Aptitude of Oxidative Enzymes for Treatment of Wastewater Pollutants: A Laccase Perspective
Пригодность окислительных ферментов для очистки сточных вод от загрязнителей: перспективы применения лакказы
2019-05-30
SCID: 54.1/fprferjr
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aromatic contaminantslaccaseoxidative enzymeswastewater treatmentxenobiotic pollutants
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Abstract (AI)
Natural water sources are very often contaminated by municipal wastewater discharges which contain either of xenobiotic pollutants and their sometimes more toxic degradation products, or both, which frustrates the universal millenium development goal of provision of the relatively scarce pristine freshwater to water-scarce and -stressed communities, in order to augment their socioeconomic well-being. Seeing that both regulatory measures, as regards the discharge limits of wastewater, and the query for efficient treatment methods remain unanswered, partially, the prospects of enzymatic treatment of wastewater is advisable. Therefore, a reconsideration was assigned to the possible capacity of oxidative enzymes and the respective challenges encountered during their applications in wastewater treatment, and ultimately, the prospects of laccase, a polyphenol oxidase that oxidizes aromatic and inorganic substrates with electron-donating groups in treatment aromatic contaminants of wastewater, in real wastewater situations, since it is assumed to be a vehicle for a greener community. Furthermore, the importance of laccase-driven catalysis toward maintaining mass-energy balance, hence minimizing environmental waste, was comprehensibly elucidated, as well the strategic positioning of laccase in a model wastewater treatment facility for effective treatment of wastewater contaminants.
Key Findings
1
Laccase, a polyphenol oxidase, can oxidize aromatic and inorganic substrates containing electron-donating groups, supporting its application to aromatic wastewater contaminants.
2
Laccase-driven catalysis is positioned as a greener treatment strategy that may improve mass-energy balance and reduce environmental waste.
3
Oxidative enzymes are presented as promising alternatives for treating xenobiotic pollutants and potentially toxic degradation products in municipal wastewater.
4
The abstract identifies enzyme stability, operational challenges, and performance under real wastewater conditions as key barriers to practical oxidative-enzyme treatment.
5
The paper proposes strategically integrating laccase into wastewater treatment facilities to enhance contaminant removal.
Research Object
Laccase-based treatment of aromatic contaminants in wastewater
Research Subject
The treatment capacity, catalytic role, application challenges, and treatment-facility integration of laccase for degrading aromatic and inorganic wastewater pollutants
Publication Details
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2019-05-30
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