262
Ecotoxicological Issues
degree of cleaning NO x reached nearly 80% as viewed in Figure 3. This result is in
good agreement with experiments. The reactions N0 2 and S02 with radicals result
in acid formation that, together with the added ammonia, form non-toxic
condensed particles. The role of other active components in removal process is
defined as well.
ACKNOWLEDGEMENTS
The authors are grateful to IVT AN Analytical and Numerical Research
Association for financial support of this work.
KEYWORDS
Database, chemical reaction, gas pollution, kinetics, data, chemistry, cleaning,
remediation
REFERENCES
[1]
Matzing H. "Chemical kinetics of flue gas cleaning by electron beam", Tech. Report KfK
4494, Kerfirschunzentrum, Karlsruhe (1989).
[2]
Baulch D.L., Cobos D.J., Cox R.A. et al." Evaluated kinetic data for combustion modeling",
J. Phys. Chem. Ref Data, 2 (3) (1992).
[3]
Bochkov N.B., Lovachev L.A., Chetverushkin B.N. "Chemical kinetics of NO x formation in
combustion products of methane.", Math. Modelirovanie, 4, 3, in Rus. (1992).
[4]
Bychkov V.L., Yurovsky V.A. "Modeling beam plasma of water vapor", Teplophys.
Vysokih Temp., 31, 8, in Rus. (1993).
[5]
Philimonova E.A., Zhelezniak M.B. "Removal of toxic components in gas flow using
plasma sources of chemical active molecules", in Proceedings: Int. Symp. On Heat and Mass
Transfer in Chemical Processes Industry Accidents, Rome, Italy, (September 1994).
Ecotoxicological Issues
degree of cleaning NO x reached nearly 80% as viewed in Figure 3. This result is in
good agreement with experiments. The reactions N0 2 and S02 with radicals result
in acid formation that, together with the added ammonia, form non-toxic
condensed particles. The role of other active components in removal process is
defined as well.
ACKNOWLEDGEMENTS
The authors are grateful to IVT AN Analytical and Numerical Research
Association for financial support of this work.
KEYWORDS
Database, chemical reaction, gas pollution, kinetics, data, chemistry, cleaning,
remediation
REFERENCES
[1]
Matzing H. "Chemical kinetics of flue gas cleaning by electron beam", Tech. Report KfK
4494, Kerfirschunzentrum, Karlsruhe (1989).
[2]
Baulch D.L., Cobos D.J., Cox R.A. et al." Evaluated kinetic data for combustion modeling",
J. Phys. Chem. Ref Data, 2 (3) (1992).
[3]
Bochkov N.B., Lovachev L.A., Chetverushkin B.N. "Chemical kinetics of NO x formation in
combustion products of methane.", Math. Modelirovanie, 4, 3, in Rus. (1992).
[4]
Bychkov V.L., Yurovsky V.A. "Modeling beam plasma of water vapor", Teplophys.
Vysokih Temp., 31, 8, in Rus. (1993).
[5]
Philimonova E.A., Zhelezniak M.B. "Removal of toxic components in gas flow using
plasma sources of chemical active molecules", in Proceedings: Int. Symp. On Heat and Mass
Transfer in Chemical Processes Industry Accidents, Rome, Italy, (September 1994).
