Study of DBD Argon Plasma Jet on Electrical Characteristics, Spectroscopic Emissions due to the Influence of Gas Flow Rate


Authors : Tomi Franedsa Tarigan; Sumariyah Sumariyah; Eko Yulianto; K. Sofyan Firdausy; Muhammad Nur

Volume/Issue : Volume 9 - 2024, Issue 5 - May

Google Scholar : https://tinyurl.com/4bv6c8u8

Scribd : https://tinyurl.com/6938rk2w

DOI : https://doi.org/10.38124/ijisrt/IJISRT24MAY1396

Abstract : Research on the analysis of DBD argon plasma jet as a producer of dissolved reactive oxygen spicies (ROS) in distilled water as plasma actived medium (PAM) has been carried out. Characterization of the Ar plasma jet was carried out regarding its electrical properties, emission spectrum for three different flow rates (2 L/min, 6 L/min, and 10 L/min). The Ar plasma jet that comes out of the reactor is directed towards the distilled water at varying distances (5 cm and 10 cm). It was found that the maximum concentration of dissolved reactive oxygen compounds in distilled water was obtained at a distance of 10 cm from the jet tip to distilled water and a treatment time of 40 seconds. The I-V categorization obtained a curve following a quadratic polynomial. The emission spectrum of Ar jet plasma yields almost all wavelengths for Ar plasma. The emission intensity is directly proportional to the flow rate.

Keywords : Plasma Jet Argon, ROS,Dissolved Ozone,Spectrum Emission, Electrical Behavior, Plasma Actived Medium.

References :

  1. Harry J E 2010 Wiley-Vch Verlag GmbH & Co. KGaA, Weinheim
  2. Nasruddin, Kanae Yukari, Nakajima, Mukai, Komatsu Emi, Setyowati Heni, Rahayu Esti, Nur Muhammad, Ishijima Tatsuo, Enomoto Hiroshi, Uesugi Yoshihiko, Sugama Junko, Toshio, Nakatani 2015 Plasma Processes and Polymers, 12, 1128–1138
  3. Nur M 2011 Diponegoro University Press, Semarang Zhang S, Sobota A, van Veldhuizen E M and Bruggeman P J 2015 J. Phys. D. Appl. Phys. 48 015203
  4. X. Lu, M. Laroussi and V. Puech 2012 Plasma Sources Sci. Technol. vol. 21 pp. 777-788
  5. Nasrudin, Yukari Nakajima, Kanae Mukai, Heni Setyowati Esti Rahayu, Muhammad Nur, Tatsuo Ishijima, Hiroshi Enomoto, Yoshihiko Uesugi, Junko Sugama, Toshio Nakatani 2014 Clinical Plasma Medicine, 2, 28-35
  6. Nasrudin, Prasojo Pribadi, 2016. Aplikasi Plasma Dingin Untuk Perawatan Luka. Jurnal Keperawatan Muhamadiyah 1 (1) 2016
  7. Fadhilah Nur Fahada,  Benny Rizkillah Pratamayoga, Muhamad Thohar Arifin, , Muflihatul Muniroh,  Yan Wisnu Prajoko, Nyoman Suci Widyastiti, Renni Yuniati, Sumariyah Sumariyah,Gunawan Gunawan, Muhammad Nur, Case Study of Ozone Bagging Adjuvant Therapy in Wagner II and III Diabetic Foot Ulcers on WoundHealing Process: Three Patients RecoveredCompletely, International Journal of Science and Healthcare Research Vol. 8; Issue: 3; July-Sept. 2023.  
  8. Bilal Murtaza dkk, 2024. Cold Plasma: A Succes road to mycotoxins mitigation and food edition. Food Chemistry 445 (2024) 138378
  9. Andi.W.K, M. Nur, Z. Muhlisin, 2015. Karakteristik Plasma Jet Argon Menggunakan Kolom Dielectric Barrier Discharge (DBD) pada tekanan atmosfer. Youngster Physics Journal. Vol 4, No. 4, Oktober 2015, Hal 273-278
  10. Muhamad Nur., 2011. Fisika Plasma dan Aplikasinya. Semarang : Universitas Diponegoro Semarang Muhammad Nur, Yovita Asri Amelia, Fajar Arianto,Andi Wibowo Kinandana,  Intan                Zahar, Ade Ika Susana, and Jujur Pratama Wibawa, Dielectric Barrier Discharge Plasma  Analysis and Application for Processing Palm oil  mill effluent (POME), Procedia Engineering 170 pp.   325 – 33, 2017
  11. Pourya Seyfi dkk, 2022. Low-Temperature Argon Plasma Jet With Cascading Electrode Technique For Biological Applications. Scientefic reports (2022) 12;17042
  12. Gita C.E.D, 2021. Mini Review:Farmasi Plasma. Jurnal Ilmiah Farmasi Farmasyifa. JIF Farmasyifa 5 (1): 20-23 (Januari 2022)
  13. Nastuta A.K, Topala I, Grigoras, Pohoata V, Popa G, 2011. Stimulation of wound healing by helium atmospheric pressure plasma treatment. Journal Of Physics D: Applied Physics. 44 (2011) 105204
  14. J. Chauvin, F. Judée, M. Yousfi, P. Vicendo, andN. Merbahi, Sci. Rep. 7, 4562 (2017).
  15. Tanaka, M. Mizuno, F. Kikkawa, and M. Hori,Plasma Med. 6, 101 (2016).
  16. K.-D. Weltmann and T. von Woedtke, PlasmaPhys. Control. Fusion 59, 014031 (2017)
  17. W. Tian and M. J. Kushner, J. Phys. D. Appl. Phys.47, 165201 (2014)

Research on the analysis of DBD argon plasma jet as a producer of dissolved reactive oxygen spicies (ROS) in distilled water as plasma actived medium (PAM) has been carried out. Characterization of the Ar plasma jet was carried out regarding its electrical properties, emission spectrum for three different flow rates (2 L/min, 6 L/min, and 10 L/min). The Ar plasma jet that comes out of the reactor is directed towards the distilled water at varying distances (5 cm and 10 cm). It was found that the maximum concentration of dissolved reactive oxygen compounds in distilled water was obtained at a distance of 10 cm from the jet tip to distilled water and a treatment time of 40 seconds. The I-V categorization obtained a curve following a quadratic polynomial. The emission spectrum of Ar jet plasma yields almost all wavelengths for Ar plasma. The emission intensity is directly proportional to the flow rate.

Keywords : Plasma Jet Argon, ROS,Dissolved Ozone,Spectrum Emission, Electrical Behavior, Plasma Actived Medium.

Never miss an update from Papermashup

Get notified about the latest tutorials and downloads.

Subscribe by Email

Get alerts directly into your inbox after each post and stay updated.
Subscribe
OR

Subscribe by RSS

Add our RSS to your feedreader to get regular updates from us.
Subscribe