Literature DB >> 21257191

Removal mechanism of elemental mercury by using non-thermal plasma.

Youngchul Byun1, Dong Jun Koh, Dong Nam Shin.   

Abstract

The removal mechanism of elementary mercury (Hg(0)) by non-thermal plasma (NTP) has been investigated, where dielectric barrier discharge and O(3) injection methods as oxidation techniques are employed, together with the analysis of mercury species deposited on the reactor surface using temperature-programmed desorption and dissociation (TPDD) and scanning electron microscopy-energy dispersive spectroscopy. The removal of Hg(0) by NTP is found to be time-dependent and proceed through three domains; the Hg(0) concentration just slightly decreases as soon as NTP is initiated and then becomes constant for several minutes (Region 1), thereafter starts to decrease rapidly for 1h (Region 2) and, after passing fall-off region, very slowly decreases for about 4h (Region 3). The deposited mercury species on the reactor surface were conglomerated like islands, rather than dispersed uniformly, and their ratio of Hg(0) to O composition is observed to be 1:2. Additionally, the new peak in TPDD spectra observed in the region of 260-380°C is proposed as HgO(3). These results lead us to conclude that the deposited mercury species by NTP have extra O atoms to oxidize the adsorbed Hg(0), resulting in the acceleration of removal rate as the oxidation of Hg(0) proceeds.
Copyright © 2010 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21257191     DOI: 10.1016/j.chemosphere.2010.12.003

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  2 in total

1.  Calibration Approach for Gaseous Oxidized Mercury Based on Nonthermal Plasma Oxidation of Elemental Mercury.

Authors:  Jan Gačnik; Igor Živković; Sergio Ribeiro Guevara; Jože Kotnik; Sabina Berisha; Sreekanth Vijayakumaran Nair; Andrea Jurov; Uroš Cvelbar; Milena Horvat
Journal:  Anal Chem       Date:  2022-06-01       Impact factor: 8.008

2.  Dielectric Barrier Discharge Coupling Catalytic Oxidation for Highly Efficient Hg0 Conversion.

Authors:  Yujie Liao; Zhong Zhong; Shaoping Cui; Dong Fu; Pan Zhang
Journal:  ACS Omega       Date:  2021-02-11
  2 in total

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