Indian Institute of Technology Guwahati, Guwahati, Assam 781039, India.
Indian Institute of Technology Guwahati, Guwahati, Assam 781039, India.
Int J Biol Macromol. 2018 Oct 15;118(Pt B):1518-1531. doi: 10.1016/j.ijbiomac.2018.06.202. Epub 2018 Jul 5.
The current investigation addresses the thermal degradation and non-isothermal crystallization behaviour of the fabricated poly (lactic acid) foam (nPLA) and poly (lactic acid) (PLA)/cellulose nanocrystal (CNC) based foams at three different loadings of CNC (i.e. 1%, 2% and 3%) as PLA/CNC 1, PLA/CNC 2 and PLA/CNC 3 having highly porous, interconnected and microcellular morphology. The formation of various gaseous products at two different conversions (α = 0.3 and α = 0.7) are investigated by using thermogravimetric analyser hyphenated Fourier transmission infrared spectroscopy (TGA-FTIR) analysis in isothermal condition. Effect of porosity and CNC reinforcement towards thermal degradation and crystallization of the PLA is thoroughly investigated by using mercury intrusion porosimetry (MIP). "Model-free" and "modelistic" approaches like Friedman, Flynn-Wall-Ozawa (FWO), Kissinger-Akahira-Sinouse (KAS), Kissinger and Augis & Bennet have been utilized for non-isothermal degradation kinetics of the fabricated foams. Non-isothermal melt crystallization kinetics of fabricated foams reveals that both primary and secondary crystallization process taking place. The apparent activation energy calculated from FWO are ~175.8 kJ/mol, ~198.6 kJ/mol, ~175.5 kJ/mol and ~174.7 kJ/mol for nPLA, PLA/CNC 1, PLA/CNC 2 and PLA/CNC 3 respectively. It is also observed that at higher conversions, complex three dimensional diffusion mechanism of degradation might be taking place in accordance with Criado plots.
当前的研究探讨了所制备的聚乳酸泡沫(nPLA)和基于聚乳酸(PLA)/纤维素纳米晶体(CNC)的泡沫在三种不同 CNC 负载(即 1%、2%和 3%)下的热降解和非等温结晶行为,这些泡沫具有高度多孔、互联和微孔结构。通过使用热重分析仪与傅里叶变换红外光谱(TGA-FTIR)联用在等温条件下研究了两种不同转化率(α=0.3 和 α=0.7)下各种气态产物的形成。通过使用压汞孔隙率分析仪(MIP)深入研究了孔隙率和 CNC 增强对 PLA 热降解和结晶的影响。“无模型”和“模型化”方法,如弗里德曼、弗林-沃尔-奥扎瓦(FWO)、基辛格-阿卡里-正弦(KAS)、基辛格和奥吉斯-本内特,已被用于制备泡沫的非等温降解动力学研究。制备泡沫的非等温熔体结晶动力学表明,一级和二级结晶过程都在发生。从 FWO 计算得到的表观活化能分别为 nPLA、PLA/CNC1、PLA/CNC2 和 PLA/CNC3 的175.8 kJ/mol、198.6 kJ/mol、175.5 kJ/mol 和174.7 kJ/mol。还观察到,在较高的转化率下,降解的复杂三维扩散机制可能与 Criado 图一致。