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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Influence of Nontoxic Magnetic Cellulose Nanofibers on Chitosan Based Edible Nanocoating: A Candidate for Improved Mechanical, Thermal, Optical, and Texture Properties
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Influence of Nontoxic Magnetic Cellulose Nanofibers on Chitosan Based Edible Nanocoating: A Candidate for Improved Mechanical, Thermal, Optical, and Texture Properties

机译:无毒磁性纤维素纳米纤维对壳聚糖基可食用纳米织物的影响:改进机械,热,光学和纹理性能的候选者

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摘要

The present work demonstrates the formulation of cellulose nanofiber (CNF) or magnetic cellulose nanofiber (mgCNF) dispersed chitosan-based edible nanocoating with superior mechanical, thermal, optical, and texture properties. The fabrication of mgCNF is successfully achieved through a single-step coprecipitation route, where iron particles get adsorbed onto CNF. The thermal stability of mgCNF is improved considerably, where similar to 17% reduction in weight is observed, whereas CNF degrades completely under identical conditions. TGA analysis shows that there is an improvement in thermal stability for both CNF- and mgCNF-reinforced CS nanocoatings, where mgCNF provides more heat dimensional stability than CNF-dispersed CS nanocoatings. Further, the edible nanocoatings are stable even at the temperature of heat treatment such as food sterilization. The mechanical property of the mgCNF-dispersed chitosan (CS) shows a remarkable improvement in tensile strength (57.86 +/- 14 MPa) and Young's modulus (2348.52 +/- 276 MPa) in comparison to neat CS (6.27 +/- 0.7 and 462.36 +/- 64 MPa, respectively). To determine the developed materials to be safe for food, the quantification of iron is made by using ICP-MS technique. It is worth mentioning that mgCNF-coated CS helps in improving the texture of cut pineapples in comparison with uncoated pineapple slices under ambient conditions.
机译:本作者表明纤维素纳米纤维(CNF)或磁性纤维素纳米纤维(MGCNF)分散的壳聚糖的可食用纳米纤维配制,具有优异的机械,热,光学和质地性能。通过单步共沉淀途径成功地实现了MGCNF的制造,其中铁颗粒被吸附在CNF上。显着改善MGCNF的热稳定性,观察到类似于17%的重量,而CNF在相同的条件下完全降解。 TGA分析表明,CNF和MGCNF增强CS纳米型含有的热稳定性有所改善,其中MGCNF提供比CNF分散的CS纳米型更多的热尺寸稳定性。此外,即使在诸如食物灭菌的热处理的温度下,可食用的纳米织物也是稳定的。 MgCNF分散的壳聚糖(CS)的力学性质显示出抗拉强度(57.86 +/- 14MPa)和杨氏模量(2348.52 +/- 276MPa)的显着改善,与整齐的Cs相比(6.27 +/- 0.7和462.36 +/- 64 MPa)。为了确定发发的食品是安全的,使用ICP-MS技术进行铁的定量。值得一提的是,MGCNF涂层的CS有助于改善切割菠萝的纹理,与环境条件下未涂覆的菠萝切片相比。

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