A. Montoya et al., Application of density functional theory to the study of the reaction of NO with char-bound nitrogen during combustion, J PHYS CH A, 104(36), 2000, pp. 8409-8417
The reaction of NO with char-bound nitrogen was studied using four model st
ructures to represent the nitrogen left with the char when coal is devolati
lized, The calculations were carried out to simulate combustion conditions
resulting in the absence and presence of preadsorbed oxygen on the char. De
nsity Functional theory at the B3LYP/6-31G(d) level was used to optimize th
e geometries of reactants, NO adsorption complexes, and products. Schematic
energy profiles for each reaction were obtained in order to elucidate mech
anisms for N2O evolution. We found that the NO molecule reacts with char-co
ntaining nitrogen to release predominantly N-2 and CO to the gas phase. For
the model char structures studied, the presence of adsorbed oxygen on the
char-containing nitrogen enhances the reduction of the NO molecule to N-2 a
s a predominant product of the reaction, but N2O can also be released as a
minor nitrogen product.