Influence of Surface Finish on the Cleanability of Stainless Steel
- 1 August 2001
- journal article
- Published by Elsevier in Journal of Food Protection
- Vol. 64 (8), 1178-1182
- https://doi.org/10.4315/0362-028x-64.8.1178
Abstract
Stainless steel for fabricating food processing equipment is available with various surface finishes. The objective of this research was to determine the effect of surface finish on cleanability. Nine samples of stainless steel, type 304, from various manufacturers including no finish (hot rolled and pickled), #4 finish, 2B mechanical polished, and electropolished were tested. Cleanability was assessed by using coupon samples soiled with either cultured milk inoculated with spores of Bacillus stearothermophilus or by growth of a Pseudomonas sp. biofilm. Samples were cleaned by immersion in a turbulent bath of 1.28% sodium hydroxide at 66°C for 3 min followed by a sterile water rinse, neutralizing in 0.1% phosphoric acid for 30 s, rinsing in phosphate buffer, sanitizing in 100 ppm hypochlorite, neutralizing in sodium thiosulfate, and drying. To determine residual milk soil, coupon samples were covered with PM indicator agar and incubated for 25 h at 58°C. Other coupons were subjected to an additional 10 soiling or cleaning cycles, and the residual protein was measured by using epifluorescent microscopy and image analysis. Results indicate that the spore count was more precise for measuring initial cleanability of the finished samples, and the protein residue determination was useful for determining the effect of repeated cleaning. Data on the removal of milk soil suggest that stainless steel should be purchased based on measures of surface defects rather than finish type. Surface defects, as determined using a surface roughness gauge, produced a correlation of 0.82 with spore counts. Data also indicated that biofilm was more difficult to remove than milk-based soil.Keywords
This publication has 11 references indexed in Scilit:
- Effectiveness of Sanitation with Quaternary Ammonium Compound or Chlorine on Stainless Steel and Other Domestic Food-Preparation SurfacesJournal of Food Protection, 1997
- Cleanability of stainless steel in relation to chemical modifications due to industrial cleaning procedures used in the dairy industryJournal of Food Engineering, 1994
- Cleanability in relation to bacterial retention on unused and abraded domestic sink materialsJournal of Applied Bacteriology, 1990
- Effect of cleaning-in-place disinfectants on wild bacterial strains isolated from a milking lineJournal of Dairy Research, 1990
- Adhesion of bacteria from mixed cell suspension to solid surfacesArchiv für Mikrobiologie, 1987
- The Bacterial Glycocalyx in Nature and DiseaseAnnual Review of Microbiology, 1981
- Design and Performance of Systems for Cleaning Product-Contact Surfaces of Food Equipment: A ReviewJournal of Food Protection, 1981
- Bacteriological Control of Food Equipment Surfaces by Cleaning Systems. II. Sanitizer EffectsJournal of Food Protection, 1981
- Simulator Technique for Assessing the Bacteriological Control of Food Equipment Surfaces by Cleaning SystemsJournal of Food Protection, 1980
- Relative Cleanability of Various Stainless Steel Finishes after Soiling with Inoculated Milk SolidsJournal of Dairy Science, 1960