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首页> 外文期刊>Journal of Applied Electrochemistry >Electrochemical characterisation of protective organic coatings for food packaging
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Electrochemical characterisation of protective organic coatings for food packaging

机译:食品包装用有机保护涂层的电化学表征

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摘要

A very common material for food packaging is steel, in the form of metallic containers (cans), in particular for beverage packaging. The corrosion degradation of the packaging must be carefully controlled, not only because the packaging integrity must be preserved, but also in order to avoid any significant contamination of the food or drink, compromising the flavour. In order to increase the coating performance and the food compatibility, new organic coatings are under development with very high protective properties, with the final aim to increase the shelf life of the product. An electrochemical characterisation is often used to study the protective performance of organic coatings on metal substrate for various applications. Some different coatings for food packaging were considered in the present study, including materials with different chemical composition and different pigments content. The protective properties were quantified using electrochemical impedance spectroscopy (EIS) measurements, comparing the electrochemical substrate activity with electrochemical noise (EN) and scanning Kelvin probe (SKP) measurements. The influence of mechanical deformations on the protective properties was also investigated. The results obtained on the studied coatings confirmed the validity of the electrochemical approach and showed that, in general, the coatings containing pigments (TiO2) have better performance than clearcoats, while comparing the different polymers, epoxy-phenolic coatings have a better corrosion protection than epoxy-melamine coatings.
机译:用于食品包装的非常常见的材料是金属容器(罐)形式的钢,特别是用于饮料包装的钢。必须仔细控制包装的腐蚀降解,这不仅是因为必须保持包装的完整性,而且还在于避免食品或饮料的任何重大污染,从而损害风味。为了提高涂层性能和食品相容性,正在开发具有很高保护性能的新型有机涂层,其最终目的是延长产品的保质期。电化学表征通常用于研究金属基材上有机涂层对各种应用的防护性能。本研究考虑了一些用于食品包装的涂料,包括具有不同化学成分和颜料含量的材料。使用电化学阻抗谱(EIS)测量对保护性能进行量化,将电化学底物活性与电化学噪声(EN)和扫描开尔文探针(SKP)测量进行比较。还研究了机械变形对防护性能的影响。在研究的涂料上获得的结果证实了电化学方法的有效性,并表明,通常,含颜料(TiO2)的涂料比透明涂料具有更好的性能,而与不同的聚合物进行比较,环氧酚醛涂料的防腐性能优于透明涂料。环氧三聚氰胺涂料。

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