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Polymeric-based multilayer food packaging films for pressure-assisted and microwave-assisted thermal sterilization.

机译:用于压力辅助和微波辅助热灭菌的基于聚合物的多层食品包装薄膜。

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摘要

Advanced food technologies such as Microwave-Assisted (MATS) and Pressure-Assisted Thermal Sterilization (PATS) of foods have the advantage of reducing processing times and the detrimental effects on food quality. However, these processes require food to be processed inside their packaging and thus, the interaction between food and its packaging during processing must be studied to ensure package integrity. Gas barrier, thermal, morphological, and free volume properties are critical packaging characteristics that help determine packaging selection for the advanced thermal processes. Selecting the appropriate packaging material will help extend the shelf-life of foods processed with such technologies. The overall objective of this study was to investigate the performance of multilayered polymeric films after MATS and PATS in terms of gas barrier, morphological and free volume properties. Influence of microwave processing on silicon (Si) migration from metal-coated multilayer polymeric films into selected food simulating liquids (FSL, water and 3% acetic acid) using inductively coupled plasma-mass spectroscopy (ICP-MS), as compared with conventional thermal processing was investigated.;Polyethylene terephthalate (PET) and ethylene vinyl alcohol (EVOH) based multilayered structures were filled with model foods (mashed potato and water) and subjected to MATS and PATS, respectively. MATS was performed in a 40kW 915MHz single mode semi-continuous system. PATS was carried out in a 1.7 L cylindrical high pressure chamber with processing conditions of 680 MPa for 3 min at 105°C. X-ray diffraction and positron annihilation lifetime spectroscopy (PALS) were applied to investigate film morphology and free volume characteristics, respectively.;In conclusion, MATS processing had a lesser influence on gas barrier property of PET based multilayer structures compared to the conventional retort process. EVOH based structures could be a suitable for PATS applications in terms of gas barrier requirements. Additionally, X-ray diffraction and PALS are powerful techniques that can be used in combination to help understand the gas barrier changes after food sterilization operations. No significant differences (P>0.05) between the level of Si migration from films to FSL during microwave processing as compared to the retort processing. This work provides the basis for understanding the gas-barrier changes after MATS and PATS application.
机译:先进的食品技术,例如食品的微波辅助(MATS)和压力辅助热灭菌(PATS),具有减少加工时间和对食品质量的不利影响的优势。但是,这些过程要求将食物在其包装内进行处理,因此,必须研究处理过程中食物与其包装之间的相互作用,以确保包装的完整性。阻气性,热学,形态和自由体积特性是至关重要的包装特征,有助于确定先进热处理工艺的包装选择。选择合适的包装材料将有助于延长使用此类技术加工的食品的保质期。这项研究的总体目标是从气体阻隔,形态和自由体积特性方面研究MATS和PATS之后的多层聚合物膜的性能。与传统热法相比,微波处理对使用电感耦合等离子体质谱法(ICP-MS)的硅(Si)从金属涂覆的多层聚合物薄膜迁移到选定的食品模拟液体(FSL,水和3%乙酸)的影响对聚对苯二甲酸乙二酯(PET)和基于乙烯乙烯醇(EVOH)的多层结构填充模型食品(土豆泥和水),分别进行MATS和PATS处理。 MATS在40kW 915MHz单模半连续系统中执行。 PATS在1.7 L圆柱形高压室中于680 MPa的处理条件下在105°C下进行3分钟。用X射线衍射和正电子an没寿命光谱法(PALS)分别研究了薄膜的形貌和自由体积特性。总之,MATS工艺对PET基多层结构的阻气性能的影响要小于常规的干馏工艺。 。就气体阻隔要求而言,基于EVOH的结构可能适合PATS应用。此外,X射线衍射和PALS是强大的技术,可以结合使用以帮助了解食品灭菌操作后气体阻隔的变化。与蒸煮处理相比,微波处理过程中从薄膜向FSL的硅迁移水平之间无显着差异(P> 0.05)。这项工作为了解应用MATS和PATS后气体屏障的变化提供了基础。

著录项

  • 作者

    Dhawan, Sumeet.;

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Agriculture Food Science and Technology.;Engineering Packaging.;Engineering Agricultural.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:34

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