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Effects of Cerium on Reduction of Non-Chromium Iron Based CO Shift Catalyst 被引量:2
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作者 苏运来 胡捷 +2 位作者 马卓娜 杜宝石 郭益群 《Journal of Rare Earths》 SCIE EI CAS CSCD 2001年第4期304-307,共4页
The effects of Ce on reduction of non-chromium iron based CO shift catalyst were studied by XRD, TPR, SEM and XPS. The results show that Ce refines Fe2O3 grains and riches on the surface of catalyst in the process of ... The effects of Ce on reduction of non-chromium iron based CO shift catalyst were studied by XRD, TPR, SEM and XPS. The results show that Ce refines Fe2O3 grains and riches on the surface of catalyst in the process of reduction, which leads to decrease of the initial reductive temperature and increase of the final reductive temperature. 展开更多
关键词 rare earths CERIUM ABSORPTION activity CO shift catalyst
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Performance and Industrial Application of New-Type Sulfur Tolerant CO Shift Catalyst QDB-04
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作者 Bonan Liu Tiancun Xiao +3 位作者 Peter P. Edwards Jiefei Xiao Gao Hui Qiuyun Zong 《Open Journal of Inorganic Chemistry》 2016年第1期15-22,共8页
This paper presents the performance and characteristics of new-type sulfur tolerant shift catalyst QDB-04 and its industrial side-line test as well as the first-time industrial application in Lunan Chemical Fertilizer... This paper presents the performance and characteristics of new-type sulfur tolerant shift catalyst QDB-04 and its industrial side-line test as well as the first-time industrial application in Lunan Chemical Fertilizer Plant of Shandong in China. The results show that the catalyst has high strength and strength stability, good low temperature activity and stability as well as low potassium bleeding ratio which well meet for the requirements of the methanol plant on catalyst performance in Lunan Chemical Fertilizer Plant. 展开更多
关键词 Sulfur Tolerant shift catalyst PERFORMANCE Industrial Side-Line Test Application
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Influence of Gas Components on the Formation of Carbonyl Sulfide over Water-Gas Shift Catalyst B303Q
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作者 Ju Shangguan Litong Liang Huiling Fan Fang Shen 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2007年第1期53-59,共7页
Water-gas shift reaction catalyst at lower temperature (200-400 ℃) may improve the conversion of carbon monoxide. But carbonyl sulfide was found to be present over the sulfided cobaltmolybdenum/alumina catalyst for... Water-gas shift reaction catalyst at lower temperature (200-400 ℃) may improve the conversion of carbon monoxide. But carbonyl sulfide was found to be present over the sulfided cobaltmolybdenum/alumina catalyst for water-gas shift reaction. The influences of temperature, space velocity, and gas components on the formation of carbonyl sulfide over sulfided cobalt-molybdenum/alumina catalyst B303Q at 200-400 ℃ were studied in a tubular fixed-bed quartz-glass reactor under simulated water-gas shift conditions. The experimental results showed that the yield of carbonyl sulfide over B303Q catalyst reached a maximum at 220 ℃ with the increase in temperature, sharply decreased with the increase in space velocity and the content of water vapor, increased with the increase in the content of carbon monoxide and carbon dioxide, and its yield increased and then reached a stable value with the increase in the content of hydrogen and hydrogen sulfide. The formation mechanism of carbonyl sulfide over B303Q catalyst at 200-400 ℃ was discussed on the basis of how these factors influence the formation of COS. The yield of carbonyl sulfide over B303Q catalyst at 200-400 ℃ was the combined result of two reactions, that is, COS was first produced by the reaction of carbon monoxide with hydrogen sulfide, and then the as-produced COS was converted to hydrogen sulfide and carbon dioxide by hydrolysis. The mechanism of COS formation is assumed as follows: sulfur atoms in the Co9Ss-MoS2/Al2O3 crystal lattice were easily removed and formed carbonyl sulfide with CO, and then hydrogen sulfide in the water-gas shift gas reacted with the crystal lattice oxygen atoms in CoO-MoOa/Al2O3 to form Co9S8-MoS2/Al2O3. This mechanism for the formation of COS over water-gas shift catalyst B303Q is in accordance with the Mars-Van Krevelen's redox mechanism over metal sulfide. 展开更多
关键词 FORMATION carbonyl sulfide sulfided cobalt-molybdenum/alumina catalyst water-gas shift
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Kinetics of the water-gas shift reaction in Fischer-Tropsch synthesis over a nano-structured iron catalyst 被引量:2
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作者 Ali Nakhaei Pour Mohammad Reza Housaindokht +1 位作者 Sayyed Faramarz Tayyari Jamshid Zarkesh 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2010年第4期362-368,共7页
Based on formate and direct oxidation mechanisms,three Langmuir-Hinshelwood-Hougen-Watson (LHHW) kinetic models of the water-gasshift (WGS) reaction over a nano-structured iron catalyst under Fischer-Tropsch synth... Based on formate and direct oxidation mechanisms,three Langmuir-Hinshelwood-Hougen-Watson (LHHW) kinetic models of the water-gasshift (WGS) reaction over a nano-structured iron catalyst under Fischer-Tropsch synthesis (FTS) reaction conditions were derived and compared with those over the conventional catalyst.The conventional and nanostructured Fe/Cu/La/Si catalysts were prepared by co-precipitation of Fe and Cu nitrates in aqueous media and water-oil micro-emulsion,respectively.The WGS kinetic data were measured by experiments over a wide range of reaction conditions and comparisons were also made for various rate equations.WGS rate expressions based on the formate mechanism with the assumption that the formation of formate is rate determining step were found to be the best. 展开更多
关键词 KINETICS water-gas-shift reaction iron catalyst Fischer-Tropsch synthesis
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Effect of precipitants on Ni-CeO_2 catalysts prepared by a co-precipitation method for the reverse water-gas shift reaction 被引量:11
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作者 王路辉 刘辉 +2 位作者 刘源 陈英 杨淑清 《Journal of Rare Earths》 SCIE EI CAS CSCD 2013年第10期969-974,共6页
A series of Ni-CeO2 catalysts were prepared by co-precipitation method with Na2CO3, NaOH, and mixed precipitant (Na2CO3:NaOH; 1:1 ratio) as precipitant, respectively. The effect of the precipitants on the catalyti... A series of Ni-CeO2 catalysts were prepared by co-precipitation method with Na2CO3, NaOH, and mixed precipitant (Na2CO3:NaOH; 1:1 ratio) as precipitant, respectively. The effect of the precipitants on the catalytic performance, physical and chemical properties of Ni-CeO2 catalysts was investigated with the aid of X-ray diffraction (XRD), Bmmaner-Emmett-Teller method (BET), Fou- rier-transform infrared spectroscopy (FT-IR), thermogravimetry (TG), and H2-TPR characterizations. The Ni-CeO2 catalysts were exam- ined with respect to their catalytic performance for the reverse water-gas shift reaction, and their catalytic activities were ranked as: Ni-CeO2-CP (Na2CO3:NaOH=I:I)〉Ni-CeO2-CP(Na2CO3)〉Ni-CeO2-CP(NaOH)- Correlating to the characteristic results, it was found that the catalyst prepared by co-precipitation with mixed precipitant (Na2CO3:NaOH; 1:1 ratio) as precipitant hadthe most amount of oxygen vacancies accompanied with highly dispersed Ni particles, which made the corresponding Ni-CeO2-CP(Na2CO3:NaOH=I: 1) catalyst exhibit the highest catalytic activity. While the precipitant of Na2CO3 or NaOH resulted in less or no oxygen vacancies in Ni-CeO2 catalysts. As a result, Ni-CeO2-CP(Na2CO3) and Ni-CeO2-CP(NaOH) catalysts presented poor catalytic performance. 展开更多
关键词 reverse water-gas shift reaction Ni-CeO2 catalyst CO-PRECIPITATION oxygen vacancy PRECIPITANT rare earths
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Effect of doping rare earth oxide on performance of copper-manganese catalysts for water-gas shift reaction 被引量:8
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作者 何润霞 姜浩强 +4 位作者 武芳 智科端 王娜 周晨亮 刘全生 《Journal of Rare Earths》 SCIE EI CAS CSCD 2014年第4期298-305,共8页
Rare earth-doped copper-manganese mixed oxide catalysts were prepared by coprecipitation and mechanical mixing using copper sulfate, manganese sulfate, and rare-earth oxides REO (REO indicates La2O3, CeO2, Y2O3, or P... Rare earth-doped copper-manganese mixed oxide catalysts were prepared by coprecipitation and mechanical mixing using copper sulfate, manganese sulfate, and rare-earth oxides REO (REO indicates La2O3, CeO2, Y2O3, or Pr6O11) as raw materials. The samples were characterized by X-ray diffraction (XRD), temperature-programmed reduction (TPR), temperature-programmed reduc-tion of oxidized surfaces (s-TPR), and temperature-programmed desorption (TPD). Catalytic activities were tested for a water-gas shift reaction. Doping rare earth oxides did not alter the crystal structure of the original copper-manganese mixed oxides but changed the interplanar spacing, adsorption performance and reaction performance. Doping with La2O3 enhanced the activity and stability of Cu-Mn mixed oxides because of high copper distribution and fine reduction. Doping with CeO2 and Y2O3 also decreased the reduc-tion temperatures of the samples to different degrees while improving the dispersion of Cu on the surface, thus, catalytic activity was better than that of undoped Cu-Mn sample. The Pr6O11-doped sample was difficult to reduce, the dispersion of surface coppers was lowered, resulting in poor activity. 展开更多
关键词 rare earth oxide copper-manganese catalyst water-gas shift reaction STABILITY
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Structure-activity relationship in water-gas shift reaction over gold catalysts supported on Y-doped ceria 被引量:4
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作者 Tatyana Tabakova Lyuba Ilieva +4 位作者 Ivan Ivanov Maela Manzoli Rodolfo Zanella Petya Petrova Zbigniew Kaszkur 《Journal of Rare Earths》 SCIE EI CAS CSCD 2019年第4期383-392,共10页
The utilization of pure hydrogen as an energy source in fuel cells gave rise to renewed interest in developing active and stable water-gas shift catalysts. Gold catalysts have proven to be very efficient for water-gas... The utilization of pure hydrogen as an energy source in fuel cells gave rise to renewed interest in developing active and stable water-gas shift catalysts. Gold catalysts have proven to be very efficient for water-gas shift reaction at low temperature. The aim of the present study was to investigate the effect of:(i) different preparation methods(impregnation and coprecipitation) to obtain a modified ceria support,and(ii) the amount of Y_2 O_3(1.0 wt%, 2.5 wt%, 5.0 wt% and 7.5 wt%) as dopant on the water-gas shift activity of Au/CeO_2 catalysts. An extended characterization by means of S_(BET), XRD, HRTEM/HAADF, FTIR,H_2-TPR and CO-TPR measurements in combination with careful evaluation of the catalyst behavior allowed to shed light on the parameters governing the water-gas shift activity. The catalysts show very high activity(>90% CO conversion) in the temperature range 180-220 ℃,with a slightly better performance of the gold catalysts on supports prepared by impregnation. The decreased activity with increasing Y_2 O_3 concentration is related to the hindering of oxygen mobility due to ordering of surface oxygen vacancies in vicinity of segregated Y^(3+). The effect of catalyst pre-treatments and the stability of the best performing samples were examined as well. 展开更多
关键词 GOLD catalyst Water gas shift reaction Doped CERIA YTTRIUM Hydrogen production RARE earths
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Effects of ZrO_2 Content on Structure and Performance of Cu/CeO_2-ZrO_2 Catalysts for Water-Gas Shift Reaction 被引量:1
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作者 郑云弟 林性贻 +3 位作者 郑起 詹瑛瑛 李达林 魏可镁 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第6期685-689,共5页
Cu/CeO2-ZrO2 catalysts for water-gas shift (WGS) reaction were prepared with co-precipitation method, and the influence of ZrO2 content on the catalytic structure and properties was investigated by the techniques of... Cu/CeO2-ZrO2 catalysts for water-gas shift (WGS) reaction were prepared with co-precipitation method, and the influence of ZrO2 content on the catalytic structure and properties was investigated by the techniques of N2 physical adsorption analysis, XRD and H2-TPR. The results indicate that the BET surface areas of the catalysts are increased in varying degrees due to the presence of ZrO2. With increasing ZrO2 content, the pore size distribution is centered on 1.9 nm. ZrO2 can efficiently restrain the growth of Cu crystal particles. The appropriate amount of ZrO2 in the Cu/CeO2 catalysts can help the catalyst keep better copper dispersion in the WGS reaction, which can lead to both higher catalytic activity and better thermal stability. When ZrO2 content is 10% (atom fraction), Cu/CeO2-Zr02 catalyst reaches a CO conversion rate of 73.7% at the reaction temperature of 200℃. 展开更多
关键词 water-gas shift Cu/CeO2-ZrO2 catalyst rare earths
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A STUDY ON PHYSICAL AND SURFACE PROPER TIES OF THE IRON-CHROMIUM HIGH TEMPER ATURE SHIFT CATALYST WITH THE ADDITIVE ALUMINUM HYDROXIDE
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作者 张惠良 陈文锋 胡梅生 《Chinese Science Bulletin》 SCIE EI CAS 1990年第15期1266-1270,共5页
A study on the magnetic properties and the Mssbauer spectra of the additive aluminum hydroxide has been reported before. In this note, the XPS(X-ray photoelectron spectrometry), TEM(transmission electron microscopy)an... A study on the magnetic properties and the Mssbauer spectra of the additive aluminum hydroxide has been reported before. In this note, the XPS(X-ray photoelectron spectrometry), TEM(transmission electron microscopy)and MACA(micro-area chemical analysis) have been used to investigate the effect of the additive aluminum hydroxide on the physical and surface properties of the iron-chromium high temperature shift catalyst. 展开更多
关键词 iron-chromium HIGH temperature shift catalyst the effect of aluminum hydroxide PHYSICAL and SURFACE properties.
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Potassium-decorated active carbon supported Co-Mo-based catalyst for water-gas shift reaction 被引量:2
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作者 Yixin Lian RuiFen Xiao +1 位作者 Weiping Fang Yiquan Yang 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2011年第1期77-83,共7页
The effect of potassium-decoration was studied on the activity of water-gas shift (WGS) reaction over the Co-Mo-based catalysts supported on active carbon (AC), which was prepared by incipient wetness co-impregnat... The effect of potassium-decoration was studied on the activity of water-gas shift (WGS) reaction over the Co-Mo-based catalysts supported on active carbon (AC), which was prepared by incipient wetness co-impregnation method. The decoration of potassium on active carbon in advance enhances the activities of the CoMo-K/AC catalysts for WGS reaction. Highest activity (about 92% conversion) was obtained at 250 ? C for the catalyst with an optimum K 2 O/AC weight ratio in the range from 0.12 to 0.15. The catalysts were characterized by TPR and EPR, and the results show that activated carbon decorated with potassium makes Co-Mo species highly dispersed, and thus easily reduced and sulfurized. XRD results show that an appropriate content of potassium-decoration on active carbon supports may favors the formation of highly dispersed Co 9 S 8 -type structures which are situated on the edge or a site in contact with MoS 2 , K-Mo-O-S, Mo-S-K phase. Those active species are responsible for the high activity of CoMo-K/AC catalysts. 展开更多
关键词 active carbon potassium-decorated active phase Co-Mo-based catalyst water-gas shift
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Water gas shift activity of Co-Mo/MgO-Al_2O_3 catalysts presulfided with ammonium sulfide 被引量:6
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作者 Yixin Lian, Huifang Wang, Weiping Fang, Yiquan Yang Department of Chemistry, College of Chemistry and Chemical Engineering, National Engineering Laboratory for Green Chemical Productions of Alcohols, Ethers and Esters, Xiamen University, Xiamen 361005, Fujian, China 《Journal of Natural Gas Chemistry》 CSCD 2010年第1期61-66,共6页
Co-Mo/MgO-Al2O3 catalyst was presulfided with ammonium sulfide in aqueous solution and activated with synthesis gas for water gas shift reaction. The assay results indicate that the presulfided Co-Mo/MgO-Al2O3 catalys... Co-Mo/MgO-Al2O3 catalyst was presulfided with ammonium sulfide in aqueous solution and activated with synthesis gas for water gas shift reaction. The assay results indicate that the presulfided Co-Mo/MgO-Al2O3 catalyst exhibits an excellent catalytic activity and stability. XRD and EPR characterization results show that the O-S exchange might occur during the impregnation, leading to the formation of (NH4)2MoS4 (or (NH4)zMoxSy) precursor, which was then thermally decomposed and reduced to MoS2. The higher catalytic performance is attributed to an optimization formation of active Co-Mo sulfides, consisting of well dispersed MoS2 and Co-Mo-S phase due to the redispersion of Co sulfide particles over the edges of newly formed MoS2 crystallites. 展开更多
关键词 Co-Mo-based catalyst ammonium sulfide presulfidation water-gas shift
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Effect of Mg/Al atom ratio of support on catalytic performance of Co-Mo/MgO-Al_2O_3 catalyst for water gas shift reaction 被引量:7
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作者 Yixin Lian Huifang Wang Quanxing Zheng Weiping Fang Yiquan Yang 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2009年第2期161-166,共6页
Co-Mo-based catalysts supported on mixed oxide supports MgO-Al2O3 with different Mg/Al atom ratios for water gas shift reaction were studied by means of TPR, Raman, XPS and ESR. It was found that the octahedral Mo spe... Co-Mo-based catalysts supported on mixed oxide supports MgO-Al2O3 with different Mg/Al atom ratios for water gas shift reaction were studied by means of TPR, Raman, XPS and ESR. It was found that the octahedral Mo species in oxidized Co-Mo/MgO(x)-Al2O3 catalyst and the contents of Mo^5+, Mo^4+, S^2- and S^2-2 species in the functioning catalysts increased with increasing the Mg/Al atom ratio of the support under the studied experimental conditions. This is favorable for the formation of the active Co-Mo-S phase of the catalysts. Catalytic performance testing results showed that the catalysts Co-Mo/MgO-Al2O3 with the Mg/Al atom ratio of the support in the range of 0.475-0.525 exhibited optimal catalytic activity for the reaction. 展开更多
关键词 Co-Mo catalyst reduction SULFIDATION mixed support water gas shift
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Effect of Addition Sequence during Neutralization and Precipitation on Iron-based Catalysts for High Temperature Shift Reaction 被引量:1
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作者 Li Wei Zhu Jianhua Mou Zhanjun 《Petroleum Science》 SCIE CAS CSCD 2007年第1期75-80,共6页
The preparation of the iron-based catalysts promoted by cobalt with a small amount of copper and aluminum for the high temperature shift reaction (HTS) with different sequences of adding catalyst raw materials durin... The preparation of the iron-based catalysts promoted by cobalt with a small amount of copper and aluminum for the high temperature shift reaction (HTS) with different sequences of adding catalyst raw materials during neutralization and precipitation was investigated. XRD, BET and particle size distribution (PSD) were used to characterize the prepared catalysts. It was found that the catalyst crystals were all γ-Fe2O3, and the intermediate of the catalyst after aging was Fe3O4. The crystallographic form of the catalyst and its intermediate was not affected by the addition sequence in the neutralization and precipitation process. The results showed that the specific surface area and the particle size of the catalysts depended on the addition sequence to the mother liquor. Cobalt with a small amount of copper and aluminum could increase the specific surface area and decrease the particle size of catalysts. 展开更多
关键词 Water gas shift reaction Γ-FE2O3 cobalt-promoted catalyst iron-based catalyst
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Effect of yttrium addition on water-gas shift reaction over CuO/CeO_2 catalysts
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作者 佘育生 李雷 +3 位作者 詹瑛瑛 林性贻 郑起 魏可镁 《Journal of Rare Earths》 SCIE EI CAS CSCD 2009年第3期412-418,共7页
This paper presented a study on the role of yttrium addition to CuO/CeO2 catalyst for water-gas shift reaction. A single-step co-precipitation method was used for preparation of a series of yttrium doped CuO/CeO2 cata... This paper presented a study on the role of yttrium addition to CuO/CeO2 catalyst for water-gas shift reaction. A single-step co-precipitation method was used for preparation of a series of yttrium doped CuO/CeO2 catalysts with yttrium content in the range of 0-5wt.%. Properties of the obtained samples were characterized and analyzed by X-ray diffraction (XRD), Raman spectroscopy, H2-TPR, cyclic voltammetry (CV) and the BET method. The results revealed that catalytic activity was increased with the yttrium content at first, but then decreased with the further increase of yttrium content. Herein, CuO/CeO2 catalyst doped with 2wt.% of yttrium showed the highest catalytic activity (CO conversion reaches 93.4% at 250 ℃) and thermal stability for WGS reaction. The catalytic activity was correlated with the surface area, the area of peak γ of H2-TPR profile (i.e., the reduction of surface copper oxide (crystalline forms) interacted with surface oxygen vacancies on ceria), and the area of peak C2 and A1 (Cu^0→←Cu^2+ in cyclic voltammetry process), respectively. Besides, Raman spectra provided evidences for a synergistic Cu-Ovacancy interaction, and it was indicated that doping yttrium may facilitate the formation of oxygen vacancies on ceria. 展开更多
关键词 CuO/CeO2 catalyst water-gas shift YTTRIUM cyclic voltammetry rare earths
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Preparation and High-Temperature Water-Gas Shift Catalytic Features of La_(1-x)Ce_x FeO_3 Perovskite 被引量:1
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作者 马红钦 朱慧铭 +2 位作者 谭欣 张继炎 张鎏 《Journal of Rare Earths》 SCIE EI CAS CSCD 2004年第3期357-360,共4页
Based on water-gas shift reaction mechanism and perovskite compounds characteristics, La_(1- x )Ce_ x FeO_3 (.K) perovskite were designed and prepared as shift catalysts. DTA and XRD results reveal that La_(1- x )Ce_ ... Based on water-gas shift reaction mechanism and perovskite compounds characteristics, La_(1- x )Ce_ x FeO_3 (.K) perovskite were designed and prepared as shift catalysts. DTA and XRD results reveal that La_(1- x )Ce_ x FeO_3 can be formed at 730~760 ℃ by mechanic-mix thermal decomposition method. Activity and heat-resisting tests show that La_(1- x )Ce_ x FeO_3 ((.K)) possess high thermal stability if x is less than or equals to 0.5. But when x is greater than 0.5, La_(1- x )Ce_ x FeO_3 (.K) will be converted into ceria and magnetite partially or completely under shift reaction conditions. In the case of x =0.5, the conversion of CO is about 68% at 530 ℃. Potassium can greatly improve the low temperature activity, but slightly reduces the high temperature activity, and has little impact on the thermal stability. La_(0.5)Ce_(0.5)FeO_3 (.K) is a promising chromium-free high temperature shift catalyst. 展开更多
关键词 catalytic chemistry perovskite compounds chromium-free high-temperature shift catalyst rare earths
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预硫化变换催化剂QCS-01S在煤制氢装置中的工业应用 被引量:1
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作者 冼仲勋 张行 《齐鲁石油化工》 2025年第2期110-113,共4页
总结了预硫化型耐硫变换催化剂QCS-01S(以下简称QCS-01S催化剂)在中国石化茂名分公司煤制氢装置(以下简称茂名石化煤制氢装置)CO耐硫变换单元的应用情况,同时介绍了该催化剂在装填、开工及运行等各阶段的注意事项。自2019年投用以来,该... 总结了预硫化型耐硫变换催化剂QCS-01S(以下简称QCS-01S催化剂)在中国石化茂名分公司煤制氢装置(以下简称茂名石化煤制氢装置)CO耐硫变换单元的应用情况,同时介绍了该催化剂在装填、开工及运行等各阶段的注意事项。自2019年投用以来,该催化剂运行良好,各项指标均符合装置工艺参数要求,有效提升了装置的运行效率。 展开更多
关键词 预硫化 耐硫变换 催化剂
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Cu改性Pt@AM催化剂在低温水煤气变换反应中的性能研究
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作者 韩祝玲 纪任山 +4 位作者 周忠波 商铁成 申文忠 谭明慧 杨国辉 《低碳化学与化工》 北大核心 2025年第8期152-159,共8页
低温水煤气变换反应(WGSR)是制氢工业的关键环节。针对传统催化剂低温活性差和贵金属催化剂贵金属用量高的问题,采用简单混合法将Pt盐与Cu盐混合后加入钼酸铵中超声、焙烧,制备了Cu改性Pt@AM催化剂用于低温催化WGSR。结果表明,在Pt@AM... 低温水煤气变换反应(WGSR)是制氢工业的关键环节。针对传统催化剂低温活性差和贵金属催化剂贵金属用量高的问题,采用简单混合法将Pt盐与Cu盐混合后加入钼酸铵中超声、焙烧,制备了Cu改性Pt@AM催化剂用于低温催化WGSR。结果表明,在Pt@AM中加入少量Cu不仅有利于α-MoC结构的形成,还能增强金属间相互作用,调节活性位点分布,从而提升催化剂催化活性。其中,0.05%Pt-0.5Cu%@AM在温度200℃、原料气V(CO):V(H_(2)O):V(N_(2))=2:5:18和质量空速40000 mL/(g·h)的反应条件下,反应1 h后表现出高达73.5%的CO转化率和38.6%的H_(2)产率,说明Cu改性显著提高了贵金属Pt基催化剂催化活性。研究揭示了Cu改性提高催化剂催化活性的构效关系,为设计低温高活性WGSR催化剂提供了理论依据。 展开更多
关键词 低温水煤气变换反应 Pt基催化剂 Cu改性 α-MoC
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低硫条件下变换催化剂研究进展
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作者 王晓帆 卢祥之 +2 位作者 吕桐进 朱文祥 余汉涛 《齐鲁石油化工》 2025年第3期248-252,共5页
水煤气变换反应是工业制备氢气以及调控合成气氢碳比的重要手段。本文综合了低硫条件下钴钼(Co-Mo)系耐硫变换催化剂出现反硫化的原因,总结了相关水煤气变换催化剂的研究进展,提出开发耐低硫变换催化剂是应对低硫变换工艺的有效手段,通... 水煤气变换反应是工业制备氢气以及调控合成气氢碳比的重要手段。本文综合了低硫条件下钴钼(Co-Mo)系耐硫变换催化剂出现反硫化的原因,总结了相关水煤气变换催化剂的研究进展,提出开发耐低硫变换催化剂是应对低硫变换工艺的有效手段,通过载体改性优化金属-载体相互作用和添加适宜助剂调控活性金属电子结构开发高效耐低硫变换催化剂。 展开更多
关键词 水煤气变换 钴钼催化剂 反硫化 耐低硫
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Preparation and Water-Gas Shift Catalytic Activities of the Perovskite Type Complex Oxide La_(1-x) Ce_xFeO_3
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作者 马红钦 谭欣 +2 位作者 朱慧铭 张继炎 张鎏 《Transactions of Tianjin University》 EI CAS 2003年第2期83-88,共6页
The perovskite type rare earth iron complex (REIC) oxide La 1-x Ce xFeO 3 is designed and prepared as water gas shift catalyst. Activity evaluation and heat resisting test show that the perovskite type compounds La 1-... The perovskite type rare earth iron complex (REIC) oxide La 1-x Ce xFeO 3 is designed and prepared as water gas shift catalyst. Activity evaluation and heat resisting test show that the perovskite type compounds La 1-x Ce xFeO 3(·K) has a good thermal stability if x is less than or equal to 0.5 . But when x is greater than 0.5 , La 1-x Ce xFeO 3(·K) will turn out to be ceria and magnetite partially or completely at high temperature in the shift reaction atmosphere. In the case of x=0.5, the conversion of carbon monoxide is about 68% at 530 ℃. Potassium can greatly improve the low temperature activity, but slightly lower the high temperature activity, and has little impact on the thermal stability. La 0.5 Ce 0.5 FeO 3 (·K) is a promising chromium free high temperature shift catalyst. 展开更多
关键词 rare earth complex oxide perovskite type compound chromium free high temperature shift catalyst
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一氧化碳高温变换催化剂的制备及评价
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作者 王韵金 杜爱华 +6 位作者 卓润生 温恒忠 王玉乐 陈学文 杨静 潘建兴 卓立清 《广州化工》 2025年第2期150-153,共4页
以硝酸亚铁、铬酸酐、硝酸铜和活性助剂M为原料,以氨水为沉淀剂,采用多股流共沉淀工艺制备一氧化碳高温变换催化剂前驱体,再经过滤洗涤、干燥、造粒、焙烧、捏合和压片等工序,制得催化剂成品;利用LPSA、XRD、低温氮气吸附、颗粒强度仪... 以硝酸亚铁、铬酸酐、硝酸铜和活性助剂M为原料,以氨水为沉淀剂,采用多股流共沉淀工艺制备一氧化碳高温变换催化剂前驱体,再经过滤洗涤、干燥、造粒、焙烧、捏合和压片等工序,制得催化剂成品;利用LPSA、XRD、低温氮气吸附、颗粒强度仪、磨耗仪和固定床等手段,对催化剂前驱体和成品进行了表征、评价。结果表明,制备的一氧化碳高温变换催化剂各项指标符合HG/T 3546-2011的要求且优于商业催化剂,特别是在低温下也表现出较高的活性。 展开更多
关键词 一氧化碳 高温 变换 催化剂 制备
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