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使用基于烷基多糖苷的泡沫对模型不锈钢表面上的孢子进行去污。

Decontamination of Spores on Model Stainless-Steel Surface by Using Foams Based on Alkyl Polyglucosides.

机构信息

CNRS, INRAE, Centrale Lille, UMET, University Lille, 369 Rue Jules Guesde, F-59000 Lille, France.

出版信息

Molecules. 2023 Jan 17;28(3):936. doi: 10.3390/molecules28030936.

Abstract

In the food industry, the surfaces of processing equipment are considered to be major factors in the risk of food contamination. The cleaning process of solid surfaces is essential, but it requires a significant amount of water and chemicals. Herein, we report the use of foam flows based on alkyl polyglucosides (APGs) to remove spores of on stainless-steel surfaces as the model-contaminated surface. Sodium dodecyl sulfate (SDS) was also studied as an anionic surfactant. Foams were characterized during flows by measuring the foam stability and the bubble size. The efficiency of spores' removal was assessed by enumerations. We showed that foams based on APGs could remove efficiently the spores from the surfaces, but slightly less than foams based on SDS due to an effect of SDS itself on spores removal. The destabilization of the foams at the end of the process and the recovery of surfactant solutions were also evaluated by using filtration. Following a life cycle assessment (LCA) approach, we evaluated the impact of the foam flow on the global environmental footprint of the process. We showed significant environmental impact benefits with a reduction in water and energy consumption for foam cleaning. APGs are a good choice as surfactants as they decrease further the environmental impacts.

摘要

在食品工业中,加工设备的表面被认为是食品污染风险的主要因素。固体表面的清洁过程至关重要,但需要大量的水和化学品。在此,我们报告了使用基于烷基多糖苷(APG)的泡沫流来去除不锈钢表面上的孢子作为模型污染表面。还研究了十二烷基硫酸钠(SDS)作为阴离子表面活性剂。通过测量泡沫稳定性和气泡大小来表征流动过程中的泡沫。通过计数评估孢子去除的效率。我们表明,基于 APG 的泡沫可以有效地从表面去除孢子,但由于 SDS 本身对孢子去除的影响,略低于基于 SDS 的泡沫。还通过过滤评估了处理结束时泡沫的失稳和表面活性剂溶液的回收情况。采用生命周期评估(LCA)方法,我们评估了泡沫流对工艺全球环境足迹的影响。我们表明,泡沫清洁用水量和能源消耗的减少带来了显著的环境影响效益。APG 是一种很好的表面活性剂选择,因为它们进一步降低了环境影响。

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