Effect of CaO on NOx Reduction by Selective Non-Catalytic Reduction under Variable Gas Compositions in a Simulated Cement Precalciner Atmosphere

High-concentration CaO particles and gas compositions have a significant influence on NOx reduction by selective non-catalytic reduction (SNCR) in cement precalciners. The effect of gas composition on NOx reduction by SNCR with NH3 was studied in a cement precalciner atmosphere with and without CaO...

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Main Authors: Ye Sun, Weiyi Fan, Tianle Zhu, Xiaowei Hong
Format: Article
Language:English
Published: MDPI AG 2017-11-01
Series:International Journal of Environmental Research and Public Health
Subjects:
CaO
Online Access:https://www.mdpi.com/1660-4601/14/12/1474
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spelling doaj-4b449d0d609543d5b5237c248b4e71dc2020-11-25T00:08:37ZengMDPI AGInternational Journal of Environmental Research and Public Health1660-46012017-11-011412147410.3390/ijerph14121474ijerph14121474Effect of CaO on NOx Reduction by Selective Non-Catalytic Reduction under Variable Gas Compositions in a Simulated Cement Precalciner AtmosphereYe Sun0Weiyi Fan1Tianle Zhu2Xiaowei Hong3School of Space and Environment, Beihang University, Beijing 100191, ChinaSchool of Space and Environment, Beihang University, Beijing 100191, ChinaSchool of Space and Environment, Beihang University, Beijing 100191, ChinaSchool of Space and Environment, Beihang University, Beijing 100191, ChinaHigh-concentration CaO particles and gas compositions have a significant influence on NOx reduction by selective non-catalytic reduction (SNCR) in cement precalciners. The effect of gas composition on NOx reduction by SNCR with NH3 was studied in a cement precalciner atmosphere with and without CaO at 700–1100 °C. It was found that CaO significantly lowers NOx reduction efficiency between 750 °C and 1000 °C, which is attributed to the catalytic oxidation of NH3 to NO. Although increasing NH3 concentration was advantageous to NOx reduction, the existence of CaO led to the opposite result at 750–900 °C. Adding H2O can suppress the negative effect of CaO on NOx reduction. Decreasing O2 content from 10% to 1% shifts the temperature range in which CaO has a significant effect from 750–1000 °C to 800–1050 °C. CO has a variety of influences on the CaO effect under different experimental conditions. The influences of NH3, H2O, O2, and CO on the effect of CaO can be attributed to the impacts of the gas compositions on gas-phase NH3 conversion, gas-solid catalytic NH3 oxidation, or both processes. A proposed pathway for the effect of gas compositions on NOx reduction in CaO-containing SNCR process was developed that well predicted the CaO-containing SNCR process.https://www.mdpi.com/1660-4601/14/12/1474CaONOx reductionSNCRcement precalciner atmosphere
collection DOAJ
language English
format Article
sources DOAJ
author Ye Sun
Weiyi Fan
Tianle Zhu
Xiaowei Hong
spellingShingle Ye Sun
Weiyi Fan
Tianle Zhu
Xiaowei Hong
Effect of CaO on NOx Reduction by Selective Non-Catalytic Reduction under Variable Gas Compositions in a Simulated Cement Precalciner Atmosphere
International Journal of Environmental Research and Public Health
CaO
NOx reduction
SNCR
cement precalciner atmosphere
author_facet Ye Sun
Weiyi Fan
Tianle Zhu
Xiaowei Hong
author_sort Ye Sun
title Effect of CaO on NOx Reduction by Selective Non-Catalytic Reduction under Variable Gas Compositions in a Simulated Cement Precalciner Atmosphere
title_short Effect of CaO on NOx Reduction by Selective Non-Catalytic Reduction under Variable Gas Compositions in a Simulated Cement Precalciner Atmosphere
title_full Effect of CaO on NOx Reduction by Selective Non-Catalytic Reduction under Variable Gas Compositions in a Simulated Cement Precalciner Atmosphere
title_fullStr Effect of CaO on NOx Reduction by Selective Non-Catalytic Reduction under Variable Gas Compositions in a Simulated Cement Precalciner Atmosphere
title_full_unstemmed Effect of CaO on NOx Reduction by Selective Non-Catalytic Reduction under Variable Gas Compositions in a Simulated Cement Precalciner Atmosphere
title_sort effect of cao on nox reduction by selective non-catalytic reduction under variable gas compositions in a simulated cement precalciner atmosphere
publisher MDPI AG
series International Journal of Environmental Research and Public Health
issn 1660-4601
publishDate 2017-11-01
description High-concentration CaO particles and gas compositions have a significant influence on NOx reduction by selective non-catalytic reduction (SNCR) in cement precalciners. The effect of gas composition on NOx reduction by SNCR with NH3 was studied in a cement precalciner atmosphere with and without CaO at 700–1100 °C. It was found that CaO significantly lowers NOx reduction efficiency between 750 °C and 1000 °C, which is attributed to the catalytic oxidation of NH3 to NO. Although increasing NH3 concentration was advantageous to NOx reduction, the existence of CaO led to the opposite result at 750–900 °C. Adding H2O can suppress the negative effect of CaO on NOx reduction. Decreasing O2 content from 10% to 1% shifts the temperature range in which CaO has a significant effect from 750–1000 °C to 800–1050 °C. CO has a variety of influences on the CaO effect under different experimental conditions. The influences of NH3, H2O, O2, and CO on the effect of CaO can be attributed to the impacts of the gas compositions on gas-phase NH3 conversion, gas-solid catalytic NH3 oxidation, or both processes. A proposed pathway for the effect of gas compositions on NOx reduction in CaO-containing SNCR process was developed that well predicted the CaO-containing SNCR process.
topic CaO
NOx reduction
SNCR
cement precalciner atmosphere
url https://www.mdpi.com/1660-4601/14/12/1474
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