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利乐(Tetra Pak):颗粒食品热处理的内在奥秘白皮书(中译版)(21页).pdf

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1、 WHITE PAPER The inside story on heat treatment of particulate foods New findings from Tetra Pak January 2016 2(21)CONTENTS Introduction 3 Who is this booklet for?3 The heat transfer challenge 3 Tetra Paks expertise 3 Particles and product quality 6 What are particles and why are they so important?6

2、 Particle characteristics 6 Particle integrity 6 Particles in motion 7 The heat treatment challenge 7 Heat transfer 8 Heat transfer area 8 Particle temperature 8 Heat transfer models and predictability 9 Functions of the heat transfer coefficients 10 Particle experiments 11 Results 15 Calculation to

3、ol updates 18 Calculation tool validation 18 Implications for the food processing industry 20 Tetra Pak your processing partner 21 3(21)Introduction Who is this booklet for?This booklet is for anyone who works in the food processing industry,and who is interested in staying abreast of how particles

4、in food affect and are affected by heat treatment.It is especially relevant to those with technical responsibilities in R&D centres,as well as those with operational responsibility for processing lines and plants.It is also relevant to those with responsibility for developing new product and validat

5、ing recipes involving particles.The heat transfer challenge The primary topic we treat here is the issue of heat treatment of foods that contain particles processed in a continuous system.This is complex and makes it difficult to calculate and design the heat treatment system.New research findings f

6、rom Tetra Pak clearly demonstrate how particles affect different heat transfer processes in a heat treatment system sometimes going against commonly accepted beliefs.Findings from extensive experiments run by our expert group have revealed that it is now possible,from a thermal point of view,to calc

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本文主要讨论了食品加工行业中颗粒食品的热处理问题。文章指出,颗粒食品的加工过程中,颗粒的存在对热传递过程有显著影响,这使得热处理系统的计算和设计变得复杂。Tetra Pak通过大量实验研究,揭示了颗粒对热传递过程的影响,并建立了相应的计算模型。这些模型能够准确预测颗粒食品的热处理效果,从而优化热处理系统的设计。文章还指出,颗粒的存在可以提高热传递效率,但同时也增加了压力损失。因此,在设计热处理系统时,需要综合考虑颗粒的尺寸、形状和浓度等因素,以实现既安全又高效的热处理过程。
颗粒食品热处理挑战是什么? 颗粒特性如何影响热传递? 如何优化颗粒食品的热处理过程?
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