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Rational design of MoS_(2)-based catalysts toward lignin hydrodeoxygenation:Interplay of structure,catalysis,and stability
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作者 Xinyong Diao Na Ji 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第2期601-631,I0015,共32页
The MoS_(2)-based materials are a vital class of heterogeneous catalysts for the hydrodeoxygenation of lignin and its model compounds to produce value-added chemicals especially because of their unique selectivity to ... The MoS_(2)-based materials are a vital class of heterogeneous catalysts for the hydrodeoxygenation of lignin and its model compounds to produce value-added chemicals especially because of their unique selectivity to aromatics.The rational design of MoS_(2)-based catalyst greatly depends on the comprehensive understanding of its structure-activity relationship.However,an intensive summary and critical analysis are still scarce to date.In this review,we attempt to provide an in-depth understanding of the interplay of structure,catalysis,and stability of MoS_(2)-based catalysts for lignin hydrodeoxygenation.The recognition of intrinsic active sites on MoS_(2) structure was firstly discussed,followed by the illustration of MoS_(2)-catalyzed hydrodeoxygenation structural models.Afterward,based on the studies on the MoS_(2)-catalyzed lignin model compounds hydrodeoxygenation,the current active site modification strategies including structural modification of monometallic MoS_(2) catalysts and collaborative modification were summarized and emphatically discussed,which aims to elucidate the structure-activity relationship at the atomic-level.The deactivation mechanism and stabilization strategies were also illustrated to provide instructive suggestion for the rational design of efficient and stable MoS_(2)-based catalysts.Finally,the real lignin depolymerization over MoS_(2)-based catalysts was summarized to point out the advantages and difficulties.This review attempts to highlight the remaining challenges and provide some perspectives for the future development of MoS_(2)-based catalysts for lignin hydrodeoxygenation. 展开更多
关键词 Lignin hydrodeoxygenation MoS_(2)-based catalysts Structure-activity relationship Modification strategies Deactivation mechanism
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New technique of comprehensive utilization of spent Al_2O_3-based catalyst 被引量:3
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作者 冯其明 陈云 +3 位作者 邵延海 张国范 欧乐明 卢毅屏 《Journal of Central South University of Technology》 EI 2006年第2期151-155,共5页
A new technology was developed to recover multiple valuable elements from the spent Al2O3-based catalyst by X-ray phase analysis and exploratory experiments. The experimental results show that in the condition of roas... A new technology was developed to recover multiple valuable elements from the spent Al2O3-based catalyst by X-ray phase analysis and exploratory experiments. The experimental results show that in the condition of roasting temperature of 750℃ and roasting time of 30 min, molar ratio of Na2O to Al2O3 of 1.2, the leaching rates of alumina, vanadium and molybdenum in the spent catalyst are 97.2%, 95.8% and 98.9%, respectively. Vanadium and molybdenum in sodium aluminate solution can be recovered by precipitators A and B, and the precipitation rates of vanadium and molybdenum are 94.8% and 92.6%. Al(OH)3 was prepared from sodium aluminate solution in the carbonation decomposition process, and the purity of Al2O3 is 99.9% after calcination, the recovery of alumina reaches 90.6% in the whole process; the Ni-Co concentrate was leached by sulfuric acid, a nickel recovery of 98.2% and cobalt recovery over 98.5% can be obtained under the experimental condition of 30% H2SO4, 80℃, reaction time 4 h, mass ratio of liquid to solid 8, stirring rate 800r/min. 展开更多
关键词 spent Al2O3-based catalyst vanadium molybdenum comprehensive utilization roasting with sodium leaching rate
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Oxygen Evolution Efficiency and Chlorine Evolution Efficiency for Electrocatalytic Properties of MnO_2-based Electrodes in Seawater 被引量:1
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作者 YAN Zhenwei SONG Lijun +1 位作者 TANG Mingqi FENG Zaiqiang 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第1期69-74,共6页
To improve both oxygen evolution efficiency and stability at high temperatures, Mn, Mn+Mo, Mn+Mo+V, and Mn+Fe+V oxide electrodes were prepared on a Ti substrate, with an intermediate layer of IrO_2, by an anodic depos... To improve both oxygen evolution efficiency and stability at high temperatures, Mn, Mn+Mo, Mn+Mo+V, and Mn+Fe+V oxide electrodes were prepared on a Ti substrate, with an intermediate layer of IrO_2, by an anodic deposition method. The crystal structure, surface morphology, pore size distribution, specific surface area, and voltammetric charge were then characterized for each electrode. The results demonstrated that for Mn-O electrodes, the preferential orientation of the(100) crystal plane and the mesopore structure played negative roles in the oxygen evolution reaction. On the basis of the electrocatalytic properties of MnO2-based electrodes in seawater, the outer surface voltammetric charge at a scan rate of 500 mV·s-1 was shown to effectively indicate whether oxygen evolution reactions were preferred over chlorine evolution reactions. The Mn-O electrode exhibited oxygen evolution efficiency of only 47.27%, whereas the Mn+Mo, Mn+Mo+V and Mn+Fe+V oxide electrodes displayed oxygen evolution efficiency of nearly 100%. This means that adding Mo, V, and Fe elements to the electrode can improve its crystal structure and morphology as well as further enhancing its oxygen evolution efficiency. 展开更多
关键词 electrodeposition mno2-based ELECTRODES oxygen evolution reaction seawater electrolysis
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Tuned selectivity and enhanced activity of CO_(2) methanation over Ru catalysts by modified metal-carbonate interfaces 被引量:1
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作者 Qiaojuan Wang Yating Gao +4 位作者 Chantsalmaa Tumurbaatar Tungalagtamir Bold Fei Wei Yihu Dai Yanhui Yang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第1期38-46,I0002,共10页
Carbonate-modified metal-support interfaces allow Ru/MnCO_(3) catalyst to exhibit over 99% selectivity,great specific activity and long-term anti-CO poisoning stability in atmospheric CO_(2) methanation.As a contrast,... Carbonate-modified metal-support interfaces allow Ru/MnCO_(3) catalyst to exhibit over 99% selectivity,great specific activity and long-term anti-CO poisoning stability in atmospheric CO_(2) methanation.As a contrast,Ru/MnO catalyst with metal-oxide interfaces prefers reverse water-gas shift rather than methanation route,along with a remarkably lower activity and a less than 15% CH_(4) selectivity.The carbonatemodified interfaces are found to stabilize the Ru species and activate CO_(2) and H_(2) molecules.Ru-CO^(4) species are identified as the reaction intermediates steadily formed from CO_(2) dissociation,which show moderate adsorption strength and high reactivity in further hydrogenation to CH_(4),Furthermore,carbonates of Ru/MnCO_(3) are found to be consumed by hydrogenation to form CH_(4) and replenished by exchange with CO_(2),which are in a dynamic equilibrium during the reaction.Modification with surface carbonates is proved as an efficient strategy to endow metal-support interfaces of Ru-based catalysts with unique catalytic functions for selective CO_(2) hydrogenation. 展开更多
关键词 C0_(2)methanation Ru catalyst mno CARBONATE Metal-support interface
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Synthesis and study of λ-MnO_2 supported Pt nanocatalyst for methanol electro-oxidation 被引量:3
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作者 XIE Jia, LI Xiang, YU Zhihui, ZHANG Lijuan, LI Fan, and XIA Dingguo College of Environmental and Energy Engineering, Beijing University of Technology, Beijing 100124, China 《Rare Metals》 SCIE EI CAS CSCD 2010年第2期187-192,共6页
A λ-MnO2 supported Pt nanocatalyst(5 wt.% Pt/λ-MnO2) was synthesized using a facile approach.X-ray diffraction(XRD), X-ray photoelectron spectroscopy(XPS), scanning electronic microscope(SEM), transmission e... A λ-MnO2 supported Pt nanocatalyst(5 wt.% Pt/λ-MnO2) was synthesized using a facile approach.X-ray diffraction(XRD), X-ray photoelectron spectroscopy(XPS), scanning electronic microscope(SEM), transmission electron microscopy(TEM), and energy disperse spectroscopy(EDS) were used for catalyst structure and morphology characterization, which showed that the metallic Pt particles were attached on a λ-MnO2 surface through the interaction between Pt and λ-MnO2.Cyclic voltammetry(CV) was used to test the catalytic activity of Pt/λ-MnO2 toward methanol oxidation, which showed that Pt/λ-MnO2 catalyst has much higher catalytic activity than baseline Pt/C catalyst. 展开更多
关键词 electrochemistry composite catalyst mno2 Pt methanol oxidation
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在K-Fe-MnO/Silicalite-2催化剂上合成气转化为低碳烯烃的研究Ⅱ.MnO助剂的作用 被引量:7
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作者 徐龙伢 王清遐 +3 位作者 王开立 杨力 徐奕德 黄家生 《天然气化工—C1化学与化工》 CSCD 北大核心 1995年第1期14-18,共5页
在Silicalite-2分子筛担载的K-Fe/Si-2催化剂体系中添加MnO助剂,可明显提高CO/H2转化为低碳烯烃的选择性及催化活性。MnO助剂能促进K-Fe/Si-2催化剂中铁的还原,增加催化剂表面活性中心位,... 在Silicalite-2分子筛担载的K-Fe/Si-2催化剂体系中添加MnO助剂,可明显提高CO/H2转化为低碳烯烃的选择性及催化活性。MnO助剂能促进K-Fe/Si-2催化剂中铁的还原,增加催化剂表面活性中心位,从而提高催化剂对CO的吸附容量,提高催化剂活性;MnO助剂能抑制催化剂表面乙烯、丙烯加氢反应,从而有利于提高低碳烯烃选择性。 展开更多
关键词 分子筛 合成气 烯烃 催化剂 助剂 氧化锰
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CO_2加氢制低碳烯烃Fe/Silicalite-2催化剂研究 Ⅲ.K-Fe-MnO/Silicalite-2催化剂性能考察 被引量:5
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作者 徐龙伢 王清遐 +2 位作者 林励吾 梁东白 徐奕德 《天然气化工—C1化学与化工》 CSCD 北大核心 1997年第4期14-17,共4页
研究开发了一种具有高催化活性和高低碳烯烃选择性的K-Fe-MnO/Si-2担载型催化剂;考察了V(CO2)/V(H2)比、反应温度、反应气空速和反应压力对K-Fe-MnO/Si-2催化剂CO2加氢反应制低碳烯烃选择性... 研究开发了一种具有高催化活性和高低碳烯烃选择性的K-Fe-MnO/Si-2担载型催化剂;考察了V(CO2)/V(H2)比、反应温度、反应气空速和反应压力对K-Fe-MnO/Si-2催化剂CO2加氢反应制低碳烯烃选择性及催化活性的影响;考察催化剂稳定性及再生性能,对催化剂进行差热-热重分析结果表明,K-Fe-MnO/Si-2催化剂具有很好的催化稳定性能。 展开更多
关键词 低碳烯烃 二氧化碳 加氢 铁催化剂
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合成气在K-Fe-MnO/Silicalite-2催化剂上转化为低碳烯烃的研究 I.K_2O助剂的作用 被引量:2
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作者 徐龙伢 王清遐 +3 位作者 杨力 赵修松 徐奕德 黄家生 《天然气化工—C1化学与化工》 CAS CSCD 北大核心 1994年第6期15-20,共6页
K2O是催化剂Fe-MnO/Silicalite-2由合成气制低碳烯烃的有效助剂,K2O能明显提高催化剂活性及低碳烯烃选择性。K2O助剂将抑制部分铁的还原,但能增强催化剂对CO的吸附能力,从而能提高催化剂活性,抑制甲... K2O是催化剂Fe-MnO/Silicalite-2由合成气制低碳烯烃的有效助剂,K2O能明显提高催化剂活性及低碳烯烃选择性。K2O助剂将抑制部分铁的还原,但能增强催化剂对CO的吸附能力,从而能提高催化剂活性,抑制甲烷的生成,K2O助剂能抑制乙烯在催化剂表面的二次反应(尤其是乙烯的歧化反应),从而提高CO/H及反应制低碳烯烃的选择性。 展开更多
关键词 合成气 铁锰催化剂 低碳烯烃 氧化钾助剂
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液相共沉淀法制备MnO_2/CNFs催化剂及其低温脱硝性能 被引量:4
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作者 邹海强 杨隽逸 +2 位作者 郑玉婴 陈健 卢秀恋 《材料工程》 EI CAS CSCD 北大核心 2018年第9期53-58,共6页
以碳纳米纤维为载体,采用液相共沉淀法制备MnO_2/CNFs催化剂并将其应用于低温选择性催化还原(SCR)NO,利用BET,XRD,FESEM,EDS,TEM及XPS对催化剂的微观形貌、结构特征、元素组成以及价态分布进行表征。结果表明:催化剂的活性组分是MnO_2,... 以碳纳米纤维为载体,采用液相共沉淀法制备MnO_2/CNFs催化剂并将其应用于低温选择性催化还原(SCR)NO,利用BET,XRD,FESEM,EDS,TEM及XPS对催化剂的微观形貌、结构特征、元素组成以及价态分布进行表征。结果表明:催化剂的活性组分是MnO_2,且以无定型态负载于CNFs表面。在80~180℃下进行低温脱硝活性的测试。当负载量为6%时,MnO_2/CNFs催化剂的脱硝性能最为优异,在80℃时脱硝率就达到了65.25%,当温度升高至180℃时脱硝率达95.25%。无定型结构、良好的分散性以及较高的表面吸附氧含量是MnO_2/CNFs催化剂具有优异低温脱硝催化活性的主要原因。本研究在未经过任何酸处理的情况下使MnO_2负载在CNFs上,很大程度上减小了对环境的污染。 展开更多
关键词 液相共沉淀法 mno2/CNFs催化剂 脱硝 低温选择性催化还原 碳纳米纤维
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合成气在K-F-MnO/Silicalite-2催化剂上转化为低碳烯烃的研究──Ⅳ.模试放大试验效应
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作者 徐龙伢 王清遐 +2 位作者 杨力 王开立 赵修松 《天然气化工—C1化学与化工》 CSCD 北大核心 1995年第4期21-25,共5页
K-Fe-MnO/Silicalite-2催化剂经100ml模试反应装置评价表明,其CO加氢制低碳烯烃反应性能可达到小试结果,且反应温度可降低50~60℃,催化剂具有良好的操作稳定性;提高反应温度(尤其是反应器入口温... K-Fe-MnO/Silicalite-2催化剂经100ml模试反应装置评价表明,其CO加氢制低碳烯烃反应性能可达到小试结果,且反应温度可降低50~60℃,催化剂具有良好的操作稳定性;提高反应温度(尤其是反应器入口温度)将导致低碳烯烃选择性大幅度下降,增加反应气空速有利于提高低碳烯烃选择性,而增大反应压力则不利于提高其选择性。 展开更多
关键词 合成气 烯烃 模试放大 分子筛 氧化锰
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Preparation of M2O3-CeO2(M=La,Fe,and Al) Compoundoxide Catalyst and Its Degradation Performance 被引量:1
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作者 LI Youfeng LIN Jinliang +1 位作者 XIE Bo LIU Guoqing 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第2期335-341,共7页
As one of the most active rare earths,CeO2 has caused extensive concern due to its multifunctional properties.CeO2-based compound oxide of M2O3-CeO2(M=La,Fe,and Al)were prepared by coprecipitation and impregnation met... As one of the most active rare earths,CeO2 has caused extensive concern due to its multifunctional properties.CeO2-based compound oxide of M2O3-CeO2(M=La,Fe,and Al)were prepared by coprecipitation and impregnation methods.The photocatalytic performance of the samples for the degradation methylene blue was studied under UV and visible light irradiation.The effects of constituents on the properties of the CeO2-based catalysts were investigated by XRD,TEM,BET,and UV-Vis spectrophotometer.The highest degradation of methylene blue under 230W UV light was almost 100%at 50 min by La2O3/Fe2O3-CeO2/γ-Al2O3 catalyst and 99.42%at 50 min by Fe2O3-CeO2/γ-Al2O3 catalyst.The methylene blue removal efficiency under indoor natural light reaches 93.81%by La2O3/Fe2O3-CeO2/γ-Al2O3 catalyst and 92.34%by Fe2O3-CeO2/γ-Al2O3 catalyst at 50 min.The order of catalytic degradation activity is La2O3/Fe2O3-CeO2/γ-Al2O3>Fe2O3-CeO2/γ-Al2O3>La2O3-CeO2/γ-Al2O3>Al2O3,owing to their structural features.The doping of La^3+or Fe3+onto CeO2/γ-Al2O produced much more oxygen vacancies under light irradiation and reduced the energy laps of CeO2 with value of 2.86 ev,which improved the photocatalytic redox performance of the composite oxide. 展开更多
关键词 CeO2-based compound oxide catalyst DEGRADATION CATALYSIS
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Effect of Fe_2O_3 Loading Amount on Catalytic Properties of Monolithic Fe_2O_3/Ce_(0.67)Zr_(0.33)O_2-Al_2O_3 Catalyst for Methane Combustion 被引量:2
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作者 刘志敏 陈耀强 +3 位作者 钟俊波 王健礼 闫生辉 龚茂初 《Journal of Rare Earths》 SCIE EI CAS CSCD 2007年第5期585-589,共5页
Ce0.67Zr0.33O2-Al2O3 solid solution was prepared by the co-precipitation method. Fe2O3-based catalysts supported on the solid solution were obtained by the impregnation method. The article revealed that the optimal lo... Ce0.67Zr0.33O2-Al2O3 solid solution was prepared by the co-precipitation method. Fe2O3-based catalysts supported on the solid solution were obtained by the impregnation method. The article revealed that the optimal loading amount of Fe2O3 on Ce0.67Zr0.33 O2-Al2O3 in our experimental condition for catalytic combustion of methane was 8% ( mass fraction). The prepared catalysts were characterized by BET, TPR, XRD analyses, and their catalytic activity was investigated after being calcined at 873 K and after being aged in water gas at 1273 K. When the loading amount of Fe203 was 8% ( mass fraction), the catalyst held the highest activity, and the best temperature speciality and thermal stability. The complete-conversion temperature of methane for fresh and aged sample was 788 and 838 K, respectively. The range between the light-off temperature and the complete-conversion temperature was only 15 K. The characterization results of XRD indicated that Fe2O3 was well dispersed on the Ce0.67Zr0.33O2-Al2O3 matrix. The results of BET and TPR were in good harmony with the catalytic activity results. 展开更多
关键词 Ce0.67Zr0.33O2 -Al2O3 Fe2O3-based monolithic catalyst catalytic methane combustion catalytic properties
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Catalysts for decomposing ozone tail gas 被引量:1
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作者 LIU Chang-an, SUN De-zhi, WANG Hui, LI Wei (Department of Environmental Science and Engineering, Harbin Institute of Technology, Harbin 150001,China. 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2003年第6期779-782,共4页
The preparation of immobilizing-catalysts for decomposing ozone by using dipping method was studied. XRD, XPS and TEM were used to characterize the catalysts. The three kinds of catalysts were selected preferentially,... The preparation of immobilizing-catalysts for decomposing ozone by using dipping method was studied. XRD, XPS and TEM were used to characterize the catalysts. The three kinds of catalysts were selected preferentially, and their catalytic activities were investigated. The results showed that the catalyst with activated carbon dipping acetate(active components are Mn:Cu=3:2, active component proportion in catalyst is 15%, calcination temperature is 200℃) has the best catalytic activity for ozone decomposing. One gram of catalyst can decompose 17.6 g ozone at initial ozone concentration of 2.5 g/m 3 and the residence time in reactor of 0.1 s. The experimental results also indicated that humidity of reaction system had negative effect on catalytic activity. 展开更多
关键词 ozone tail gas catalytic decomposition immobilizing-catalyst mno 2 CUO
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CO_2加氢制低碳烯烃的Fe/Silicalite-2催化剂研究──Ⅰ.催化剂性能及反应机理探讨 被引量:15
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作者 徐龙伢 王清遐 +1 位作者 梁东白 田志坚 《天然气化工—C1化学与化工》 CAS CSCD 北大核心 1995年第5期6-10,共5页
K-Fe-MnO/Si-2催化剂具有较佳的CO2加氢合成低碳烯烃性能,并随碱金属钾助剂的添加而明显改善;其CO2加氢反应具有(1)CO2+H2CO+H2O和(2)CO+(m/2n+1)H21/nCnHm+H2O两步反... K-Fe-MnO/Si-2催化剂具有较佳的CO2加氢合成低碳烯烃性能,并随碱金属钾助剂的添加而明显改善;其CO2加氢反应具有(1)CO2+H2CO+H2O和(2)CO+(m/2n+1)H21/nCnHm+H2O两步反应机理;应用该反应机理,解释了CO2/H2比、反应温度、反应压力、反应气空速等对K-Fe-MnO/Si-2催化剂CO2加氢反应性能的影响;探讨了催化剂中K2O助剂的作用。 展开更多
关键词 二氧化碳 低碳烯烃 催化剂分子筛 加氢
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Evolution hydrothermal aging resistance mechanism study of zirconium and manganese doped CeO_(2)catalysts in soot catalytic combustion based on low Miller indices crystal surface effect
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作者 Zonglin Li Pan Wang +4 位作者 Hong Ni Chengcheng Ao Lidong Zhang Hefeng Zhang Kai Li 《Journal of Rare Earths》 SCIE EI CAS CSCD 2024年第7期1272-1281,I0003,共11页
The thermogravimetric analysis(TGA)experiments were carried out to reveal the mechanism of Zr and Mn doping on catalytic activity of CeO_(2)catalyst both fresh and after hydrothermal aging,and the lattice morphology a... The thermogravimetric analysis(TGA)experiments were carried out to reveal the mechanism of Zr and Mn doping on catalytic activity of CeO_(2)catalyst both fresh and after hydrothermal aging,and the lattice morphology and valence changes were characterized by means of Brunauer-Emmett-Teller(BET)method,X-ray diffraction(XRD),X-ray photoelectron spectroscopy(XPS),and H_(2)-temperature programmed reduction(H_(2)-TPR).Density functional theory(DFT)and molecular thermodynamics calculations were applied to investigate the change in catalytic activity,crystal surface energy and crystal morphology caused by hydrothermal aging.The maximum reaction rate temperature of fresh Mn/CeO_(2)(389℃)is similar to that of CeO_(2)(371℃)and lower than that of Zr/CeO_(2)(447℃),but the catalytic performance of CeO_(2)decreases more severely after hydrothermal aging.The catalyst crystals show different degrees of crystal surface migration after hydrothermal aging,which leads to the reduction of Ce^(3+)/Ce^(4+) ratio and the active sites shift.DFT calculations indicate that the doping of Zr and Mn reduces the surface energy of the low Miller indices surface and increases the oxygen vacancy formation energy,leading to better thermal stability and lower catalytic activity.The Zr and Mn doping also changes the adsorption energy and Gibbs free energy of H_(2)O,which dominates the migration of(111)to(110)and(100)in the vapor environment.The crystal surface migration mechanism of CeO_(2)catalysts doped with Zr and Mn induced by H_(2)O molecules at high temperature obtained in this study can provide a valuable addition to the regeneration of CeO_(2)catalysts in the after-treatment systems of diesel engines. 展开更多
关键词 SOOT CeO_(2)-based catalyst CDPF Rare earth metal oxides DFT calculations
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Preparation of MnO2 decorated Co3Fe1Ox powder/monolithic catalyst with improved catalytic activity for toluene oxidation 被引量:2
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作者 Tianshan xue Renna Li +2 位作者 Zhang Zhang Yanshan Gao Qiang Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2020年第10期194-203,共10页
In this paper, KMnO4 was used to pre-treat Co3 Fe-layered double hydroxides(LDH) precursor to prepare MnO2 decorated Co3Fe1Ox catalyst. The toluene oxidation performance of the catalyst was investigated systematically... In this paper, KMnO4 was used to pre-treat Co3 Fe-layered double hydroxides(LDH) precursor to prepare MnO2 decorated Co3Fe1Ox catalyst. The toluene oxidation performance of the catalyst was investigated systematically. The optimized 0.1 Mn CF-LDO catalyst exhibited the best catalytic performance, and the temperatures of 50% and 90% toluene conversion( T50 and T90) were 218 and 243 ℃, respectively. The apparent activation energy( Ea) was 31.6 k J/mol. The characterization results showed that the pre-redox reaction by KMnO4 could increase the specific surface area, Co^3+ species amount and oxygen defect concentration of the catalyst, which are the main reason of the improved toluene catalytic activity. Besides, this method was also applied to enhance toluene oxidation of iron mesh based monolithic catalyst. The 0.1 Mn CF-LDO/Iron mesh(IM) catalyst showed a 90% toluene conversion at around 316 ℃ which was much lower than that of without MnO2 addition(359 ℃). In addition, the water resistant of all the catalysts was studied as well, all the samples showed relatively good water resistance. The toluene conversion still remained to be over > 80% even in the presence of 10 vol.% water vapor. 展开更多
关键词 Co3Fe-LDH mno2 Defective oxygen Toluene oxidation Monolithic catalyst
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Engineering Coordination Environment of Cobalt Center in Molecular Catalysts for Improved Photocatalytic CO_(2) Reduction
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作者 Yuchen Wang Jihong Zhang +6 位作者 Wei Yang Weixue Tao Keying Tao Jihua Deng Wenjie Shi Dichang Zhong Tongbu Lu 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2023年第23期3305-3310,共6页
The creation of effective and inexpensive catalysts is essential for photocatalytic CO_(2) reduction.Homogeneous molecular catalysts,possessing definite crystal structures,are desirable to study the relationship betwe... The creation of effective and inexpensive catalysts is essential for photocatalytic CO_(2) reduction.Homogeneous molecular catalysts,possessing definite crystal structures,are desirable to study the relationship between catalytic performance and coordination microenvironment around catalytic center.In this report,we elaborately developed three Co(II)-based molecular catalysts with different coordination microenvironments for CO_(2) reduction,named[CoN_(3)O]ClO_(4),[CoN_(4)]ClO_(4),and[CoN_(3)S]ClO_(4),respectively.The optimal[CoN_(3)O]ClO_(4) photocatalyst has a maximum TON of 5652 in photocatalytic reduced CO_(2) reduction,which is 1.28 and 1.65 times greater than that of[CoN_(4)]ClO_(4) and[CoN_(3)S]ClO_(4),respectively.The high electronegativity of oxygen in L1(N,N-bis(2-pyridylmethyl)-N-(2-hydroxybenzyl)amine)provides the Co(II)catalytic centers with low reduction potentials and a more stable*COOH intermediate,which facilitates the CO_(2)-to-CO conversion and accounts for the high photocatalytic activity of[CoN_(3)O]ClO_(4).This work provides researchers new insights in development of catalysts for photocatalytic CO_(2) reduction. 展开更多
关键词 Co(II)-based homogeneous catalysts Coordination microenvironment PHOTOCATALYSIS CO_(2)reduction Homogenous catalysis
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添加剂铜和银离子对MnO_2催化燃烧CH_4的影响 被引量:5
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作者 王翔 段连运 谢有畅 《分子催化》 EI CAS CSCD 北大核心 1998年第4期312-315,共4页
催化燃烧法,由于起燃温度低、去除率高、适用氧浓度范围大、无二次污染、燃烧缓和等,是国内外治理有机废气时,回收利用能量最有效的方法之一[1].但目前用于该过程的催化剂中均含有来源有限、价格昂贵的贵金属铂或钯[2].因此... 催化燃烧法,由于起燃温度低、去除率高、适用氧浓度范围大、无二次污染、燃烧缓和等,是国内外治理有机废气时,回收利用能量最有效的方法之一[1].但目前用于该过程的催化剂中均含有来源有限、价格昂贵的贵金属铂或钯[2].因此,寻找来源丰富、价格低廉、性能相当... 展开更多
关键词 甲烷 催化燃烧 催化剂 助剂 燃烧 二氧化锰
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研究型化工综合教学实验设计与探索 被引量:13
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作者 李树娜 《实验室研究与探索》 CAS 北大核心 2018年第9期181-184,201,共5页
结合当前环境问题及科研热点,设计了一个由科研课题转化成的化工综合实验-低浓度甲烷催化燃烧综合实验。该实验涵盖CeO_2-MnO_x催化剂的制备、表征及催化性能测试等内容。通过该实验项目学生可掌握X射线粉末衍射仪、扫描电子显微镜、固... 结合当前环境问题及科研热点,设计了一个由科研课题转化成的化工综合实验-低浓度甲烷催化燃烧综合实验。该实验涵盖CeO_2-MnO_x催化剂的制备、表征及催化性能测试等内容。通过该实验项目学生可掌握X射线粉末衍射仪、扫描电子显微镜、固定床反应器及气相色谱在线分析检测的工作原理及操作技能;了解均匀沉淀法、水热法制备催化剂的操作过程及主要特点。强化了学生的基础知识和实验技能,全面提高了学生的综合能力。而且,将科研的思维方法和技能融入到实验教学中,增加了实验教学的趣味性、探索性和研究性,激发了学生的科研热情和创新意识。 展开更多
关键词 化工综合实验 固定床反应器 CEO 2-mno x催化剂 实验教学
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Precious metal-support interaction in automotive exhaust catalysts 被引量:10
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作者 郑婷婷 何俊俊 +2 位作者 赵云昆 夏文正 何洁丽 《Journal of Rare Earths》 SCIE EI CAS CSCD 2014年第2期97-107,共11页
Precious metal-support interaction plays an important role in thermal stability and catalytic performance of the automotive exhaust catalysts. The support is not only a cartier for active compotmds in catalysts but al... Precious metal-support interaction plays an important role in thermal stability and catalytic performance of the automotive exhaust catalysts. The support is not only a cartier for active compotmds in catalysts but also can improve the dispersion of precious metals and suppress the sintering of precious metals at high temperature; meanwhile, noble metals can also enhance the redox performance and oxygen storage capacity of support. The mechanism of metal-support interactions mainly includes electronic interaction, formation of alloy and inward diffusion of metal into the support or covered by support. The form and degree of precious metal-sup- port interaction depend on many factors, including the content of precious metal, the species of support and metal, and preparation methods. The research results about strong metal-support interaction (SMSI) gave a theory support for developing a kind of new cata- lyst with excellent performance. This paper reviewed the interaction phenomenon and mechanism of precious metals (Pt, Pd, Rh) and support such as A1203, CeO2, and CeO2-based oxides in automotive exhaust catalysts. The factors that affect SMSI and the catalysts developed by SMSI were also discussed. 展开更多
关键词 strong metal-support interaction automotive exhaust catalyst precious metal AL2O3 CeO2-based oxides rare earths
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