Goudar Naganagouda, Hiremani Vishram D, D'souza Oshin Jacintha, Pinto Jennifer P, Masti Saraswati P, Chougale Ravindra B
Department of Studies in Chemistry, Karnatak University, Dharwad, 580 003 India.
Department of Chemistry, Tungal School of Basic and Applied Sciences, Jamkhandi, 587301 India.
J Food Sci Technol. 2024 Mar;61(3):481-490. doi: 10.1007/s13197-023-05856-3. Epub 2023 Sep 28.
The development of green materials for active packaging applications is a research hotspot due to setbacks of petrochemical derived plastics. Thus, the present study aims to develop ternary blend films by doping different wt% of Tragacanth gum (TG) to Poly(vinyl alcohol)/Chitosan (PC) blend using solvent evaporation technique. Further, their various physicochemical properties were evaluated systematically. Differential scanning calorimetry studies revealed excellent compatibility and thermal stability of PC blend was significantly reinforced with 15 wt% of TG. UV-visible spectroscopy study demonstrated the excellent shielding efficacy of UV radiation by ternary blend films. Moreover, overall migration results confirmed the limited release of film constituents into food simulants and swelling ratio analysis indicated the good swelling resistance at higher wt% of TG. The ternary films exhibited tremendous chemical resistance against extreme acidic and basic environments and these green biofilms could be considered for active packaging applications.
由于石化衍生塑料的种种问题,用于活性包装应用的绿色材料的开发成为一个研究热点。因此,本研究旨在通过溶剂蒸发技术,向聚乙烯醇/壳聚糖(PC)共混物中掺杂不同重量百分比的黄芪胶(TG)来制备三元共混薄膜。此外,还系统地评估了它们的各种物理化学性质。差示扫描量热法研究表明,PC共混物具有优异的相容性,添加15重量%的TG后,其热稳定性得到显著增强。紫外可见光谱研究表明,三元共混薄膜对紫外线具有优异的屏蔽效果。此外,总体迁移结果证实薄膜成分向食品模拟物中的释放有限,溶胀率分析表明在较高重量百分比的TG下具有良好的抗溶胀性。三元薄膜在极端酸性和碱性环境中表现出极强的耐化学性,这些绿色生物薄膜可考虑用于活性包装应用。