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Fe$^{2+}$ and UV catalytically enhanced ozonation of selected environmentally persistent antibiotics
ID
Žgajnar Gotvajn, Andreja
(
Avtor
),
ID
Putar, Ula
(
Avtor
),
ID
Antončič, Teja
(
Avtor
),
ID
Urbanc, Teja
(
Avtor
),
ID
Vrabel', Martin
(
Avtor
),
ID
Derco, Ján
(
Avtor
)
PDF - Predstavitvena datoteka,
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(1,47 MB)
MD5: 34CEE3DBB55BF3E363BD0E78AFCBE735
URL - Izvorni URL, za dostop obiščite
https://www.mdpi.com/2227-9717/9/3/521
Galerija slik
Izvleček
The aim of the study was to determine oxidation potential of selected persistent, environmentally relevant antibiotics (Amoxicillin, Levofloxacin, and their mixture with Vancomycin) to reduce their environmental emissions. Ozonation (O$_3$) and indirect ozonation at pH 9.5 (O$_3$/pH$_{9.5}$) were catalytically enhanced by addition of Fe$^{2+}$ (O$_3$/Fe$^{2+}$) and photocatalytic ozonation in combination with Fe$^{2+}$ and UV-A black light (O$_3$/Fe$^{2+}$/UV) at two temperatures using total organic carbon (TOC) and chemical oxygen demand (COD) to identify formation of by-products. Oxidative degradation followed pseudo-first order consecutive reactions. Initial phase of oxidation was more intensive than mineralisation at 21 and 40 °C: up to 57.3% and 69.2%, respectively. After 120 min mineralization at 21 °C was up to 64.9% while at 40 °C it was up to 84.6%. Oxidation reached up to 86.6% and 93.4% at 21 °C and 40 °C, respectively. The most efficient processes were indirect ozonation at pH 9.5 (O$_3$/pH$_{9.5}$) (up to 93.4%) and photocatalytic enhanced ozonation with Fe$^{2+}$ and UV-A black light (O$_3$/Fe$^{2+}$/UV) (up to 89.8%). The lowest efficiency was determined in experiments with direct ozonation (up to 75.5%). Amoxicillin was the only one completely mineralised. Study confirmed that ozonation with addition of Fe$^{2+}$ and UV radiation has the potential to improve efficiency of the antibiotic-removal processes. Further experiments varying amounts of Fe$^{2+}$ and other experimental conditions should be accomplished to set up more general methodological approach for reduction of antibiotics emissions.
Jezik:
Angleški jezik
Ključne besede:
Amoxicillin
,
antibiotics
,
catalyst
,
Levofloxacin
,
ozone
,
reaction constant
,
Vancomycin
Vrsta gradiva:
Članek v reviji
Tipologija:
1.01 - Izvirni znanstveni članek
Organizacija:
FKKT - Fakulteta za kemijo in kemijsko tehnologijo
Status publikacije:
Objavljeno
Različica publikacije:
Objavljena publikacija
Leto izida:
2021
Št. strani:
17 str.
Številčenje:
Vol. 9, iss. 3, art. 521
PID:
20.500.12556/RUL-135016
UDK:
66.094.3-926.214:615.33
ISSN pri članku:
2227-9717
DOI:
10.3390/pr9030521
COBISS.SI-ID:
55176707
Datum objave v RUL:
17.02.2022
Število ogledov:
940
Število prenosov:
149
Metapodatki:
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Objavi na:
Gradivo je del revije
Naslov:
Processes
Skrajšan naslov:
Processes
Založnik:
MDPI
ISSN:
2227-9717
COBISS.SI-ID:
523353113
Licence
Licenca:
CC BY 4.0, Creative Commons Priznanje avtorstva 4.0 Mednarodna
Povezava:
http://creativecommons.org/licenses/by/4.0/deed.sl
Opis:
To je standardna licenca Creative Commons, ki daje uporabnikom največ možnosti za nadaljnjo uporabo dela, pri čemer morajo navesti avtorja.
Začetek licenciranja:
13.03.2021
Sekundarni jezik
Jezik:
Slovenski jezik
Ključne besede:
amoksicilin
,
antibiotiki
,
katalizator
,
levofloksacin
,
ozon
,
reakcijska konstanta
,
vankomicin
Projekti
Financer:
ARRS - Agencija za raziskovalno dejavnost Republike Slovenije
Številka projekta:
P2-0191
Naslov:
Kemijsko inženirstvo
Financer:
Drugi - Drug financer ali več financerjev
Program financ.:
Slovakia, Agency for Research and Development
Številka projekta:
APVV-0656-12
Financer:
Drugi - Drug financer ali več financerjev
Program financ.:
SAIA, National Scholarship Programme of the Slovak Republic
Številka projekta:
29291
Financer:
Drugi - Drug financer ali več financerjev
Program financ.:
SAIA, National Scholarship Programme of the Slovak Republic
Številka projekta:
25614
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