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Kinetics and Mechanism Study of Low-Temperature Selective Catalytic Reduction of NO with Urea Supported on Pitch-Based Spherical Activated Carbon

化学 催化作用 尿素 选择性催化还原 歧化 动力学 吸附 活化能 反应机理 氧化还原 化学动力学 氮氧化物 活性炭 速率决定步骤 反应速率 无机化学 物理化学 有机化学 燃烧 物理 量子力学
作者
Zhi Wang,Yanli Wang,Donghui Long,Isao Mochida,Wenming Qiao,Liang Zhan,Xiaojun Liu,Seong‐Ho Yoon,Licheng Ling
出处
期刊:Industrial & Engineering Chemistry Research [American Chemical Society]
卷期号:50 (10): 6017-6027 被引量:20
标识
DOI:10.1021/ie102506q
摘要

The kinetics and mechanism of selective catalytic reduction (SCR) of NO with urea supported on pitch-based spherical activated carbons (PSACs) were studied at low temperatures. NO oxidation to NO2 catalyzed by the 0.5−0.8 nm micropores in PSACs was found to be the rate-limiting step in urea−SCR reaction, which was confirmed by both the apparent activation energy calculations and the kinetics results of urea−SCR reaction and NO oxidation on PSAC. These two reactions gave very similar negative apparent activation energies (−16.5 kJ/mol for urea−SCR reaction and −15.2 kJ/mol for NO oxidation), indicating that the adsorption of reactants on PSAC is of key importance in these two reactions. Moreover, these two reactions were both approximately first-order with respect to NO and one-half order with respect to O2. It was found that NO3 from the disproportionation of the produced NO2 was quickly reduced by supported urea into N2. After the complete consumption of supported urea, NO2 started to release, and the carbon surface was gradually oxidized by adsorbed NOx species. NO3 was found to be stably adsorbed on the oxidized carbon surface. On the basis of the results obtained, a reaction mechanism of low-temperature urea-SCR reaction on PSAC was proposed and discussed.
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