Theory and Application of Unsteady Catalytic Detoxication of Effluent Gases from Sulfur Dioxide, Nitrogen Oxides and Organic Compounds Full article
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10th International Symposium on Chemical Reaction Engineering 29 Aug - 1 Sep 1988 , Basle |
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Source | 10th International Symposium on Chemical Reaction Engineering (ISCRE 10). Basle, Switzerland, 29 August – 1 September 1988 Compilation, 1988. ISBN 9780080369693. |
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Output data | Year: 1988, Pages: 2061-2066 Pages count : 6 DOI: 10.1016/b978-0-08-036969-3.50052-x | ||||
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Abstract:
Processes of catalytic detoxication of gases under unsteady-state conditions maintained by periodic reversal of a reaction mixture flow fed into the catalyst bed were studied both theoretically and experimentally. Based on mathematical modeling of unsteady processes in adiabatic reactors, the optimum conditions of detoxication process performance were determined. The high efficiency of the method was demonstrated for the processes of purification of exhaust gases from sulfur dioxide, nitrogen oxides and organic compounds. Results of pilot-plant and industrial tests are in good agreement with calculations. Industrial realization of the unsteady-state method at several plants has proved its high reliability and efficiency.
Cite:
Matros Y.S.
, Noskov A.S.
, Goldman O.V.
, Chumachenko V.A.
Theory and Application of Unsteady Catalytic Detoxication of Effluent Gases from Sulfur Dioxide, Nitrogen Oxides and Organic Compounds
In compilation 10th International Symposium on Chemical Reaction Engineering (ISCRE 10). Basle, Switzerland, 29 August – 1 September 1988. 1988. – C.2061-2066. – ISBN 9780080369693. DOI: 10.1016/b978-0-08-036969-3.50052-x OpenAlex
Theory and Application of Unsteady Catalytic Detoxication of Effluent Gases from Sulfur Dioxide, Nitrogen Oxides and Organic Compounds
In compilation 10th International Symposium on Chemical Reaction Engineering (ISCRE 10). Basle, Switzerland, 29 August – 1 September 1988. 1988. – C.2061-2066. – ISBN 9780080369693. DOI: 10.1016/b978-0-08-036969-3.50052-x OpenAlex
Identifiers:
OpenAlex: | W4236681835 |
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