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| Preparation and Performance Study of Cellulose-based Air Filtration Materials |
| Received:July 01, 2025 Revised:July 30, 2025 |
| DOI:10.11980/j.issn.0254-508X.2025.10.023 |
| Key Words:cellulose-based aerogels chemical crosslinking elasticity air filtration |
| Fund Project:山东省自然科学基金(ZR2023QB276)。 |
| Author Name | Affiliation | Postcode | | LI Jingman* | College of Textiles and Clothing, Qingdao, Shandong Province, 266071 | 266071 | | YANG Weili | Qingdao NCS Testing and Corrosion Protection Technology Co., Ltd., Qingdao, Shandong Province,266700 | 266700 | | WANG Xiaojun* | College of Textiles and Clothing, Qingdao, Shandong Province, 266071 | 266071 | | JIANG Zhan | College of Textiles and Clothing, Qingdao, Shandong Province, 266071 | 266071 | | ZHANG Yuanming* | College of Textiles and Clothing, Qingdao, Shandong Province, 266071 | 266071 |
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| Abstract:In this study, aerogels were prepared using TEMPO-oxidized nanocellulose (TCNF), mechanically prepared microcellulose (MFC), and polyvinyl alcohol (PVA) as raw materials. To further enhance mechanical performance, the aerogel fibers were modified with 3-glycidoxypropyltrimethoxysilane (GPTMS) and polyethyleneimine (PEI). The modified aerogels exhibited excellent elasticity, with plastic deformation remaining below 5% after 50 compression cycles at 50% strain. In addition, the air filtration material with double-layer structure had been successfully prepared. Compared with single-layer materials, the double-layer structured materials exhibited significantly superior filtration performance. The comprehensive performance indicators were as follows: the filtration efficiency reached 77.67%, the pressure drop was 122 Pa, and the quality factor was 0.013 Pa⁻¹. |
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