壳聚糖- cloisite -纳米复合材料对新鲜鸡蛋贮藏稳定性的影响

IF 2.7 3区 农林科学 Q3 ENGINEERING, CHEMICAL
Orhan Atakan, Cengiz Caner, Muhammed Yüceer
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引用次数: 0

摘要

如果在储存过程中不采取必要的注意措施,新鲜鸡蛋很快就会失去其高品质。对新鲜鸡蛋进行生物涂层可能是一个有价值的选择。本研究主要通过在壳聚糖生物涂层中添加不同的Cloisite clay (Cloisite 15A、20A和30B)来开发可持续的壳聚糖生物涂层,以寻求其对新鲜蛋壳保存性的增强作用。测量的变量包括失重(WL)、哈夫单位(HU)、蛋黄指数、pH值、可溶性固形物、相对打发能力和泡沫稳定性、颜色分析、脂质氧化、粘度和蛋壳破溃强度。这种涂层通过密封蛋壳的孔隙来提高蛋壳的可储存性,从而减少了破损和传质。因此,低WL出现在cloisite包覆组。第4周,壳聚糖- cloisite15a组合包被组的WL为3.63%,对照组为6.63%。壳聚糖- cloisite15a和壳聚糖- cloisite20a样品的HU(60.14)最高。壳聚糖- cloisite 30B(58.78),纯壳聚糖(53.85),而对照(45.60)的HU最低。TBARS测量结果如下:对照组1.01;壳聚糖0.61,壳聚糖- cloisite15a 0.39,壳聚糖- cloisite20a 0.42,壳聚糖- cloisite30b 0.47 mg丙二醛/kg。Cloisite15A对提高贮藏稳定性最有效,cloisite30b对提高断裂强度最有效。含有Cloisite (15A, 20B和30B)的生物涂层可以提高品质至少2周以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficacy of Chitosan-Cloisites—Nanocomposite as Sustainable Coatings on Storage Stability of Fresh Eggs

Fresh eggs can quickly lose their high quality if the necessary care is not taken during storage. Biocoating the fresh eggs may be a valuable option. The current study focused on developing sustainable chitosan biocoatings by adding different Cloisite clays (Cloisite 15A, 20A, and 30B) into chitosan biocoatings to seek enhancement effects on the fresh eggshell storability. The variables measured were weight loss (WL), Haugh unit (HU), yolk index, pH measurements, soluble solids, relative whipping capacity and foam stability, color analysis, lipid oxidation, viscosity, and eggshell breaking strength. The coatings increased the eggshell's storability by sealing its pores, which decreased breakage and minimized mass transfer. As a result, the lower WL occurred in the Cloisite-coated groups. The WL, which was 6.63% in the control group, was 3.63% in the group coated with chitosan-Cloisite15A combination at week 4. The HU of samples with chitosan-Cloisite15A and chitosan-Cloisite20A (60.14) had the highest HU, significantly. Chitosan-Cloisite 30B (58.78), pure chitosan (53.85), while the control (45.60) was the lowest HU. The TBARS values were measured as follows: control 1.01; chitosan 0.61, chitosan-Cloisite15A 0.39, chitosan-Cloisite20A 0.42, and chitosan-Cloisite30B 0.47 mg of malondialdehyde/kg. Cloisite15A were found to be the most effective for improving storage stability and Cloisite30 B for enhancing breaking strength. Biocoatings with Cloisite (15A, 20B, and 30B) could enhance qualities for at least 2 weeks longer.

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来源期刊
Journal of Food Process Engineering
Journal of Food Process Engineering 工程技术-工程:化工
CiteScore
5.70
自引率
10.00%
发文量
259
审稿时长
2 months
期刊介绍: This international research journal focuses on the engineering aspects of post-production handling, storage, processing, packaging, and distribution of food. Read by researchers, food and chemical engineers, and industry experts, this is the only international journal specifically devoted to the engineering aspects of food processing. Co-Editors M. Elena Castell-Perez and Rosana Moreira, both of Texas A&M University, welcome papers covering the best original research on applications of engineering principles and concepts to food and food processes.
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