NOVOSÁD, Lukáš, Aleš HRDLIČKA, Pavel SLAVÍČEK, Vítězslav OTRUBA and Viktor KANICKÝ. Behaviour of analytical spectral lines emitted by plasma pencil operated in a continuous and in a pulsed mode. In EUROPEAN SYMPOSIUM ON ATOMIC SPECTROMETRY 2012-XXTH SLOVAK-CZECH SPECTROSCOPIC CONFERENCE. 2012.
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Basic information
Original name Behaviour of analytical spectral lines emitted by plasma pencil operated in a continuous and in a pulsed mode
Name in Czech Chování analytických čar emitovaných plazmovou tužkou v kontinuálním a pulzním režimu
Authors NOVOSÁD, Lukáš (203 Czech Republic, belonging to the institution), Aleš HRDLIČKA (203 Czech Republic, guarantor, belonging to the institution), Pavel SLAVÍČEK (203 Czech Republic, belonging to the institution), Vítězslav OTRUBA (203 Czech Republic, belonging to the institution) and Viktor KANICKÝ (203 Czech Republic, belonging to the institution).
Edition EUROPEAN SYMPOSIUM ON ATOMIC SPECTROMETRY 2012-XXTH SLOVAK-CZECH SPECTROSCOPIC CONFERENCE, 2012.
Other information
Original language English
Type of outcome Conference abstract
Field of Study 10402 Inorganic and nuclear chemistry
Country of publisher Slovakia
Confidentiality degree is not subject to a state or trade secret
WWW odkaz na konferenční sborník abstraktů
RIV identification code RIV/00216224:14740/12:00064558
Organization unit Central European Institute of Technology
Keywords (in Czech) plazmová tužka; výboj; koncentrace; intenzita; pulzní; kontinuální; mód
Keywords in English plasma pencil; discharge; concentration; intensity; pulsed; continuous; mode;
Tags International impact
Changed by Changed by: Mgr. Aleš Hrdlička, Ph.D., učo 22863. Changed: 28/3/2013 16:26.
Abstract
A modification of operating conditions by introduction of an admixture into the plasma gas stream was done for analytical application of plasma pencil – chemical analysis. Excitation capabilities using sets of standard water solutions containing Na+, Li+, Ca2+, Mg2+, Cu2+ and Zn2+ ions, construction of calibration dependences in the range 1–100 mg/l and calculation of instrumental detection limits for these elements (3-sigma) were done in the continuous and in the pulse mode. Aqueous solution of calibration standard (0.6 ml/min) was delivered into a Scott chamber with a concentric nebulizer with efficiency of about 6 %. The produced aerosol was introduced by argon (0.3 l/min) perpendicularly into the plasma pencil operated in flowing argon (4 l/min). Electrical input power in the range of 120–140 W coming into the plasma guaranteed a stability of the discharge with water and sample load. To create a pulsed mode a carrying wave 13.56 MHz was internally modulated by a rectangular wave 22 kHz with duty cycle 90 %. These modulation parameters guaranteed a high stability of the discharge. Rotational temperatures and electron number densities for the pencil under and without water load and sample load were calculated using OH spectra and H beta line and are very similar for both modes. Atomic lines of the elements above were well observable even if the rotational temperatures are relatively low about 1000 K. Intensities of the calibration lines in the continuous mode are lower than in the pulsed mode, linearity, range of linear concentrations and coefficients of determination of most of calibration lines are higher than in the continuous mode. Limits of detection are similar in both modes. Intensities of analytical signals, rotational temperatures and electron number densities along the discharge tube were acquired in 4 different positions in the range 11–15 cm from the aerosol entrance and an optimal position providing the best signal-to-noise ratio for each line intensity was established. These results indicate that the continuous mode should be rather replaced by the pulse mode in some analytical applications.
Abstract (in Czech)
Zkoumaly se excitační schopnosti plazmové tužky v kontinuálním a pulzním režimu. Pulzní režim má pozitivní vliv na zlepšení detekčních schopností a citlivost metody.
Links
ED1.1.00/02.0068, research and development projectName: CEITEC - central european institute of technology
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