Waldhans Claudia, Hebel Martin, Herbert Ulrike, Spoelstra Paul, Barbut Shai, Kreyenschmidt Judith
Institute of Animal Science, University of Bonn, Katzenburgweg 7-9, 53115 Bonn, Germany.
Dr. Berns Laboratorium GmbH & Co. KG, Bendschenweg 36, 47506 Neukirchen-Vluyn, Germany.
J Food Sci Technol. 2023 Oct;60(10):2581-2590. doi: 10.1007/s13197-023-05778-0. Epub 2023 Jul 6.
Different conveyor belt materials used by the meat and other food industries were compared, regarding their cleanability as bacterial reduction rates in relation to their surface topography. Eleven thermoplastic polymers, four stainless steels, and five aluminized nanostructured surfaces were investigated under laboratory conditions. Cleanings were conducted with water only, and with an alkaline foam detergent. Overall, scanning electron microscopy revealed remarkable differences in the surface topography of the tested surfaces. Water cleaning results showed that nanostructured aluminized surfaces achieved significantly higher cleanability rates compared to the eight thermoplastic surfaces, as well as the glass-bead blasted rough stainless steel. Thermoplastic surfaces showed overall low cleanability rates when cleaned with alkaline detergent, while stainless steel and nanoporous aluminum showed high variations. Overall, nanoporous aluminum showed promising results as it can be used to coat conveyor belts. However, compatibility with cleaning detergent and sensitivity to scratches must be further investigated. Overall, it can be concluded that cleanability is not only influenced by surface roughness, but also by the overall surface finish, scratches, and defects.
The online version contains supplementary material available at 10.1007/s13197-023-05778-0.
对肉类和其他食品行业使用的不同输送带材料进行了比较,考察了其清洁能力,即与表面形貌相关的细菌减少率。在实验室条件下研究了11种热塑性聚合物、4种不锈钢和5种镀铝纳米结构表面。仅用水和碱性泡沫洗涤剂进行清洁。总体而言,扫描电子显微镜显示测试表面的表面形貌存在显著差异。水清洁结果表明,与8种热塑性表面以及经玻璃珠喷砂处理的粗糙不锈钢相比,纳米结构镀铝表面的清洁率显著更高。用碱性洗涤剂清洁时,热塑性表面的总体清洁率较低,而不锈钢和纳米多孔铝的清洁率变化较大。总体而言,纳米多孔铝显示出有前景的结果,因为它可用于涂覆输送带。然而,与清洁洗涤剂的兼容性和对划痕的敏感性必须进一步研究。总体而言,可以得出结论,清洁能力不仅受表面粗糙度影响,还受整体表面光洁度、划痕和缺陷影响。
在线版本包含可在10.1007/s13197-023-05778-0获取的补充材料。