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Theoretical Investigation of the Formation Mechanism of NH3 and HCN during Pyrrole Pyrolysis: The Effect of H2O

机译:吡咯溶解过程中NH3和HCN形成机制的理论研究:H2O的作用

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摘要

Coal is a major contributor to the global emission of nitrogen oxides (NOx). The NOx formation during coal utilization typically derives from the thermal decomposition of N-containing compounds (e.g., pyrrolic groups). NH3 and HCN are common precursors of NOx from the decomposition of N-containing compounds. The existence of H2O has significant influences on the pyrrole decomposition and NOx formation. In this study, the effects of H2O on pyrrole pyrolysis to form NOx precursors HCN and NH3 are investigated using the density functional theory (DFT) method. The calculation results indicate that the presence of H2O can lead to the formation of both NH3 and HCN during pyrrole pyrolysis, while only HCN is formed in the absence of H2O. The initial interaction between pyrrole and H2O determines the N products. NH3 will be formed when H2O attacks the C2 position of pyrrole with its hydroxyl group. On the contrary, HCN will be generated instead of NH3 when H2O attacks the C3 position of pyrrole with its hydroxyl group. In addition, the DFT calculations clearly indicate that the formation of NH3 will be promoted by H2O, whereas the formation of HCN is inhibited.
机译:煤是全球氮氧化物排放(NOx)的主要贡献者。煤利用过程中的NOx形成通常来自含N醛化合物的热分解(例如,吡咯基团)。 NH 3和HCN是来自含N醛化合物的分解的NOx的常见前体。 H2O的存在对吡咯分解和NOx形成具有显着影响。在该研究中,使用密度泛函理论(DFT)方法研究了H2O对吡咯吡咯酯对吡咯热解形成NOx前体HCN和NH 3的影响。计算结果表明,在吡咯热解期间,H2O的存在可以导致NH 3和HCN的形成,而在不存在H 2 O的情况下仅形成HCN。吡咯和H2O之间的初始相互作用决定了N个产品。当H2O与其羟基攻击吡咯的C2位置时,将形成NH 3。相反,当H2O与其羟基攻击吡咯的C3位置时,将产生HCN而不是NH 3。此外,DFT计算清楚地表明NH 3的形成将通过H 2 O促进,而HCN的形成被抑制。

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