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Starch based active packaging film reinforced with empty fruit bunch (EFB) cellulose nanofiber

机译:空果束(EFB)纤维素纳米纤维增强的淀粉基活性包装膜

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摘要

Biopolymer active packaging is known to have low mechanical strength and highly brittle. Regardless to its disadvantage, polymers from natural sources have attracted serious attention since the non-renewable sources for example petroleum, the major precursor of plastic manufacturing become depleted. Starch-Chitosan for instance is a hybrid film that entirely green as it produced from a renewable material and totally degradable. The addition of chitosan in film packaging able to kill pathogen hence increases the food shelf life. Through nanotechnology advance, nanomaterial can be used for material reinforcement. Nowadays, greener approach could be applied by incorporating natural cellulose nanofiber into the film matrix. Oil palm empty fruit bunch (OPEFB) fiber that rich of cellulose contents could be treated chemically to purify the cellulose in the fiber. Cellulose fiber obtained was cut to a nano-size using acid hydrolysis. Transmission Electron Microscopy (T. E. M) obtained shown the nanofiber size was ranged between 1-100nm in diameter. Nanocomposite film formulation, was constructed by varying the cellulose nanofiber incorporation between 2-10% per weight of starch. The strength of the films was measured as well as antimicrobial properties. The addition of 2% cellulose nanofiber into the film matrix exhibits high tensile strength with 5.25Mpa compared to starch-chitosan hybrid film with 3.96Mpa. However, no significant improvement in tensile strength was distinguished beyond that ratio. Antimicrobial analysis shows that the addition of cellulose nanofiber could increase the inhibition effect towards gram-positive bacteria but not towards gram-negative bacteria. The addition of 2% cellulose nanofiber increased the inhibition diameter towards gram positive bacteria, Bacillus subtilis up to 33%. However, inhibition towards Bacillus subtilis decreased with the incorporation of more cellulose nanofiber. In gram-negative bacteria Escherichia coli, the addition of cellulose nanofiber does not give significant effect to bacterial. In General, the addition of the unique structure of cellulose nanofiber in the starch based polymer system could enhance the mechanical strength of the film and increase the inhibition of the gram positive bacteria.
机译:已知生物聚合物活性包装具有低机械强度和高度脆性。尽管有其不利之处,但由于不可再生资源(例如石油)已成为天然塑料的主要前身,因此,天然来源的聚合物引起了人们的极大关注。例如,淀粉-壳聚糖是一种混合膜,它由可再生材料制成,完全绿色,并且可完全降解。在薄膜包装中加入壳聚糖能够杀死病原体,因此可以延长食品的保质期。随着纳米技术的进步,纳米材料可用于材料增强。如今,可以通过将天然纤维素纳米纤维掺入薄膜基质中来采用更环保的方法。富含纤维素的油棕空果束(OPEFB)纤维可以进行化学处理,以纯化纤维中的纤维素。使用酸水解将获得的纤维素纤维切成纳米尺寸。所获得的透射电子显微镜(T.E.M)显示纳米纤维的尺寸在直径的1-100nm之间。通过在每重量淀粉的2-10%之间改变纤维素纳米纤维的掺入量来构建纳米复合膜制剂。测量了薄膜的强度以及抗菌性能。与具有3.96Mpa的淀粉-壳聚糖杂化膜相比,向膜基质中添加2%纤维素纳米纤维显示出5.25Mpa的高拉伸强度。然而,超过该比例,拉伸强度没有显着改善。抗菌分析表明,添加纤维素纳米纤维可以增强对革兰氏阳性菌的抑制作用,而对革兰氏阴性菌没有抑制作用。 2%纤维素纳米纤维的添加使对革兰氏阳性细菌枯草芽孢杆菌的抑制直径增加到33%。但是,随着更多纤维素纳米纤维的加入,对枯草芽孢杆菌的抑制作用降低。在革兰氏阴性细菌大肠杆菌中,添加纤维素纳米纤维不会对细菌产生明显影响。通常,在基于淀粉的聚合物体系中添加纤维素纳米纤维的独特结构可以增强薄膜的机械强度,并增加对革兰氏阳性细菌的抑制作用。

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