TiO2-embedded 3D porous activated carbon from waste-sugarcane-bagasse: a revolutionary electrode material for unmatched desalination performance in capacitive deionization

被引:0
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作者
Trang, Nguyen Thi Thu [1 ]
Nam, Pham Thi [1 ]
Thom, Nguyen Thi [1 ]
Mai, Tran Thi [1 ]
Lam, Tran Dai [1 ]
Nguyen, Huynh Le Thanh [2 ,3 ]
Nguyen, Ngan Tuan [2 ,3 ,4 ]
Bui, Khanh Duy D. [2 ,3 ]
Nguyen, Thanh Tung [4 ]
Ngo, Hoang Long [4 ]
Nguyen, Thai Hoang [2 ,3 ]
Le, Viet Hai [2 ,3 ]
机构
[1] Vietnam Acad Sci & Technol, Inst Trop Technol, Hanoi, Vietnam
[2] Vietnam Natl Univ Ho Chi Minh City VNUHCM, Ho Chi Minh City 700000, Vietnam
[3] Univ Sci Ho Chi Minh City, Ho Chi Minh City 700000, Vietnam
[4] Nguyen Tat Thanh Univ, NTT Hi Tech Inst, Ho Chi Minh City 700000, Vietnam
关键词
3D porous activated carbon; TiO2; Waste-sugarcane-bagasse; Capacitive deionization; Desalination; ASSISTED IONOTHERMAL SYNTHESIS; WATER DESALINATION; ENHANCE DESALINATION; COMPOSITE; TIO2; AEROGELS; OXIDE; NANOMATERIALS; FABRICATION; ADSORPTION;
D O I
10.1007/s10800-025-02272-7
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
In recent years, the demand for efficient and sustainable desalination technologies has driven research into advanced electrode materials. This study explores the incorporation of TiO2 into waste-sugarcane-bagasse-derived 3D porous activated carbon during the gelation process with NaOH and urea, followed by calcination and activation. The resulting composite material demonstrated a significant increase in desalination capability, achieving a high salt adsorption capacity of 49.63 mg g(-1) at 1.6 V. This improvement is attributed to the enhanced specific capacitance and increased BET surface area, indicating a strong synergy between TiO2 and the activated carbon matrix. Furthermore, the AC/1.0TiO(2) electrode exhibited excellent long-term stability, maintaining excellent performance over 90 adsorption-desorption cycles. These findings suggest that TiO2-doped waste-sugarcane-bagasse-derived 3D porous activated carbon is a promising, environmentally friendly, and cost-effective electrode material for CDI applications. This approach not only leverages agricultural waste but also opens new perspectives for the development of more efficient and durable water purification systems.
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页数:14
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