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煅烧温度对Mn-Ce/TiO_(2)脱硝催化剂性能的影响研究
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作者 岳彦伟 黄力 +5 位作者 卢陆洋 王素芹 纵宇浩 李金珂 王虎 郭立行 《稀有金属与硬质合金》 北大核心 2026年第1期108-113,140,共7页
将浸渍法制备的Mn-Ce/TiO_(2)催化剂在300~500℃下进行煅烧,通过XRD、BET、XPS、H_(2)-TPR、NH_(3)-TPD以及脱硝性能测试,研究了煅烧温度对Mn-Ce/TiO_(2)脱硝催化剂的物理化学性质以及脱硝效率的影响。结果表明:适宜的煅烧温度(400℃)... 将浸渍法制备的Mn-Ce/TiO_(2)催化剂在300~500℃下进行煅烧,通过XRD、BET、XPS、H_(2)-TPR、NH_(3)-TPD以及脱硝性能测试,研究了煅烧温度对Mn-Ce/TiO_(2)脱硝催化剂的物理化学性质以及脱硝效率的影响。结果表明:适宜的煅烧温度(400℃)有利于提高催化剂的Mn^(4+)、Ce^(3+)和化学吸附氧(O_(α))含量,促进脱硝反应的进行。然而,过高的煅烧温度(≥450℃)会导致催化剂的活性组分MnO_(x)的粒度增大以及分散度降低,催化剂的比表面积下降;并且n(Mn^(4+))/n(Mn^(2+)+Mn^(3+)+Mn^(4+))、n(Ce^(3+))/n(Ce^(3+)+Ce^(4+))和n(O_(α))/n(O_(α)+O_(β))下降,还原性能降低,对脱硝活性具有不利影响。在120~270℃的烟气温度范围内,当煅烧温度为400℃时制备的催化剂的脱硝活性最优。 展开更多
关键词 煅烧温度 脱硝催化剂 mn-Ce/TiO_(2) 脱硝效率
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Studies on the Preparation and Catalyticproperties of Fe-C-Mn Ultrafine particle Catalyst in F-T synthesis 被引量:1
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作者 ZHANG Jing-chang LU jiang-yin CAO Wei-liang and YANG Lin-shong(Dept. of Appl. Chem., Beijing Univerity of Chemical Technology, Beijing, 100029) 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 1996年第1期87-91,共5页
Based on the Fe/C ultrafine particle obtained by means of laser pyrolysis method, a series of Fe-C-Mn ultrafine particle catalysts for F-T synthesis were prepared by adding certain amounts of Mn organic compounds to t... Based on the Fe/C ultrafine particle obtained by means of laser pyrolysis method, a series of Fe-C-Mn ultrafine particle catalysts for F-T synthesis were prepared by adding certain amounts of Mn organic compounds to the Fe/C UFP. XRD and TEM tests for the obtained catalysts showed that the active phases, α-Fe, Fe3Cand (Fe,Mn)O. were directly obtained. and that the particle size was in the range of 2-4 nm. The catalysts so obtained have stable structure, long life, high activity and selectivity for light olefins, especially for propylene. Testing of the crystal structure in the process of the reaction demonstrated the carbonide mechanism of FT synthesis and the presence of α-Fe, FexCy and (Fe, Mn)O, thus supporting the belief that these are the active phases. 展开更多
关键词 F-T synthesis Ultrafine particle Fe-C-mn catalyst
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Well-dispersed Mn/g-C_(3)N_(4)as bifunctional catalysts for selective epoxidation of olefins and carbon dioxide cycloaddition
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作者 Minxing Du Yuxia Sun +3 位作者 Jiaojiao Zhao Haiyan Hu Liwei Sun Yuehui Li 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第12期150-154,共5页
Epoxidation is an important chemical process for the production of epoxides,key building blocks in chemical industry.Despite great efforts being made to facilitate this process,it remains a significant challenge to de... Epoxidation is an important chemical process for the production of epoxides,key building blocks in chemical industry.Despite great efforts being made to facilitate this process,it remains a significant challenge to develop cost-effective,environmental-friendly,and selective catalysts.Herein,we reported a highly dispersed Mn supported by g-C_(3)N_(4)(Mn/g-C_(3)N_(4))with Mn loading up to 2.56 wt%.The Mn/g-CN_(4)exhibited satisfied catalytic performance for olefin epoxidation with excellent conversion(91%),high selectivity(93%)as well as outstanding recycling stability.Further analysis revealed the importance of Mn-N structure for the generation of active oxo-containing species and subsequent oxygen atom transfer.Besides,an efficient synthesis of cyclic carbonates from styrene epoxide and CO_(2)has been achieved(88%conversion,89%selectivity)based on the polar Mn-N coordinated characteristics of Mn/g-C_(3)N_(4)catalyst. 展开更多
关键词 Well-dispersed mn catalyst Bifunctional catalyst EPOXIDATION CO_(2) CYCLOADDITION
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Mn-Cu复合催化过硫酸盐降解木质素类污染物的研究
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作者 安俊健 卢锦程 +1 位作者 汪珊珊 王鹏 《中国造纸》 北大核心 2025年第1期155-165,共11页
本研究以二氧化锰、硝酸铜和二甲基咪唑为原料,采用共沉淀法制备了MnO_(2)-Cu(mIM)2双金属复合催化剂,利用该催化剂活化过硫酸盐以降解木质素模型物香草酸。采用单因素法及响应面法研究催化剂制备和反应条件对催化剂催化活化效率的影响... 本研究以二氧化锰、硝酸铜和二甲基咪唑为原料,采用共沉淀法制备了MnO_(2)-Cu(mIM)2双金属复合催化剂,利用该催化剂活化过硫酸盐以降解木质素模型物香草酸。采用单因素法及响应面法研究催化剂制备和反应条件对催化剂催化活化效率的影响,进一步探讨了催化剂的催化机理。研究表明,在催化剂用量0.387 g/L、氧化剂初始浓度1.3 mmol/L、pH值为6.1的条件下,可以降解94.23%的香草酸;三维荧光检测表明,该催化剂可以有效催化氧化降解对造纸废水中污染物;电子顺磁共振表征表明,该降解体系中的主要反应活性物质是^(1)O_(2)、·OH和SO_(4)^(-)·,其中非自由基^(1)O_(2)起主要作用。 展开更多
关键词 过硫酸盐 mn-Cu双金属复合催化剂 木质素 造纸废水 降解
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Performance enhancement mechanism of Mn-based catalysts prepared under N_2 for NO_x removal:Evidence of the poor crystallization and oxidation of MnO_x 被引量:10
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作者 Kai Qi Junlin Xie +2 位作者 De Fang Fengxiang Li Feng He 《Chinese Journal of Catalysis》 EI CSCD 北大核心 2017年第5期845-852,共8页
Among multitudinous metal‐oxide catalysts for the selective catalytic reduction of NOx with NH3(NH3‐SCR),Mn‐based catalysts have become very popular and developed rapidly in recent years because of its superior low... Among multitudinous metal‐oxide catalysts for the selective catalytic reduction of NOx with NH3(NH3‐SCR),Mn‐based catalysts have become very popular and developed rapidly in recent years because of its superior low‐temperature denitrification activity,mainly originating from multi‐valence of Mn.Most studies suggest that the catalytic activity of multi‐component oxides is superior to that of single‐component catalysts owing to the synergistic effect among the metallic elements in such materials,of which more attentions have been given to Ce as an additive owing to its powerful oxygen storage capacity,redox ability and its ready availability.As the core of SCR technology,the research points in catalyst development at the present stage of all researchers in countries mainly centralize on the optimization of active components,carriers,calcination temperature,calcination time and temperature‐raising procedure,giving little thought to the effects of the calcination atmosphere.In the present work,Ce‐modified Mn‐based catalysts were prepared by a simple impregnation method.The effects of the calcination atmosphere(N2,air or O2)on the performance of the resulting materials during NH3‐SCR and its causes of the differences were subsequently investigated and characterized using various analytical methods.Data obtained from X‐ray diffraction,thermogravimetry and temperature‐programmed reduction with hydrogen show that calcination under N2reduces both the degree of oxidation and crystallization of the MnOx.Scanning electron microscopy also demonstrates that the use of N2inhibits the growth of grains and increases the dispersion of the catalysts.In addition,the results of temperature‐programmed desorption with ammonia indicate that catalysts calcined under N2exhibit a greater quantity of acid sites.Finally,X‐ray photoelectron spectrometry and activity results demonstrate that MnOx in the lower valence states is more favorable for NH3‐SCR reactions.In conclusion,catalysts calcined under N2show superior performance during NH3‐SCR for NOx removal,allowing NO conversions up to94%at473K. 展开更多
关键词 mn‐based catalyst Selective catalytic reduction Calcination atmosphere mn species Oxidation degree Crystallization degree
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Promoting effect and mechanism of neodymium on low-temperature selective catalytic reduction with NH3 over Mn/TiO2 catalysts 被引量:6
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作者 Peng Wu Yaping Zhang +3 位作者 Ke Zhuang Kai Shen Sheng Wang Tianjiao Huang 《Journal of Rare Earths》 SCIE EI CAS CSCD 2020年第11期1215-1223,I0003,共10页
Series of Mn/TiO2 catalysts modified with various contents of Nd for low-temperature SCR were synthesized.It can be found that the appropriate amount of Nd can markedly reduce the take-off temperature of Mn/TiO2 catal... Series of Mn/TiO2 catalysts modified with various contents of Nd for low-temperature SCR were synthesized.It can be found that the appropriate amount of Nd can markedly reduce the take-off temperature of Mn/TiO2 catalyst to 80℃and NOx conversion is stabilized over 90%in the wide temperature range of 100-2600 C.0.1 Nd-Mn/Ti shows higher N2 selectivity and better SO2 resistance than Mn/Ti catalyst.The results reveal that Nd-doped Mn/TiO2 catalyst exhibits larger BET surface area and better dispersion of active component Mn2O3.XPS results indicate that the optimal 0.1 Nd-Mn/Ti sample possesses higher concentration of Mn4+and larger amount of adsorbed oxygen at the surface compared with the unmodified counterpart.In situ DRIFTS show that the surface acidity is evidently increased after adding Nd,especially,the Lewis acid sites,and the intermediate(-NH2)is more stable.The reaction mechanism over Mn/Ti and 0.1 Nd-Mn/Ti catalysts obey the Eley-Rideal(E-R)mechanisms under low temperature reaction conditions.H2-TPR results show that Nd-Mn/TiO2 catalyst exhibits better lowtemperature redox properties. 展开更多
关键词 Nd modification mn/TiO2 catalyst LOW-TEMPERATURE Selective catalyst reduction MECHANISM Rare earths
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Reaction Chemistry of W-Mn/SiO2 Catalyst for the Oxidative Coupling of Methane 被引量:3
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作者 Shuben LiState Key Laboratory for Oxo Synthesis and Selective Oxidation, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2003年第1期1-9,共9页
Reaction chemistry of the OCM reaction on W-Mn/SiO_2 catalyst has beenreviewed in this account. Initial activity and selectivity, stability in a long-term reaction,reaction at elevated pressures and a modelling test i... Reaction chemistry of the OCM reaction on W-Mn/SiO_2 catalyst has beenreviewed in this account. Initial activity and selectivity, stability in a long-term reaction,reaction at elevated pressures and a modelling test in a stainless-steel fluidized-bed reactor showthat W-Mn/SiO_2 has promising performance for the development of an OCM process that directlyproduces ethylene from natural gas. A study on surface catalytic reaction kinetics and used catalyststructure characterization revealed a possible reason why C_2 and CO_x selectivity changed duringthe long-term reaction. Further improvement of the catalyst composition and preparation methodshould be a future direction of study on OCM reaction over W-Mn/SiO_2 catalyst. 展开更多
关键词 W-mn/SiO_2 catalyst oxidative coupling of methane elevated pressure METHANE
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Effect of loading content of copper oxides on performance of Mn-Cu mixed oxide catalysts for catalytic combustion of benzene 被引量:15
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作者 曹红岩 李小双 +2 位作者 陈耀强 龚茂初 王健礼 《Journal of Rare Earths》 SCIE EI CAS CSCD 2012年第9期871-877,共7页
A series of Mn-Cu mixed oxide catalysts were prepared by precipitation method. The catalysts were characterized by N2 adsorp- tion-desorption, H2-TPR and XPS. When the loading ratio of manganese oxides to copper oxide... A series of Mn-Cu mixed oxide catalysts were prepared by precipitation method. The catalysts were characterized by N2 adsorp- tion-desorption, H2-TPR and XPS. When the loading ratio of manganese oxides to copper oxides was 8:2 or 7:3, the catalysts possessed better catalytic activity, and benzene was converted completely at 558 K. Results of H2-TPR showed that the loading of a small amount of copper oxides decreased the reduction temperature of catalysts. Results of XPS showed that the loading of a small amount of copper oxides increased the proportion of manganese and defective oxygen on the surface of catalysts, and stabilized manganese at higher oxidation state. And the catalyst with the loading ratio 7:3 was a little worse than 8:2, since the interaction between manganese oxides and copper oxides is too strong, copper oxides migrate to the surface of catalysts and manganese oxides in excess are immerged. 展开更多
关键词 mn-Cu mixed oxide catalysts catalytic combustion BENZENE rare earths
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Preparation and characterization of Mn/MgAlFe as transfer catalyst for SO_x abatement 被引量:4
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作者 Ruiyu Jiang Honghong Shan Chunyi Li Chaohe Yang 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2011年第2期191-197,共7页
A series of manganese-promoted MgAlFe mixed oxides, used as sulfur transfer catalysts, were prepared by acid-processed gelatin method and characterized by TGA-DTA, XRD, N2 adsorption-desorption and FT-IR techniques. I... A series of manganese-promoted MgAlFe mixed oxides, used as sulfur transfer catalysts, were prepared by acid-processed gelatin method and characterized by TGA-DTA, XRD, N2 adsorption-desorption and FT-IR techniques. It was found that the sulfur transfer catalysts with 0.5?3.0 wt% manganese showed its good dispersion in the precursor. The novel Mn/MgAlFe catalysts with 0.5?5.0 wt% manganese oxide showed a high oxidative adsorption rate and sulfur adsorption capacity, and 5.0 wt% Mn/MgAlFe sample was superior to the others for SO2 removal. Moreover, the presence of CO had no obvious effect on the adsorption activity of sulfur transfer catalysts for SO2 uptake. 展开更多
关键词 sulfur transfer catalyst mn/MgAlFe SO2 emission control FCC unit
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Effects of operating parameters on oxidative coupling of methane over Na-W-Mn/SiO_2 catalyst at elevated pressures 被引量:2
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作者 Jafar Sadeghzadeh Ahari Mohammad Taghi Sadeghi Saeed Zarrinpashne 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2011年第2期204-213,共10页
The effects of operating parameters on oxidative coupling of methane (OCM) over Na-W-Mn/SiO2 catalyst have been studied at elevated pressures of 0.2, 0.3 and 0.4 MPa under low gaseous hourly space velocity (GHSV) ... The effects of operating parameters on oxidative coupling of methane (OCM) over Na-W-Mn/SiO2 catalyst have been studied at elevated pressures of 0.2, 0.3 and 0.4 MPa under low gaseous hourly space velocity (GHSV) and low temperature conditions. Experimental results show that when the operating pressure is increased, C2+ yield slightly decreases, while the maximum ratio of ethylene to ethane remains unchanged. Moreover, it has been found empirically that increase of pressure does not affect the catalyst behavior permanently, the catalyst recovers its original low pressure performance without hysteresis behavior by reducing the pressure. Under the investigated conditions, when oxygen is completely consumed, the increase of GHSV leads to improvement in C2 selectivity, while C3+ and COx selectivities decrease slightly. The C2+ selectivity increases by increase of nitrogen diluent in the feed, but the C3+ hydrocarbons selectivities decrease with increase of nitrogen since it is possible that further dilution at high pressure may reduce the probability of collision between CH3 and C2+ hydrocarbons. During the stability test at high pressure, the catalyst performance remains unchanged throughout the 20 h running. The fresh and used catalysts were characterized using XRD, SEM and N2 adsorption-desorption methods. It was found that the phase transformation of the support from α-cristobalite to tridymite and quartz does not have obvious effect on catalyst performance at high pressure. 展开更多
关键词 operating parameters oxidative coupling of methane Na-W-mn/SiO2 catalyst elevated pressure
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Catalytic combustion of VOCs on Pt/CuMnCe and Pt/CeY honeycomb monolithic catalysts 被引量:21
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作者 Anming Zhu Ying Zhou +4 位作者 Yue Wang Qiulian Zhu Huayan Liu Zekai Zhang Hanfeng Lu 《Journal of Rare Earths》 SCIE EI CAS CSCD 2018年第12期1272-1277,共6页
The metal oxides CuMnCe and CeY washcoats on cordierite were prepared using an impregnation method, and then used as support for the active Pt component to prepare the Pt/CuMnCe and Pt/CeY monolithic catalysts for the... The metal oxides CuMnCe and CeY washcoats on cordierite were prepared using an impregnation method, and then used as support for the active Pt component to prepare the Pt/CuMnCe and Pt/CeY monolithic catalysts for the deep oxidation of VOCs. In comparison with the Pt/CeY, CuMnCe, and CeY monolithic catalysts, the Pt/CuMnCe monolithic catalyst shows an excellent performance for toluene,ethyl acetate,and n-hexane oxidation and the Tis low to 216, 200 and 260 ℃,respectively. The active components Pt/PtO and CuMnCe result in a better synergetic interaction, which promote the catalyst reducibility, increase the oxygen mobility, and enhance the adsorption and activation of organic molecules. 展开更多
关键词 Catalytic combustion Volatile organic compounds Monolithic catalysts Pt catalyst Cu-mn-Ce mixed oxides
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In-situ synthesis of monolithic Cu-Mn-Ce/cordierite catalysts towards VOCs combustion 被引量:27
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作者 卢晗锋 周瑛 +2 位作者 黄海凤 张波 陈银飞 《Journal of Rare Earths》 SCIE EI CAS CSCD 2011年第9期855-860,共6页
A monolithic series of Cu-Mn-Ce oxides supported on cordierites with different Cu/Mn/Ce molar ratios were prepared by the in-situ sol-gel method without any binder. The catalysts were characterized by scanning electro... A monolithic series of Cu-Mn-Ce oxides supported on cordierites with different Cu/Mn/Ce molar ratios were prepared by the in-situ sol-gel method without any binder. The catalysts were characterized by scanning electron microscopy (SEM), energy dispersive spectrometer (EDS), X-ray diffraction (XRD), and Brunauer-Emmett-Teller method (BET) and examined in the catalytic combustion of volatile organic compounds (VOCs). The results showed that the well-dispersed nanometer particles of mixed oxides adhered firmly to the cordierite surface. Cu0.15Mn0.3Ce55/cordierite was identified as the most active catalyst. Compared with commercial Pd/Al2O3, Cu0.15Mn0.3Ce55/cordierite showed higher activities for the combustion of various types of VOCs, especially for oxy-derivative compounds which could be lighted off below 200 ℃. 展开更多
关键词 catalytic combustion volatile organic compounds (VOCs) monolithic catalysts Cu-mn-Ce mixed oxides rare earths
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Effect of CO_2 on the structural variation of Na_2WO_4/Mn/SiO_2 catalyst for oxidative coupling of methane to ethylene 被引量:2
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作者 Jia Shi Lu Yao Changwei Hu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2015年第4期394-400,共7页
In this work,the influence of CO2 on the structural variation and catalytic performance of Na2WO4/Mn/Si O2 for oxidative coupling of methane to ethylene was investigated. The catalyst was prepared by impregnation meth... In this work,the influence of CO2 on the structural variation and catalytic performance of Na2WO4/Mn/Si O2 for oxidative coupling of methane to ethylene was investigated. The catalyst was prepared by impregnation method and characterized by XRD,Raman and XPS techniques. Appropriate amount of CO2 in the reactant gases enhanced the formation of surface tetrahedral Na2WO4 species and promoted the migration of O in MOx,Na,W from the catalyst bulk to surface,which were favorable for oxidative coupling of methane. When the molar ratio of CH4/O2/CO2 was 3/1/2,enriched surface tetrahedral Na2WO4 species and high surface concentration of O in MOx,Na,W were detected,and then high CH4 conversion of 33.1% and high C2H4 selectivity of 56.2% were obtained. With further increase of CO2 in the reagent gases,the content of active surface tetrahedral Na2WO4 species and surface concentration of O in MOx,Na,W decreased,while that of inactive species(Mn WO4 and Mn2O3) increased dramatically,leading to low CH4 conversion and low C2H4 selectivity. It could be speculated that Na2WO4 crystal was transformed into Mn WO4 crystal with excessive CO2 added under the reaction conditions. Pretreatment of Na2WO4/Mn/Si O2 catalyst by moderate amount of CO2 before OCM also promoted the formation of Na2WO4 species. 展开更多
关键词 Oxidative coupling of methane CO2 C2H4 Na2WO4/mn/SiO2catalyst Structural variation
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A Kinetic Study of Selective Hydrogenation of Carbon Monoxide to C_2 Oxygenates on Rh-Mn-Li-Fe/SiO_2 Catalyst 被引量:2
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作者 Hongmei Yin, Yunjie Ding, Hongyuan Luo, Daiping He, Weimiao Chen, Zhiyong Ao, Liwu LinNatural Gas Utilization and Applied Catalysis Laboratory, Dalian Institute of Chemical Physics, The Chinese Academy of Sciences, Dalian 116023, China 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2003年第4期233-236,共4页
The kinetics of CO hydrogenation for the synthesis of C_2 oxygenates overRh-Mn-Li-Fe/SiO_2 was investigated. Kinetic parameters for the formation of ethanol, acetaldehyde,C'2 oxygenates, methanol and methane were ... The kinetics of CO hydrogenation for the synthesis of C_2 oxygenates overRh-Mn-Li-Fe/SiO_2 was investigated. Kinetic parameters for the formation of ethanol, acetaldehyde,C'2 oxygenates, methanol and methane were obtained. The activation energy. H_2 and CO dependenceorders for ethanol and acetaldehyde formation differed greatly, the large difference seemed to implythat they were formed through different intermediates. 展开更多
关键词 carbon monoxide hydrogenation Rh-mn-Li-Fe/SiO_2 catalyst C_2 oxygenates kinetic
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Cu-Mn型CO催化剂催化氧化特性及其影响因素研究 被引量:2
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作者 周露函 姜延航 +2 位作者 李旭 孙亚胜男 王丽新 《中国安全科学学报》 北大核心 2025年第1期127-136,共10页
为探究不同金属掺杂和沉淀温度对Cu-Mn型催化剂催化氧化CO性能的影响,首先采用共沉淀法制备Cu-Mn型CO催化剂,利用自主搭建的试验平台,测试分析不同金属掺杂和沉淀温度条件下Cu-Mn型CO催化剂催化氧化CO特性;然后通过全自动物理吸附仪和X... 为探究不同金属掺杂和沉淀温度对Cu-Mn型催化剂催化氧化CO性能的影响,首先采用共沉淀法制备Cu-Mn型CO催化剂,利用自主搭建的试验平台,测试分析不同金属掺杂和沉淀温度条件下Cu-Mn型CO催化剂催化氧化CO特性;然后通过全自动物理吸附仪和X射线衍射(XRD)分析仪获得催化剂的孔隙特征参数和表面晶型结构,采用原位漫反射红外光谱技术展示催化剂催化氧化CO的反应过程,并介绍催化剂在煤矿井下的应用前景。研究结果表明:试验测试时间内(80 s以内),随着反应时间的增加,CO体积分数表现为逐渐减小、缓慢增加后趋于平缓的变化特征,反应的CO物质的量逐渐增加。催化剂催化氧化CO效果越好,其比表面积越大,平均孔径越小,总孔容越大。当掺杂金属分别为Sn、Fe和Ce时,3种催化剂的催化氧化CO特性强弱由大到小为:CuMnO_(x)-Ce>CuMnO_(x)-Sn>CuMnO_(x)-Fe,参与反应的CO物质的量分别为0.0153、0.0093和0.0203 mol,CO消除效率分别为61%、47%和77%。沉淀温度为70℃时,催化剂的晶核数量要明显高于沉淀温度为60和80℃,当沉淀温度分别为60、70和80℃时,3种催化剂的催化氧化CO特性强弱由大到小为:CuMnO_(x)-Ce-70>CuMnO_(x)-Ce-80>CuMnO_(x)-Ce-60,参与反应的CO物质的量分别为0.01945、0.0203和0.0198 mol,CO消除速率分别为74%、77%和75%。含有丰富的表面氧空位是提高CO氧化反应和催化氧化性能的关键因素,CeO_(2)的存在有助于含碳物种的形成、氧活化和迁移。 展开更多
关键词 Cu-mn型CO催化剂 催化氧化特性 金属掺杂 沉淀温度 CO体积分数
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Transition Metal Doped MnO<sub>x</sub>-CeO<sub>2</sub>Catalysts by Ultrasonic Immersing for Selective Catalytic Reduction of NO with NH<sub>3</sub>at Low Temperature 被引量:1
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作者 Jinshuo Qiao Ning Wang +1 位作者 Cuiya Zhuang Kening Sun 《Modern Research in Catalysis》 2015年第1期13-19,共7页
Transition metals doped Mn-based catalysts were prepared via ultrasonic immersing method for the selective catalytic reduction (SCR) of NOx from fuel gas. The Catalysts’ DeNOx efficiency and tolerance to sulfur were ... Transition metals doped Mn-based catalysts were prepared via ultrasonic immersing method for the selective catalytic reduction (SCR) of NOx from fuel gas. The Catalysts’ DeNOx efficiency and tolerance to sulfur were investigated in the paper. XRD results demonstrate high dispersion of Mn, Ce and M (Pr, Y, Zr, W) elements on TiO2 carrier, which is favor for reduction of active materials content. Mn-Ce-W catalyst presents uniform particle size about 500 nm to 800 nm from SEM pictures and shows the best NOx conversion of 93.2% at 200&deg;C and 98.4% at 250&deg;C, respectively. Sulfur tolerance analysis indicated that transition metals M can improve the catalysts’ performance when 0.01% SO2 exists in the fuel gas, because metal doping into the Mn-Ce catalyst can inhibit the sulfate deposition, especially metal sulfate, on the catalyst, which can be seen from the Fourier infrared spectrum. 展开更多
关键词 mn-Based catalystS ULTRASONIC Immersing Method Selective CATALYTIC Reduction SULFUR Tolerance
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Mn基低温脱硝催化剂性能优化研究进展 被引量:5
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作者 许芸 邬博宇 +5 位作者 庄柯 张乾 徐静馨 张深根 朱法华 张柏林 《工程科学学报》 EI 北大核心 2025年第1期142-157,共16页
氮氧化物(NO_(x))是我国首要大气污染物,主要采用选择性催化还原(SCR)技术进行排放控制.研发高效、稳定的低温脱硝催化剂可避免高能耗的烟气再热,具有显著的节能降碳效益.锰氧化物(MnO_(x))因多变的化学态和丰富的晶格缺陷而表现出优良... 氮氧化物(NO_(x))是我国首要大气污染物,主要采用选择性催化还原(SCR)技术进行排放控制.研发高效、稳定的低温脱硝催化剂可避免高能耗的烟气再热,具有显著的节能降碳效益.锰氧化物(MnO_(x))因多变的化学态和丰富的晶格缺陷而表现出优良的氧化还原性能,并具有极强的表面酸性,在催化还原NO_(x)反应中表现出良好的低温活性,但N_(2)选择性低、抗H_(2)O/SO_(2)性能差,难以实现长期的高效稳定脱硝.近年来,改性提升Mn基催化剂的研究十分广泛,加快了Mn基催化剂工业应用的步伐.本文从低温活性、N_(2)选择性和稳定性三个方面,总结了Mn基催化剂的脱硝反应机理、元素掺杂改性、催化剂结构设计等最新研究进展,指出了当前的研究重点和难点,可为下一步研究提供参考. 展开更多
关键词 氮氧化物 选择性催化还原 锰基催化剂 N2选择性 稳定性 元素掺杂
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双功能Mn基催化剂在二氧化碳和环氧化物环加成反应中的应用
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作者 张湘南 马宏方 +2 位作者 钱炜鑫 张海涛 应卫勇 《低碳化学与化工》 北大核心 2025年第1期20-26,34,共8页
二氧化碳(CO_(2))和环氧化物环加成反应是目前合成环状碳酸酯的有效方法之一。催化剂对活化该反应中的CO_(2)和环氧化物具有重要意义。以2,2’-联吡啶及其衍生物为配体,Mn(CO)_(5)Br为金属源,乙醚为溶剂制备了一系列双功能Mn基催化剂L_(... 二氧化碳(CO_(2))和环氧化物环加成反应是目前合成环状碳酸酯的有效方法之一。催化剂对活化该反应中的CO_(2)和环氧化物具有重要意义。以2,2’-联吡啶及其衍生物为配体,Mn(CO)_(5)Br为金属源,乙醚为溶剂制备了一系列双功能Mn基催化剂L_(n)Mn(CO)_(3)Br(n=1~6)。通过^(1)H NMR、^(13)C NMR、HR-MS和FT-IR等对L_(n)Mn(CO)_(3)Br的化学结构、相对分子质量和化学基团等进行了表征。研究了L_(n)Mn(CO)_(3)Br在CO_(2)和环氧氯丙烷环加成反应中的催化性能,及L_(1)Mn(CO)_(3)Br对一系列环氧化物底物的适应性。结果表明,L_(n)Mn(CO)_(3)Br中给电子基团(甲氧基、叔丁基和甲基)的给电子性能和吡啶环上甲基的位置均对其催化性能有影响;对于CO_(2)和环氧氯丙烷环加成反应,在L_(1)Mn(CO)_(3)Br投加量(物质的量分数)为0.05%、反应温度为125℃和反应压力为3.0 MPa的条件下反应1 h,L_(1)Mn(CO)_(3)Br的环氧氯丙烷转化率和催化剂转换频率分别为42%和840 h^(-1);L_(1)Mn(CO)_(3)Br对多种环氧化物作底物的环加成反应具有适应性,且底物的空间位阻效应对其催化性能有较大影响。 展开更多
关键词 环状碳酸酯 双功能mn基催化剂 二氧化碳 环氧化物 环加成反应
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Synthesis of multi-walled carbon nanotubes using CoMnMgO catalysts through catalytic chemical vapor deposition
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作者 杨文 冯艳艳 +1 位作者 江成发 储伟 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第12期528-532,共5页
The Co Mg O and Co Mn Mg O catalysts are prepared by a co-precipitation method and used as the catalysts for the synthesis of carbon nanotubes(CNTs) through the catalytic chemical vapor deposition(CCVD). The effec... The Co Mg O and Co Mn Mg O catalysts are prepared by a co-precipitation method and used as the catalysts for the synthesis of carbon nanotubes(CNTs) through the catalytic chemical vapor deposition(CCVD). The effects of Mn addition on the carbon yield and structure are investigated. The catalysts are characterized by temperature programmed reduction(TPR) and X-ray diffraction(XRD) techniques, and the synthesized carbon materials are characterized by transmission electron microscopy(TEM) and thermo gravimetric analysis(TG). TEM measurement indicates that the catalyst Co Mg O enclosed completely in the produced graphite layer results in the deactivation of the catalyst. TG results suggest that the Co Mn Mg O catalyst has a higher selectivity for CNTs than Co Mg O. Meanwhile, different diameters of CNTs are synthesized by Co Mn Mg O catalysts with various amounts of Co content, and the results show that the addition of Mn avoids forming the enclosed catalyst, prevents the formation of amorphous carbon, subsequently promotes the growth of CNTs, and the catalyst with decreased Co content is favorable for the synthesis of CNTs with a narrow diameter distribution.The Co Mn Mg O catalyst with 40% Co content has superior catalytic activity for the growth of carbon nanotubes. 展开更多
关键词 Co mn Mg O catalyst carbon nanotubes chemical vapor deposition methane decomposition
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Mn基催化剂在VOCs和NO_(x)热催化净化中的研究进展
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作者 张燕萍 朱义年 +3 位作者 樊银明 周小斌 莫胜鹏 朱宗强 《环境工程学报》 北大核心 2025年第8期1769-1782,共14页
挥发性有机化合物(VOCs)和氮氧化物(NO_(x))的协同共治对环境保护起到至关重要的作用,也是降低PM2.5浓度、实现“空气质量持续改善行动计划”的重要环节,符合绿色可持续发展的新时代生态文明理念。近年来,开发具有同步去除VOCs和NO_(x)... 挥发性有机化合物(VOCs)和氮氧化物(NO_(x))的协同共治对环境保护起到至关重要的作用,也是降低PM2.5浓度、实现“空气质量持续改善行动计划”的重要环节,符合绿色可持续发展的新时代生态文明理念。近年来,开发具有同步去除VOCs和NO_(x)的双功能催化剂备受关注。此类催化剂需兼具VOCs催化氧化和NO_(x)选择性催化还原的功能,在设计中多采用双元或多元金属催化剂。Mn基催化剂因其价格低廉、价态丰富且可与多种金属构建氧化还原循环等优点,在VOCs和NO_(x)热催化净化领域中展现出广阔的应用前景而成为研究热点之一。本文综述了Mn基催化剂在VOCs、NO_(x)单独热催化和协同热催化净化中的最新研究进展,介绍了Mn基催化剂的分类、常用的制备方法及其在VOCs和NO_(x)热催化净化中抗中毒的研究成果。最后,对VOCs与NO_(x)协同热催化处理技术中是否添加氨作为还原剂的情况进行了分类讨论,并对该技术未来的发展方向进行了展望,为更好地构建新型高效多污染物协同催化净化体系提供一定的指导意义。 展开更多
关键词 挥发性有机化合物 mn基催化剂 氮氧化物 协同减排
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