论文部分内容阅读
The kinetics of ozonation reactions of trichloroethylene (TCE) and benzene in gas and liquid phases at101.3kPa and 298K was investigated in this paper.The ozonation of TCE is first order with respect to the ozone con-centration and one and half order to TCE in the gas phase with the average rate constant 57.30(mol.L~(-1)~(-1.5).s~(-1),and the TCE ozonation in aqueous medium is first order with respect to both ozone and trichloroethylene with theaverape rate constant 6.30(mol.L~(-l).s~(-1).The ozonation of benzene in the gas phase is first order in ozone butindependent of the benzene concentration with the average reaction rate constant 0.0011s~(-1).The overall kineticsof reaction between ozone and benzene in aqueous solution is found to be first order with one-half order in bothozone and bezene,with the average reaction rate constant 2.67s~(-1).It is found that the ozonation rate of pallutantsis much quicker than that of self-decomposition of ozone in both gas and aqueous phase.
The kinetics of ozonation reactions of trichlorethylene (TCE) and benzene in gas and liquid phases at 101.3 kPa and 298K was investigated in this paper. Ozonation of TCE is first order with respect to the ozone con-centration and one and half order to TCE in the gas phase with the average rate constant 57.30 (mol.L -1 -1.5) .s -1, and the TCE ozonation in aqueous medium is first order with respect to both ozone and trichlorethylene with The ozonation of benzene in the gas phase is first order in ozone butindependent of the benzene concentration with the average reaction rate constant 0.0011 s ~ (- 1). The overall kinetics of reaction between ozone and benzene in aqueous solution is found to be first order with one-half order in both ozone and bezene, with the average reaction rate constant 2.67s -1 .It is found that the ozonation rate of pallutantsis much quicker than that of self-decomposition of ozone in both gas and aqueous phase.