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Highly dispersed V_2O_5/TiO_2 modified with transition metals(Cu,Fe,Mn,Co) as efficient catalysts for the selective reduction of NO with NH_3 被引量:30
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作者 赵欣 黄垒 +4 位作者 李红蕊 扈航 韩瑾 施利毅 张登松 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第11期1886-1899,共14页
Different transition metals were used to modify V2O5-based catalysts (M-V, M = Cu, Fe, Mn, Co) on TiO2 via impregnation, for the selective reduction of NO with NH3. The introduced metals induced high dispersion in t... Different transition metals were used to modify V2O5-based catalysts (M-V, M = Cu, Fe, Mn, Co) on TiO2 via impregnation, for the selective reduction of NO with NH3. The introduced metals induced high dispersion in the vanadium species and the formation of vanadates on the TiO2 support, and increased the amount of surface acid sites and the strength of these acids. The strong acid sites might be responsible for the high N2 selectivity at higher temperatures. Among these catalysts, Cu-V/TiO2 showed the highest activity and N2 selectivity at 225-375 ~C. The results of X-ray photo- electron spectroscopy, NH3-temperature-programmed desorption, and in-situ diffuse reflectance infrared Fourier transform spectroscopy suggested that the improved performance was probably due to more active surface oxygen species and increased strong surface acid sites. The outstanding activity, stability, and SO2/H2O durability of Cu-V/TiO2 make it a candidate to be a NOx removal catalyst for stationary flue gas. 展开更多
关键词 deNOx Selective catalytic reduction Vanadate Transition metal
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醇酮氧化制己二酸工艺条件优化 被引量:1
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作者 石鸣彦 程光剑 翟国栋 《石化技术与应用》 CAS 2019年第6期396-398,共3页
以醇酮为原料,硝酸铜和硝酸钒为催化剂,硝酸为氧化剂,制备了己二酸。结果表明:在氧化酸(硝酸铜、硝酸钒和硝酸的混合溶液)/醇酮(体积比)为3.8∶1.0,醇酮进料速率为72 mL/h,引发温度为70℃,反应温度为70~104℃,反应压力为-0.010 MPa(表... 以醇酮为原料,硝酸铜和硝酸钒为催化剂,硝酸为氧化剂,制备了己二酸。结果表明:在氧化酸(硝酸铜、硝酸钒和硝酸的混合溶液)/醇酮(体积比)为3.8∶1.0,醇酮进料速率为72 mL/h,引发温度为70℃,反应温度为70~104℃,反应压力为-0.010 MPa(表压),后反应油浴温度为85℃的最佳条件下,产物中丙酸、丁二酸、戊二酸和己二酸质量分数依次为0.038%,2.730%,5.642%,34.010%。 展开更多
关键词 醇酮 硝酸 硝酸钒 硝酸 己二酸 反应条件
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Studies on the roles of vanadyl sulfate and sodium nitrite in catalytic oxidation of benzyl alcohol with molecular oxygen 被引量:1
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作者 Zhongtian Du Junxia Liu +2 位作者 Tianliang Lu Yangyang Ma Jie Xu 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第1期114-122,共9页
An efficient catalytic system consisting of vanadyl sulfate/sodium nitrite was disclosed previously for the oxidation of benzylic alcohols into aldehydes with molecular oxygen.However,the roles of catalyst components ... An efficient catalytic system consisting of vanadyl sulfate/sodium nitrite was disclosed previously for the oxidation of benzylic alcohols into aldehydes with molecular oxygen.However,the roles of catalyst components were not investigated.In this paper,we examined catalytic oxidation of benzyl alcohol as a model reaction,especially by infrared spectroscopy.The role of each component is discussed including nitrite,vanadyl,sulphate,and water.Sodium nitrite could be converted into nitrate and nitric acid.The vanadium(IV)could be smoothly oxidized into vanadium(V)under mild and acidic conditions without any organic ligands.The transformation of sulfate and bisulfate,the cessation of an induction period,and the oxidation of benzyl alcohol were closely interrelated.The multiple roles of water are discussed,including reduction of the induction period,participation in redox cycles of nitric compounds,deactivation of vanadium,and as a byproduct of oxidation.This study contributes to further development of aerobic oxidation using vanadium based catalysts. 展开更多
关键词 catalytic oxidation ALCOHOL infrared spectroscopy NITRITE VANADIUM
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