Sorption process of municipal solid waste biochar-montmorillonite composite for ciprofloxacin removal in aqueous media

被引:128
作者
Ashiq, Ahmed [1 ]
Sarkar, Binoy [2 ]
Adassooriya, Nadeesh [3 ]
Walpita, Janitha [1 ]
Rajapaksha, Anushka Upamali [1 ]
Ok, Yong Sik [4 ,5 ]
Vithanage, Meththika [1 ,6 ]
机构
[1] Univ Sri Jayewardenepura, Fac Sci Appl, Ecosphere Resilience Res Ctr, Nugegoda, Sri Lanka
[2] Univ Sheffield, Dept Anim & Plant Sci, Sheffield S10 2TN, S Yorkshire, England
[3] Wayamba Univ Sri Lanka, Dept Food Sci & Technol, Makandura 60170, Gonawila, Sri Lanka
[4] Korea Univ, Korea Biochar Res Ctr, OJERI, Seoul 02841, South Korea
[5] Korea Univ, Div Environm Sci & Ecol Engn, Seoul 02841, South Korea
[6] Natl Inst Fundamental Studies, Mol Microbiol & Human Dis, Kandy 20000, Sri Lanka
关键词
Emerging contaminants; Biochar; Antibiotics; Wastewater; Pharmaceuticals; ANTIBIOTIC CIPROFLOXACIN; ADSORPTION; CARBON; SULFAMETHAZINE; WATER; TETRACYCLINE; KINETICS; RELEASE; PH; PHARMACEUTICALS;
D O I
10.1016/j.chemosphere.2019.124384
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study evaluates a novel adsorbent for ciprofloxacin (CPX) removal from water using a composite derived from municipal solid waste biochar (MSW-BC) and montmorillonite (MMT). The composite adsorbent and pristine materials were characterized using powder X-Ray Diffraction (PXRD), Fourier-Transform Infrared (FTIR) spectroscopy, and Scanning Electron Microscope (SEM) before and after the adsorption. Batch experiments were conducted to study the mechanisms involved in the adsorption process. Ciprofloxacin sorption mechanisms were interpreted in terms of its pH-dependency and the distribution coefficients. The SEM images confirmed the successful binding of MMT onto the MSW-BC through flaky structure along with a porous morphology. Encapsulation of MMT onto MSW-BC was exhibited through changes in the basal spacing of MMT via PXRD analysis. Results from FTIR spectra indicated the presence of functional groups for both pristine materials and the composite that were involved in the adsorption reaction. The Hill isotherm model and pseudo-second-order and Elovich kinetic models fitted the batch sorption data, which explained the surface heterogeneity of the composite and cooperative adsorption mechanisms. Changes made to the MSW-BC through the introduction of MMT, enhanced the active sites on the composite adsorbent, thereby improving its interaction with ionizable CPX molecules giving high sorption efficiency. (C) 2019 Elsevier Ltd. All rights reserved.
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页数:11
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