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Träfflista för sökning "L773:1352 2310 srt2:(2000-2004);pers:(Feng Xinbin)"

Sökning: L773:1352 2310 > (2000-2004) > Feng Xinbin

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1.
  • Gårdfeldt, Katarina, 1959, et al. (författare)
  • Oxidation of atomic mercury by hydroxyl radicals and photoinduced decomposition of methylmercury species in the aqueous phase
  • 2001
  • Ingår i: Atmospheric Environment. - 1352-2310 .- 1873-2844. ; 35:17, s. 3039-3047
  • Tidskriftsartikel (refereegranskat)abstract
    • The rate constant for Hg0+.OH, kHg0+.OH=(2.4±0.3)×109 M−1 s−1, in the aqueous phase was determined using a relative rate technique with methyl mercury as reference compound. The .OH initiated mercury reaction proceeds via the molecular Hg(I) radical which is oxidised to Hg(II) by dissolved O2. The reaction can be of importance under certain atmospheric circumstances, such as when the aqueous phase capacity of forming OH radicals is significant and the gas phase concentration of ozone drops. The same end product, i.e. Hg(II) was observed from the photodegradation of methylmercury hydroxide. In this case, molecular Hg(I) radicals are again likely to be formed after photodegradation of the Hg–C bond with subsequent oxidation. A lifetime of 230 h of methylmercury at outdoor conditions was estimated due to this reaction. The action of .OH on methylmercury species also involves breaking of organometallic bonds and formation of Hg(II). Speciation of these reaction products from methylmercury is important for the estimation of biogeochemical cycling of mercury.
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2.
  • Sommar, Jonas, 1969, et al. (författare)
  • A kinetic study of the gas-phase reaction between the hydroxylradical and atomic mercury
  • 2001
  • Ingår i: Atmos.Environ. - 1352-2310 .- 1873-2844. ; 35:17, s. 3049-3054
  • Tidskriftsartikel (refereegranskat)abstract
    • The atom is the dominating species of mercury in the atmosphere. Its oxidation processes are of great interest since it is mainly oxidised mercury that undergoes deposition and thereby spreads into the ecosystems and becomes bioaccumulated. The kinetics of the gas-phase reaction between atomic mercury and hydroxyl radical has been determined at room temperature and atmospheric pressure of air by relative rate technique. OH radicals were produced by photolysis employing methyl nitrite. By using cyclohexane as the reference compound, the rate coefficient obtained was k(Hg0+·OH)=(8.7±2.8)×10−14 cm3 s−1 leading to natural lifetimes of mercury at global mean conditions of 4–7 month due to this reaction.
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  • Resultat 1-2 av 2
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tidskriftsartikel (2)
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refereegranskat (2)
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Strömberg, Dan, 1959 (2)
Gårdfeldt, Katarina, ... (2)
Sommar, Jonas, 1969 (2)
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Göteborgs universitet (2)
Chalmers tekniska högskola (2)
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