Zhao Xiaoying, Anwar Ikra, Zhang Xin, Pellicciotti Alec, Storts Sam, Nagib David A, Vodovotz Yael
Department of Food Science and Technology, The Ohio State University, 2015 Fyffe Road, Columbus, Ohio 43210, United States.
William G. Lowrie Department of Chemical and Biomolecular Engineering, The Ohio State University, 151 W Woodruff Ave, Columbus, Ohio 43210, United States.
ACS Omega. 2021 Sep 16;6(38):24700-24708. doi: 10.1021/acsomega.1c03446. eCollection 2021 Sep 28.
Cellulose esters (CEs) are promising biodegradable substitutes for traditional petroleum-based plastic materials. Research on structure-property relationships of CEs is necessary to evaluate their suitability for industrial applications such as food packaging. Cellulose esters with different side-chain lengths were synthesized and studied. Their thermal and moisture barrier properties were characterized. Cellulose triheptanoate (CTH) was proved to have an optimal moisture barrier (WVTR = 0.31 g·mil/day/in.) and was used to blend with poly(3-hydroxybutyrate--3-hydroxyvalerate) (PHBV) and polylactic acid (PLA) bioplastics. CTH addition improved the PLA thermal stability, enhanced the ductility, and increased the moisture barrier by 32%, while it decreased the PHBV thermal stability, weakened the ductility, and reduced the moisture barrier by 90%. We demonstrated that by proper choice of the combination of CE and bioplastic, bioplastic blends with unique and useful synergistic properties can be obtained. These blends can potentially be used for commercial applications, such as biodegradable flexible packaging.
纤维素酯(CEs)是传统石油基塑料材料有前景的可生物降解替代品。研究CEs的结构-性能关系对于评估其在食品包装等工业应用中的适用性是必要的。合成并研究了具有不同侧链长度的纤维素酯。对它们的热阻隔和防潮性能进行了表征。已证明三庚酸纤维素(CTH)具有最佳的防潮性能(水蒸气透过率WVTR = 0.31 g·mil/天/英寸),并用于与聚(3-羟基丁酸酯-3-羟基戊酸酯)(PHBV)和聚乳酸(PLA)生物塑料共混。添加CTH提高了PLA的热稳定性,增强了延展性,并使防潮性提高了32%,而它降低了PHBV的热稳定性,削弱了延展性,并使防潮性降低了90%。我们证明,通过适当选择CE和生物塑料的组合,可以获得具有独特且有用协同性能的生物塑料共混物。这些共混物有可能用于商业应用,如可生物降解的软包装。