Comparisons of Moisturizing Function Between Rayon Fabric with Collagen Peptides from Fish Scales and Regular Rayon Fabric Under Various Relative Humidity 


Vol. 24,  No. 12, pp. 4229-4239, Dec.  2023
10.1007/s12221-023-00391-6


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  Abstract

The study was inspired by the specialized facial masks made of rayon non-woven fabrics which contained collagen peptides for improving moisturizing function. This study explored the moisturizing function of a rayon fabric containing collagen peptides extracted from tilapia fish scales under various conditions of relative humidity. This research had implications for the development of clothing that can prevent dry skin. A two-stage nested design experiment was adopted. The first-stage factor such as the fabric has two levels and the second-stage factor such as the relative humidity with three levels nested under each level of the first-stage factor. Preliminary results indicated that introducing a new variable (i.e., fabric moisturizing value, which combines the moisture regains of adsorption and desorption) would be useful. The moisturizing value of the novel rayon fabric and regular rayon fabric increased with the increase in relative humidity, and moisturizing effect of the novel rayon fabric with collagen peptides was better than that of the regular rayon fabric. Therefore, the novel rayon fabric may be suitable for preventing dry skin in winter.

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  Cite this article

[IEEE Style]

C. Huang, E. Hou, Y. Lee, T. Lee, Y. Pan, T. Yu, W. Lin, C. Shih, W. Chang, "Comparisons of Moisturizing Function Between Rayon Fabric with Collagen Peptides from Fish Scales and Regular Rayon Fabric Under Various Relative Humidity," Fibers and Polymers, vol. 24, no. 12, pp. 4229-4239, 2023. DOI: 10.1007/s12221-023-00391-6.

[ACM Style]

Chi-Shih Huang, Erh-Jen Hou, Ying-Chou Lee, Tzong-Huei Lee, Yi-Jun Pan, Ta Yu, Wei-Hsin Lin, Chun-Han Shih, and Wei-Che Chang. 2023. Comparisons of Moisturizing Function Between Rayon Fabric with Collagen Peptides from Fish Scales and Regular Rayon Fabric Under Various Relative Humidity. Fibers and Polymers, 24, 12, (2023), 4229-4239. DOI: 10.1007/s12221-023-00391-6.