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Biocomposites Based On Cellulose And Starch Modified Urea-Formaldehyde Resin: Hydrolytic, Thermal And Radiation Stability

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M22 Polymer Composites 2019 3 - Suzana Samaržija.pdf (56.26Kb)
Date
2019-04-10
Authors
Jovanović, Vojislav
Samaržija-Jovanović, Suzana
Petković, Branka
Milićević, Zoran
Marković, Gordana
Marinović-Cincović, Milena
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Abstract
Two biocomposites based on cellulose (UFC) and starch modified urea formaldehyde (UFS) resin (F/U ratio of 0.8) were synthesized using the same procedure. The hydrolitical, thermal, and radiation stability of biocomposites are determined. Also, released formaldehyde during the acid hydrolysis is determined. Biocomposites based on modified UF resin have been irradiated with (50 kGy). Cellulose modified UF resin after γ-radiation has 1.38% released formaldehyde; unmodified UF resin has 2.21% released formaldehyde. Thermal stability of biocomposites is determined using nonisothermal thermogravimetric analysis, differential thermal gravimetry (DTG), and differential thermal analysis with IR spectroscopy. Moving the DTG peak to higher temperatures indicates an increased thermal stability of cellulose modified UF resin, which is confirmed by the FTIR analysis. Gamma radiation most often causes a decrease in the intensity of the peaks in the FTIR spectrum.
URI
https://platon.pr.ac.rs/handle/123456789/1084
DOI
https://doi.org/10.1002/pc.24849
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M22
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