Adsorption of ciprofloxacin on iron oxides in the absence or presence of polyethylene microplastic

被引:2
作者
Paludo, Deise [1 ,2 ]
Bonfleur, Eloana Janice [2 ]
Melo, Vander Freitas [2 ]
Pasquali, Gean Delise Leal [1 ]
Bazoti, Suzana Fatima [1 ]
Correa, Rodrigo Studart [1 ,3 ]
机构
[1] Fed Univ Fronteira Sul UFFS, Environm & Sanit Engn, BR-99700970 Erechim, RS, Brazil
[2] Fed Univ Parana UFPR, Soil Sci & Engn Dept, Rua Funcionarios 1540, BR-80035050 Curitiba, PR, Brazil
[3] Univ Brasilia, Postgrad Program Environm Sci PPGCA FUP UnB, BR-73300000 Brasilia, DF, Brazil
关键词
Ferrihydrite; Goethite; Hematite; Specific surface area; Inner-sphere adsorption; Outer-sphere adsorption; INTRINSIC PROTON AFFINITY; REACTIVE SURFACE GROUPS; METAL (HYDR)OXIDES; SORPTION; GOETHITE; ANTIBIOTICS; MECHANISMS; MINERALS; HEMATITE; SOIL;
D O I
10.1016/j.colsurfa.2025.136378
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Antibiotics and microplastics are considered emergent pollutants, with soils serving as critical terminal repository. As such, study aimed to evaluate the outer- and inner-sphere adsorptions of ciprofloxacin on synthetic ferrihydrite, goethite and hematite under three pH conditions (4.7, 6.2, 9.0), both in absent and presence of polyethylene microplastic (40-48 mu m, 5 % w/w) (novelty by simulating double environmental contamination with ciprofloxacin and microplastic). Another novelty was estimating the adsorption stability of ciprofloxacin using chemical sequential extractions: i) outer-sphere (0.01 mol L-1 NaOH, pH 12); (ii) low energy inner-sphere (0.1 mol L-1 KH2PO4, pH 4.5); iii) high energy inner-sphere - residual ciprofloxacin. Total ciprofloxacin adsorption capacity (mg g(-1)) followed decreasing order: ferrihydrite (18.1-20.8) > hematite (5.7-13.8) > goethite (3.5-12.7). When considering adsorption relative to the specific surface area (mg m(-2)), order shifted to hematite (0.46) > goethite (0.30) > ferrihydrite (0.07) at pH 6.2, where highest adsorption rates were observed. Outer-sphere adsorption, as percentage of total adsorption, was most significant under alkaline conditions (pH 9.0): ferrihydrite (29-55 %) > hematite (8-46 %) > goethite (2-24 %). Conversely, residual adsorption was predominant at pH 4.7 for crystalline iron oxides (hematite, goethite). Maximum ciprofloxacin adsorption capacity on pure microplastic was 7.6 mg g(-1), pH 4.7. The inclusion of two crystalline Fe oxides allowed to evaluate the positive effect on ciprofloxacin adsorption of greater exposure of more reactive ferrol groups. Addition of 5 % microplastic to iron oxides did not affect ciprofloxacin adsorption on ferrihydrite, goethite, and hematite. From environmental perspective, Fe oxides, abundant in humid tropical soils, have demonstrated high capacity for ciprofloxacin filtration (characterized by high adsorption energy), even in environments subject to dual contamination with microplastic.
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页数:11
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