• Title of article

    Destruction of halogenated hydrocarbons with solvated electrons in the presence of water

  • Author/Authors

    Guang-Ri Sun، نويسنده , , Jin-Bao He، نويسنده , , Charles U. Pittman Jr.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2000
  • Pages
    10
  • From page
    907
  • To page
    916
  • Abstract
    Model halogenated aromatic and aliphatic hydrocarbons and halogenated phenols were dehalogenated in seconds by solvated electrons generated from sodium in both anhydrous liquid ammonia and ammonia/water solutions. The minimum sodium required to completely dehalogenate these model compounds was determined by increasing the Na/substrate ratio until halogen loss was complete. Minimum sodium consumptions were determined in both anhydrous liquid ammonia and with a (5, 20, 50-fold molar excess of water per mole of halide). While more Na was consumed in the presence of water, these dehalogenations were still efficient when a 50-fold water excess was present. Dehalogenation is faster than competiting reactions with water. CCl4 and CH3CCl3 in the presence of a stoichiometric deficiency of sodium produced only CH4 and CH3CH3 and recovered CCl4 or CH3CCl3, respectively. No partially dechlorinated products were detected, indicating dechlorination was diffusion controlled. Na consumption per chlorine removed (as NaCl) was lower than that of Li, K or Ca and this advantage increased in the presence of water. Na consumption was lower using Na chunks instead of a thin Na mirror. Chloroaromatic compounds gave the parent aromatic hydrocarbon and aminated products in anhydrous ammonia but aminated products did not form when water was present.
  • Keywords
    Solvated electron reductions , Dechlorination , Na/NH3 , Chlorinated-aliphatic and aromatic hydrocarbons , dehalogenation
  • Journal title
    Chemosphere
  • Serial Year
    2000
  • Journal title
    Chemosphere
  • Record number

    735148