Electrical discharges generated at water\ud –\ud gas interface in a nonthermal plasma (NTP) reactor were utilized\ud for the degradation and mineralization of a model aqueous organic pollutant, methylene blue (MB). NTP-\ud based advanced oxidation processes present a huge potential to remove contaminants from wastewater.\ud The degradation of pollutants greatly depends on the active species generated during NTP process. In this\ud study, on adding catalyst to plasma reactor, both degradation efficiency and mineralization of the pollu-\ud tants increased. It was also observed that MB degradation followed the first-order kinetics and degree of\ud mineralization increased as a function of time
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
Advanced oxidation process based on dielectric barrier discharge at the gas water interface was used...
Electrical discharges generated at water – gas interface in a nonthermal plasma (NTP) reactor were...
Electrical discharges generated at water–gas interfaces in a nonthermal plasma (NTP) reactor were ut...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Aqueous organic pollutants are a diverse group of chemicals, treated like potential environmental po...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
Advanced oxidation process based on dielectric barrier discharge at the gas water interface was used...
Electrical discharges generated at water – gas interface in a nonthermal plasma (NTP) reactor were...
Electrical discharges generated at water–gas interfaces in a nonthermal plasma (NTP) reactor were ut...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Non-thermal plasma is one of the most promising technologies used for the degradation of hazardous p...
Aqueous organic pollutants are a diverse group of chemicals, treated like potential environmental po...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
In this work it was studied the removal efficiency of several water pollutants (methylene blue, phen...
Advanced oxidation process based on dielectric barrier discharge at the gas water interface was used...