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PACKAGE HEADSPACE DYNAMICS FOR BABY CORN UNDER MODIFIED ATMOSPHERE PACKAGING WITH MACROPERFORATIONS

机译:带有宏观穿孔的改进型大气包装下婴儿玉米的包装顶面动力学

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摘要

Baby corn is highly perishable and requires appropriate postharvest technologies such as modified atmosphere packaging (MAP) to extend its shelf ife and maintain the nutritional content. However, MAP requires repetitive experimentation to arrive at suitable desired in-pack partial pressures of O2 and CO2 for application of appropriate MAP mode viz. nonperforated, macroperforated or microperforated one. Microperforated MAP is an expensive proposition and so far has limited commercial applicability, except for high-value commodities; therefore, macroperforated MAP is being tried to achieve higher gaseous diffusion across the film packages. Predictive modeling represents a physical phenomenon by means of mathematical equations; whose numerical solution can reliably predict transient and steady-state parameters in a dynamic system and can avoid the need of repetitive experimentation. However, representation of the respiratory behavior of a crop is also of utmost importance as wrong selection or very straightforward assumptions can lead to inadequate predictions. In this study, the respiratory behavior and associated inhibition by CO2 as per established enzyme kinetics theory was first assessed within the temperature range of 5–15C for baby corn; which was then used to model-predict the in-pack partial pressures of O2 and CO2 at 10 and 15C; in nonperforated and macroperforated polypropylene film packages; utilizing baby corn, polymeric film, package and the storage environment parameters as input. Model validation during actual storage at 10 and 15C indicated that the model-predicted, in-pack partial pressures of O2 and CO2 agreed fairly well with the experimental observations at the selected temperatuers, which showed the appropriateness of the evaluated inhibitory mechanism of headspace CO2.
机译:婴儿玉米极易腐烂,需要适当的收获后技术,例如气调包装(MAP)才能延长其货架期并保持营养含量。但是,MAP需要重复实验才能达到适用的MAP模式即O2和CO2的合适的包装内期望分压。无孔,大孔或微孔的一种。微孔MAP是一项昂贵的提议,到目前为止,除高价值商品外,其商业应用性有限。因此,正在尝试使用大孔MAP来实现更高的气体扩散跨膜包装。预测建模通过数学方程式表示物理现象;其数值解可以可靠地预测动态系统中的瞬态和稳态参数,并且可以避免重复实验。然而,农作物呼吸行为的表现也非常重要,因为错误的选择或非常简单的假设都可能导致预测不足。在这项研究中,按照既定的酶动力学理论,婴儿玉米的呼吸行为和对CO2的相关抑制作用首先是在5-15°C的温度范围内评估的;然后将其用于模型预测10和15摄氏度时O2和CO2的包装内分压;在无孔和大孔聚丙烯薄膜包装中;利用婴儿玉米,聚合物薄膜,包装和存储环境参数作为输入。在10和15°C的实际储存过程中进行的模型验证表明,模型预测的包装中O2和CO2的分压与所选温度下的实验观测值非常吻合,这表明所评估的顶空CO2抑制机制的适当性。

著录项

  • 来源
    《Journal of food process engineering》 |2012年第2期|p.191-208|共18页
  • 作者单位

    1Central Institute of Post-harvest Engineering and Technology, Punjab Agricultural University Campus, Ludhiana 141004, India2Water Technology Centre for Eastern Region, Chandershekharpur, Bhubaneshwar, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 23:23:55

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