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A Review of Low Temperature NH3-SCR for Removal of NOx
by
Damma, Devaiah
, Ettireddy, Padmanabha
, Reddy, Benjaram
, Smirniotis, Panagiotis
in
Ammonia
/ Catalysts
/ Chemical reactions
/ Chemical reduction
/ Fossil fuels
/ Industrial plant emissions
/ Low temperature
/ Metal oxides
/ Nitrogen oxides
/ Oxidation
/ Reaction intermediates
/ Reaction mechanisms
/ Selective catalytic reduction
/ Temperature
/ Transition metal oxides
2019
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A Review of Low Temperature NH3-SCR for Removal of NOx
by
Damma, Devaiah
, Ettireddy, Padmanabha
, Reddy, Benjaram
, Smirniotis, Panagiotis
in
Ammonia
/ Catalysts
/ Chemical reactions
/ Chemical reduction
/ Fossil fuels
/ Industrial plant emissions
/ Low temperature
/ Metal oxides
/ Nitrogen oxides
/ Oxidation
/ Reaction intermediates
/ Reaction mechanisms
/ Selective catalytic reduction
/ Temperature
/ Transition metal oxides
2019
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Do you wish to request the book?
A Review of Low Temperature NH3-SCR for Removal of NOx
by
Damma, Devaiah
, Ettireddy, Padmanabha
, Reddy, Benjaram
, Smirniotis, Panagiotis
in
Ammonia
/ Catalysts
/ Chemical reactions
/ Chemical reduction
/ Fossil fuels
/ Industrial plant emissions
/ Low temperature
/ Metal oxides
/ Nitrogen oxides
/ Oxidation
/ Reaction intermediates
/ Reaction mechanisms
/ Selective catalytic reduction
/ Temperature
/ Transition metal oxides
2019
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Journal Article
A Review of Low Temperature NH3-SCR for Removal of NOx
2019
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Overview
The importance of the low-temperature selective catalytic reduction (LT-SCR) of NOx by NH3 is increasing due to the recent severe pollution regulations being imposed around the world. Supported and mixed transition metal oxides have been widely investigated for LT-SCR technology. However, these catalytic materials have some drawbacks, especially in terms of catalyst poisoning by H2O or/and SO2. Hence, the development of catalysts for the LT-SCR process is still under active investigation throughout seeking better performance. Extensive research efforts have been made to develop new advanced materials for this technology. This article critically reviews the recent research progress on supported transition and mixed transition metal oxide catalysts for the LT-SCR reaction. The review covered the description of the influence of operating conditions and promoters on the LT-SCR performance. The reaction mechanism, reaction intermediates, and active sites are also discussed in detail using isotopic labelling and in situ FT-IR studies.
Publisher
MDPI AG
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