Solving the fouling mechanisms in composite membranes for water purification: An advance approach

被引:10
|
作者
Ezaier, Yassine [1 ]
Hader, Ahmed [1 ,2 ]
Latif, Abdelaziz [1 ]
Khan, Mohammad Ehtisham [3 ]
Ali, Wahid [3 ]
Ali, Syed Kashif [4 ]
Khan, Anwar Ulla [5 ]
Bashiri, Abdullateef H. [6 ]
Zakri, Waleed [6 ]
Yusuf, Mohammad [7 ,9 ]
Rajamohan, Natarajan [8 ]
Ibrahim, Hussameldin [7 ]
机构
[1] Univ Hassan 2, Ecole Normale Super, Biogeosci & Mat Engn Lab, Casablanca, Morocco
[2] Reg Ctr Educ & Training Profess, Settat Estab, Morocco
[3] Jazan Univ, Coll Appl Ind Technol, Dept Chem Engn Technol, Jazan 45142, Saudi Arabia
[4] Jazan Univ, Fac Sci, Dept Chem, POB 114, Jazan, Saudi Arabia
[5] Jazan Univ, Coll Engn, Dept Elect Engn, POB 114, Jazan 45142, Saudi Arabia
[6] Jazan Univ, Coll Engn, Dept Mech Engn, POB 114, Jazan 45142, Saudi Arabia
[7] Univ Regina, Fac Engn & Appl Sci, Clean Energy Technol Res Inst CETRi, 3737 Wascana Pkwy, Regina, SK S4S 0A2, Canada
[8] Sohar Univ, Fac Engn, Chem Engn Sect, Sohar 311, Oman
[9] Chitkara Univ, Chitkara Univ Inst Engn & Technol, Ctr Res Impact & Outcome, Rajpura, Punjab, India
关键词
Wastewater; Marine ecosystems; Water desalination; Membranes; Fouling; Hermia model; ULTRAFILTRATION; FILTRATION;
D O I
10.1016/j.envres.2024.118487
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
With the increasing population worldwide more wastewater is created by human activities and discharged into the waterbodies. This is causing the contamination of aquatic bodies, thus disturbing the marine ecosystems. The rising population is also posing a challenge to meet the demands of fresh drinking water in the water-scarce regions of the world, where drinking water is made available to people by desalination process. The fouling of composite membranes remains a major challenge in water desalination. In this innovative study, we present a novel probabilistic approach to analyse and anticipate the predominant fouling mechanisms in the filtration process. Our establishment of a robust theoretical framework hinges upon the utilization of both the geometric law and the Hermia model, elucidating the concept of resistance in series (RIS). By manipulating the transmembrane pressure, we demonstrate effective management of permeate flux rate and overall product quality. Our investigations reveal a decrease in permeate flux in three distinct phases over time, with the final stage marked by a significant reduction due to the accumulation of a denser cake layer. Additionally, an increase in transmembrane pressure leads to a correlative rise in permeate flux, while also exerting negative effects such as membrane ruptures. Our study highlights the minimal immediate impact of the intermediate blocking mechanism (n = 1) on permeate flux, necessitating continuous monitoring for potential long-term effects. Additionally, we note a reduced membrane selectivity across all three fouling types (n = 0, n = 1.5, n = 2). Ultimately, our findings indicate that the membrane undergoes complete fouling with a probability of P = 0.9 in the presence of all three fouling mechanisms. This situation renders the membrane unable to produce water at its previous flow rate, resulting in a significant reduction in the desalination plant's productivity. I have demonstrated that higher pressure values notably correlate with increased permeate flux across all four membrane types. This correlation highlights the significant role of TMP in enhancing the production rate of purified water or desired substances through membrane filtration systems. Our innovative approach opens new perspectives for water desalination management and optimization, providing crucial insights into fouling mechanisms and proposing potential strategies to address associated challenges.
引用
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页数:10
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