Narayanan Meenu, Loganathan Sravanthi, Valapa Ravi Babu, Thomas Sabu, Varghese T O
Department of Polymer Science and Rubber Technology, Cochin University of Science and Technology, Kochi, Kerala, India.
School of Chemical Sciences, Mahatma Gandhi University, Kottayam, Kerala, India.
Int J Biol Macromol. 2017 Jun;99:37-45. doi: 10.1016/j.ijbiomac.2017.01.152. Epub 2017 Feb 16.
Recently, biopolymer based plastic materials are regarded as potential alternative for conventional plastics of fossil fuel origin in order to compensate depleting petroleum resources and address environmental pollution issues. Poly(lactic acid) (PLA) is one among the biopolymers which is rapidly commercialized for food packaging application. However, the demerits accompanied with PLA like brittle nature, slower crystallization rate, poor gas barrier and high ultraviolet radiation transmission properties confines its commercial application in food packaging sector. Studies on the improvement of ductility, crystallization rate and gas barrier properties are markedly reported. Much emphasis is not given in the literature on improving UV shielding properties which plays important role in preventing oxidation degradation of PLA. Therefore, the current work is focused on fabrication of eco-friendly poly(lactic acid)/rosin (RS) based biocomposite films with improved UV shielding along with ductility and oxygen barrier properties. The PLA-RS biocomposite films containing different loadings (1, 3, 5, 10 and 20wt%) of RS with an average thickness of 50μm are fabricated via solution casting technique. The PLA-RS film demonstrated noteworthy light barrier feature by shielding the passage of ∼98%, 92% and 53% in UV-B, UV-A and visible light regime, respectively. In case of UV-C region, complete blockage of UV transmission through the PLA-RS biocomposite film is noticed. In addition to this, the presence of RS in the PLA matrix brought considerable improvement in terms of ductility and oxygen barrier characteristics. This in turn indicates PLA-RS biocomposite films hold significant potential for sustainable food packaging application.
最近,基于生物聚合物的塑料材料被视为传统化石燃料来源塑料的潜在替代品,以弥补日益枯竭的石油资源并解决环境污染问题。聚乳酸(PLA)是生物聚合物之一,已迅速商业化用于食品包装应用。然而,PLA存在诸如脆性、结晶速率较慢、气体阻隔性差和紫外线透过率高等缺点,限制了其在食品包装领域的商业应用。关于提高其延展性、结晶速率和气体阻隔性能的研究已有大量报道。但文献中对改善紫外线屏蔽性能的关注较少,而紫外线屏蔽性能对防止PLA氧化降解起着重要作用。因此,当前的工作重点是制备具有改善的紫外线屏蔽性能以及延展性和氧气阻隔性能的环保型聚乳酸/松香(RS)基生物复合薄膜。通过溶液浇铸技术制备了含有不同负载量(1、3、5、10和20wt%)RS且平均厚度为50μm的PLA-RS生物复合薄膜。PLA-RS薄膜在紫外线B、紫外线A和可见光区域分别屏蔽了约98%、92%和53%的光,表现出显著的光阻隔特性。在紫外线C区域,通过PLA-RS生物复合薄膜的紫外线完全被阻隔。除此之外,RS在PLA基体中的存在使薄膜在延展性和氧气阻隔特性方面有了显著改善。这反过来表明PLA-RS生物复合薄膜在可持续食品包装应用方面具有巨大潜力。