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- A review on mitigation of pressure-driven membrane fouling by . . .
The performance of coagulation flocculation, including its coupling processes with other pretreatment technologies, in controlling pressure-driven membrane fouling has been reviewed in detail according to fouling type (including inorganic, organic, and microbial fouling) in this paper
- Membrane Fouling Control and Treatment Performance Using Coagulation . . .
A comparative study was conducted to investigate membrane fouling control and treatment performance using natural surface water as the feed source
- Enhanced anti-fouling performance through integrated coagulation and . . .
Membrane fouling remains a significant challenge limiting the widespread use of membrane technology in water treatment, particularly in ultrafiltration (UF) processes To address this, we proposed a “coagulation + membrane modification” strategy to enhance fouling mitigation
- Coagulation co-catalytic membrane integrated system for fouling . . .
Here we propose a ferric salt-based coagulation co-catalytic membrane integrated system that can effectively mitigate the detrimental effects of DOM
- A review on mitigation of pressure-driven membrane fouling . . .
The performance of coagulation flocculation, including its coupling processes with other pretreatment technologies, in controlling pressure-driven membrane fouling has been reviewed in detail according to fouling type (including inorganic, organic, and microbial fouling) in this paper
- A strategy to alleviate membrane fouling by optimizing the . . .
Direct regulation of the structure of the cake layer formed by rapid deposition of flocs as a “secondary barrier” in the in-line coagulation ultrafiltration (C-UF) process has acquired importance as a research topic in comparison to membrane modification and standard coagulation ultrafiltration
- Reduced Low–Pressure Membrane Fouling by Inline Coagulation . . .
Based on the above findings, it is of interest to ascertain whether the differences in LPM fouling behavior following pretreatment of highly colored waters were a result of the distinct membrane material configuration used in each study
- Mitigating membrane fouling by coupling coagulation and the . . .
In this study, a novel membrane separation reactor with an Al anode and a conductive membrane as the cathode was built to develop a chemical-free method for mitigating membrane fouling via electrocoagulation coupled with the electrokinetic effect
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