Matinzadeh, Ziba and Shahgoli, Farhad and Abbasi, Hamed and Ghoranneviss, Mahmood and Salem, Mohammad Kazem. (2018) The Effect of Argon/Nitrogen Plasma Jet Irradiation on Optical Properties of Distilled Water. International Journal of Mechatronics, Electrical and Computer Technology (IJMEC), 8 (29). pp. 3935-3940.
PDF
- Published Version
Restricted to Repository staff only 658Kb |
Official URL: https://edoc.unibas.ch/80107/
Downloads: Statistics Overview
Abstract
In this work the effect of atmospheric-pressure plasma jet irradiation on some properties of distilled water has been studied. Argon and nitrogen were used as the applied gasses in two similar experiments. The distilled water was irradiated by a cold argon/nitrogen plasma jet. The electrical conductivity, pH, and the absorbance of samples were measured before and after the irradiation of non-thermal plasma jet in various time durations. When the plasma jet was irradiated onto the samples, an absorbance spectral peak was observed at approximately 200 nm for both applied gasses. The absorbance of both samples increased with increasing the irradiation time, but the peak did not move in the spectral range. The electrical conductivity of distilled water increased with increasing the irradiation time for both gasses. The pH of distilled water decreased with increasing argon and nitrogen irradiation time. Also an increase in the absorbance was observed after each irradiation time interval for both applied gasses.
Faculties and Departments: | 03 Faculty of Medicine > Departement Biomedical Engineering > Laser and Robotics > Biomedical Laser and Optics (Zam) |
---|---|
UniBasel Contributors: | Abbasi, Hamed |
Item Type: | Article, refereed |
Article Subtype: | Research Article |
Publisher: | Aeuso |
ISSN: | 2411-6173 |
e-ISSN: | 2305-0543 |
Note: | Publication type according to Uni Basel Research Database: Journal article |
Language: | English |
Related URLs: | |
Identification Number: | |
edoc DOI: | |
Last Modified: | 08 Jan 2021 14:35 |
Deposited On: | 08 Jan 2021 14:09 |
Repository Staff Only: item control page