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Title:Odstranjevanje antibiotika z uporabo kompozitnih magnetnih nanodelcev s pektinom
Authors:ID Kurbus, Lara (Author)
ID Simonič, Marjana (Mentor) More about this mentor... New window
ID Plohl, Olivija (Comentor)
Files:.pdf VS_Kurbus_Lara_2026.pdf (2,74 MB)
MD5: 6B9BAB592D49394C7C1D82724BDE5084
 
Language:Slovenian
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FKKT - Faculty of Chemistry and Chemical Engineering
Abstract:Ostanki antibiotikov, med njimi fluorokinolona ciprofloksacina, so prisotni v vodnem okolju in prispevajo k širjenju bakterijske odpornosti, konvencionalne čistilne naprave pa jih odstranijo le delno. Obetavni Obetavnost predstavljajo so magnetni nanoadsorbenti, ki jih po uporabi ločimo s permanentnim magnetom. V diplomskem delu smo s koprecipitacijo iz vodne raztopine Fe2+ in Fe3+ ionov ob dodatku amoniaka sintetizirali magnetne nanodelce (MNPs) in jih površinsko funkcionalizirali s pektinom (MNPs@Pec). Materiale smo analizirali s transmisijsko elektronsko mikroskopijo (TEM), Fourierjevo transformacijsko infrardečo spektroskopijo z oslabljenim totalnim odbojem (ATR-FTIR), X-žarkovno fotoelektronsko spektroskopijo (XPS), meritvami zeta potenciala, termogravimetrično analizo (TGA) in magnetnimi meritvami z vibrirajočim vzorcem (VSM), vsebnost karboksilnih skupin pektina pa določili s potenciometrično titracijo. Odstranjevanje ciprofloksacina smo ovrednotili s šaržnimi adsorpcijskimi poskusi (8 mg/L, pH ≈ 7, kontaktna časa 2 h in 24 h) z UV-Vis spektrofotometrijo. Nanodelci (5–12 nm) imajo spinelno strukturo železovih oksidov. Prisotnost pektina so potrdili značilni signali pektina v ATR-FTIR-spektru kompozitaMNPs@Pec, XPS-spektri visoke ločljivosti ter premik izoelektrične točke s pH ≈ 8 na pH = 3,3–3,8; delež pektina po TGA znaša približno 13,3 mas. % (spodnja ocena). Oba materiala sta praktično superparamagnetna; nasičena magnetizacija se je znižala z 62,5 emu/g na 49,9 emu/g. MNPs@Pec je po 2 h odstranil 65,0 %, po 24 h pa 70,0 % ciprofloksacina, sami MNPs pa 49,4 % oziroma 43,0 %; padec pripisujemo desorpciji šibko vezanega antibiotika. Pektinska prevleka prispeva vezavna mesta za ciprofloksacin ter izboljša učinkovitost in obstojnost vezave, magnetne lastnosti pa omogočajo preprosto ločevanje adsorbenta iz vode, zato je MNPs@Pec obetaven material za odstranjevanje antibiotikov iz vodnih medijev.
Keywords:magnetni nanodelci, maghemit, pektin, ciprofloksacin, adsorpcija, čiščenje vode
Place of publishing:Maribor
Year of publishing:2026
PID:20.500.12556/DKUM-99973 New window
Publication date in DKUM:22.09.2026
Views:128
Downloads:3
Metadata:XML DC-XML DC-RDF
Categories:KTFMB - FKKT
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Licences

License:CC BY-ND 4.0, Creative Commons Attribution-NoDerivatives 4.0 International
Link:http://creativecommons.org/licenses/by-nd/4.0/
Description:Under the NoDerivatives Creative Commons license one can take a work released under this license and re-distribute it, but it cannot be shared with others in adapted form, and credit must be provided to the author.
Licensing start date:01.09.2026

Secondary language

Language:English
Title:Removal of antibiotics using composite magnetic nanoparticles with pectin
Abstract:Antibiotic residues, including the fluoroquinolone ciprofloxacin, occur in aquatic environments and contribute to bacterial resistance, while conventional wastewater treatment removes them only partially. Magnetic nanoadsorbents are promising, as they are retrievable with a magnet. Magnetic nanoparticles (MNPs) were prepared by coprecipitation from a solution of Fe²⁺ and Fe³⁺ ions using ammonia and surface-functionalised with pectin (MNPs@Pec). The materials were analysed by transmission electron microscopy (TEM), attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR), X-ray photoelectron spectroscopy (XPS), zeta potential measurements, thermogravimetric analysis (TGA) and vibrating sample magnetometry (VSM); the carboxyl group content of pectin was determined by potentiometric titration. Ciprofloxacin removal was evaluated in batch adsorption experiments (nominal 8 mg/L, pH ≈ 7, contact times 2 h and 24 h) using UV-Vis spectrophotometry. The nanoparticles (5–12 nm) exhibited the spinel structure of iron oxides. Pectin presence was confirmed by characteristic ATR-FTIR signals, high-resolution XPS spectra, and the isoelectric point shift from approximately pH 8 to 3.3–3.8; the bound pectin content by TGA is approximately 13.3 wt. % (lower estimate). Both materials are practically superparamagnetic; the saturation magnetisation decreased from 62.5 to 49.9 emu/g. MNPs@Pec removed 65.0 % of ciprofloxacin after 2 h and 70.0 % after 24 h, MNPs only 49.4 % and 43.0 %; the decrease reflects desorption of weakly bound antibiotic. The pectin coating provides binding sites for ciprofloxacin and improves removal efficiency and binding stability, while the magnetic properties allow easy separation from water; MNPs@Pec is a promising material for removing antibiotics from aqueous media.
Keywords:magnetic nanoparticles, maghemite, pectin, ciprofloxacin, adsorption, water treatment


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