The effect of cotton fiber inclusion on the hard surface cleaning capacity of nonwoven substrates

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Abstract

Hard surface cleaning and disinfection is critically important in environments where microbial contamination can result in the spread of food-borne illnesses and infectious diseases. Successful disinfection of a hard surface can be impeded by the presence of a soil load in the form of protein, fat or other material. Fibrous materials used as applicators for surface disinfecting solutions require careful consideration to ensure the active ingredient remains efficacious. Of equal importance are the mechanical and surface properties of the applicator including tensile strength, cleaning efficiency, and absorbency. Therefore, the successful disinfection of a hard surface can be greatly enhanced by an applicator that also effectively removes organic contaminants, is strong enough to resist structural failure, and reduces water waste when a disinfecting solution is applied. The cleaning and physical properties of nonwoven applicators in the form of disposable wipes composed of cotton, rayon, polyester, and blends thereof were evaluated with several assays. Dynamic wiping assays, surface roughness, and tensile testing were conducted to compare the physical and surface properties of the wipes. The removal of organic contaminants was found to correlate with higher wipe surface roughness that increased with cellulosic fiber content. Tensile testing demonstrated the greige cotton, which has not been subjected to processing such as scouring or bleaching, had increased wet strength while rayon wipes lost significant strength when wet. Greige cotton wipes were also produced as a sustainable product with reduced absorbency that would minimize water usage and waste. The results indicated that inclusion of greige cotton fibers in wipes offers improvements over currently available wipes without sacrificing strength or cleaning efficiency.

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Hron, R. J., Hinchliffe, D. J., Mattison, C. P., & Condon, B. D. (2019). The effect of cotton fiber inclusion on the hard surface cleaning capacity of nonwoven substrates. Journal of Engineered Fibers and Fabrics, 14. https://doi.org/10.1177/1558925019889620

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