Radosavljević, Dragana B.

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orcid::0000-0003-0243-2213
  • Radosavljević, Dragana B. (4)
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Author's Bibliography

Statistical modeling and optimization of ultrasound-assisted biodiesel production using various experimental designs

Avramović, Jelena M.; Radosavljević, Dragana B.; Veličković, Ana V.; Stojković, Ivan; Stamenković, Olivera S.; Veljković, Vlada B.

(Engineering Society for Corrosion, Belgrade, Serbia, 2019)

TY  - JOUR
AU  - Avramović, Jelena M.
AU  - Radosavljević, Dragana B.
AU  - Veličković, Ana V.
AU  - Stojković, Ivan
AU  - Stamenković, Olivera S.
AU  - Veljković, Vlada B.
PY  - 2019
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/4282
AB  - The present study compares the performances of the regression models developed by the response surface methodology combined with the full factorial, Box-Behnken or face central composite designs applied for the ultrasound-assisted KOH-catalyzed methanolysis of sunflower oil. While all models led to similar optimal reaction conditions, the models based on the simpler designs had the smaller corrected Akaike information criterion values, the insignificant lack of fit and the more favorable statistical criteria than the model based on the full factorial design. Including fewer experiments, the Box-Behnken design can be recommended for the optimization of ultrasound-assisted biodiesel production processes.
AB  - U radu se porede performanse regresionih modela razvijenih na osnovu kombinovanja metodologije površine odziva sa punim faktorijelnim, Boks-Benken-ovim ili centralnim kompozitnim planom kada se primene na ultrazvukom podržanu bazno-katalizovanu metanolizu suncokretovog ulja. Iako su svi modeli dali slične optimalne uslove reakcije, modeli zasnovani na jednostavnijim planovima imali su manje vrednosti Akaike-ovog informacionog kriterijuma, neznačajnu vrednost odstupanja od modela i povoljnije statističke kriterijume u odnosu na model zasnovan na punom faktorijelnim planu. Boks-Benken-ov plan, koji zahteva manji broj eksperimenata, može da se preporuči za optimizaciju proizvodnje biodizela u ultrazvučnom reaktoru.
PB  - Engineering Society for Corrosion, Belgrade, Serbia
T2  - Zaštita materijala
T1  - Statistical modeling and optimization of ultrasound-assisted biodiesel production using various experimental designs
T1  - Statističko modelovanje i optimizacija proizvodnje biodizela u prisustvu ultrazvuka primenom različitih eksperimentalnih planova
EP  - 80
IS  - 1
SP  - 70
VL  - 60
DO  - 10.5937/zasmat1901070A
ER  - 
@article{
author = "Avramović, Jelena M. and Radosavljević, Dragana B. and Veličković, Ana V. and Stojković, Ivan and Stamenković, Olivera S. and Veljković, Vlada B.",
year = "2019",
abstract = "The present study compares the performances of the regression models developed by the response surface methodology combined with the full factorial, Box-Behnken or face central composite designs applied for the ultrasound-assisted KOH-catalyzed methanolysis of sunflower oil. While all models led to similar optimal reaction conditions, the models based on the simpler designs had the smaller corrected Akaike information criterion values, the insignificant lack of fit and the more favorable statistical criteria than the model based on the full factorial design. Including fewer experiments, the Box-Behnken design can be recommended for the optimization of ultrasound-assisted biodiesel production processes., U radu se porede performanse regresionih modela razvijenih na osnovu kombinovanja metodologije površine odziva sa punim faktorijelnim, Boks-Benken-ovim ili centralnim kompozitnim planom kada se primene na ultrazvukom podržanu bazno-katalizovanu metanolizu suncokretovog ulja. Iako su svi modeli dali slične optimalne uslove reakcije, modeli zasnovani na jednostavnijim planovima imali su manje vrednosti Akaike-ovog informacionog kriterijuma, neznačajnu vrednost odstupanja od modela i povoljnije statističke kriterijume u odnosu na model zasnovan na punom faktorijelnim planu. Boks-Benken-ov plan, koji zahteva manji broj eksperimenata, može da se preporuči za optimizaciju proizvodnje biodizela u ultrazvučnom reaktoru.",
publisher = "Engineering Society for Corrosion, Belgrade, Serbia",
journal = "Zaštita materijala",
title = "Statistical modeling and optimization of ultrasound-assisted biodiesel production using various experimental designs, Statističko modelovanje i optimizacija proizvodnje biodizela u prisustvu ultrazvuka primenom različitih eksperimentalnih planova",
pages = "80-70",
number = "1",
volume = "60",
doi = "10.5937/zasmat1901070A"
}
Avramović, J. M., Radosavljević, D. B., Veličković, A. V., Stojković, I., Stamenković, O. S.,& Veljković, V. B.. (2019). Statistical modeling and optimization of ultrasound-assisted biodiesel production using various experimental designs. in Zaštita materijala
Engineering Society for Corrosion, Belgrade, Serbia., 60(1), 70-80.
https://doi.org/10.5937/zasmat1901070A
Avramović JM, Radosavljević DB, Veličković AV, Stojković I, Stamenković OS, Veljković VB. Statistical modeling and optimization of ultrasound-assisted biodiesel production using various experimental designs. in Zaštita materijala. 2019;60(1):70-80.
doi:10.5937/zasmat1901070A .
Avramović, Jelena M., Radosavljević, Dragana B., Veličković, Ana V., Stojković, Ivan, Stamenković, Olivera S., Veljković, Vlada B., "Statistical modeling and optimization of ultrasound-assisted biodiesel production using various experimental designs" in Zaštita materijala, 60, no. 1 (2019):70-80,
https://doi.org/10.5937/zasmat1901070A . .
8

Influence of common juniper berries pretreatment on the essential oil yield, chemical composition and extraction kinetics of classical and microwave assisted hydrodistillation

Marković, Miljana S.; Radosavljević, Dragana B.; Pavićević, Vladimir; Ristić, Mihailo S.; Milojević, Svetomir; Bošković-Vragolović, Nevenka; Veljković, Vlada B.

(Elsevier Science Bv, Amsterdam, 2018)

TY  - JOUR
AU  - Marković, Miljana S.
AU  - Radosavljević, Dragana B.
AU  - Pavićević, Vladimir
AU  - Ristić, Mihailo S.
AU  - Milojević, Svetomir
AU  - Bošković-Vragolović, Nevenka
AU  - Veljković, Vlada B.
PY  - 2018
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/3845
AB  - The present paper dealt with the influence of the common juniper berries pretreatment on the yield, chemical composition and extraction kinetics of juniper essential oil (JEO) obtained by classical (HD) and microwave assisted hydrodistillation (MAHD). The highest JEO yield was obtained by HD from one-minute dry-ground juniper berries (2.23 +/- 0.00 g/100 g). No statistically significant influence of swelling and distillation technique on JEO yield was observed. Therefore, the optimal pretreatment process involved no swelling and one-minute grinding. However, no significant difference in the chemical composition of the JEOs obtained by the two techniques was observed. A new phenomenological kinetic model was developed on the basis of the mechanism of JEO extraction by both HD MAHD, which assumed three simultaneously-occurring stages: washing, unhindered diffusion and hindered diffusion. The main advantage of developed model was its ability to describe the variations of JEO yield and distillation rates with time. Furthermore, it had the smallest mean relative percentage deviation compared to the well-known kinetics models and the parameters that all were statistically significant, so it was recommended for modeling the kinetics of JEO extraction by HD and especially MAHD.
PB  - Elsevier Science Bv, Amsterdam
T2  - Industrial Crops and Products
T1  - Influence of common juniper berries pretreatment on the essential oil yield, chemical composition and extraction kinetics of classical and microwave assisted hydrodistillation
EP  - 413
SP  - 402
VL  - 122
DO  - 10.1016/j.indcrop.2018.06.018
ER  - 
@article{
author = "Marković, Miljana S. and Radosavljević, Dragana B. and Pavićević, Vladimir and Ristić, Mihailo S. and Milojević, Svetomir and Bošković-Vragolović, Nevenka and Veljković, Vlada B.",
year = "2018",
abstract = "The present paper dealt with the influence of the common juniper berries pretreatment on the yield, chemical composition and extraction kinetics of juniper essential oil (JEO) obtained by classical (HD) and microwave assisted hydrodistillation (MAHD). The highest JEO yield was obtained by HD from one-minute dry-ground juniper berries (2.23 +/- 0.00 g/100 g). No statistically significant influence of swelling and distillation technique on JEO yield was observed. Therefore, the optimal pretreatment process involved no swelling and one-minute grinding. However, no significant difference in the chemical composition of the JEOs obtained by the two techniques was observed. A new phenomenological kinetic model was developed on the basis of the mechanism of JEO extraction by both HD MAHD, which assumed three simultaneously-occurring stages: washing, unhindered diffusion and hindered diffusion. The main advantage of developed model was its ability to describe the variations of JEO yield and distillation rates with time. Furthermore, it had the smallest mean relative percentage deviation compared to the well-known kinetics models and the parameters that all were statistically significant, so it was recommended for modeling the kinetics of JEO extraction by HD and especially MAHD.",
publisher = "Elsevier Science Bv, Amsterdam",
journal = "Industrial Crops and Products",
title = "Influence of common juniper berries pretreatment on the essential oil yield, chemical composition and extraction kinetics of classical and microwave assisted hydrodistillation",
pages = "413-402",
volume = "122",
doi = "10.1016/j.indcrop.2018.06.018"
}
Marković, M. S., Radosavljević, D. B., Pavićević, V., Ristić, M. S., Milojević, S., Bošković-Vragolović, N.,& Veljković, V. B.. (2018). Influence of common juniper berries pretreatment on the essential oil yield, chemical composition and extraction kinetics of classical and microwave assisted hydrodistillation. in Industrial Crops and Products
Elsevier Science Bv, Amsterdam., 122, 402-413.
https://doi.org/10.1016/j.indcrop.2018.06.018
Marković MS, Radosavljević DB, Pavićević V, Ristić MS, Milojević S, Bošković-Vragolović N, Veljković VB. Influence of common juniper berries pretreatment on the essential oil yield, chemical composition and extraction kinetics of classical and microwave assisted hydrodistillation. in Industrial Crops and Products. 2018;122:402-413.
doi:10.1016/j.indcrop.2018.06.018 .
Marković, Miljana S., Radosavljević, Dragana B., Pavićević, Vladimir, Ristić, Mihailo S., Milojević, Svetomir, Bošković-Vragolović, Nevenka, Veljković, Vlada B., "Influence of common juniper berries pretreatment on the essential oil yield, chemical composition and extraction kinetics of classical and microwave assisted hydrodistillation" in Industrial Crops and Products, 122 (2018):402-413,
https://doi.org/10.1016/j.indcrop.2018.06.018 . .
25
15
25

Modeling the kinetics of essential oil hydrodistillation from plant materials

Milojević, Svetomir; Radosavljević, Dragana B.; Pavićević, Vladimir; Pejanović, Srđan; Veljković, Vlada B.

(Association of Chemical Engineers of Serbia, 2013)

TY  - JOUR
AU  - Milojević, Svetomir
AU  - Radosavljević, Dragana B.
AU  - Pavićević, Vladimir
AU  - Pejanović, Srđan
AU  - Veljković, Vlada B.
PY  - 2013
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/2345
AB  - The present work deals with the modeling of the kinetics of essential oils extraction from plant materials by water and steam distillation. The experimental data were obtained by studying the hydrodistillation kinetics of essential oil from juniper berries. The literature data on the kinetics of essential oils hydrodistillation from different plant materials were also included into the modeling. A physical model based on simultaneous washing and diffusion of essential oil from plant materials were developed to describe the kinetics of essential oils hydrodistillation, and two other simpler models were derived from this physical model assuming either instantaneous washing followed by diffusion or diffusion with no washing (i.e., first-order kinetics). The main goal was to compare these models and suggest the optimum ones for water and steam distillation and for different plant materials. All three models described well the experimental kinetic data on water distillation irrespective of the type of distillation equipment and its scale, the type of plant materials and the operational conditions. The most applicable model is the one involving simultaneous washing and diffusion of the essential oil. However, this model was generally inapplicable for steam distillation of essential oils, except for juniper berries. For this hydrodistillation technique, the pseudo first-order model was shown to be the best one. In a few cases, a variation of the essential oil yield with time was observed to be sigmoidal and was modeled by the Boltzmann sigmoid function.
AB  - Rad se bavi modelovanjem kinetike ekstrakcije etarskog ulja iz biljnih materijala primenom destilacija vodom i vodenom parom. Eksperimentalni podaci dobijeni su proučavanjem kinetike hidrodestilacije etarskog ulja ploda kleke. Literaturni podaci o kinetici hidrodestilacije etarskog ulja iz različitih biljnih materijala su, takođe, uključeni u modelovanje. Za opisivanje kinetike hidrodestilacije etarskog ulja razvijen je fizički model koji je zasnovan na istovremenom ispiranju i difuziji etarskog ulja iz biljnog materijala. Iz ovog modela izvedena su dva prostija modela od kojih je prvi zasnovan na trenutnom ispiranju praćenim difuzijom a drugi na difuziji bez ispiranja (tj.na kinetici prvog reda). Glavni cilj je bio poređenje ovih modela i predlaganje optimalnog za destilacije vodom i vodenom parom I za različite biljne materijale. Sva tri modela opisuju dobro eksperimentalne kinetičke podatke u slučaju destilacije vodom nezavisno od tipa destilatora i njegove veličine, tipa biljnog materijala i procesnih uslova, ali je najbolji model koji uključuje istovremeno ispiranje i difuziju etarskog ulja. Ovaj model je, međutim, neprimenljiv za vodeno-parnu destilaciju etarskog ulja, izuzev za etarsko ulje ploda kleke. Za ovu destilaciju etarskog ulja najbolji je kinetički model pseudo-prvog reda. U slučaju nekoliko biljnih materijala, promena prinosa etarskog ulja sa vremenom je sigmoidna, pa je modelovana Bolcmanovom sigmoidnom funkcijom.
PB  - Association of Chemical Engineers of Serbia
T2  - Hemijska industrija
T1  - Modeling the kinetics of essential oil hydrodistillation from plant materials
T1  - Modelovanje kinetike hidrodestilacije etarskog ulja iz biljnih materijala
EP  - 859
IS  - 5
SP  - 843
VL  - 67
DO  - 10.2298/HEMIND121026009M
ER  - 
@article{
author = "Milojević, Svetomir and Radosavljević, Dragana B. and Pavićević, Vladimir and Pejanović, Srđan and Veljković, Vlada B.",
year = "2013",
abstract = "The present work deals with the modeling of the kinetics of essential oils extraction from plant materials by water and steam distillation. The experimental data were obtained by studying the hydrodistillation kinetics of essential oil from juniper berries. The literature data on the kinetics of essential oils hydrodistillation from different plant materials were also included into the modeling. A physical model based on simultaneous washing and diffusion of essential oil from plant materials were developed to describe the kinetics of essential oils hydrodistillation, and two other simpler models were derived from this physical model assuming either instantaneous washing followed by diffusion or diffusion with no washing (i.e., first-order kinetics). The main goal was to compare these models and suggest the optimum ones for water and steam distillation and for different plant materials. All three models described well the experimental kinetic data on water distillation irrespective of the type of distillation equipment and its scale, the type of plant materials and the operational conditions. The most applicable model is the one involving simultaneous washing and diffusion of the essential oil. However, this model was generally inapplicable for steam distillation of essential oils, except for juniper berries. For this hydrodistillation technique, the pseudo first-order model was shown to be the best one. In a few cases, a variation of the essential oil yield with time was observed to be sigmoidal and was modeled by the Boltzmann sigmoid function., Rad se bavi modelovanjem kinetike ekstrakcije etarskog ulja iz biljnih materijala primenom destilacija vodom i vodenom parom. Eksperimentalni podaci dobijeni su proučavanjem kinetike hidrodestilacije etarskog ulja ploda kleke. Literaturni podaci o kinetici hidrodestilacije etarskog ulja iz različitih biljnih materijala su, takođe, uključeni u modelovanje. Za opisivanje kinetike hidrodestilacije etarskog ulja razvijen je fizički model koji je zasnovan na istovremenom ispiranju i difuziji etarskog ulja iz biljnog materijala. Iz ovog modela izvedena su dva prostija modela od kojih je prvi zasnovan na trenutnom ispiranju praćenim difuzijom a drugi na difuziji bez ispiranja (tj.na kinetici prvog reda). Glavni cilj je bio poređenje ovih modela i predlaganje optimalnog za destilacije vodom i vodenom parom I za različite biljne materijale. Sva tri modela opisuju dobro eksperimentalne kinetičke podatke u slučaju destilacije vodom nezavisno od tipa destilatora i njegove veličine, tipa biljnog materijala i procesnih uslova, ali je najbolji model koji uključuje istovremeno ispiranje i difuziju etarskog ulja. Ovaj model je, međutim, neprimenljiv za vodeno-parnu destilaciju etarskog ulja, izuzev za etarsko ulje ploda kleke. Za ovu destilaciju etarskog ulja najbolji je kinetički model pseudo-prvog reda. U slučaju nekoliko biljnih materijala, promena prinosa etarskog ulja sa vremenom je sigmoidna, pa je modelovana Bolcmanovom sigmoidnom funkcijom.",
publisher = "Association of Chemical Engineers of Serbia",
journal = "Hemijska industrija",
title = "Modeling the kinetics of essential oil hydrodistillation from plant materials, Modelovanje kinetike hidrodestilacije etarskog ulja iz biljnih materijala",
pages = "859-843",
number = "5",
volume = "67",
doi = "10.2298/HEMIND121026009M"
}
Milojević, S., Radosavljević, D. B., Pavićević, V., Pejanović, S.,& Veljković, V. B.. (2013). Modeling the kinetics of essential oil hydrodistillation from plant materials. in Hemijska industrija
Association of Chemical Engineers of Serbia., 67(5), 843-859.
https://doi.org/10.2298/HEMIND121026009M
Milojević S, Radosavljević DB, Pavićević V, Pejanović S, Veljković VB. Modeling the kinetics of essential oil hydrodistillation from plant materials. in Hemijska industrija. 2013;67(5):843-859.
doi:10.2298/HEMIND121026009M .
Milojević, Svetomir, Radosavljević, Dragana B., Pavićević, Vladimir, Pejanović, Srđan, Veljković, Vlada B., "Modeling the kinetics of essential oil hydrodistillation from plant materials" in Hemijska industrija, 67, no. 5 (2013):843-859,
https://doi.org/10.2298/HEMIND121026009M . .
43
32
47

Using geothermal water for greenhouse heating

Milojević, Svetomir; Đurović-Petrović, Maja; Radosavljević, Dragana B.; Glišić, Sandra; Stamenić, Marko

(Vinca Institute of Nuclear Sciences, 2006)

TY  - JOUR
AU  - Milojević, Svetomir
AU  - Đurović-Petrović, Maja
AU  - Radosavljević, Dragana B.
AU  - Glišić, Sandra
AU  - Stamenić, Marko
PY  - 2006
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/983
AB  - On construction with dimensions 15 x 5 x 2 m, conditions of temperature transmission and vegetables growth are examined. We have been cultivating pepper, cucumber, small cucumber, tomato, and lattice. Over ground heating has been used, consisting of one bent pipe with radius of 10 mm, in the shape of hairpin along the both sides of the construction. Underground heating consists of six pipes with radius of 20 mm on the depth of 350-400 mm. There have been measured the temperature inside construction, the temperature outside construction, the waterflow, and water temperature flowing into and out of the construction. The approximate heating flow factor K is determined by both the equation: heating balance equation and basic equation for temperature transmition. Vegetable growth has been watching during the period of time from March to November 2005.
PB  - Vinca Institute of Nuclear Sciences
T2  - Thermal Science
T1  - Using geothermal water for greenhouse heating
EP  - 209
IS  - 4
SP  - 205
VL  - 10
UR  - https://hdl.handle.net/21.15107/rcub_technorep_983
ER  - 
@article{
author = "Milojević, Svetomir and Đurović-Petrović, Maja and Radosavljević, Dragana B. and Glišić, Sandra and Stamenić, Marko",
year = "2006",
abstract = "On construction with dimensions 15 x 5 x 2 m, conditions of temperature transmission and vegetables growth are examined. We have been cultivating pepper, cucumber, small cucumber, tomato, and lattice. Over ground heating has been used, consisting of one bent pipe with radius of 10 mm, in the shape of hairpin along the both sides of the construction. Underground heating consists of six pipes with radius of 20 mm on the depth of 350-400 mm. There have been measured the temperature inside construction, the temperature outside construction, the waterflow, and water temperature flowing into and out of the construction. The approximate heating flow factor K is determined by both the equation: heating balance equation and basic equation for temperature transmition. Vegetable growth has been watching during the period of time from March to November 2005.",
publisher = "Vinca Institute of Nuclear Sciences",
journal = "Thermal Science",
title = "Using geothermal water for greenhouse heating",
pages = "209-205",
number = "4",
volume = "10",
url = "https://hdl.handle.net/21.15107/rcub_technorep_983"
}
Milojević, S., Đurović-Petrović, M., Radosavljević, D. B., Glišić, S.,& Stamenić, M.. (2006). Using geothermal water for greenhouse heating. in Thermal Science
Vinca Institute of Nuclear Sciences., 10(4), 205-209.
https://hdl.handle.net/21.15107/rcub_technorep_983
Milojević S, Đurović-Petrović M, Radosavljević DB, Glišić S, Stamenić M. Using geothermal water for greenhouse heating. in Thermal Science. 2006;10(4):205-209.
https://hdl.handle.net/21.15107/rcub_technorep_983 .
Milojević, Svetomir, Đurović-Petrović, Maja, Radosavljević, Dragana B., Glišić, Sandra, Stamenić, Marko, "Using geothermal water for greenhouse heating" in Thermal Science, 10, no. 4 (2006):205-209,
https://hdl.handle.net/21.15107/rcub_technorep_983 .