Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Amine Oxidation Catalyzed by NO2

View through CrossRef
Amine oxidation is a major risk in the deployment of amine scrubbing for CO2 capture from post-combustion flue gas. Oxidation probably occurs by dissolved oxygen at elevated temperature, Fe(III)/Fe(II) shuttling between the absorber and the stripper, and by NO2 in the absorber. Amine selection, dissolved oxygen removal, and solvent reclaiming mitigate oxidation due to dissolved oxygen and iron shuttle mechanism, but not by NO2. This work examines piperazine (PZ) oxidation by NO2 in a bench-scale high gas flow reactor (HGF). PZ is an effective second-generation solvent with high CO2 capacity, fast capture rate, good thermal stability, and good resistance to oxidation. Flue gas typically contains 0.5–5 ppm NO2 and 10–100 ppm NO. NO2 at 1 ppm in the flue gas appears to cause significant amine oxidation in pilot plant testing. PZ solution can easily absorb NO2, and it is hypothesized that NO2 can catalytically oxidize PZ through free-radical propagation. The issue may not be solved by a NO2 pre-scrubber since the coexistence of NO and O2 in the flue gas will keep producing non-negligible amounts of NO2 in the ductwork and the absorber after the NO2 incoming with the flue gas has been scrubbed. In addition, NO2 may not only oxidize PZ but also the intermediate degradation products, and it is unknown if the existence of dissolved iron influences the oxidation by NO2. Previous workers have also shown that NO2 is the stoichiometric source of nitrosamine. A comprehensive analysis of NO2 oxidation is needed to address solvent management and its health/environmental impact. The new high gas flow (HGF) reactor focuses only on the absorber environment and is simpler to interpret because it does not include oxidation at high temperatures and by dissolved metal catalysts from corrosion. This paper presents the results of HGF experiments and shows evidence to support a hypothesis of amine oxidation catalyzed by NO2, presents the synergic effect of NO2 and iron on amine oxidation, points out the different effects of NO2 in clean and degraded solvents, and demonstrates that NO2 not only can oxidize amines but also their degradation products.
Title: Amine Oxidation Catalyzed by NO2
Description:
Amine oxidation is a major risk in the deployment of amine scrubbing for CO2 capture from post-combustion flue gas.
Oxidation probably occurs by dissolved oxygen at elevated temperature, Fe(III)/Fe(II) shuttling between the absorber and the stripper, and by NO2 in the absorber.
Amine selection, dissolved oxygen removal, and solvent reclaiming mitigate oxidation due to dissolved oxygen and iron shuttle mechanism, but not by NO2.
This work examines piperazine (PZ) oxidation by NO2 in a bench-scale high gas flow reactor (HGF).
PZ is an effective second-generation solvent with high CO2 capacity, fast capture rate, good thermal stability, and good resistance to oxidation.
Flue gas typically contains 0.
5–5 ppm NO2 and 10–100 ppm NO.
NO2 at 1 ppm in the flue gas appears to cause significant amine oxidation in pilot plant testing.
PZ solution can easily absorb NO2, and it is hypothesized that NO2 can catalytically oxidize PZ through free-radical propagation.
The issue may not be solved by a NO2 pre-scrubber since the coexistence of NO and O2 in the flue gas will keep producing non-negligible amounts of NO2 in the ductwork and the absorber after the NO2 incoming with the flue gas has been scrubbed.
In addition, NO2 may not only oxidize PZ but also the intermediate degradation products, and it is unknown if the existence of dissolved iron influences the oxidation by NO2.
Previous workers have also shown that NO2 is the stoichiometric source of nitrosamine.
A comprehensive analysis of NO2 oxidation is needed to address solvent management and its health/environmental impact.
The new high gas flow (HGF) reactor focuses only on the absorber environment and is simpler to interpret because it does not include oxidation at high temperatures and by dissolved metal catalysts from corrosion.
This paper presents the results of HGF experiments and shows evidence to support a hypothesis of amine oxidation catalyzed by NO2, presents the synergic effect of NO2 and iron on amine oxidation, points out the different effects of NO2 in clean and degraded solvents, and demonstrates that NO2 not only can oxidize amines but also their degradation products.

Related Results

Secondary new particle formation initiated by sulfuric acid-amine nucleation in Beijing
Secondary new particle formation initiated by sulfuric acid-amine nucleation in Beijing
<p>Secondary new particle formation is an important source of the number concentration of atmospheric aerosols. Despite relatively high coagulation sinks contributed ...
2152
2152
It has been recognized recently that trees can assimilate NO2 directly through leaf stomata. Both laboratory and field studies have measured the foliar NO2 deposition velocity, whi...
Preparation of amine functionalized silica by the one-step in spray drying system
Preparation of amine functionalized silica by the one-step in spray drying system
Abstract Amine functionalized silica has been successfully prepared using a direct co-condensation method in spray-assisted with sodium silicate as silica source and...
Space-borne Air Quality Monitoring of Nitrogen dioxide (NO2) over Karachi and Lahore using Remote Sensing Tools
Space-borne Air Quality Monitoring of Nitrogen dioxide (NO2) over Karachi and Lahore using Remote Sensing Tools
In this study, we used Sentinel-5P TROPOMI satellite data to examine the NO2 and gas concentrations in the cities of Lahore and Karachi, Pakistan, and to use environmental valuatio...
Spatiotemporal Analysis of NO2 Production Using TROPOMI Time-Series Images and Google Earth Engine in a Middle Eastern Country
Spatiotemporal Analysis of NO2 Production Using TROPOMI Time-Series Images and Google Earth Engine in a Middle Eastern Country
Like many developing countries, Iran faces air pollution, especially in its metropolises and industrial cities. Nitrogen dioxide (NO2) is one of the significant air pollutants; the...
Temporal variation of tropospheric NO2 columns in Vietnam during 2015–2020
Temporal variation of tropospheric NO2 columns in Vietnam during 2015–2020
Nitrogen dioxide (NO2) in the atmosphere can be measured using the tropospheric NO2 columns, indicating the number of molecules of NO2 in an atmospheric column from the ground surf...
Past and future simulations of NO 2 from a coupled chemistry-climate model in comparison with observations
Past and future simulations of NO 2 from a coupled chemistry-climate model in comparison with observations
Abstract. Trends in NO2 derived from a 45 year integration of a chemistry-climate model (CCM) run have been compared with ground-based NO2 measurements at Lauder (45° S) and Arriva...

Back to Top