Literature DB >> 31746801

Adsorptive removal of azithromycin from aqueous solutions using raw and saponin-modified nano diatomite.

Siavash Davoodi1, Behnaz Dahrazma1, Nasser Goudarzi2, Hajar Ghasemian Gorji1.   

Abstract

This study aims to investigate the performance and mechanism of raw (R-ND) and saponin-modified nano diatomite (M-ND) in the removal of azithromycin from aqueous solutions. Adsorbent characterization was performed using X-ray fluorescence, Brunauer-Emmett-Teller (BET), scanning electron spectroscopy, dynamic light scattering and energy-dispersive X-ray analyses. It was shown that the specific surface area of R-ND was 119.5 m2/g, 14-fold higher than that for raw diatomite, and for M-ND it was 90.1 m2/g. Various adsorption conditions, i.e. adsorbent dosage, pH, initial concentration and contact time were investigated. According to the results, despite reducing the specific surface area by 25%, modification of nano diatomite by saponin markedly enhanced its performance in the removal of azithromycin. The maximum adsorption capacity of R-ND and M-ND in the removal of azithromycin was 68 and 91.7 mg/g, respectively. Fourier transform infrared spectroscopy results revealed that azithromycin was adsorbed by O-H groups on the diatomite surface. Weber-Morris intra-particle diffusion (IPD) model suggested that while IPD is not the rate-controlling step in high concentrations of azithromycin, it is the only step that controls the rate of adsorption in low concentrations. In comparison to R-ND, M-ND showed a higher efficiency in the removal of azithromycin and, therefore, it can be used as a promising low-cost adsorbent to remove azithromycin from aqueous solutions.

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Year:  2019        PMID: 31746801     DOI: 10.2166/wst.2019.337

Source DB:  PubMed          Journal:  Water Sci Technol        ISSN: 0273-1223            Impact factor:   1.915


  3 in total

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Authors:  Mostafa F Al-Hakkani; Gamal A Gouda; Sedky H A Hassan; Mahmoud M A Mohamed; Adham M Nagiub
Journal:  Sci Rep       Date:  2022-06-29       Impact factor: 4.996

2.  A Fast Adsorption of Azithromycin on Waste-Product-Derived Graphene Oxide Induced by H-Bonding and Electrostatic Interactions.

Authors:  Bushra Parvin Upoma; Sabina Yasmin; Md Aftab Ali Shaikh; Tajnin Jahan; Md Anamul Haque; Mohammad Moniruzzaman; Md Humayun Kabir
Journal:  ACS Omega       Date:  2022-08-22

Review 3.  A critical review on environmental presence of pharmaceutical drugs tested for the covid-19 treatment.

Authors:  Ramiro Picoli Nippes; Paula Derksen Macruz; Gabriela Nascimento da Silva; Mara Heloisa Neves Olsen Scaliante
Journal:  Process Saf Environ Prot       Date:  2021-06-30       Impact factor: 6.158

  3 in total

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