Federal University of São Carlos, Graduate Program in Materials Science and Engineering (PPGCEM), 13565-905, São Carlos, Brazil; National Nanotechnology Laboratory for Agribusiness, Embrapa Instrumentation, XV de Novembro Street, 1452, São Carlos, SP, 13560-979, Brazil.
Department of Materials Engineering, Federal University of São Carlos, Rod. Washington Luis, km 235, São Carlos, SP, 13565-905, Brazil.
Carbohydr Polym. 2020 Jun 15;238:116198. doi: 10.1016/j.carbpol.2020.116198. Epub 2020 Mar 23.
In this study, continuous casting is proposed as a suitable approach to scale up the production of gelatin-cellulose nanocrystals (CNCs) bionanocomposites. The processing conditions and bionanocomposite properties were established based on the ζ-potential and gelatin content, and CNCs concentration, respectively. Gelatin film-forming solution at 20 wt% was required for proper continuous casting processing, leading to a productivity of 0.20 m film/min, which was at least 1000-fold higher than that of the classical bench casting. The gelatin-CNCs bionanocomposites displayed transparency, flexibility, and improved UV-barrier and thermal properties. Adding only 0.5 wt% of CNCs resulted in an increase of 77 % and 48 % in the tensile strength and Young's modulus of gelatin, respectively. Comparison with previous nanocellulose-based nanocomposites pointed out the relatively superior performance of the gelatin-CNCs bionanocomposites obtained by continuous casting for various applications, including flexible food packaging.
在这项研究中,连续铸造被提议作为一种合适的方法来扩大明胶-纤维素纳米晶(CNC)生物纳米复合材料的生产。基于 ζ 电位和明胶含量以及 CNCs 浓度分别确定了加工条件和生物纳米复合材料的性能。20wt%的明胶成膜溶液是进行适当连续铸造加工所必需的,其生产速度为 0.20m/min,至少比经典的台式铸造高 1000 倍。明胶-CNCs 生物纳米复合材料具有透明性、柔韧性以及增强的 UV 阻隔和热性能。仅添加 0.5wt%的 CNCs,明胶的拉伸强度和杨氏模量分别提高了 77%和 48%。与以前基于纳米纤维素的纳米复合材料的比较指出了通过连续铸造获得的明胶-CNCs 生物纳米复合材料在各种应用中的相对优越性能,包括柔性食品包装。