Veličković, Zlate

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  • Veličković, Zlate (3)
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Author's Bibliography

Evaluation of adsorption performance of phosphates removal using Cell-Mg hybrid adsorbent

Bošnjaković, Jovana; Knežević, Nataša; Čutović, Natalija; Bugarčić, Mladen; Jovanović, Aleksandar; Veličković, Zlate; Manasijević, Srećko

(Bor : University of Belgrade, Technical Faculty in Bor, 2021)

TY  - CONF
AU  - Bošnjaković, Jovana
AU  - Knežević, Nataša
AU  - Čutović, Natalija
AU  - Bugarčić, Mladen
AU  - Jovanović, Aleksandar
AU  - Veličković, Zlate
AU  - Manasijević, Srećko
PY  - 2021
UR  - https://ritnms.itnms.ac.rs/handle/123456789/1015
AB  - Due to the high accumulation of nutrients in water (primarily phosphates) because of increased use of fertilizers and plant protection products, it is necessary to apply various techniques for their detection, and then removal. Adsorption is one of the promising techniques to removing them. Magnetite (MG) modified cellulose membrane (Cell-MG), obtained by reaction of 3-aminosilane and subsequently with diethylenetriaminepentaacetic acid dianhydride functionalized waste Cell fibers (Cell-NH2 and Cell-DTPA, respectively), and amino-modified diatomite was used for phosphate ions removal from water. Cell-MG membrane was structurally and morphologically characterized using SEM and TEM techniques. The influences of operational parameters, i.e. pH, contact time, temperature, and the mass of adsorbent on adsorption and kinetics were studied in a batch system. The calculated capacities of 79.08 mg g-1 at 45°C for phosphate ions were obtained from non-linear Langmuir model fitting. The reusability of adsorbent and results from wastewater purification showed that Cell-MG could be used as general-purpose adsorbent. Based on the kinetic studies the adsorption process follow the pseudo second-order model. Thermodynamic parameters showed that the adsorption process is endothermic and spontaneous.
PB  - Bor : University of Belgrade, Technical Faculty in Bor
C3  - 52nd International October Conference on Mining and Metallurgy, IOC 2021
T1  - Evaluation of adsorption performance of phosphates removal using Cell-Mg hybrid adsorbent
EP  - 216
SP  - 213
ER  - 
@conference{
author = "Bošnjaković, Jovana and Knežević, Nataša and Čutović, Natalija and Bugarčić, Mladen and Jovanović, Aleksandar and Veličković, Zlate and Manasijević, Srećko",
year = "2021",
abstract = "Due to the high accumulation of nutrients in water (primarily phosphates) because of increased use of fertilizers and plant protection products, it is necessary to apply various techniques for their detection, and then removal. Adsorption is one of the promising techniques to removing them. Magnetite (MG) modified cellulose membrane (Cell-MG), obtained by reaction of 3-aminosilane and subsequently with diethylenetriaminepentaacetic acid dianhydride functionalized waste Cell fibers (Cell-NH2 and Cell-DTPA, respectively), and amino-modified diatomite was used for phosphate ions removal from water. Cell-MG membrane was structurally and morphologically characterized using SEM and TEM techniques. The influences of operational parameters, i.e. pH, contact time, temperature, and the mass of adsorbent on adsorption and kinetics were studied in a batch system. The calculated capacities of 79.08 mg g-1 at 45°C for phosphate ions were obtained from non-linear Langmuir model fitting. The reusability of adsorbent and results from wastewater purification showed that Cell-MG could be used as general-purpose adsorbent. Based on the kinetic studies the adsorption process follow the pseudo second-order model. Thermodynamic parameters showed that the adsorption process is endothermic and spontaneous.",
publisher = "Bor : University of Belgrade, Technical Faculty in Bor",
journal = "52nd International October Conference on Mining and Metallurgy, IOC 2021",
title = "Evaluation of adsorption performance of phosphates removal using Cell-Mg hybrid adsorbent",
pages = "216-213"
}
Bošnjaković, J., Knežević, N., Čutović, N., Bugarčić, M., Jovanović, A., Veličković, Z.,& Manasijević, S.. (2021). Evaluation of adsorption performance of phosphates removal using Cell-Mg hybrid adsorbent. in 52nd International October Conference on Mining and Metallurgy, IOC 2021
Bor : University of Belgrade, Technical Faculty in Bor., 213-216.
Bošnjaković J, Knežević N, Čutović N, Bugarčić M, Jovanović A, Veličković Z, Manasijević S. Evaluation of adsorption performance of phosphates removal using Cell-Mg hybrid adsorbent. in 52nd International October Conference on Mining and Metallurgy, IOC 2021. 2021;:213-216..
Bošnjaković, Jovana, Knežević, Nataša, Čutović, Natalija, Bugarčić, Mladen, Jovanović, Aleksandar, Veličković, Zlate, Manasijević, Srećko, "Evaluation of adsorption performance of phosphates removal using Cell-Mg hybrid adsorbent" in 52nd International October Conference on Mining and Metallurgy, IOC 2021 (2021):213-216.

The Embryotoxic Potential and Photocatalytic Degradation of Thiophanate-Methyl

Stevanović, Marija; Jovanović, Aleksandar; Đolić, Maja; Veličković, Zlate; Čutović, Natalija; Tomašević, Anđelka; Marinković, Aleksandar

(Belgrade : Serbian Chemical Society, 2021)

TY  - CONF
AU  - Stevanović, Marija
AU  - Jovanović, Aleksandar
AU  - Đolić, Maja
AU  - Veličković, Zlate
AU  - Čutović, Natalija
AU  - Tomašević, Anđelka
AU  - Marinković, Aleksandar
PY  - 2021
UR  - https://ritnms.itnms.ac.rs/handle/123456789/663
AB  - Pesticides are substances designed to protect plants
from various types of diseases and pests [1]under UV irradiation
is studied using synthesized Zinc oxide (ZnO.
Synthetic organic pesticides, in addition to the high
efficiency, have led to frequent adverse environmental
impact, as a consequence of their high accumulation
and toxicity. Due to the increased pollution of water
with mixture pesticides, it is necessary to use different
processes for their removal and degradation. Therefore,
oxidative processes have been developed, commonly
named as Advanced Oxidation Processes (AOPs).
Among them, special attention was attributed to photocatalysis,
as a process that enables the degradation
of difficult-to-decompose organic molecules under the
action of UV radiation in the presence of catalysts [2].
In this study the photocatalytic degradation of thiophanate-
methyl (TM) in the presence of the TiO2 Degussa
P-25 catalyst was investigated. Different experimental
conditions were varied, such as the concentration of
the pesticide solution, the mass of the catalyst and the
influence of the anions (chloride, sulphate, nitrate, etc.).
The pesticide concentration in the reaction system was
monitored based on the decrease in system absorbance
using a Shimadzu 1800 UV spectrophotometer. For optimized
conditions of complete photodegradation, the
environmental acceptability of the defined degradation
process was examined. The toxic effect of the TM solution
before and after degradation was examined using
the embryotoxicity test with Danio rerio, in order to
prove the reduction of toxicity and the success of the
degradation process [3]which raises the issue of potential
influence of different formulation types on herbicide
toxicity. The present study evaluated the toxicity and
teratogenic effects of the active ingredient clomazone
and its two formulations (Rampa® EC and GAT Cenit
36 CS, both containing 360 g a.i./l of clomazone.
Comparing the obtained results of the influence of
ions on the processes of photocatalysis, it was noticed
that all ions have catalytic effects on the kinetics of the
degradation process of TM. The presence of sulphates
and carbonates had the greatest catalytic effect, while
hydrogen phosphates and bicarbonates showed the lowest
catalytic capacity.
The optimal experimental conditions were obtained
using 0,2 g/L of TiO2 and 5 mg/L of TM solution. In
addition, the embryotoxicity test followed the analytical
examination. Comparison of results obtained in embryotoxicity
assay testing of the initial solution, partly
and completely degraded samples confirmed suitability
of applied degradation method. Increase in toxicity,
compared to the initial solution, was registered in partly
degraded sample. This observation can be attributed to
increase in concentration of carbendazim (TM metabolite)
more toxic than parent substance. Finally, completely
degraded sample caused no mortality or adverse
effects in D. rerio embryos after 120 h exposure. Toxicity
of samples, in decreasing order is half degraded >
initial >completely degraded sample.
Based on the obtained results it can be concluded
that used photocatalytic degradation process can be successfully
applied in pesticide contaminated water management.
PB  - Belgrade : Serbian Chemical Society
C3  - 21th European Meeting on Environmental Chemistry EMEC 21
T1  - The Embryotoxic Potential and Photocatalytic Degradation of Thiophanate-Methyl
EP  - 42
SP  - 42
ER  - 
@conference{
author = "Stevanović, Marija and Jovanović, Aleksandar and Đolić, Maja and Veličković, Zlate and Čutović, Natalija and Tomašević, Anđelka and Marinković, Aleksandar",
year = "2021",
abstract = "Pesticides are substances designed to protect plants
from various types of diseases and pests [1]under UV irradiation
is studied using synthesized Zinc oxide (ZnO.
Synthetic organic pesticides, in addition to the high
efficiency, have led to frequent adverse environmental
impact, as a consequence of their high accumulation
and toxicity. Due to the increased pollution of water
with mixture pesticides, it is necessary to use different
processes for their removal and degradation. Therefore,
oxidative processes have been developed, commonly
named as Advanced Oxidation Processes (AOPs).
Among them, special attention was attributed to photocatalysis,
as a process that enables the degradation
of difficult-to-decompose organic molecules under the
action of UV radiation in the presence of catalysts [2].
In this study the photocatalytic degradation of thiophanate-
methyl (TM) in the presence of the TiO2 Degussa
P-25 catalyst was investigated. Different experimental
conditions were varied, such as the concentration of
the pesticide solution, the mass of the catalyst and the
influence of the anions (chloride, sulphate, nitrate, etc.).
The pesticide concentration in the reaction system was
monitored based on the decrease in system absorbance
using a Shimadzu 1800 UV spectrophotometer. For optimized
conditions of complete photodegradation, the
environmental acceptability of the defined degradation
process was examined. The toxic effect of the TM solution
before and after degradation was examined using
the embryotoxicity test with Danio rerio, in order to
prove the reduction of toxicity and the success of the
degradation process [3]which raises the issue of potential
influence of different formulation types on herbicide
toxicity. The present study evaluated the toxicity and
teratogenic effects of the active ingredient clomazone
and its two formulations (Rampa® EC and GAT Cenit
36 CS, both containing 360 g a.i./l of clomazone.
Comparing the obtained results of the influence of
ions on the processes of photocatalysis, it was noticed
that all ions have catalytic effects on the kinetics of the
degradation process of TM. The presence of sulphates
and carbonates had the greatest catalytic effect, while
hydrogen phosphates and bicarbonates showed the lowest
catalytic capacity.
The optimal experimental conditions were obtained
using 0,2 g/L of TiO2 and 5 mg/L of TM solution. In
addition, the embryotoxicity test followed the analytical
examination. Comparison of results obtained in embryotoxicity
assay testing of the initial solution, partly
and completely degraded samples confirmed suitability
of applied degradation method. Increase in toxicity,
compared to the initial solution, was registered in partly
degraded sample. This observation can be attributed to
increase in concentration of carbendazim (TM metabolite)
more toxic than parent substance. Finally, completely
degraded sample caused no mortality or adverse
effects in D. rerio embryos after 120 h exposure. Toxicity
of samples, in decreasing order is half degraded >
initial >completely degraded sample.
Based on the obtained results it can be concluded
that used photocatalytic degradation process can be successfully
applied in pesticide contaminated water management.",
publisher = "Belgrade : Serbian Chemical Society",
journal = "21th European Meeting on Environmental Chemistry EMEC 21",
title = "The Embryotoxic Potential and Photocatalytic Degradation of Thiophanate-Methyl",
pages = "42-42"
}
Stevanović, M., Jovanović, A., Đolić, M., Veličković, Z., Čutović, N., Tomašević, A.,& Marinković, A.. (2021). The Embryotoxic Potential and Photocatalytic Degradation of Thiophanate-Methyl. in 21th European Meeting on Environmental Chemistry EMEC 21
Belgrade : Serbian Chemical Society., 42-42.
Stevanović M, Jovanović A, Đolić M, Veličković Z, Čutović N, Tomašević A, Marinković A. The Embryotoxic Potential and Photocatalytic Degradation of Thiophanate-Methyl. in 21th European Meeting on Environmental Chemistry EMEC 21. 2021;:42-42..
Stevanović, Marija, Jovanović, Aleksandar, Đolić, Maja, Veličković, Zlate, Čutović, Natalija, Tomašević, Anđelka, Marinković, Aleksandar, "The Embryotoxic Potential and Photocatalytic Degradation of Thiophanate-Methyl" in 21th European Meeting on Environmental Chemistry EMEC 21 (2021):42-42.

Kinetika i termodinamika procesa adsorpcije as(v)iz vodenih rastvora na modifikovanom adsorbentu SiO2/APTES/GT

Jovanović, Aleksandar; Mijatov, Slavko; Đolić, Maja; Veličković, Zlate; Marinković, Aleksandar

(Novi Sad : Prirodno-matematički fakultet, 2019)

TY  - JOUR
AU  - Jovanović, Aleksandar
AU  - Mijatov, Slavko
AU  - Đolić, Maja
AU  - Veličković, Zlate
AU  - Marinković, Aleksandar
PY  - 2019
UR  - https://ritnms.itnms.ac.rs/handle/123456789/1115
AB  - Sposobnost adsorpcije silicijum-dioksida, modifikovanog sa (3-aminopropil)trietoksisilanom
(APTES), a zatim sa oksidom železa u obliku getita (GT), korišćene su za uklanjanje As(V). Fazni
sastav, strukturna i površinska/teksturalna svojstva dobijenog adsorbenta analizirani su FE-SEM i
FTIR tehnikama. Adsorpcija As(V) ispitana je u šaržnim uslovima korišćenjem različitog vremena
kontakta, mase adsorbenta i temperature. Koncentracije oksi anjona određene su primenom
atomske apsorpcione spektroskopije (AAS). Za određivanje adsorpcionih kapaciteta korišćeni su
različiti modeli, u kojima se najbolje uklapaju Frojndlihov i Lengmirov model. Dobijen je visok
adsorpcioni kapacitet od 55,987 mgg–1 na 45 °C, što ukazuje da je dobijeni adsorbent efikasan, dok
su termodinamički parametric pokazali spontani endoterman proces.
PB  - Novi Sad : Prirodno-matematički fakultet
T2  - VII Memorijalni naučni skup iz zaštite životne sredine „Docent dr Milena Dalmacija“, 2019.
T1  - Kinetika i termodinamika procesa adsorpcije as(v)iz vodenih rastvora na modifikovanom adsorbentu SiO2/APTES/GT
ER  - 
@article{
author = "Jovanović, Aleksandar and Mijatov, Slavko and Đolić, Maja and Veličković, Zlate and Marinković, Aleksandar",
year = "2019",
abstract = "Sposobnost adsorpcije silicijum-dioksida, modifikovanog sa (3-aminopropil)trietoksisilanom
(APTES), a zatim sa oksidom železa u obliku getita (GT), korišćene su za uklanjanje As(V). Fazni
sastav, strukturna i površinska/teksturalna svojstva dobijenog adsorbenta analizirani su FE-SEM i
FTIR tehnikama. Adsorpcija As(V) ispitana je u šaržnim uslovima korišćenjem različitog vremena
kontakta, mase adsorbenta i temperature. Koncentracije oksi anjona određene su primenom
atomske apsorpcione spektroskopije (AAS). Za određivanje adsorpcionih kapaciteta korišćeni su
različiti modeli, u kojima se najbolje uklapaju Frojndlihov i Lengmirov model. Dobijen je visok
adsorpcioni kapacitet od 55,987 mgg–1 na 45 °C, što ukazuje da je dobijeni adsorbent efikasan, dok
su termodinamički parametric pokazali spontani endoterman proces.",
publisher = "Novi Sad : Prirodno-matematički fakultet",
journal = "VII Memorijalni naučni skup iz zaštite životne sredine „Docent dr Milena Dalmacija“, 2019.",
title = "Kinetika i termodinamika procesa adsorpcije as(v)iz vodenih rastvora na modifikovanom adsorbentu SiO2/APTES/GT"
}
Jovanović, A., Mijatov, S., Đolić, M., Veličković, Z.,& Marinković, A.. (2019). Kinetika i termodinamika procesa adsorpcije as(v)iz vodenih rastvora na modifikovanom adsorbentu SiO2/APTES/GT. in VII Memorijalni naučni skup iz zaštite životne sredine „Docent dr Milena Dalmacija“, 2019.
Novi Sad : Prirodno-matematički fakultet..
Jovanović A, Mijatov S, Đolić M, Veličković Z, Marinković A. Kinetika i termodinamika procesa adsorpcije as(v)iz vodenih rastvora na modifikovanom adsorbentu SiO2/APTES/GT. in VII Memorijalni naučni skup iz zaštite životne sredine „Docent dr Milena Dalmacija“, 2019.. 2019;..
Jovanović, Aleksandar, Mijatov, Slavko, Đolić, Maja, Veličković, Zlate, Marinković, Aleksandar, "Kinetika i termodinamika procesa adsorpcije as(v)iz vodenih rastvora na modifikovanom adsorbentu SiO2/APTES/GT" in VII Memorijalni naučni skup iz zaštite životne sredine „Docent dr Milena Dalmacija“, 2019. (2019).