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Journal of Ecology and Toxicology
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  • Editorial   
  • J Ecol Toxicol 2023, Vol 7(3): 161

Transforming Pollution through Son electrochemistry: Innovations in the Degradation of Persistent Organic Pollutants

Wei Lun Ang*
Department of Chemical and Process Engineering, Faculty of Engineering and Built Environment, University Kebangsaan Malaysia, Selangor, Malaysia
*Corresponding Author : Wei Lun Ang, Department of Chemical and Process Engineering, Faculty of Engineering, University Kebangsaan Malaysia, Selangor, Malaysia, Email: Anglunang345@gmail.com

Received Date: May 01, 2023 / Published Date: May 29, 2023

Abstract

The electrochemical and ultrasonic inputs into a son electrochemical pollutant degradation process are found to be synergistic, producing a faster rate of degradation than that produced by the sum of the purely electrochemical or purely sonochemical inputs on their own. The combination of electrochemistry and ultrasonic irradiation has gained increasing attention in recent years as a method for removing dissolved pollutants from water. This interest stems from the potential for son electrochemical approaches to completely mineralise dissolved pollutants, converting them into harmless mineral species such as water and carbon dioxide. Persistent organic pollutants, often present in industrial wastewater, are perhaps of the most concern, and have been linked to a number of chronic and acute medical conditions, including cancers, hypertension, cardiovascular disease, diabetes, suppression of the immune system, adverse effects on cognitive and neurobehavioral function, and disruption of the function of sex steroids and the thyroid gland.

Citation: Ang WL (2023) Transforming Pollution through Sonoelectrochemistry: Innovations in the Degradation of Persistent Organic Pollutants. J Ecol Toxicol, 7: 162.

Copyright: © 2023 Ang WL. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

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