Application of urea based SNCR system in the combustion effluent containing low level of baseline nitric oxide

Selective Non-Catalytic Reduction (SNCR) of nitric oxide has been studied experimentally by injecting aqueous urea solution with and without additive in a pilot-scale diesel fired tunnel furnace at 3.4% excess oxygen level and with low ppm of baseline NO(x) ranging from 65 to 75 ppm within the inves...

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Main Authors: Hossain, K. A., Mohd. Jaafar, M. N., Appalanide, K. B., Mustafa, A., Ani, F. N.
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Published: Taylor and Francis Ltd 2005
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Online Access:http://eprints.utm.my/id/eprint/7063/
http://doi.dx.org/10.1080/09593332608618557
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spelling my.utm.70632017-10-22T07:52:36Z http://eprints.utm.my/id/eprint/7063/ Application of urea based SNCR system in the combustion effluent containing low level of baseline nitric oxide Hossain, K. A. Mohd. Jaafar, M. N. Appalanide, K. B. Mustafa, A. Ani, F. N. TJ Mechanical engineering and machinery Selective Non-Catalytic Reduction (SNCR) of nitric oxide has been studied experimentally by injecting aqueous urea solution with and without additive in a pilot-scale diesel fired tunnel furnace at 3.4% excess oxygen level and with low ppm of baseline NO(x) ranging from 65 to 75 ppm within the investigated temperature range. The tests have been carried out using commercial grade urea as NO(x) reducing agent and commercial grade sodium carbonate as additive. The furnace simulated the small-scale combustion systems, where the operating temperatures are usually in the range of about 973 to 1323 K and NO(x) emission level remains below 100 ppm. With 5% plain urea solution, at Normalized Stoichiometric Ratio (NSR) of 4 as much as 54% reduction was achieved at 1128 K, whilst in the additive case the NO(x) reduction was improved to as much as 69% at 1093 K. Apart from this improvement, in the additive case, the effective temperature window as well as peak temperature of NO(x) reduction shifted towards lower temperatures. The result is quite significant, especially for this investigated level of baseline NO(x). The ammonia slip measurements showed that in both cases the slip was below 16 ppm at NSR of 4 and optimum temperature of NO(x) reduction. Finally, the investigations demonstrated that urea based SNCR is quite applicable to small-scale combustion applications and commercial grade sodium carbonate is a potential additive. Taylor and Francis Ltd 2005-03 Article PeerReviewed Hossain, K. A. and Mohd. Jaafar, M. N. and Appalanide, K. B. and Mustafa, A. and Ani, F. N. (2005) Application of urea based SNCR system in the combustion effluent containing low level of baseline nitric oxide. Enviromental Technology Selper Ltd, 26 (3). pp. 251-260. ISSN 0959-3330 http://doi.dx.org/10.1080/09593332608618557
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Hossain, K. A.
Mohd. Jaafar, M. N.
Appalanide, K. B.
Mustafa, A.
Ani, F. N.
Application of urea based SNCR system in the combustion effluent containing low level of baseline nitric oxide
description Selective Non-Catalytic Reduction (SNCR) of nitric oxide has been studied experimentally by injecting aqueous urea solution with and without additive in a pilot-scale diesel fired tunnel furnace at 3.4% excess oxygen level and with low ppm of baseline NO(x) ranging from 65 to 75 ppm within the investigated temperature range. The tests have been carried out using commercial grade urea as NO(x) reducing agent and commercial grade sodium carbonate as additive. The furnace simulated the small-scale combustion systems, where the operating temperatures are usually in the range of about 973 to 1323 K and NO(x) emission level remains below 100 ppm. With 5% plain urea solution, at Normalized Stoichiometric Ratio (NSR) of 4 as much as 54% reduction was achieved at 1128 K, whilst in the additive case the NO(x) reduction was improved to as much as 69% at 1093 K. Apart from this improvement, in the additive case, the effective temperature window as well as peak temperature of NO(x) reduction shifted towards lower temperatures. The result is quite significant, especially for this investigated level of baseline NO(x). The ammonia slip measurements showed that in both cases the slip was below 16 ppm at NSR of 4 and optimum temperature of NO(x) reduction. Finally, the investigations demonstrated that urea based SNCR is quite applicable to small-scale combustion applications and commercial grade sodium carbonate is a potential additive.
format Article
author Hossain, K. A.
Mohd. Jaafar, M. N.
Appalanide, K. B.
Mustafa, A.
Ani, F. N.
author_facet Hossain, K. A.
Mohd. Jaafar, M. N.
Appalanide, K. B.
Mustafa, A.
Ani, F. N.
author_sort Hossain, K. A.
title Application of urea based SNCR system in the combustion effluent containing low level of baseline nitric oxide
title_short Application of urea based SNCR system in the combustion effluent containing low level of baseline nitric oxide
title_full Application of urea based SNCR system in the combustion effluent containing low level of baseline nitric oxide
title_fullStr Application of urea based SNCR system in the combustion effluent containing low level of baseline nitric oxide
title_full_unstemmed Application of urea based SNCR system in the combustion effluent containing low level of baseline nitric oxide
title_sort application of urea based sncr system in the combustion effluent containing low level of baseline nitric oxide
publisher Taylor and Francis Ltd
publishDate 2005
url http://eprints.utm.my/id/eprint/7063/
http://doi.dx.org/10.1080/09593332608618557
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score 13.188404