Kasalica, Kristina

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orcid::0000-0001-7731-2043
  • Kasalica, Kristina (7)
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Author's Bibliography

Bioremedijacija zemljišta kao deo održive zelene hemije i inženjerstva

Miletić, Srđan; Spasić, Snežana; Avdalović, Jelena; Lugonja, Nikoleta; Kasalica, Kristina; Joksimović, Kristina; Beškoski, Vladimir

(Srpsko hemijsko društvo, 2023)

TY  - CONF
AU  - Miletić, Srđan
AU  - Spasić, Snežana
AU  - Avdalović, Jelena
AU  - Lugonja, Nikoleta
AU  - Kasalica, Kristina
AU  - Joksimović, Kristina
AU  - Beškoski, Vladimir
PY  - 2023
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/6236
AB  - У раду су представљени вишегодишњи резултати на микробиолошкој разградњи нафте и нафтних деривата кроз примену селекционисаних и адаптираних конзорцијума зимогених микроорганизама. Ови процеси су обухватали истраживања на лабораторијском нивоу, као и in situ/ex situ поступке биоремедијације која је примењена на хиљадама тона загађеног земљишта.
PB  - Srpsko hemijsko društvo
C3  - Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia
T1  - Bioremedijacija zemljišta kao deo održive zelene hemije i inženjerstva
T1  - Soil bioremediation as part of sustainable green chemistry and engineering
SP  - 127
EP  - 128
UR  - https://hdl.handle.net/21.15107/rcub_cer_6236
ER  - 
@conference{
author = "Miletić, Srđan and Spasić, Snežana and Avdalović, Jelena and Lugonja, Nikoleta and Kasalica, Kristina and Joksimović, Kristina and Beškoski, Vladimir",
year = "2023",
abstract = "У раду су представљени вишегодишњи резултати на микробиолошкој разградњи нафте и нафтних деривата кроз примену селекционисаних и адаптираних конзорцијума зимогених микроорганизама. Ови процеси су обухватали истраживања на лабораторијском нивоу, као и in situ/ex situ поступке биоремедијације која је примењена на хиљадама тона загађеног земљишта.",
publisher = "Srpsko hemijsko društvo",
journal = "Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia",
title = "Bioremedijacija zemljišta kao deo održive zelene hemije i inženjerstva, Soil bioremediation as part of sustainable green chemistry and engineering",
pages = "127-128",
url = "https://hdl.handle.net/21.15107/rcub_cer_6236"
}
Miletić, S., Spasić, S., Avdalović, J., Lugonja, N., Kasalica, K., Joksimović, K.,& Beškoski, V.. (2023). Bioremedijacija zemljišta kao deo održive zelene hemije i inženjerstva. in Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia
Srpsko hemijsko društvo., 127-128.
https://hdl.handle.net/21.15107/rcub_cer_6236
Miletić S, Spasić S, Avdalović J, Lugonja N, Kasalica K, Joksimović K, Beškoski V. Bioremedijacija zemljišta kao deo održive zelene hemije i inženjerstva. in Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia. 2023;:127-128.
https://hdl.handle.net/21.15107/rcub_cer_6236 .
Miletić, Srđan, Spasić, Snežana, Avdalović, Jelena, Lugonja, Nikoleta, Kasalica, Kristina, Joksimović, Kristina, Beškoski, Vladimir, "Bioremedijacija zemljišta kao deo održive zelene hemije i inženjerstva" in Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia (2023):127-128,
https://hdl.handle.net/21.15107/rcub_cer_6236 .

Ex-situ bioremedijacija kao primer cirkularne ekonomije

Spasić, Snežana; Lugonja, Nikoleta; Avdalović, Jelena; Kasalica, Kristina; Žerađanin, Aleksandra; Beškoski, Vladimir; Miletić, Srđan

(Srpsko hemijsko društvo, 2023)

TY  - CONF
AU  - Spasić, Snežana
AU  - Lugonja, Nikoleta
AU  - Avdalović, Jelena
AU  - Kasalica, Kristina
AU  - Žerađanin, Aleksandra
AU  - Beškoski, Vladimir
AU  - Miletić, Srđan
PY  - 2023
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/6237
AB  - У нашем раду смо испитивали процес биоремедијације земљишта загађеног мазутом који је потицао из топлане.
PB  - Srpsko hemijsko društvo
C3  - Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia
T1  - Ex-situ bioremedijacija kao primer cirkularne ekonomije
T1  - Ex situ bioremediation as an example of circular economy
SP  - 125
EP  - 126
UR  - https://hdl.handle.net/21.15107/rcub_cer_6237
ER  - 
@conference{
author = "Spasić, Snežana and Lugonja, Nikoleta and Avdalović, Jelena and Kasalica, Kristina and Žerađanin, Aleksandra and Beškoski, Vladimir and Miletić, Srđan",
year = "2023",
abstract = "У нашем раду смо испитивали процес биоремедијације земљишта загађеног мазутом који је потицао из топлане.",
publisher = "Srpsko hemijsko društvo",
journal = "Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia",
title = "Ex-situ bioremedijacija kao primer cirkularne ekonomije, Ex situ bioremediation as an example of circular economy",
pages = "125-126",
url = "https://hdl.handle.net/21.15107/rcub_cer_6237"
}
Spasić, S., Lugonja, N., Avdalović, J., Kasalica, K., Žerađanin, A., Beškoski, V.,& Miletić, S.. (2023). Ex-situ bioremedijacija kao primer cirkularne ekonomije. in Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia
Srpsko hemijsko društvo., 125-126.
https://hdl.handle.net/21.15107/rcub_cer_6237
Spasić S, Lugonja N, Avdalović J, Kasalica K, Žerađanin A, Beškoski V, Miletić S. Ex-situ bioremedijacija kao primer cirkularne ekonomije. in Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia. 2023;:125-126.
https://hdl.handle.net/21.15107/rcub_cer_6237 .
Spasić, Snežana, Lugonja, Nikoleta, Avdalović, Jelena, Kasalica, Kristina, Žerađanin, Aleksandra, Beškoski, Vladimir, Miletić, Srđan, "Ex-situ bioremedijacija kao primer cirkularne ekonomije" in Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia (2023):125-126,
https://hdl.handle.net/21.15107/rcub_cer_6237 .

Izolovanje i karakterizacija mikroorganizama visokotolerantnih naperfluorovana jedinjenja.

Kasalica, Kristina; Žerađanin, Aleksandra; Joksimović, Kristina; Lješević, Marija; Butrić, Galja; Gojgić-Cvijović, Gordana; Beškoski, Vladimir

(Srpsko hemijsko društvo, 2023)

TY  - CONF
AU  - Kasalica, Kristina
AU  - Žerađanin, Aleksandra
AU  - Joksimović, Kristina
AU  - Lješević, Marija
AU  - Butrić, Galja
AU  - Gojgić-Cvijović, Gordana
AU  - Beškoski, Vladimir
PY  - 2023
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/6425
AB  - Razvoj hemijske industrije u prošlom veku pozitivno je uticao na životni standard, ali
je za sobom ostavio značajne količine toksičnih supstanci u životnoj sredini. Dugotrajne
organske zagađujuće supstance (Persistant Organic Pollutants - POPs) su antropogene
hemikalije koje se zadržavaju, akumuliraju u lancu ishrane i imaju štetne posledice po
zdravlje ljudi i životnu sredinu. Cilj ovog rada je izolovanje bakterijskih sojeva sa zagađenih lokaliteta i njihova potencijalna primena u biodegradaciji perfluorovanih jedinjenja.
PB  - Srpsko hemijsko društvo
C3  - Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia, 2023
T1  - Izolovanje i karakterizacija mikroorganizama visokotolerantnih naperfluorovana jedinjenja.
T1  - Isolation and characterization of microorganisms highly tolerant to perfluorinated compounds
SP  - 119
EP  - 120
UR  - https://hdl.handle.net/21.15107/rcub_cer_6425
ER  - 
@conference{
author = "Kasalica, Kristina and Žerađanin, Aleksandra and Joksimović, Kristina and Lješević, Marija and Butrić, Galja and Gojgić-Cvijović, Gordana and Beškoski, Vladimir",
year = "2023",
abstract = "Razvoj hemijske industrije u prošlom veku pozitivno je uticao na životni standard, ali
je za sobom ostavio značajne količine toksičnih supstanci u životnoj sredini. Dugotrajne
organske zagađujuće supstance (Persistant Organic Pollutants - POPs) su antropogene
hemikalije koje se zadržavaju, akumuliraju u lancu ishrane i imaju štetne posledice po
zdravlje ljudi i životnu sredinu. Cilj ovog rada je izolovanje bakterijskih sojeva sa zagađenih lokaliteta i njihova potencijalna primena u biodegradaciji perfluorovanih jedinjenja.",
publisher = "Srpsko hemijsko društvo",
journal = "Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia, 2023",
title = "Izolovanje i karakterizacija mikroorganizama visokotolerantnih naperfluorovana jedinjenja., Isolation and characterization of microorganisms highly tolerant to perfluorinated compounds",
pages = "119-120",
url = "https://hdl.handle.net/21.15107/rcub_cer_6425"
}
Kasalica, K., Žerađanin, A., Joksimović, K., Lješević, M., Butrić, G., Gojgić-Cvijović, G.,& Beškoski, V.. (2023). Izolovanje i karakterizacija mikroorganizama visokotolerantnih naperfluorovana jedinjenja.. in Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia, 2023
Srpsko hemijsko društvo., 119-120.
https://hdl.handle.net/21.15107/rcub_cer_6425
Kasalica K, Žerađanin A, Joksimović K, Lješević M, Butrić G, Gojgić-Cvijović G, Beškoski V. Izolovanje i karakterizacija mikroorganizama visokotolerantnih naperfluorovana jedinjenja.. in Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia, 2023. 2023;:119-120.
https://hdl.handle.net/21.15107/rcub_cer_6425 .
Kasalica, Kristina, Žerađanin, Aleksandra, Joksimović, Kristina, Lješević, Marija, Butrić, Galja, Gojgić-Cvijović, Gordana, Beškoski, Vladimir, "Izolovanje i karakterizacija mikroorganizama visokotolerantnih naperfluorovana jedinjenja." in Knjiga uzvoda - 9. Simpozijum Hemija i Zaštita Životne Sredine - EnviroChem2023, 4-7. jun 2023, Kladovo / Book of abstracts - 9 th Symposium Chemistry and Environmental Protection - EnviroChem2023, 4-7 th June 2023, Kladovo, Serbia, 2023 (2023):119-120,
https://hdl.handle.net/21.15107/rcub_cer_6425 .

Exploring the potential of plants for the degradation of perfluorooctanoic acid

Joksimović, Kristina; Lješević, Marija; Lončarević, Branka; Kasalica, Kristina; Lugonja, Nikoleta; Radulović, Jelena; Beškoski, Vladimir

(Chemical Society of Montenegro, 2023)

TY  - CONF
AU  - Joksimović, Kristina
AU  - Lješević, Marija
AU  - Lončarević, Branka
AU  - Kasalica, Kristina
AU  - Lugonja, Nikoleta
AU  - Radulović, Jelena
AU  - Beškoski, Vladimir
PY  - 2023
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/7122
AB  - Poly- and perfluoroalkyl substances (PFASs) are synthetic chemicals, which are introduced to the environment through anthropogenic activities. Remediation of PFAS contaminated soil and aqueous media is challenging, which is attributed to the chemical and thermal stability of PFAS and the complexity of PFAS mixtures.
Plants absorb water and nutrients through their roots to maintain their continuous healthy growth. Phytoremediation is a method that uses the ability of plants to remove and stabilize contaminants from the environment. The aim of this study was to investigate the plant growth in the presence of high concentrations of PFOA using the germination test, and further investigate their potential to degrade PFOA in soil. The accumulation of PFOA in plants was monitored using target LC/MS/MS analysis.
PB  - Chemical Society of Montenegro
C3  - 23rd European Meeting on Environmental Chemistry, EMEC23, Book of abstracts, December 3rd - December 6th, 2023, Budva, Montenegro
T1  - Exploring the potential of plants for the degradation of perfluorooctanoic acid
SP  - 97
EP  - 97
UR  - https://hdl.handle.net/21.15107/rcub_cer_7122
ER  - 
@conference{
author = "Joksimović, Kristina and Lješević, Marija and Lončarević, Branka and Kasalica, Kristina and Lugonja, Nikoleta and Radulović, Jelena and Beškoski, Vladimir",
year = "2023",
abstract = "Poly- and perfluoroalkyl substances (PFASs) are synthetic chemicals, which are introduced to the environment through anthropogenic activities. Remediation of PFAS contaminated soil and aqueous media is challenging, which is attributed to the chemical and thermal stability of PFAS and the complexity of PFAS mixtures.
Plants absorb water and nutrients through their roots to maintain their continuous healthy growth. Phytoremediation is a method that uses the ability of plants to remove and stabilize contaminants from the environment. The aim of this study was to investigate the plant growth in the presence of high concentrations of PFOA using the germination test, and further investigate their potential to degrade PFOA in soil. The accumulation of PFOA in plants was monitored using target LC/MS/MS analysis.",
publisher = "Chemical Society of Montenegro",
journal = "23rd European Meeting on Environmental Chemistry, EMEC23, Book of abstracts, December 3rd - December 6th, 2023, Budva, Montenegro",
title = "Exploring the potential of plants for the degradation of perfluorooctanoic acid",
pages = "97-97",
url = "https://hdl.handle.net/21.15107/rcub_cer_7122"
}
Joksimović, K., Lješević, M., Lončarević, B., Kasalica, K., Lugonja, N., Radulović, J.,& Beškoski, V.. (2023). Exploring the potential of plants for the degradation of perfluorooctanoic acid. in 23rd European Meeting on Environmental Chemistry, EMEC23, Book of abstracts, December 3rd - December 6th, 2023, Budva, Montenegro
Chemical Society of Montenegro., 97-97.
https://hdl.handle.net/21.15107/rcub_cer_7122
Joksimović K, Lješević M, Lončarević B, Kasalica K, Lugonja N, Radulović J, Beškoski V. Exploring the potential of plants for the degradation of perfluorooctanoic acid. in 23rd European Meeting on Environmental Chemistry, EMEC23, Book of abstracts, December 3rd - December 6th, 2023, Budva, Montenegro. 2023;:97-97.
https://hdl.handle.net/21.15107/rcub_cer_7122 .
Joksimović, Kristina, Lješević, Marija, Lončarević, Branka, Kasalica, Kristina, Lugonja, Nikoleta, Radulović, Jelena, Beškoski, Vladimir, "Exploring the potential of plants for the degradation of perfluorooctanoic acid" in 23rd European Meeting on Environmental Chemistry, EMEC23, Book of abstracts, December 3rd - December 6th, 2023, Budva, Montenegro (2023):97-97,
https://hdl.handle.net/21.15107/rcub_cer_7122 .

PFAS, from here to Eternity - or maybe not

Kasalica, Kristina; Jiménez, Begoña; Yamamoto, Atsushi; Inui, Hideyuki; Lješević, Marija; Radić, Nenad; Gojgić-Cvijović, Gordana; Slavković-Beškoski, Latinka; Radulović, Jelena; Nakano, Takeshi; Beškoski, Vladimir

(2023)

TY  - CONF
AU  - Kasalica, Kristina
AU  - Jiménez, Begoña
AU  - Yamamoto, Atsushi
AU  - Inui, Hideyuki
AU  - Lješević, Marija
AU  - Radić, Nenad
AU  - Gojgić-Cvijović, Gordana
AU  - Slavković-Beškoski, Latinka
AU  - Radulović, Jelena
AU  - Nakano, Takeshi
AU  - Beškoski, Vladimir
PY  - 2023
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/7426
AB  - Per- and polyfluoroalkyl substances (PFAS) are a group of synthetic chemicals with extremely strong C-F bonds. Due to their thermal stability, acid resistance, and high surface activity, they have been widely used for several decades in various consumer products. PFAS has been detected in water, soil, sediment, air, food, and biota samples on all continents and due to this are recognized as environmental and human health risk (Carlson et al. 2022). In the last decade, several available technologies were tested for the remediation of PFAS-polluted environments, such as adsorption, filtration, thermal destruction, oxidation/reduction, and soil washing, but several disadvantages were reported (Bolan et al., 2021). We hypothesize that by using advanced oxidation techniques followed by microbial treatment decrease in the concentration of PFOA as a PFAS model compound will occur. In the beginning, we tested separately abiotic and biotic degradation of PFOA. Target LC-MS/MS was used for quantitative analysis of PFOA decrease, and for detecting degradation products, nontargeted LC-MS/MS analysis was used.  In the photocatalysis study, we used selected Ti and Al-based photocatalysts. The experiments were conducted at 20 °C in an open cylindrical polypropylene reactor, and a simulated solar radiation lamp (Solimed BH Quarzlampen) was used as a light source. Microbial communities were isolated from the locations in Serbia, Japan, and Italy known for their pollution with PFAS, and enrichment was conducted on the media supplemented with ppm values of PFOA (Beskoski et al., 2018). Microbial communities were used as inoculum in the PFOA biodegradation study.
C3  - 18th International Conference on Chemistry and the Environment (ICCE 2023), Book of Abstracts, 11-15 June 2023, Venice, Italy
T1  - PFAS, from here to Eternity - or maybe not
SP  - 183
EP  - 183
UR  - https://hdl.handle.net/21.15107/rcub_cer_7426
ER  - 
@conference{
author = "Kasalica, Kristina and Jiménez, Begoña and Yamamoto, Atsushi and Inui, Hideyuki and Lješević, Marija and Radić, Nenad and Gojgić-Cvijović, Gordana and Slavković-Beškoski, Latinka and Radulović, Jelena and Nakano, Takeshi and Beškoski, Vladimir",
year = "2023",
abstract = "Per- and polyfluoroalkyl substances (PFAS) are a group of synthetic chemicals with extremely strong C-F bonds. Due to their thermal stability, acid resistance, and high surface activity, they have been widely used for several decades in various consumer products. PFAS has been detected in water, soil, sediment, air, food, and biota samples on all continents and due to this are recognized as environmental and human health risk (Carlson et al. 2022). In the last decade, several available technologies were tested for the remediation of PFAS-polluted environments, such as adsorption, filtration, thermal destruction, oxidation/reduction, and soil washing, but several disadvantages were reported (Bolan et al., 2021). We hypothesize that by using advanced oxidation techniques followed by microbial treatment decrease in the concentration of PFOA as a PFAS model compound will occur. In the beginning, we tested separately abiotic and biotic degradation of PFOA. Target LC-MS/MS was used for quantitative analysis of PFOA decrease, and for detecting degradation products, nontargeted LC-MS/MS analysis was used.  In the photocatalysis study, we used selected Ti and Al-based photocatalysts. The experiments were conducted at 20 °C in an open cylindrical polypropylene reactor, and a simulated solar radiation lamp (Solimed BH Quarzlampen) was used as a light source. Microbial communities were isolated from the locations in Serbia, Japan, and Italy known for their pollution with PFAS, and enrichment was conducted on the media supplemented with ppm values of PFOA (Beskoski et al., 2018). Microbial communities were used as inoculum in the PFOA biodegradation study.",
journal = "18th International Conference on Chemistry and the Environment (ICCE 2023), Book of Abstracts, 11-15 June 2023, Venice, Italy",
title = "PFAS, from here to Eternity - or maybe not",
pages = "183-183",
url = "https://hdl.handle.net/21.15107/rcub_cer_7426"
}
Kasalica, K., Jiménez, B., Yamamoto, A., Inui, H., Lješević, M., Radić, N., Gojgić-Cvijović, G., Slavković-Beškoski, L., Radulović, J., Nakano, T.,& Beškoski, V.. (2023). PFAS, from here to Eternity - or maybe not. in 18th International Conference on Chemistry and the Environment (ICCE 2023), Book of Abstracts, 11-15 June 2023, Venice, Italy, 183-183.
https://hdl.handle.net/21.15107/rcub_cer_7426
Kasalica K, Jiménez B, Yamamoto A, Inui H, Lješević M, Radić N, Gojgić-Cvijović G, Slavković-Beškoski L, Radulović J, Nakano T, Beškoski V. PFAS, from here to Eternity - or maybe not. in 18th International Conference on Chemistry and the Environment (ICCE 2023), Book of Abstracts, 11-15 June 2023, Venice, Italy. 2023;:183-183.
https://hdl.handle.net/21.15107/rcub_cer_7426 .
Kasalica, Kristina, Jiménez, Begoña, Yamamoto, Atsushi, Inui, Hideyuki, Lješević, Marija, Radić, Nenad, Gojgić-Cvijović, Gordana, Slavković-Beškoski, Latinka, Radulović, Jelena, Nakano, Takeshi, Beškoski, Vladimir, "PFAS, from here to Eternity - or maybe not" in 18th International Conference on Chemistry and the Environment (ICCE 2023), Book of Abstracts, 11-15 June 2023, Venice, Italy (2023):183-183,
https://hdl.handle.net/21.15107/rcub_cer_7426 .

Ekotoksikološka analiza proizvoda elektrohemijske degradacije Reactive black 5 boje pomoću MFC kao izvora električne energije

Kasalica, Kristina; Žerađanin, Aleksandra; Lješević, Marija; Joksimović, Kristina; Beškoski, Vladimir

(Belgrade : Serbian Chemical Society, 2022)

TY  - CONF
AU  - Kasalica, Kristina
AU  - Žerađanin, Aleksandra
AU  - Lješević, Marija
AU  - Joksimović, Kristina
AU  - Beškoski, Vladimir
PY  - 2022
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/5269
AB  - Vodeni rastvor boje (100 mL) RB5 od 25 mg/L i 1 mM H2O2 elektrohemijski je tretiran, koristeći Pt i Fe elektrodu. MFC ćelija se koristila kao izvor struje za degradaciju. Ekotoksikološka analiza pomoću bakterije Vibrio fisheri je pokazala da najveću toksičnost ima polazna boja RB5 (EC20 8,17%), dok nastali degradacioni proizvod nakon 6 h tretiranja strujom dobijenom preko MFC sistema ima najmanju toksičnost na spomenutu bakteriju (EC20 33,05%).
AB  - Aqueous dye solution (100 mL) RB5 of 25 mg / L and 1 mM H2O2 was electrochemically treated, using Pt and Fe electrode. The MFC cell was used as a current source for degradation. Ecotoxicological analysis using Vibrio fisheri showed that the highest toxicity is the RB5 dye (EC20 8.17%), while the resulting degradation product after 6 h of treatment with electricity obtained through the MFC system has the lowest toxicity to this bacterium (EC20 33.05%)
PB  - Belgrade : Serbian Chemical Society
C3  - Book of Abstracts, Proceedings - 58th Meeting of the Serbian Chemical Society, Belgrade, Serbia, June 9-10, 2022 / Kratki izvodi radova, kjniga radova - 58. Savetovanje Srpskog hemijskog društva, Beograd 9. i 10. jun 2022.
T1  - Ekotoksikološka analiza proizvoda elektrohemijske degradacije Reactive black 5 boje pomoću MFC kao izvora električne energije
T1  - Ecotoxicity of degradation product from dye Reactive Black 5 by  electrochemical degradation products using MFC as a source of  electricity
SP  - 60
UR  - https://hdl.handle.net/21.15107/rcub_cer_5269
ER  - 
@conference{
author = "Kasalica, Kristina and Žerađanin, Aleksandra and Lješević, Marija and Joksimović, Kristina and Beškoski, Vladimir",
year = "2022",
abstract = "Vodeni rastvor boje (100 mL) RB5 od 25 mg/L i 1 mM H2O2 elektrohemijski je tretiran, koristeći Pt i Fe elektrodu. MFC ćelija se koristila kao izvor struje za degradaciju. Ekotoksikološka analiza pomoću bakterije Vibrio fisheri je pokazala da najveću toksičnost ima polazna boja RB5 (EC20 8,17%), dok nastali degradacioni proizvod nakon 6 h tretiranja strujom dobijenom preko MFC sistema ima najmanju toksičnost na spomenutu bakteriju (EC20 33,05%)., Aqueous dye solution (100 mL) RB5 of 25 mg / L and 1 mM H2O2 was electrochemically treated, using Pt and Fe electrode. The MFC cell was used as a current source for degradation. Ecotoxicological analysis using Vibrio fisheri showed that the highest toxicity is the RB5 dye (EC20 8.17%), while the resulting degradation product after 6 h of treatment with electricity obtained through the MFC system has the lowest toxicity to this bacterium (EC20 33.05%)",
publisher = "Belgrade : Serbian Chemical Society",
journal = "Book of Abstracts, Proceedings - 58th Meeting of the Serbian Chemical Society, Belgrade, Serbia, June 9-10, 2022 / Kratki izvodi radova, kjniga radova - 58. Savetovanje Srpskog hemijskog društva, Beograd 9. i 10. jun 2022.",
title = "Ekotoksikološka analiza proizvoda elektrohemijske degradacije Reactive black 5 boje pomoću MFC kao izvora električne energije, Ecotoxicity of degradation product from dye Reactive Black 5 by  electrochemical degradation products using MFC as a source of  electricity",
pages = "60",
url = "https://hdl.handle.net/21.15107/rcub_cer_5269"
}
Kasalica, K., Žerađanin, A., Lješević, M., Joksimović, K.,& Beškoski, V.. (2022). Ekotoksikološka analiza proizvoda elektrohemijske degradacije Reactive black 5 boje pomoću MFC kao izvora električne energije. in Book of Abstracts, Proceedings - 58th Meeting of the Serbian Chemical Society, Belgrade, Serbia, June 9-10, 2022 / Kratki izvodi radova, kjniga radova - 58. Savetovanje Srpskog hemijskog društva, Beograd 9. i 10. jun 2022.
Belgrade : Serbian Chemical Society., 60.
https://hdl.handle.net/21.15107/rcub_cer_5269
Kasalica K, Žerađanin A, Lješević M, Joksimović K, Beškoski V. Ekotoksikološka analiza proizvoda elektrohemijske degradacije Reactive black 5 boje pomoću MFC kao izvora električne energije. in Book of Abstracts, Proceedings - 58th Meeting of the Serbian Chemical Society, Belgrade, Serbia, June 9-10, 2022 / Kratki izvodi radova, kjniga radova - 58. Savetovanje Srpskog hemijskog društva, Beograd 9. i 10. jun 2022.. 2022;:60.
https://hdl.handle.net/21.15107/rcub_cer_5269 .
Kasalica, Kristina, Žerađanin, Aleksandra, Lješević, Marija, Joksimović, Kristina, Beškoski, Vladimir, "Ekotoksikološka analiza proizvoda elektrohemijske degradacije Reactive black 5 boje pomoću MFC kao izvora električne energije" in Book of Abstracts, Proceedings - 58th Meeting of the Serbian Chemical Society, Belgrade, Serbia, June 9-10, 2022 / Kratki izvodi radova, kjniga radova - 58. Savetovanje Srpskog hemijskog društva, Beograd 9. i 10. jun 2022. (2022):60,
https://hdl.handle.net/21.15107/rcub_cer_5269 .

Ecotoxicity of degradation product from dye Reactive Black 5 by electrochemical degradation products using MFC as a source of electricity

Kasalica, Kristina; Žerađanin, Aleksandra; Lješević, Marija; Joksimović, Kristina; Beškoski, Vladimir

(2022)

TY  - CONF
AU  - Kasalica, Kristina
AU  - Žerađanin, Aleksandra
AU  - Lješević, Marija
AU  - Joksimović, Kristina
AU  - Beškoski, Vladimir
PY  - 2022
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/5270
AB  - Poster presented at: 58th Meeting of the Serbian Chemical Society, Belgrade, Serbia, June 9-10, 2022
T1  - Ecotoxicity of degradation product from dye Reactive Black 5 by  electrochemical degradation products using MFC as a source of  electricity
UR  - https://hdl.handle.net/21.15107/rcub_cer_5270
ER  - 
@conference{
author = "Kasalica, Kristina and Žerađanin, Aleksandra and Lješević, Marija and Joksimović, Kristina and Beškoski, Vladimir",
year = "2022",
abstract = "Poster presented at: 58th Meeting of the Serbian Chemical Society, Belgrade, Serbia, June 9-10, 2022",
title = "Ecotoxicity of degradation product from dye Reactive Black 5 by  electrochemical degradation products using MFC as a source of  electricity",
url = "https://hdl.handle.net/21.15107/rcub_cer_5270"
}
Kasalica, K., Žerađanin, A., Lješević, M., Joksimović, K.,& Beškoski, V.. (2022). Ecotoxicity of degradation product from dye Reactive Black 5 by  electrochemical degradation products using MFC as a source of  electricity. .
https://hdl.handle.net/21.15107/rcub_cer_5270
Kasalica K, Žerađanin A, Lješević M, Joksimović K, Beškoski V. Ecotoxicity of degradation product from dye Reactive Black 5 by  electrochemical degradation products using MFC as a source of  electricity. 2022;.
https://hdl.handle.net/21.15107/rcub_cer_5270 .
Kasalica, Kristina, Žerađanin, Aleksandra, Lješević, Marija, Joksimović, Kristina, Beškoski, Vladimir, "Ecotoxicity of degradation product from dye Reactive Black 5 by  electrochemical degradation products using MFC as a source of  electricity" (2022),
https://hdl.handle.net/21.15107/rcub_cer_5270 .