoconazole (DIFENO), several materials used as adsorbents were compared using batch experiments, namely two conventional activated carbons (ACs) and five nonconventional cross-linked cyclodextrin (CD)-based materials (alpha-CDP, beta-CDP, gamma-CDP, alpha beta gamma-CDP mixture, and hydroxypropyl-beta-CDP). This article presents the abatements obtained. As expected, ACs exhibited the highest levels of triazole fungicide removal: the treatment lowered the five azoles by more than 99%, and adsorption was non-selective. Concerning CD -based materials employed for the first time for the removal of fungicides from polycontaminated aqueous solutions, results were interesting in particular for hydroxypropyl-beta-CDP: 1 g of adsorbent placed in 1 L of solution containing 1 mg of each of five triazoles (5 mg in total) was able to remove over half of the fungicide amount (2.97 mg). The order obtained was the following: BROMU << PROPI congruent to EPOXI < TEBU << DIFENO. This indicates that, in the mixture studied, strong competition prevailed among fungicides for the binding sites. |
DOI | 10.1016/j.heliyon.2017.e00380 |