Publication

Typha Fluff as a Sustainable Thermal Filling Material: A Comparative Study with Down and Polyester Fibre

Nan Xiao, Yu Zhang, Haibo Xia, Bei Cheng, X.K. Zhang, Yang Chen

Textile & Leather ReviewOct 9, 2025
Abstract

To explore the feasibility of using Typha fluff as a filling material in textiles, this study conducted a systematic investigation of its performance as a sustainable alternative. Comparative tests were performed on Typha fluff, down, and polyester fibre—three commonly used filling materials—evaluating their fill power, compression resilience, thermal resistance, downproof performance, moisture regain, and antibacterial activity. The results indicate that although Typha fluff exhibits slightly lower fill power and thermal insulation than white duck down, it demonstrates notable advantages in resilience, downproof performance, antibacterial potential, and renewability. These combined merits highlight its potential as an eco‑friendly thermal filling material. This work provides both a theoretical foundation and experimental evidence to support the green application of natural plant fibres in textiles.

1Authors

AuthorAffiliationh-indexCitations
Nan XiaoUnited Testing Services(Jiangxi) Co., Ltd., Floor 4-5, Building 14, Nanchang Light Textile City, No. 666, Changdong Avenue, Qingshan Lake District Hi-tech Industrial Park, 330012, Nanchang City, China12822
Yu ZhangJiangxi Institute of Fashion Technology
Haibo XiaUnited Testing Services(Jiangxi) Co., Ltd., Floor 4-5, Building 14, Nanchang Light Textile City, No. 666, Changdong Avenue, Qingshan Lake District Hi-tech Industrial Park, 330012, Nanchang City, China221,613
Bei ChengJiangxi Institute of Fashion Technology
X.K. ZhangUnited Testing Services(Jiangxi) Co., Ltd., Floor 4-5, Building 14, Nanchang Light Textile City, No. 666, Changdong Avenue, Qingshan Lake District Hi-tech Industrial Park, 330012, Nanchang City, China6273
Yang ChenUnited Testing Services(Jiangxi) Co., Ltd., Floor 4-5, Building 14, Nanchang Light Textile City, No. 666, Changdong Avenue, Qingshan Lake District Hi-tech Industrial Park, 330012, Nanchang City, China323,439

Showing the abstract — retrieve the full paper via the Exa API.

Powered by the Exa API