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Sterilization of plastic containers using electron beam irradiation directed through the opening

机译:使用穿过开口的电子束辐射对塑料容器进行灭菌

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Aims: Studies were performed to demonstrate the efficacy of a novel electron beam irradiation system for the on-line sterilization of polymeric containers using energetic electrons directed through the container opening. Methods and Results: the Distribution of dosage delivered during conveyance beneath the electron beam treatment system was determined for two sizes (8 or 16 ounces) of high-density polyethylene (HDPE) blow-moulded bottles. The biological effects of treatment were then determined using Bacillus pumilus ATCC 27142 spores inoculated as 10 μl droplets dried (i) onto the surface of flat coupons of the high-density polyethylene bottle material, and (ii) onto the region of lowest delivered dose (the bottom side wall) within each bottle. The inactivation obtained was determined by examining the level of survival after swab recovery of the inoculated spores, with reference to the level recovered from untreated control samples. Conclusions: The inactivation of B. pumilus spores during treatment was reproducible and proportional to the applied dose. In each instance, the logarithm of the surviving fraction of spores was well fitted by linear regression models and in good general agreement with values reported for inactivation of the same organism using gamma irradiation. Significance and Impact of the Study: The results of this work demonstrate the potential of a new physical method capable of high throughput for in-line sterilization of polymeric containers. The ability of the process to eliminate the washing step involved with traditional chemical sterilants, such as hydrogen peroxide, greatly reduces the size the environmental impact of these systems.
机译:目的:进行研究以证明新型电子束辐照系统使用通过容器开口定向的高能电子对聚合物容器进行在线灭菌的功效。方法和结果:确定了两种尺寸(8或16盎司)的高密度聚乙烯(HDPE)吹塑瓶在电子束处理系统下运输过程中传递的剂量分布。然后使用接种的枯草芽孢杆菌ATCC 27142孢子以10μl液滴进行干燥,以确定其生物学作用(i)在高密度聚乙烯瓶材料的平坦试样表面上,以及(ii)最低输送剂量区域(每个瓶子内的底部侧壁)。通过检查拭子回收接种的孢子后的存活水平来确定获得的失活,参考从未处理的对照样品中回收的水平。结论:治疗期间短小芽孢杆菌孢子的失活是可再现的,并且与所用剂量成正比。在每种情况下,孢子存活分数的对数均通过线性回归模型很好地拟合,并且与报道的使用伽马射线辐照灭活同一生物的值基本吻合。研究的意义和影响:这项工作的结果证明了一种新的物理方法的潜力,该方法能够高通量对聚合物容器进行在线灭菌。该方法消除了传统化学消毒剂(例如过氧化氢)所涉及的洗涤步骤的能力,大大减小了这些系统对环境的影响。

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