Ilić, Marina

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  • Ilić, Marina (3)
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Author's Bibliography

Testing the protective efficiency of personal respiratory protection devices in radiologically contaminated environments

Rajić, Dušan; Ivanković, Negovan; Ivanković, Nataša D.; Ilić, Marina; Senić, Željko; Pajić, Nataša D.

(Vinca Institute of Nuclear Sciences, 2013)

TY  - JOUR
AU  - Rajić, Dušan
AU  - Ivanković, Negovan
AU  - Ivanković, Nataša D.
AU  - Ilić, Marina
AU  - Senić, Željko
AU  - Pajić, Nataša D.
PY  - 2013
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/2305
AB  - The use of ammunition primed with depleted uranium is one of the hallmarks of modern combat operations, resulting in environmental contamination by particles of depleted uranium and uranium oxide, scattered around in the form of submicron-scale aerosols. This paper examined the protective effectiveness of the Serbian military's M3 protective face mask in relation to the presence of airborne depleted uranium and its by-products. Sodium chloride in solid aerosol form was used as a test substance and adequate physical simulator of such radioactive aerosols because its granulometric (particle) size distribution met the requirements of suitability as a simulator. Determination of aerosol concentration was carried out by flame photometry method, whilst granulometric distribution was determined by an electric particles analyzer. It was established that the total internal leakage of the M3 protective mask was as much a function of the penetration of particles through the combined M3 filter as of the leaks along the fitting line of the user's face mask and the inhalation valve. In terms of its protective effect against aerosols of depleted uranium and associated oxides, the Serbian M3 protective mask was determined to be of high efficiency and physiological suitability.
AB  - Upotreba municije laborisane osiromašenim uranijumom predstavlja jedno od obeležja savremenih borbenih dejstava. Pri tome dolazi do kontaminacije životne sredine česticama osiromašenog uranijuma i oksidima uranijuma koje se raspršavaju u okolinu u formi aerosola submikronskih razmera. U radu je ispitivana efikasnost srpske vojne zaštitne maske M3 u odnosu na prisustvo osiromašenog uranijuma i njegovih produkata u vazduhu. Kao test supstancija i adekvatan fizički simulator ovakvih radioaktivnih aerosola korišćen je čvrsti aerosol NaCl čija granulometrijska raspodela veličine čestica ispunjava uslove za njegovu podobnost kao simulatora. Određivanje koncentracije ovih aerosola obavljeno je metodom plamene fotometrije, a granulometrijska raspodela električnim analizatorom čestica. Pokazano je da ukupno unutrašnje propuštanje zaštitne maske zavisi podjednako od prodiranja čestica kroz kombinovani filter M3, kao i od propuštanja na liniji naleganja obrazine na lice korisnika i kroz ventil izdisanja. Utvrđena je visoka efikasnost i fiziološka podobnost srpske zaštitne maske M3 u zaštiti od aerosola osiromašenog uranijuma i njegovih oksida.
PB  - Vinca Institute of Nuclear Sciences
T2  - Nuclear Technology and Radiation Protection
T1  - Testing the protective efficiency of personal respiratory protection devices in radiologically contaminated environments
T1  - Ispitivanje efikasnosti sredstava lične respiratorne zaštite u uslovima radiološke kontaminacije životne sredine
EP  - 107
IS  - 1
SP  - 102
VL  - 28
UR  - https://hdl.handle.net/21.15107/rcub_technorep_2305
ER  - 
@article{
author = "Rajić, Dušan and Ivanković, Negovan and Ivanković, Nataša D. and Ilić, Marina and Senić, Željko and Pajić, Nataša D.",
year = "2013",
abstract = "The use of ammunition primed with depleted uranium is one of the hallmarks of modern combat operations, resulting in environmental contamination by particles of depleted uranium and uranium oxide, scattered around in the form of submicron-scale aerosols. This paper examined the protective effectiveness of the Serbian military's M3 protective face mask in relation to the presence of airborne depleted uranium and its by-products. Sodium chloride in solid aerosol form was used as a test substance and adequate physical simulator of such radioactive aerosols because its granulometric (particle) size distribution met the requirements of suitability as a simulator. Determination of aerosol concentration was carried out by flame photometry method, whilst granulometric distribution was determined by an electric particles analyzer. It was established that the total internal leakage of the M3 protective mask was as much a function of the penetration of particles through the combined M3 filter as of the leaks along the fitting line of the user's face mask and the inhalation valve. In terms of its protective effect against aerosols of depleted uranium and associated oxides, the Serbian M3 protective mask was determined to be of high efficiency and physiological suitability., Upotreba municije laborisane osiromašenim uranijumom predstavlja jedno od obeležja savremenih borbenih dejstava. Pri tome dolazi do kontaminacije životne sredine česticama osiromašenog uranijuma i oksidima uranijuma koje se raspršavaju u okolinu u formi aerosola submikronskih razmera. U radu je ispitivana efikasnost srpske vojne zaštitne maske M3 u odnosu na prisustvo osiromašenog uranijuma i njegovih produkata u vazduhu. Kao test supstancija i adekvatan fizički simulator ovakvih radioaktivnih aerosola korišćen je čvrsti aerosol NaCl čija granulometrijska raspodela veličine čestica ispunjava uslove za njegovu podobnost kao simulatora. Određivanje koncentracije ovih aerosola obavljeno je metodom plamene fotometrije, a granulometrijska raspodela električnim analizatorom čestica. Pokazano je da ukupno unutrašnje propuštanje zaštitne maske zavisi podjednako od prodiranja čestica kroz kombinovani filter M3, kao i od propuštanja na liniji naleganja obrazine na lice korisnika i kroz ventil izdisanja. Utvrđena je visoka efikasnost i fiziološka podobnost srpske zaštitne maske M3 u zaštiti od aerosola osiromašenog uranijuma i njegovih oksida.",
publisher = "Vinca Institute of Nuclear Sciences",
journal = "Nuclear Technology and Radiation Protection",
title = "Testing the protective efficiency of personal respiratory protection devices in radiologically contaminated environments, Ispitivanje efikasnosti sredstava lične respiratorne zaštite u uslovima radiološke kontaminacije životne sredine",
pages = "107-102",
number = "1",
volume = "28",
url = "https://hdl.handle.net/21.15107/rcub_technorep_2305"
}
Rajić, D., Ivanković, N., Ivanković, N. D., Ilić, M., Senić, Ž.,& Pajić, N. D.. (2013). Testing the protective efficiency of personal respiratory protection devices in radiologically contaminated environments. in Nuclear Technology and Radiation Protection
Vinca Institute of Nuclear Sciences., 28(1), 102-107.
https://hdl.handle.net/21.15107/rcub_technorep_2305
Rajić D, Ivanković N, Ivanković ND, Ilić M, Senić Ž, Pajić ND. Testing the protective efficiency of personal respiratory protection devices in radiologically contaminated environments. in Nuclear Technology and Radiation Protection. 2013;28(1):102-107.
https://hdl.handle.net/21.15107/rcub_technorep_2305 .
Rajić, Dušan, Ivanković, Negovan, Ivanković, Nataša D., Ilić, Marina, Senić, Željko, Pajić, Nataša D., "Testing the protective efficiency of personal respiratory protection devices in radiologically contaminated environments" in Nuclear Technology and Radiation Protection, 28, no. 1 (2013):102-107,
https://hdl.handle.net/21.15107/rcub_technorep_2305 .

Testing of the efficiency of military devices for personal respiratory protection in relation to sub-micron particles of biological agents

Ivanković, Negovan; Rajić, Dušan; Ilić, Marina; Vitorović-Todorović, Maja; Pajić, Nataša

(Inst Materials Physics, Bucharest, 2012)

TY  - JOUR
AU  - Ivanković, Negovan
AU  - Rajić, Dušan
AU  - Ilić, Marina
AU  - Vitorović-Todorović, Maja
AU  - Pajić, Nataša
PY  - 2012
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/2024
AB  - The construction of biological weapons and tactics of its application dictate that dissemination of biological agents on the target has to be in the form of aerosols. The work was done on the effectiveness of filtration Serbian military protective mask M3 under conditions of simulated air contamination by sub-micron particles of biological agents. For this purpose the sodium chloride aerosol is generated in the form of solid aerosol particles, whose granulometric distribution and biological inactivity fulfill qualification for its suitability as a simulator of biological agents. The study was conducted with a focus on determining the filtration efficiency of the combined filter M3 as a vital part of the protective mask M3, with the measurement of filter resistance to air flow. The obtained values of filtration efficiency testing indicate that the protective mask M3 in real terms can successfully protect the user from contamination by biological agents used in aerosol form.
PB  - Inst Materials Physics, Bucharest
T2  - Digest Journal of Nanomaterials and Biostructures
T1  - Testing of the efficiency of military devices for personal respiratory protection in relation to sub-micron particles of biological agents
EP  - 1095
IS  - 3
SP  - 1089
VL  - 7
UR  - https://hdl.handle.net/21.15107/rcub_technorep_2024
ER  - 
@article{
author = "Ivanković, Negovan and Rajić, Dušan and Ilić, Marina and Vitorović-Todorović, Maja and Pajić, Nataša",
year = "2012",
abstract = "The construction of biological weapons and tactics of its application dictate that dissemination of biological agents on the target has to be in the form of aerosols. The work was done on the effectiveness of filtration Serbian military protective mask M3 under conditions of simulated air contamination by sub-micron particles of biological agents. For this purpose the sodium chloride aerosol is generated in the form of solid aerosol particles, whose granulometric distribution and biological inactivity fulfill qualification for its suitability as a simulator of biological agents. The study was conducted with a focus on determining the filtration efficiency of the combined filter M3 as a vital part of the protective mask M3, with the measurement of filter resistance to air flow. The obtained values of filtration efficiency testing indicate that the protective mask M3 in real terms can successfully protect the user from contamination by biological agents used in aerosol form.",
publisher = "Inst Materials Physics, Bucharest",
journal = "Digest Journal of Nanomaterials and Biostructures",
title = "Testing of the efficiency of military devices for personal respiratory protection in relation to sub-micron particles of biological agents",
pages = "1095-1089",
number = "3",
volume = "7",
url = "https://hdl.handle.net/21.15107/rcub_technorep_2024"
}
Ivanković, N., Rajić, D., Ilić, M., Vitorović-Todorović, M.,& Pajić, N.. (2012). Testing of the efficiency of military devices for personal respiratory protection in relation to sub-micron particles of biological agents. in Digest Journal of Nanomaterials and Biostructures
Inst Materials Physics, Bucharest., 7(3), 1089-1095.
https://hdl.handle.net/21.15107/rcub_technorep_2024
Ivanković N, Rajić D, Ilić M, Vitorović-Todorović M, Pajić N. Testing of the efficiency of military devices for personal respiratory protection in relation to sub-micron particles of biological agents. in Digest Journal of Nanomaterials and Biostructures. 2012;7(3):1089-1095.
https://hdl.handle.net/21.15107/rcub_technorep_2024 .
Ivanković, Negovan, Rajić, Dušan, Ilić, Marina, Vitorović-Todorović, Maja, Pajić, Nataša, "Testing of the efficiency of military devices for personal respiratory protection in relation to sub-micron particles of biological agents" in Digest Journal of Nanomaterials and Biostructures, 7, no. 3 (2012):1089-1095,
https://hdl.handle.net/21.15107/rcub_technorep_2024 .
3
4

A comparative study of the field of view and the optical properties of oculars of military protective masks

Rajić, Dušan; Marković, Tatjana; Ivanković, Negovan; Ilić, Marina; Senić, Željko; Vitorović-Todorović, Maja

(Military Technical Institute, Belgrade, 2012)

TY  - JOUR
AU  - Rajić, Dušan
AU  - Marković, Tatjana
AU  - Ivanković, Negovan
AU  - Ilić, Marina
AU  - Senić, Željko
AU  - Vitorović-Todorović, Maja
PY  - 2012
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/2068
AB  - A large field of view and the corresponding optical characteristics of the ocular are among the most important tactical and technical demands placed upon the designer of protective masks, because these properties directly affect the combat effectiveness of soldiers in conditions where protective mask must be worn in a protective position because of a real radioactive, chemical and biological danger. In terms of stated properties, a new domestic protective mask, marked M3, is expected to match the quality level of modern foreign military protective masks and to be better than the existing protective masks Serbian Armed Forces (SAF) are equipped with. This new mask is in the process of adoption in the armament and military equipment of the SAF. In order to perceive fulfillment of this criterion, this paper presents the experimental results of the comparative tests of the field of view and the ocular optical properties of available samples of foreign and domestic protective masks. .
AB  - Veliko vidno polje i odgovarajuće optičke karakteristike okulara su među najznačajnijim taktičko-tehničkim zahtevima koji se postavljaju pred konstruktore zaštitne maske, jer ove karakteristike neposredno utiču na borbenu efikasnost vojnika u uslovima kada zaštitna maska mora da se nosi u zaštitnom položaju zbog realne radioaktivne, hemijske i biološke opasnosti. Od nove domaće zaštitne maske oznake M3, koja se nalazi u fazi usvajanja u naoružanje i vojnu opremu Vojske Srbije (VS), očekuje se da u pogledu navedenih karakteristika, bude bolja od postojećih zaštitnih maski kojima je trenutno opremljena VS, a na približnom nivou kvaliteta najsavremenijih inostranih vojnih zaštitnih maski. U cilju sagledavanja ispunjenosti ovog kriterijuma, u radu su prikazani eksperimentalni komparativni rezultati ispitivanja vidnog polja i optičkih karakteristika okulara na uzorcima dostupnih inostranih i domaćih zaštitnih maski.
PB  - Military Technical Institute, Belgrade
T2  - Scientific Technical Review
T1  - A comparative study of the field of view and the optical properties of oculars of military protective masks
T1  - Sravnitel'noe issledovanie polja zrenija i optičeskih svojstv glaznogo voennyh zaščitnyh masok / (francuski) Etude comparative du champ visuel et de l'oculaire optique chez le masque protecteur
T1  - Komparativna studija polja vida i optičkih osobina okulara vojnih zaštitnih maski
EP  - 93
IS  - 3-4
SP  - 87
VL  - 62
UR  - https://hdl.handle.net/21.15107/rcub_technorep_2068
ER  - 
@article{
author = "Rajić, Dušan and Marković, Tatjana and Ivanković, Negovan and Ilić, Marina and Senić, Željko and Vitorović-Todorović, Maja",
year = "2012",
abstract = "A large field of view and the corresponding optical characteristics of the ocular are among the most important tactical and technical demands placed upon the designer of protective masks, because these properties directly affect the combat effectiveness of soldiers in conditions where protective mask must be worn in a protective position because of a real radioactive, chemical and biological danger. In terms of stated properties, a new domestic protective mask, marked M3, is expected to match the quality level of modern foreign military protective masks and to be better than the existing protective masks Serbian Armed Forces (SAF) are equipped with. This new mask is in the process of adoption in the armament and military equipment of the SAF. In order to perceive fulfillment of this criterion, this paper presents the experimental results of the comparative tests of the field of view and the ocular optical properties of available samples of foreign and domestic protective masks. ., Veliko vidno polje i odgovarajuće optičke karakteristike okulara su među najznačajnijim taktičko-tehničkim zahtevima koji se postavljaju pred konstruktore zaštitne maske, jer ove karakteristike neposredno utiču na borbenu efikasnost vojnika u uslovima kada zaštitna maska mora da se nosi u zaštitnom položaju zbog realne radioaktivne, hemijske i biološke opasnosti. Od nove domaće zaštitne maske oznake M3, koja se nalazi u fazi usvajanja u naoružanje i vojnu opremu Vojske Srbije (VS), očekuje se da u pogledu navedenih karakteristika, bude bolja od postojećih zaštitnih maski kojima je trenutno opremljena VS, a na približnom nivou kvaliteta najsavremenijih inostranih vojnih zaštitnih maski. U cilju sagledavanja ispunjenosti ovog kriterijuma, u radu su prikazani eksperimentalni komparativni rezultati ispitivanja vidnog polja i optičkih karakteristika okulara na uzorcima dostupnih inostranih i domaćih zaštitnih maski.",
publisher = "Military Technical Institute, Belgrade",
journal = "Scientific Technical Review",
title = "A comparative study of the field of view and the optical properties of oculars of military protective masks, Sravnitel'noe issledovanie polja zrenija i optičeskih svojstv glaznogo voennyh zaščitnyh masok / (francuski) Etude comparative du champ visuel et de l'oculaire optique chez le masque protecteur, Komparativna studija polja vida i optičkih osobina okulara vojnih zaštitnih maski",
pages = "93-87",
number = "3-4",
volume = "62",
url = "https://hdl.handle.net/21.15107/rcub_technorep_2068"
}
Rajić, D., Marković, T., Ivanković, N., Ilić, M., Senić, Ž.,& Vitorović-Todorović, M.. (2012). A comparative study of the field of view and the optical properties of oculars of military protective masks. in Scientific Technical Review
Military Technical Institute, Belgrade., 62(3-4), 87-93.
https://hdl.handle.net/21.15107/rcub_technorep_2068
Rajić D, Marković T, Ivanković N, Ilić M, Senić Ž, Vitorović-Todorović M. A comparative study of the field of view and the optical properties of oculars of military protective masks. in Scientific Technical Review. 2012;62(3-4):87-93.
https://hdl.handle.net/21.15107/rcub_technorep_2068 .
Rajić, Dušan, Marković, Tatjana, Ivanković, Negovan, Ilić, Marina, Senić, Željko, Vitorović-Todorović, Maja, "A comparative study of the field of view and the optical properties of oculars of military protective masks" in Scientific Technical Review, 62, no. 3-4 (2012):87-93,
https://hdl.handle.net/21.15107/rcub_technorep_2068 .