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基于生物质的热塑性淀粉复合材料增强的二醛木质纤维素。

Bio-Based Thermoplastic Starch Composites Reinforced by Dialdehyde Lignocellulose.

机构信息

Department of Chemistry, College of Science, Nanjing Forestry University, Nanjing 210037, China.

Agricultural and Forest Products Processing Academician Workstation, Luohe 462600, China.

出版信息

Molecules. 2020 Jul 16;25(14):3236. doi: 10.3390/molecules25143236.

Abstract

In order to improve the mechanical properties and water resistance of thermoplastic starch (TPS), a novel reinforcement of dialdehyde lignocellulose (DLC) was prepared via the oxidation of lignocellulose (LC) using sodium periodate. Then, the DLC-reinforced TPS composites were prepared by an extrusion and injection process using glycerol as a plasticizer. The DLC and LC were characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM), and the effects of DLC content on the properties of the DLC/TPS composites were investigated via the evaluation of SEM images, mechanical properties, thermal stability, and contact angles. XRD showed that the crystallinity of the DLC decreased due to oxidation damage to the LC. SEM showed good dispersion of the DLC in the continuous TPS phase at low amounts of DLC, which related to good mechanical properties. The tensile strength of the DLC/TPS composite reached a maximum at a DLC content of 3 wt.%, while the elongation at break of the DLC/TPS composites increased with increasing DLC content. The DLC/TPS composites had better thermal stability than the neat TPS. As the DLC content increased, the water resistance first increased, then decreased. The highest tensile strength and elongation at break reached 5.26 MPa and 111.25%, respectively, and the highest contact angle was about 90.7°.

摘要

为了提高热塑性淀粉(TPS)的机械性能和耐水性,通过使用高碘酸钠氧化木质纤维素(LC)制备了一种新型的醛基木质纤维素(DLC)增强剂。然后,通过使用甘油作为增塑剂的挤出和注塑工艺制备了 DLC 增强 TPS 复合材料。通过 SEM 图像评估、机械性能、热稳定性和接触角的测试,对 DLC 和 LC 进行了 X 射线衍射(XRD)和扫描电子显微镜(SEM)的表征,并研究了 DLC 含量对 DLC/TPS 复合材料性能的影响。XRD 表明,由于 LC 的氧化损伤,DLC 的结晶度降低。SEM 表明,在低 DLC 含量下,DLC 在连续的 TPS 相中分散良好,这与良好的机械性能有关。DLC/TPS 复合材料的拉伸强度在 DLC 含量为 3wt.%时达到最大值,而 DLC/TPS 复合材料的断裂伸长率随 DLC 含量的增加而增加。DLC/TPS 复合材料的热稳定性优于纯 TPS。随着 DLC 含量的增加,耐水性先增加后降低。最高拉伸强度和断裂伸长率分别达到 5.26MPa 和 111.25%,最高接触角约为 90.7°。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf92/7397011/3b560dd7b74d/molecules-25-03236-g001.jpg

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