Thirteenth National Conference on Packaging Engineering (TNCPE 2010 E-BOOK)

Wuhan,China,8.21-8.26,2010

ISBN: 978-1-935068-22-8 Scientific Research Publishing, USA

E-Book 456pp Pub. Date: August 2010

Category: Engineering

Price: $80

Title: The Effect of Irradiation on Barrier and Migration of PVDC for Food Packaging Film under Low Dose
Source: Thirteenth National Conference on Packaging Engineering (TNCPE 2010 E-BOOK) (pp 110-115)
Author(s): Jinzhou Chen, College of Material Science & Engineering, Zhengzhou University, Zhengzhou, 450001, China
Jintao Wang, College of Material Science & Engineering, Zhengzhou University, Zhengzhou, 450001, China
Kun Wang, College of Material Science & Engineering, Zhengzhou University, Zhengzhou, 450001, China
Heyan Zhang, College of Material Science & Engineering, Zhengzhou University, Zhengzhou, 450001, China
Mingjun Niu, College of Material Science & Engineering, Zhengzhou University, Zhengzhou, 450001, China
Xinfa Li, College of Material Science & Engineering, Zhengzhou University, Zhengzhou, 450001, China
Abstract: It was investigated that the effect of γ-radiation under low dose on the barrier, migration (forAbstract: The nonlinear dynamics equation is developed for suspension-type package system with the rubberwater, 20%alcohol, 4%acetic acid and n-hexane respectively), oxygen permeability, tensile properties andAbstract: The nonlinear dynamics equation is developed for suspension-type package system with the rubberheat shrinkable of Polyvinylidene Chloride (PVDC) film as food packaging under the lower dose (≤10kGy,Abstract: The nonlinear dynamics equation is developed for suspension-type package system with the rubberthat is in the level of the food radiation sterilization). It was shown that: the effect of the radiation dose onAbstract: The nonlinear dynamics equation is developed for suspension-type package system with the rubberthe heat shrinkable and tensile properties of PVDC film was little; when the dose was ≥7.5kGy, the barierAbstract: The nonlinear dynamics equation is developed for suspension-type package system with the rubberto oxygen, water, 20%alcohol, 4%acetic acid and n-hexane was improved respectively, while the totalAbstract: The nonlinear dynamics equation is developed for suspension-type package system with the rubbervolume of migration for these food simulacrums was increased respectively with increasing the radiationAbstract: The nonlinear dynamics equation is developed for suspension-type package system with the rubberdose.
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