首页> 外文期刊>Journal of Food Science >Development of Titanium Dioxide (TiO_2) Nanocoatings on Food Contact Surfaces and Method to Evaluate Their Durability and Photocatalytic Bactericidal Property
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Development of Titanium Dioxide (TiO_2) Nanocoatings on Food Contact Surfaces and Method to Evaluate Their Durability and Photocatalytic Bactericidal Property

机译:食品接触表面二氧化钛(TiO_2)纳米涂层的开发及评估其耐久性和光催化杀菌性能的方法

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Titanium dioxide (TiO_2) is a well-known photocatalyst for its excellent bactericidal property under UVA light. The purpose of this study was to develop physically stable TiO_2 coatings on food contact surfaces using different binding agents and develop methods to evaluate their durability and microbicidal property. Several types of organic and inorganic binders such as polyvinyl alcohol, polyethylene glycol, polyurethane, polycrylic, sodium and potassium silicates, shellac resin, and other commercial binders were used at 1:1 to 1:16 nanoparticle to binder weight ratios to develop a formulation for TiO_2 coating on stainless steel surfaces. Among the tested binders, polyurethane, polycrylic, and shellac resin were found to be physically more stable when used in TiO_2 coating at 1:4 to 1:16 weight ratio. The physical stability of TiO_2 coatings was determined using adhesion strength and scratch hardness tests by following standard ASTM procedures. Further, wear resistance of the coatings was evaluated based on a simulated cleaning procedure used in food processing environments. TiO_2 coating with polyurethane at a 1:8 nanoparticle to binder weight ratio showed the highest scratch hardness (1.08 GPa) followed by coating with polycrylic (0.68 GPa) and shellac (0.14 GPa) binders. Three different techniques, namely direct spreading, glass cover-slip, and indented coupon were compared to determine the photocatalytic bactericidal property of Ti)_2 coatings against Escherichia coli 0157:H7 at 2 mW/cm~2 UVA light intensity. Under the tested conditions, the indented coupon technique was found to be the most appropriate method to determine the bactericidal property of TiO_2 coatings and showed a reduction of 3.5 log CFU/cm~2 in 2 h.
机译:二氧化钛(TiO_2)是众所周知的光催化剂,在UVA光下具有出色的杀菌性能。这项研究的目的是使用不同的粘合剂在食品接触表面上开发出物理稳定的TiO_2涂层,并开发出评估其耐久性和杀菌性能的方法。以纳米粒子与粘合剂的重量比为1:1至1:16的比例使用几种类型的有机和无机粘合剂,例如聚乙烯醇,聚乙二醇,聚氨酯,聚丙烯酸,硅酸钠和钾硅酸盐,虫胶树脂和其他市售粘合剂,以开发配方用于不锈钢表面的TiO_2涂层。在测试的粘合剂中,发现聚氨酯,聚丙烯酸和虫胶树脂在重量比为1:4至1:16的TiO_2涂料中使用时,在物理上更稳定。 TiO_2涂层的物理稳定性是通过按照标准ASTM程序进行的粘合强度和划痕硬度测试确定的。此外,基于食品加工环境中使用的模拟清洁程序评估了涂层的耐磨性。以纳米颗粒与粘合剂的重量比为1:8的聚氨酯进行的TiO_2涂层表现出最高的划痕硬度(1.08 GPa),然后是多丙烯酸(0.68 GPa)和虫胶(0.14 GPa)的涂层。比较了三种不同的技术,即直接铺展,玻璃盖玻片和锯齿状试样,以确定Ti)_2涂层在2 mW / cm〜2 UVA光强度下对大肠杆菌0157:H7的光催化杀菌性能。在试验条件下,压痕试样技术是确定TiO_2涂层杀菌性能的最合适方法,并在2 h内降低了3.5 log CFU / cm〜2。

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