Wastewater Treatment Using Membrane Bioreactor Technologies: Removal of Phenolic Contaminants from Oil and Coal Refineries and Pharmaceutical Industries

Очистка сточных вод с использованием технологий мембранных биореакторов: удаление фенольных загрязнителей из нефтяных и угольных перерабатывающих предприятий и фармацевтической промышленности
Kevin C.‐W. Wu, M. Emran Khan, Agung Wibowo, Zoheb Karim, Pattaraporn Posoknistakul, Babasaheb M. Matsagar, Chularat Sakdaronnarong
2024-02-05

MBR modifications and economic analysisindustrial wastewater (oil, coal refineries, pharmaceutical)membrane bioreactor (MBR)microbial degradationphenolic contaminants
Huge amounts of noxious chemicals from coal and petrochemical refineries and pharmaceutical industries are released into water bodies. These chemicals are highly toxic and cause adverse effects on both aquatic and terrestrial life. The removal of hazardous contaminants from industrial effluents is expensive and environmentally driven. The majority of the technologies applied nowadays for the removal of phenols and other contaminants are based on physio-chemical processes such as solvent extraction, chemical precipitation, and adsorption. The removal efficiency of toxic chemicals, especially phenols, is low with these technologies when the concentrations are very low. Furthermore, the major drawbacks of these technologies are the high operation costs and inadequate selectivity. To overcome these limitations, researchers are applying biological and membrane technologies together, which are gaining more attention because of their ease of use, high selectivity, and effectiveness. In the present review, the microbial degradation of phenolics in combination with intensified membrane bioreactors (MBRs) has been discussed. Important factors, including the origin and mode of phenols' biodegradation as well as the characteristics of the membrane bioreactors for the optimal removal of phenolic contaminants from industrial effluents are considered. The modifications of MBRs for the removal of phenols from various wastewater sources have also been addressed in this review article. The economic analysis on the cost and benefits of MBR technology compared with conventional wastewater treatments is discussed extensively.
1
An economic analysis comparing MBR technology with conventional treatments is provided, indicating consideration of costs and benefits for adopting MBRs.
2
Combining biological degradation with membrane bioreactor (MBR) technologies improves selectivity and effectiveness for removing phenolic contaminants from industrial effluents.
3
Conventional physico-chemical methods (solvent extraction, chemical precipitation, adsorption) have low removal efficiency for phenols at very low concentrations and suffer high operating costs and inadequate selectivity.
4
Modifications and intensifications of MBR designs tailored to various wastewater sources can enhance phenol removal from oil, coal refinery, and pharmaceutical effluents.
5
The review discusses microbial origins and modes of phenol biodegradation as key factors for optimizing MBR performance for phenolic removal.

Membrane bioreactor (MBR) systems used to treat industrial wastewaters from oil and coal refineries and pharmaceutical industries

Removal and microbial biodegradation of phenolic contaminants (phenols) including MBR design/characteristics, modifications, operational factors, and economic performance for optimal phenol removal from industrial effluents

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2024-02-05
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Kevin C.‐W. Wu
M. Emran Khan
Agung Wibowo
Zoheb Karim
Pattaraporn Posoknistakul
Babasaheb M. Matsagar
Chularat Sakdaronnarong
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