Yıl: 2019 Cilt: 20 Sayı: Özel Sayı Sayfa Aralığı: 13 - 18 Metin Dili: İngilizce DOI: 10.18038/estubtda.629757 İndeks Tarihi: 29-09-2020

INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO

Öz:
At the atmospheric pressure, argon plasma jet was obtained for 20 kHz frequency, 8 kV voltage and different flow rate in theDBD-like system. The optical emission spectra of these jets were taken. Spectral lines of discharges experimentally obtainedwere compared with spectral lines in NIST (National Institute of Standards and Technology) database. Atmospheric pressureplasmas are optically thin. Therefore, the line intensity ratio method can be used by determining suitable spectral lines. Ingeneral, the intensity of a spectral line is a function of both electron temperature and density. While determining these spectrallines, those sensitive to electron temperature were selected. The spectral lines, which are sensitive to electron temperature,depend on the difference between the excitation energy levels and the transition probability ratios. As a result, the electrontemperature of argon jet was tried to be determined by line intensity-ratio method.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • [1] Tanışlı M, Mutlu MB, Poyraz N, Şahin N, Demir S. Interactions of atmospheric pressure plasma jets and microorganism: inactivation. Fresenius Environ. Bull. 2018; 27 (3): 11574-1582.
  • [2] Tanisli M, Mertadam S, Poyraz N, Sahin N, Demir S. Inactivation of microorganisms with neon plasma jet at atmospheric pressure. J. Pure Appl. Microbio. 2016; 10(3): 1897-1904.
  • [3] Tanışlı M, Taşal E, Şahin N, Arslan Ç. 6-(2-Fluorobenzoyl)-3-(2-(4-(4-fluorophenyl) piperazin-1- yl)-2-oxoethyl) benzo[d]thiazol-2(3H)-one drug molecule structure and its interaction with atmospheric pressure plasma jet. Journal of Molecular Liquids 2017; 240: 733-751.
  • [4] Meulenbroeks RFG, Steenbakkers MFM, Qing Z, Van de Sanden MCM, Schram DC. Four ways to determine the electron density in low temperature plasmas. Phys. Rev. E 1994; 49: 2272.
  • [5] Lee J, Ko W, Seo D, Kim Y, Yoon J. He I line intensity ratio method for electron density and temperature measurements in multipurpose plasma (MP2). Fusion Sci. and Technol. 2009; 55 (2T): 100-105.
  • [6] Zhu XM, Pu YK, Balcon N, Boswell R. Measurement of the electron density in atmosphericpressure low-temperature argon discharges by line-ratio method of optical emission spectroscopy. J. Phys. D: Appl. Phys. 2009; 42: 142003.
  • [7] Zhang N, Sun F, Zhu L, Verdy C, Planche MP, Liao H, Dong C, Coddet C. Characteristics of Cu film deposited using VLPPS. J. Therm. Spray Tech. 2011; 20(1): 351-357.
  • [8] https://physics.nist.gov/PhysRefData/ASD/lines_form.html (Available: 08.01.2019)
  • [9] Boogaard A, Kovalgin AY, Aarmink AAI, Wolters RAM, Holleman J, Brunets I, Schmitz J. Measurement of electron temperatures of argon plasmas in a high-density inductively-coupled remote plasma system by Langmuir probe and optical-emission spectroscopy. Proceedings of the 9th annual workshop on Semiconductor Advances for Future Electronics and Sensors 2006; Utrecht, The Netherlands: Technology Foundation (STW), 412-418.
APA TANIŞLI M, YANIK S, ŞAHİN N (2019). INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. , 13 - 18. 10.18038/estubtda.629757
Chicago TANIŞLI Murat,YANIK Sevinç,ŞAHİN Neslihan INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. (2019): 13 - 18. 10.18038/estubtda.629757
MLA TANIŞLI Murat,YANIK Sevinç,ŞAHİN Neslihan INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. , 2019, ss.13 - 18. 10.18038/estubtda.629757
AMA TANIŞLI M,YANIK S,ŞAHİN N INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. . 2019; 13 - 18. 10.18038/estubtda.629757
Vancouver TANIŞLI M,YANIK S,ŞAHİN N INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. . 2019; 13 - 18. 10.18038/estubtda.629757
IEEE TANIŞLI M,YANIK S,ŞAHİN N "INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO." , ss.13 - 18, 2019. 10.18038/estubtda.629757
ISNAD TANIŞLI, Murat vd. "INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO". (2019), 13-18. https://doi.org/10.18038/estubtda.629757
APA TANIŞLI M, YANIK S, ŞAHİN N (2019). INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. Eskişehir Technical University Journal of Science and and Technology A- Applied Sciences and Engineering, 20(Özel Sayı), 13 - 18. 10.18038/estubtda.629757
Chicago TANIŞLI Murat,YANIK Sevinç,ŞAHİN Neslihan INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. Eskişehir Technical University Journal of Science and and Technology A- Applied Sciences and Engineering 20, no.Özel Sayı (2019): 13 - 18. 10.18038/estubtda.629757
MLA TANIŞLI Murat,YANIK Sevinç,ŞAHİN Neslihan INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. Eskişehir Technical University Journal of Science and and Technology A- Applied Sciences and Engineering, vol.20, no.Özel Sayı, 2019, ss.13 - 18. 10.18038/estubtda.629757
AMA TANIŞLI M,YANIK S,ŞAHİN N INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. Eskişehir Technical University Journal of Science and and Technology A- Applied Sciences and Engineering. 2019; 20(Özel Sayı): 13 - 18. 10.18038/estubtda.629757
Vancouver TANIŞLI M,YANIK S,ŞAHİN N INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO. Eskişehir Technical University Journal of Science and and Technology A- Applied Sciences and Engineering. 2019; 20(Özel Sayı): 13 - 18. 10.18038/estubtda.629757
IEEE TANIŞLI M,YANIK S,ŞAHİN N "INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO." Eskişehir Technical University Journal of Science and and Technology A- Applied Sciences and Engineering, 20, ss.13 - 18, 2019. 10.18038/estubtda.629757
ISNAD TANIŞLI, Murat vd. "INVESTIGATION OF ARGON PLASMA JETS WITH SPECTRAL LINE INTENSITY RATIO". Eskişehir Technical University Journal of Science and and Technology A- Applied Sciences and Engineering 20/Özel Sayı (2019), 13-18. https://doi.org/10.18038/estubtda.629757