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Innovative Control of Biofilms on Stainless Steel Surfaces Using Electrolyzed Water in the Dairy Industry

机译:乳制品电解水在不锈钢表面上生物膜的创新控制

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摘要

Biofilms on food-contact surfaces can lead to recurrent contamination. This work aimed to study the biofilm formation process on stainless steel plates used in the dairy industry: 304 surface finish 2B and electropolished; and the effect of a cleaning and disinfection process using alkaline (AEW) and neutral (NEW) electrolyzed water. Milk fouling during heat processing can lead to type A or B deposits, which were analyzed for composition, surface energy, thickness, and roughness, while the role of raw milk microbiota on biofilm development was investigated. Bacteria, yeasts, and lactic acid bacteria were detected using EUB-338, PF2, and Str-493 probes, respectively, whereas Lis-637 probe detected Listeria sp. The genetic complexity and diversity of biofilms varied according to biofilm maturation day, as evaluated by 16S rRNA gene sequence, denaturing gradient gel electrophoresis, and fluorescence in situ hybridization microscopy. From analysis of the experimental designs, a cleaning stage of 50 mg/L NaOH of AEW at 30 °C for 10 min, followed by disinfection using 50 mg/L total available chlorine of NEW at 20 °C for 5 min is a sustainable alternative process to prevent biofilm formation. Fluorescence microscopy was used to visualize the effectiveness of this process.
机译:食物接触表面上的生物膜会导致复发污染。这项工作旨在研究乳制品行业中使用的不锈钢板上的生物膜形成过程:304表面饰面2B和电解研;用碱(新闻)和中性(新)电解水的清洁和消毒过程的效果。热处理期间的牛奶污垢可以导致A或B沉积物,分析了组成,表面能,厚度和粗糙度,而原料乳微生物群对生物膜发育的作用。使用Eub-338,PF2和STR-493探针检测细菌,酵母和乳酸菌,而LIS-637探针检测到李斯特里亚SP。生物膜的遗传复杂性和多样性根据生物膜成熟日而变化,如16S rRNA基因序列评估,变性梯度凝胶电泳和原位杂交显微镜的荧光。根据实验设计的分析,30℃的10mAg / L NaOH的清洁阶段为10分钟,然后使用50mg / L总可选氯在20℃下进行5分钟的消毒5分钟是可持续的替代品方法以防止生物膜形成。荧光显微镜用于可视化该过程的有效性。

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