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首页> 外文期刊>Industrial Crops and Products >Mechanical, thermal and barrier properties of nano-biocomposite based on gluten and carboxylated cellulose nanocrystals.
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Mechanical, thermal and barrier properties of nano-biocomposite based on gluten and carboxylated cellulose nanocrystals.

机译:基于面筋和羧化纤维素纳米晶体的纳米生物复合材料的机械,热和阻隔性能。

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摘要

Bio-based polymers and biocomposites are a relatively new and growing market in light of recent societal concerns including dwindling petroleum reserves, environmental and end-of-live disposal issues. Developing sustainable and environmentally friendly alternatives to current packaging films, such as polyethylene is neither easy nor simple. We report here on our effort to develop a novel nanocomposite-based packaging film comprised of gluten filled with carboxylated cellulose nanocrystals (C.CNCs). We observed the effect of different C.CNC loadings on the mechanical, thermal, sorption and barrier properties of the resulting composite films. The results of differential scanning calorimetry (DSC) indicated that increasing the C.CNC amount from 0% to 10% showed a minimum at 5% for the glass transition temperature (T g ). The mechanical properties showed that the breaking elongation ( epsilonb) decreased by 26%, but tensile strength (TS) increased (60%) in the presence of C.CNC, with a maximum at 7.5 wt.%. The reinforcing effect of C.CNCs was also confirmed by dynamic mechanical analysis (DMA) where, by adding C.CNC, an increase in storage modulus was detected. As compared to film without C.CNC, the water vapor permeability (WVP) decreased from 5.02 x 10-5 to 3.21 x 10-5 g/mm h kPa for the film containing 7.5% C.CNC; with increasing nanocellulose content, water uptake of the nanocomposites increased but water solubility decreased. These results indicate that the nanocellulose is promising as a reinforcing agent in gluten polymers
机译:鉴于最近的社会关注,包括石油储量减少,环境和报废处理问题,生物基聚合物和生物复合材料是一个相对较新的且正在增长的市场。要开发当前包装薄膜的可持续性和环保替代品,例如聚乙烯,既不容易也不简单。我们在这里报告了我们的努力,以开发一种新型的基于纳米复合材料的包装膜,该膜由填充有羧化纤维素纳米晶体(C.CNCs)的面筋组成。我们观察到不同的C.CNC负载量对所得复合膜的机械,热,吸附和阻隔性能的影响。差示扫描量热法(DSC)的结果表明,对于玻璃化转变温度(T g ),将C.CNC的量从0%增加到10%时显示最小。力学性能表明,在C.CNC存在下,断裂伸长率(εilb b )降低了26%,但拉伸强度(TS)却提高了(60%),最大值为7.5 wt。 %。还通过动态力学分析(DMA)证实了C.CNC的增强作用,其中通过添加C.CNC可以检测到储能模量的增加。与没有C.CNC的薄膜相比,水蒸气渗透率(WVP)从5.02 x 10 -5 降低到3.21 x 10 -5 g / mm h kPa。含7.5%C.CNC的薄膜;随着纳米纤维素含量的增加,纳米复合材料的吸水率增加,但水溶性降低。这些结果表明,纳米纤维素有望作为面筋聚合物的增强剂。

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