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流体流动对食品加工系统中微生物生长和分布的影响。

The Impact of Fluid Flow on Microbial Growth and Distribution in Food Processing Systems.

作者信息

Al-Sharify Zainab Talib, Al-Najjar Shahad Zuhair, Naser Zainab A, Alsherfy Zinah Amer Idrees, Onyeaka Helen

机构信息

Department of Oil and Gas Refining Engineering, Al Hikma University College, Baghdad 10052, Iraq.

School of Chemical Engineering, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.

出版信息

Foods. 2025 Jan 26;14(3):401. doi: 10.3390/foods14030401.

Abstract

This article examines the impact of fluid flow dynamics on microbial growth, distribution, and control within food processing systems. Fluid flows, specifically laminar and turbulent flows, significantly influence microbial behaviors, such as biofilm development and microbial adhesion. Laminar flow is highly conducive to biofilm formation and microbial attachment because the flow is smooth and steady. This smooth flow makes it much more difficult to sterilize the surface. Turbulent flow, however, due to its chaotic motion and the shear forces that are present, inhibits microbial growth because it disrupts attachment; however, it also has the potential to contaminate surfaces by dispersing microorganisms. Computational fluid dynamics (CFD) is highlighted as an essential component for food processors to predict fluid movement and enhance numerous fluid-dependent operations, including mixing, cooling, spray drying, and heat transfer. This analysis underscores the significance of fluid dynamics in controlling microbial hazards in food settings, and it discusses some interventions, such as antimicrobial surface treatments and properly designed equipment. Each process step from mixing to cooling, which influences heat transfer and microbial control by ensuring uniform heat distribution and optimizing heat removal, presents unique fluid flow requirements affecting microbial distribution, biofilm formation, and contamination control. Food processors can improve microbial management and enhance product safety by adjusting flow rates, types, and equipment configurations. This article helps provide an understanding of fluid-microbe interactions and offers actionable insights to advance food processing practices, ensuring higher standards of food safety and quality control.

摘要

本文探讨了流体流动动力学对食品加工系统中微生物生长、分布和控制的影响。流体流动,特别是层流和湍流,会显著影响微生物行为,如生物膜形成和微生物粘附。层流非常有利于生物膜形成和微生物附着,因为其流动平稳。这种平稳的流动使得对表面进行消毒变得困难得多。然而,湍流由于其混沌运动和存在的剪切力,会抑制微生物生长,因为它会破坏附着;不过,它也有可能通过分散微生物来污染表面。计算流体动力学(CFD)被视为食品加工商预测流体运动和优化众多依赖流体的操作(包括混合、冷却、喷雾干燥和热传递)的重要组成部分。该分析强调了流体动力学在控制食品环境中微生物危害方面的重要性,并讨论了一些干预措施,如抗菌表面处理和设计合理的设备。从混合到冷却的每个工艺步骤,通过确保均匀的热分布和优化热量去除来影响热传递和微生物控制,都提出了影响微生物分布、生物膜形成和污染控制的独特流体流动要求。食品加工商可以通过调整流速、类型和设备配置来改善微生物管理并提高产品安全性。本文有助于增进对流体与微生物相互作用的理解,并提供可行的见解以推进食品加工实践,确保更高标准的食品安全和质量控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3f5/11817348/b2a4db5c2cd3/foods-14-00401-g001.jpg

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