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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Bionanocomposites of thermoplastic starch reinforced with bacterial cellulose nanofibres: Effect of enzymatic treatment on mechanical properties
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Bionanocomposites of thermoplastic starch reinforced with bacterial cellulose nanofibres: Effect of enzymatic treatment on mechanical properties

机译:细菌纤维素纳米纤维增强的热塑性淀粉的Bionanocomposites:酶处理对机械性能的影响

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摘要

Acetobacter xylinum bacterial cellulose (BC) was used as reinforcement agent in glycerol-plasticized cassava starch bionanocomposites before and after treatment with Trichoderma reesei endoglucanases. Hydrolysis for 60 min with an enzyme loading of 10 mg of protein per gram of substrate decreased the degree of polymerization of cellulose without changing its crystallinity index or promoting a significant mass loss. However, the mechanical properties of the partially hydrolysed BC nanofibres were outstanding, The elastic modulus of the bionanocomposite (575.7 ± 166.7 MPa) was seventeen times higher than that of the starch matrix (33.4 ± 4.3 MPa) and four times higher than that of the film containing untreated fibres (140.6 ±40.3 MPa). Likewise, the tensile strength (8.45 ± 2.35 MPa) was increased by a factor of eight in relation to the former (1.09 ±0.39 MPa) and almost doubled in relation to the latter (4.15 ± 0.66 MPa). Hence, BC nanofibres were shown to be excellent reinforcement agents for the production of starch-based bionanocomposites.
机译:在用里氏木霉内切葡聚糖酶治疗之前和之后,木醋杆菌细菌纤维素(BC)被用作甘油增塑的木薯淀粉生物复合材料的增强剂。在每克底物中加入10毫克蛋白质的酶后,水解60分钟可降低纤维素的聚合度,而不会改变其结晶度指数或不引起明显的质量损失。然而,部分水解的BC纳米纤维的机械性能非常出色。bionanocomposite的弹性模量(575.7±166.7 MPa)比淀粉基体(33.4±4.3 MPa)高17倍,比淀粉基体高4倍。包含未处理纤维(140.6±40.3 MPa)的薄膜。同样,抗拉强度(8.45±2.35 MPa)相对于前者(1.09±0.39 MPa)增加了八倍,而相对于后者(4.15±0.66 MPa)几乎增加了一倍。因此,显示出BC纳米纤维是生产淀粉基生物纳米复合材料的极佳增强剂。

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