Related Experiment Video
Updated: Aug 7, 2026

Implementation of a Hyperbolic Vortex Plasma Reactor for the Removal of Micropollutants in Water
Published on: July 25, 2025
Plasma-activated water generated by bubble spark and dielectric barrier discharges differ in antimicrobial and
Laura A McClenaghan1, Thomas P Thompson1, Ross M Duncan1
1Biofilm Research Group, School of Pharmacy, Queen's University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast, BT9 7BL, United Kingdom.
Aims:
The requirement for alternative wastewater treatment methods continues to increase as current systems are overwhelmed, leading to accumulation of both microbial and chemical pollutants. The purpose of this study was to evaluate and compare the potential of two distinct PAWs, The bubble spark discharge (BSD) and dielectric barrier discharge diffuser (DBDD), for both microbial inactivation and decolourization of model organic contaminants in wastewater. The potential mechanisms associated with each PAW was explored using ROS and RNS quantification and chemical scavenger assays.
Methods And Results:
Two direct plasma-in-liquid systems generating PAW in situ via microbubble discharge were evaluated: BSD and DBDD, tested for antimicrobial activity against relevant potential wastewater pathogens including Escherichia coli and Salmonella enterica. Their ability to degrade several water-soluble dyes (crystal violet, methylene blue, and Congo red) as relevant surrogates for environmental contaminants of industrial origin, was also assessed. The DBDD achieved the most rapid inactivation of all tested planktonic bacteria within 90 s, while the BSD took up to 5 min. The bactericidal activity of the DBDD was likely due to a greater production of short-lived species, such as O₂⁻ and ¹O₂, which specific scavenger assays (l-histidine and Tiron) confirmed were essential for the antimicrobial activity, while the longer-lived H2O2 contributed significantly to the antibacterial activity of the BSD system.
Conclusions:
These findings suggest that PAW could be used as a rapid, on-demand advanced oxidation process for the tertiary stage of wastewater treatment, with potential to reduce reliance on conventional UV or chlorine disinfection while targeting both chemical contaminants and microbial bioburdens.
More Related Videos
14:17The Portable Chemical Sterilizer (PCS), D-FENS, and D-FEND ALL: Novel Chlorine Dioxide Decontamination Technologies for the Military
Published on: June 29, 2014
06:27Automated Hospital Room Disinfection Utilizing a Novel Aerosolized Hydrogen Peroxide Microdroplet Disbursing Technology
Published on: February 24, 2026
Related Concept Videos
Physical Methods for Controlling Microbial Growth: Radiation and Filtration
Chemical Agents for Microbial Control
Antimicrobial Effectiveness
Electrolysis
Biological Treatment of Effluent and Waste Water
Surface Membrane Barriers
The outer layer of the skin, the epidermis, is a robust barrier comprising layers of closely packed keratinized cells. This dense arrangement prevents microbes from penetrating the body. The periodic shedding of epidermal cells...