Standalone waste-based cellulose acetate membrane for river water treatment

被引:0
|
作者
Idriss, Ibrahim Maina [1 ]
Shamsuddin, Norazanita [1 ]
Abu Bakar, Muhammad Saifullah [1 ]
Wibisono, Yusuf [2 ]
Thongratkaew, Sutarat [3 ]
Faungnawakij, Kajornsak [3 ]
Bilad, Muhammad Roil [1 ,4 ]
机构
[1] Univ Brunei Darussalam, Fac Integrated Technol, Jalan Tungku Link,BE1410, Gadong, Brunei
[2] Brawijaya Univ, Fac Agr Technol, Dept Bioproc Engn, Malang 65141, Indonesia
[3] Natl Sci & Technol Dev Agcy NSTDA, Natl Nanotechnol Ctr NANOTEC, 111 Thailand Sci Pk, Pathum Thani 12120, Thailand
[4] Univ Pendidikan Mandalika, Fac Appl Sci & Engn, Jl Pemuda 59A, Mataram 83126, Indonesia
来源
CLEANER WASTE SYSTEMS | 2025年 / 10卷
关键词
Waste cellulose acetate; Circular economy; Sustainable development goals; Membrane filtration; Sustainability; ORGANIC-MATTER; CHALLENGES;
D O I
10.1016/j.clwas.2025.100247
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Access to clean drinking water is a global challenge, with approximately 2 billion people lacking adequate access due to factors such as pollution, inadequate infrastructure, and socioeconomic inequalities. Natural organic matter (NOM) is a common contaminant in water sources, contributing to coloration, odors, and potential indirect health risks. Membrane filtration is an effective method for removing NOM, with various polymers used for membrane fabrication. Discarded cigarette butts are a significant source of pollution and contribute to environmental degradation. However, few studies have explored the performance of a standalone waste-based cellulose acetate (W-CA) membrane for real surface water treatment, leaving a critical knowledge gap in sustainable membrane technology. This study focuses on utilizing W-CA from cigarette butts, to produce membranes for surface water treatment. A comparison is made with commercial cellulose acetate (C-CA) and polyvinylidene difluoride (PVDF) membranes. Membranes were fabricated via the phase inversion method and characterized for hydrophilicity, morphology, pore size distribution, and surface chemistry. The W-CA membrane exhibited higher hydrophilicity, clean water permeability, and pore density when compared to C-CA and PVDF membranes. It demonstrated high pure water permeability (1315.10 Lm- 2h- 1bar- 1) and effective removal of humic acid representing NOM, achieving a removal rate of 92.77 %. Such high permeability and substantial NOM removal underscore the novelty and practical relevance of employing W-CA for sustainable water treatment applications.
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页数:8
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