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Journal ArticleDOI

NOx removal using nitrogen gas activated by dielectric barrier discharge at atmospheric pressure

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TLDR
In this paper, the NO removal was carried out using injection of the nitrogen gas, which was activated by the dielectric barrier discharge with a one-cycle sinusoidal-wave power source.
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This article is published in Vacuum.The article was published on 2002-05-27. It has received 44 citations till now. The article focuses on the topics: Dielectric barrier discharge & Partial discharge.

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Journal ArticleDOI

Technologies for the nitrogen oxides reduction from flue gas: A review.

TL;DR: Different available post-combustion methods of NOx removal, including selective catalytic reduction (using different types of reducing reagents, including ammonia, hydrogen, hydrocarbons, and carbon monoxide), selective noncatalytic reduction, wet scrubbing, adsorption, electron beam, nonthermal plasma, and electrochemical reduction ofNOx, are discussed.
Journal ArticleDOI

Electron density and temperature measurement method by using emission spectroscopy in atmospheric pressure nonequilibrium nitrogen plasmas

TL;DR: In this paper, a novel spectroscopic method is proposed for the measurement of electron density and temperature in atmospheric pressure dielectric barrier discharges using nitrogen gas, which is confirmed by applying to a high power barrier discharge, where the measured plasma parameters were in good agreement with the estimation by using the electron conductivity.
Journal ArticleDOI

Regeneration of acid orange 7-exhausted granular activated carbon with dielectric barrier discharge plasma.

TL;DR: In this paper, a novel process for regenerating activated carbon based on high active species (O 3, OH, HO 2, O 2 and RO, etc.) generated by dielectric barrier discharge (DBD) oxidation was proposed.
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Comparisons of discharge characteristics of a dielectric barrier discharge with different electrode structures

TL;DR: In this paper, three different electrode structures are used in order to analyze the homogeneous discharge of air dielectric barrier discharge (DBD) under ambient conditions, they are aluminum plane electrode, stainless mesh electrode and pure water electrode.
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Catalytic Reaction Assisted by Plasma or Electric Field

TL;DR: This review presents summaries of novel processes for electro-catalytic reactions proposed for the DC electric field imposition: reactant activation by surface protonics and production of active surface oxygen species on the catalyst.
References
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Journal ArticleDOI

Corona discharge processes

TL;DR: In this paper, a review of applications of corona discharge induced plasmas and unipolar ions is presented, focusing on one of two aspects of the discharge: the ions produced or the energetic electrons producing the plasma.
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Comparison of electrical discharge techniques for nonthermal plasma processing of NO in N/sub 2/

TL;DR: In this paper, a comparative assessment of three types of electrical discharge reactors: pulsed corona, dielectric-barrier discharge, and three different types of Dielectric Pellet bed (DEB) is presented.
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Preliminary pilot plant tests of a corona discharge-electron beam hybrid combustion flue gas cleaning system

TL;DR: Pilot power plant tests of a corona discharge-electron beam hybrid combustion flow gas cleaning system have been conducted as discussed by the authors, and the results show that up to 85% of NO/sub x/ and 98% of SO/sub X/ in flue gases are removed under a CORona discharge electron beam hybrid operations with significant small amount of leaked ammonias from exhaust flue gas.
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Kinetic of the NO removal by nonthermal plasma in N2/NO/C2H4 mixtures

TL;DR: In this paper, the authors compared the predictions of a 0D model on a large range of parameter values, such as the specific deposited energy and the ethene initial concentration, and showed that dissociation of NO through collision with the N2(a′1Σu−) state played the main part in the NO removal kinetic.
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NO removal in a photo-triggered discharge reactor

TL;DR: In this article, the photo-triggered discharges were used for gas cleaning by non-thermal plasmas and showed that the NO removal efficiency is a sensitive function of the input energy but does not depend on the initial reduced electric field.
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