Advanced ceramic membranes: Novel strategies for sulfamethoxazole removal in wastewater treatment

被引:0
|
作者
Lee, Yen-Yi [1 ,2 ,3 ]
Chang-Chien, Guo-Ping [1 ,2 ,3 ]
Li, I. -Cheng [4 ,5 ]
Huang, Bo-Wun [6 ,7 ]
Nguyeng, Minh-Ky [8 ]
Pham, Minh-Thuan [1 ,2 ,3 ]
Hi, Chien-Hsing Wu [9 ,10 ]
机构
[1] Cheng Shiu Univ, Inst Environm Toxin & Emerging Contaminant, Kaohsiung 833301, Taiwan
[2] Cheng Shiu Univ, Super Micro Mass Res & Technol Ctr, Kaohsiung 833301, Taiwan
[3] Cheng Shiu Univ, Ctr Environm Toxin & Emerging Contaminant Res, Kaohsiung 833301, Taiwan
[4] Cheng Shiu Univ, Conservat & Res Ctr, Kaohsiung, Taiwan
[5] Cheng Shiu Univ, Dept Visual Commun Design, Kaohsiung 833301, Taiwan
[6] Cheng Shiu Univ, Dept Mech, Kaohsiung 833301, Taiwan
[7] Cheng Shiu Univ, Inst Mechatron Engn, Kaohsiung 833301, Taiwan
[8] Nong Lam Univ, Fac Environm & Nat Resources, Hamlet 6,Linh Trung Ward, Ho Chi Minh City 700000, Vietnam
[9] Kaohsiung Chang Gung Mem Hosp, Dept Internal Med, Div Nephrol, Kaohsiung 83301, Taiwan
[10] Cheng Shiu Univ, Ctr Gen, Kaohsiung 833301, Taiwan
来源
关键词
Advanced oxidation processes; Catalytic ceramic membranes; Ceramic membranes; Environmental remediation; Sulfamethoxazole; Wastewater treatment; ANTIBIOTIC-RESISTANT BACTERIA; ADVANCED OXIDATION PROCESSES; PHARMACEUTICAL COMPOUNDS; RISK-ASSESSMENT; SURFACE-WATER; DEGRADATION; PERFORMANCE; MECHANISMS; FRAMEWORK; TOXICITY;
D O I
10.1016/j.jece.2024.114674
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Ceramic membranes (CMs) demonstrated significant potential in removing sulfamethoxazole (SMX) from wastewater due to their superior properties to conventional polymeric membranes, including chemical and thermal stability, fouling resistance, and extended operational lifespan. However, conventional CMs were ineffective in removing SMX from wastewater, which led to the development of advanced CMs, utilizing catalysts and hybrid membranes to enhance wastewater treatment performance, particularly for SMX removal. This review critically examined the advancements in catalytic CMs, focusing on those activated by peroxymonosulfate, which showed remarkable efficacy in industrial and hospital wastewater treatment. It also explored the development of novel ceramic materials, advanced activation techniques, and integration of CMs with other treatment technologies. Significant benefits, such as robust mechanical properties and self-cleaning capabilities, rendered these membranes ideal for complex wastewater treatment scenarios. Furthermore, the ceramic membrane market was growing rapidly, with declining costs and long-term economic efficiency; however, challenges remained in ensuring economic feasibility and addressing potential nano- and micro-pollutant emissions. Optimizing catalytic activity, enhancing material durability, reducing operational costs, and conducting comprehensive studies on long-term performance, scalability, and environmental impacts were necessary. Moreover, these membranes' practical applicability and effectiveness needed validation through extensive case studies and large-scale pilot projects to improve the sustainability and efficiency of wastewater treatment solutions, addressing existing challenges while fostering continuous innovation in the field.
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页数:30
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