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Enhancing CO_(2) methanation via doping CeO_(2) to Ni/Al_(2)O_(3) and stacking catalyst beds
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作者 Yutong Pan Pengju Gao +10 位作者 Shixiong Tang Xiaoyu Han Ziwen Hao Jiyi Chen Zhenmei Zhang Heng Zhang Xiaohui Zi Maoshuai Li Shiwei Wang Yue Wang Xinbin Ma 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第11期170-180,共11页
This work synthesized a series of Ni/CeO_(2)/Al_(2)O_(3) catalysts with varying CeO_(2) doping amounts to enhance low-temperature CO_(2) methanation.The introduction of CeO_(2) weakens the interaction between Ni and A... This work synthesized a series of Ni/CeO_(2)/Al_(2)O_(3) catalysts with varying CeO_(2) doping amounts to enhance low-temperature CO_(2) methanation.The introduction of CeO_(2) weakens the interaction between Ni and Al_(2)O_(3),leading to the formation of Ni-CeO_(2) active sites.This results in a high dispersion of Ni and CeO_(2),improved catalyst reducibility,increased number of active sites,and enhanced the CO_(2) methanation.This work further investigated the impact of WHSV and catalyst stacking configuration to enhance the reaction.When the catalyst is stacked into three segments with a temperature gradient of 330℃,300℃,and 250℃under WHSV=9000 ml·h^(-1)·g^(-1),the CO_(2) conversion significantly increases to 95%,which is remarkably close to the thermodynamic equilibrium(96%). 展开更多
关键词 Ni/CeO_(2)/Al_(2)O_(3) CeO_(2) doping Metal-support interaction Stacking catalyst beds bed temperature
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Hydrogen production by catalytic decomposition of methane using a Fe-based catalyst in a fluidized bed reactor 被引量:5
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作者 D.Torres S.deLlobet +3 位作者 J.L.Pinilla M.J.Lzaro I.Suelves R.Moliner 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2012年第4期367-373,共7页
Catalytic decomposition of methane using a Fe-based catalyst for hydrogen production has been studied in this work. A Fe/Al2O3 catalyst previously developed by our research group has been tested in a fluidized bed rea... Catalytic decomposition of methane using a Fe-based catalyst for hydrogen production has been studied in this work. A Fe/Al2O3 catalyst previously developed by our research group has been tested in a fluidized bed reactor (FBR). A parametric study ot the effects of some process variables, including reaction temperature and space velocity, is undertaken. The operating conditions strongly affect the catalyst performance. Methane conversion was increased by increasing the temperature and lowering the space velocity. Using temperatures between 700 and 900℃ and space velocities between 3 and 6 LN/(gcat·h), a methane conversion in the range of 25%-40% for the gas exiting the reactor could be obtained during a 6 h run. In addition, carbon was deposited in the form of nanofilaments (chain like nanofibers and multiwall nanotubes) with similar properties to those obtained in a fixed bed reactor. 展开更多
关键词 hydrogen production fluidized bed reactor metal catalysts
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Particle/metal-based monolithic catalysts dual-bed reactor with beds-interspace supplementary oxygen:Construction and performance for oxidative coupling of methane 被引量:3
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作者 Wenhua Wang Zhao Zhang Shengfu Ji 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2012年第4期400-406,共7页
A novel particle/metal-based monolithic catalysts dual-bed reactor with beds-interspace supplementary oxygen is constructed comprising of the upper-layer 5 wt%Na2WO4-2 wt%Mn/SiO2 particle catalyst and the under-layer ... A novel particle/metal-based monolithic catalysts dual-bed reactor with beds-interspace supplementary oxygen is constructed comprising of the upper-layer 5 wt%Na2WO4-2 wt%Mn/SiO2 particle catalyst and the under-layer 3 wt%Ce-5 wt%Na2WO4-2 wt%Mn/SBA-15/Al2O3/FeCrA1 metal-based monolithic catalyst as well as a side tube in the interspaces of two layers for supplementing 02. The reaction performance of oxidative coupling of methane (OCM) in the dual-bed reactor system is evaluated. The effects of the reaction parameters such as feed CH4/O2 ratio, reaction temperature and side tube feed 02 flowrate on the catalytic performance are investigated. The results indicate that the suggested mode of dual-bed reactor exhibits an excellent performance for OCM. CH4 conversion of 33.2%, C2H4 selectivity of 46.5% and C2 yield of 22.5% could be obtained, which have been increased by 6.4%, 4.1% and 5.5%, respectively, as compared with 5 wt%Na2WO4-2 wt%Mn/SiO2 particle catalyst in a single-bed reactor and increased by 10.7%, 31.9% and 17.7%, respectively, as compared with 3 wt%Ce-5 wt%Na2WO4-2 wt%Mn/SBA-15/Al2O3/FeCrA1 metal-based monolithic catalyst in a single-bed reactor. The effective promotion of OCM performance in the reactor would supply a valuable reference for the industrialization of OCM process. 展开更多
关键词 OCM dual-bed reactor particle catalyst monolithic catalyst CONSTRUCTION
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Oxidative coupling of methane in a dual-bed reactor comprising of particle/cordierite monolithic catalysts 被引量:2
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作者 Deng Pan Shengfu Ji Wenhua Wang Chengyue Li 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2010年第6期600-604,共5页
A dual-bed reactor was constructed comprising of a 5%Na2WO4-2%Mn/SiO2 particle catalyst and a 4%Ce-5%Na2WO4-2%Mn/SiO2 /cordierite monolithic catalyst.The reaction performance of the oxidative coupling of methane (OCM... A dual-bed reactor was constructed comprising of a 5%Na2WO4-2%Mn/SiO2 particle catalyst and a 4%Ce-5%Na2WO4-2%Mn/SiO2 /cordierite monolithic catalyst.The reaction performance of the oxidative coupling of methane (OCM) over the dual-bed reactor system was evaluated.The effects of the bed height and operation mode,as well as the reaction parameters such as reaction temperature,CH4/O2 ratio and flowrate of feed gas,on the catalytic performance were investigated.The results indicated that the suggested dual-bed reactor exhibited a good performance for the OCM reaction when the feed gases firstly passed through the particle catalyst bed and then to the monolithic catalyst bed.A CH4 conversion of 38.2% and a C2H4 selectivity of 43.3% could be obtained using the dual-bed reactor with a particle catalyst bed height of 10 mm and a monolithic catalyst bed height of 50 mm.Both the CH4 conversion and C2H4 selectivity have increased by 2.5% and 12.8%,respectively,as compared with the 5%Na2WO4-2%Mn/SiO2 particle catalyst in a conventional single-bed reactor and by 12.9% and 23.0%,respectively,as compared with the 4%Ce-5%Na2WO4-2%Mn/SiO2 /cordierite monolithic catalyst in a single-bed reactor.The catalytic performance of the OCM in the dual-bed reactor system has been improved remarkably. 展开更多
关键词 oxidative coupling of methane dual-bed reactor monolithic catalysts
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Degradation of tiamulin by a packed bed dielectric barrier plasma combined with TiO_(2)catalyst 被引量:1
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作者 Kun YANG Hongwei SHEN +3 位作者 Yueyue LIU Yang LIU Pingji GE Dezheng YANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第9期117-126,共10页
Recently,a plasma catalyst was employed to efflciently degrade antibiotic residues in the environment.In this study,the plasma generated in a packed bed dielectric barrier reactor combined with TiO_(2)catalyst is used... Recently,a plasma catalyst was employed to efflciently degrade antibiotic residues in the environment.In this study,the plasma generated in a packed bed dielectric barrier reactor combined with TiO_(2)catalyst is used to degrade the antibiotic tiamulin(TIA)loaded on the surface of simulated soil particles.The effects of applied voltage,composition of the working gas,gas flow rate and presence or absence of catalyst on the degradation effect were studied.It was found that plasma and catalyst can produce a synergistic effect under optimal conditions(applied voltage 25 k V,oxygen ratio 1%,gas flow rate 0.6 l min^(-1),treatment time 5 min).The degradation efflciency of the plasma combined with catalyst can reach 78.6%,which is 18.4%higher than that of plasma without catalyst.When the applied voltage is 30 k V,the gas flow rate is 1 l min^(-1),the oxygen ratio is 1%and the plasma combined with TiO_(2)catalyst treats the sample for 5 min the degradation efflciency of TIA reached 97%.It can be concluded that a higher applied voltage and longer processing times not only lead to more degradation but also result in a lower energy efflciency.Decreasing the oxygen ratio and gas flow rate could improve the degradation efflciency.The relative distribution and identity of the major TIA degradation product generated was determined by high-performance liquid chromatography–mass spectrometry analysis.The mechanism of TIA removal by plasma and TiO_(2)catalyst was analyzed,and the possible degradation path is discussed. 展开更多
关键词 packed bed dielectric barrier discharge plasma catalyst tiamulin(TIA)antibiotics degradation degradation mechanism
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合成气直接制乙醇CuZn催化剂硬脂酸疏水改性
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作者 孙蕾 李智雯 +2 位作者 杜思敏 刘勇军 黄伟 《化工进展》 北大核心 2026年第2期879-891,共13页
Cu基催化剂上合成气直接制乙醇由于成本低、路线短,被认为是有前景的工艺路线,然而由于水煤气副反应严重,导致CO_(2)选择性偏高,严重阻碍了工艺的进一步实施。基于此,本文通过将硬脂酸分子接枝到催化剂表面进行疏水处理。实验表明,4mmo... Cu基催化剂上合成气直接制乙醇由于成本低、路线短,被认为是有前景的工艺路线,然而由于水煤气副反应严重,导致CO_(2)选择性偏高,严重阻碍了工艺的进一步实施。基于此,本文通过将硬脂酸分子接枝到催化剂表面进行疏水处理。实验表明,4mmol/L的硬脂酸改性可有效增强催化剂的疏水性,将水的接触角提升到110.3°,在维持液相产物中乙醇和C_(2+)醇选择性不降低的前提下,将CO转化率显著提升至75.0%,同时降低了CO_(2)选择性。表征分析结果表明,硬脂酸主要通过与Cu原子相结合来增强表面的疏水性,促进疏水催化剂还原温度向高温偏移,且难还原Cu^(+)的含量增多。同时发现ZnO的晶粒尺寸可能和CO转化率相关,大颗粒的ZnO通过桥式CO吸附促进C—O键解离,与线式吸附在Cu^(+)上的CO协同作用促进乙醇的生成。 展开更多
关键词 合成气 乙醇 催化剂 固定床 疏水改性
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Catalytic co-combustion of biomass and brown coal in a fluidized bed:Economic and environmental benefits
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作者 Yury V.Dubinin Nikolay A.Yazykov +3 位作者 Petr M.Yeletsky Roman B.Tabakaev Aleksandra I.Belyanovskaya Vadim A.Yakovlev 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2024年第6期24-36,共13页
The work is devoted to the study of combustion of brown coal,pine sawdust,and their mixtures in a fluidized bed of catalyst at 600-750℃.It is shown that an increase in the content of sawdust in a mixture with brown c... The work is devoted to the study of combustion of brown coal,pine sawdust,and their mixtures in a fluidized bed of catalyst at 600-750℃.It is shown that an increase in the content of sawdust in a mixture with brown coal leads to an increase in the burnout degree of solid fuel from 94.4%to 99.9%,while the emission of greenhouse gases in the form of CO_(2)CO and NOxis reduced(CO_(2)from the biomass is not included in the balance).The high content of alkaline earth metal oxides(CaO and MgO)in the mineral part of brown coal,sawdust,and their mixtures eliminates the emission of sulfur oxides and the slagging of heat-exchange surfaces during the combustion in a fluidized bed of catalyst.The optimal temperature,when the highest burnout degree of the above fuels is achieved in the combustion is 750℃.It is also shown that the increase in temperature and the content of sawdust in the composition of the fuel mixtures has a positive effect on the economic and environmental process indicators. 展开更多
关键词 CO-COMBUSTION Fluidized catalyst bed BIOMASS Coal Economic effect Environmental impact
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醚后C4制1-丁烯成套技术及工业应用
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作者 赵长斌 李澜鹏 +1 位作者 祁文博 赵响宇 《当代化工》 2026年第1期227-233,245,共8页
以富含2-丁烯的醚后C4为原料,采用国内首创的“选择性加氢+超级预分馏+2-丁烯异构+醚化脱异丁烯+精密精馏”成套工艺技术,建成了一套60 kt·a^(-1)的1-丁烯生产装置。运行结果表明:在满负荷条件下,1-丁烯总收率为56.15%;异构单元2-... 以富含2-丁烯的醚后C4为原料,采用国内首创的“选择性加氢+超级预分馏+2-丁烯异构+醚化脱异丁烯+精密精馏”成套工艺技术,建成了一套60 kt·a^(-1)的1-丁烯生产装置。运行结果表明:在满负荷条件下,1-丁烯总收率为56.15%;异构单元2-丁烯平均转化率达到了17.73%,1-丁烯选择性达到了99.75%;前、后加氢1-丁烯损失率分别为10.22%、3.46%;产品综合能耗为23359.84 MJ·t^(-1);1-丁烯、异丁烷、MTBE产品均满足质量要求。 展开更多
关键词 化学反应 多相反应 加氢 催化剂 固定床 反应精馏 萃取 选择性
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顺酐选择性加氢制备γ-丁内酯工艺研究
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作者 高明明 张力 +5 位作者 张杰 马聪 杨凯 程杰 郑金欣 晁哲 《工业催化》 2026年第1期70-74,共5页
采用水热法制备了Ni/C催化剂,并在固定床反应器上研究了Ni/C催化剂催化顺酐选择性加氢制备γ-丁内酯(GBL)工艺及其性能。结果表明,Ni/C催化剂加氢活性和选择性较好,在高氢酐物质的量比、压力0.5 MPa、温度180℃和空速0.5 h^(-1)的较优... 采用水热法制备了Ni/C催化剂,并在固定床反应器上研究了Ni/C催化剂催化顺酐选择性加氢制备γ-丁内酯(GBL)工艺及其性能。结果表明,Ni/C催化剂加氢活性和选择性较好,在高氢酐物质的量比、压力0.5 MPa、温度180℃和空速0.5 h^(-1)的较优工艺条件下,Ni/C催化剂具有一定的稳定性。这为高效合成γ-丁内酯提供了一种可行的催化工艺途径,并为进一步优化催化剂性能和反应条件提供了理论依据。 展开更多
关键词 催化剂工程 Γ-丁内酯 顺酐 Ni/C催化剂 选择性加氢 固定床反应器
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变换催化剂平衡温距计算及活性判断
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作者 邵文超 胡庆丽 《化肥设计》 2026年第1期52-56,共5页
介绍了变换装置的主要流程及变换炉的结构,提出通过气化装置在线分析数据计算变换炉进口各组分的含量,以及利用低温甲醇洗入口气量及色谱分析数值、进变换炉流量、气化炉外送水煤气流量计算变换反应转化率,最终推导出变换反应平衡常数,... 介绍了变换装置的主要流程及变换炉的结构,提出通过气化装置在线分析数据计算变换炉进口各组分的含量,以及利用低温甲醇洗入口气量及色谱分析数值、进变换炉流量、气化炉外送水煤气流量计算变换反应转化率,最终推导出变换反应平衡常数,进而计算变换反应平衡温距的简便方法。通过分析变换炉气体分布特点,利用平衡温距结果,可以对催化剂当前活性做出正确判断。另外,基于反应器床层温度点分布及各层温升情况,提出了判断催化剂活性阶段的方法,结果表明:基于这两种方法,可以更精确判断催化剂的使用活性。通过定期计算平衡温距、定期分析床层温度分布,对运行工况进行综合调整,可以延长变换炉催化剂使用寿命。 展开更多
关键词 变换催化剂 轴径向反应器 平衡温距 床层温度
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钠含量对体相加氢催化剂物化性质及反应性能的影响
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作者 李娟 徐学军 +1 位作者 王海涛 翁肖一 《当代化工》 2026年第1期89-93,共5页
钠含量(本文钠含量均指代为钠元素在催化剂或其过程产物中的质量分数)增加会使体相催化剂理化性质发生变化,不仅影响催化剂成型,也对加氢活性产生影响。采用不同钠含量物料制备体相催化剂及制备不同钠含量体相催化剂,考察钠对体相催化... 钠含量(本文钠含量均指代为钠元素在催化剂或其过程产物中的质量分数)增加会使体相催化剂理化性质发生变化,不仅影响催化剂成型,也对加氢活性产生影响。采用不同钠含量物料制备体相催化剂及制备不同钠含量体相催化剂,考察钠对体相催化剂物化性质和活性的影响。结果表明:物料钠含量过高会导致体相催化剂不可成型,钠质量分数10%以下可成型,当物料钠质量分数降至1.5%时,催化剂强度从98 N·cm^(-1)增加至167 N·cm^(-1),磨耗(质量分数)从2.21%降至1.21%。当体相催化剂钠质量分数从7.27%降至0.08%时,催化剂孔容提升1.45倍,比表面积提升1.56倍;当钠质量分数为0.40%时,钠未引起活性金属聚集,但是催化剂孔道沉积的钠导致HDS、HDN活性下降,精制油硫、氮质量分数分别为14.4、3.1μg·g^(-1);催化剂钠质量分数6.51%会使活性金属聚集,加氢活性严重下降。因此,体相催化剂钠质量分数应控制在0.30%以下,此时催化剂物化性质不发生改变,加氢活性良好。 展开更多
关键词 体相催化剂 钠含量 物化性质 固定床 加氢活性 加氢脱硫
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Highly selective synthesis of single-walled carbon nanotubes from methane in a coupled Downer-turbulent fluidized-bed reactor 被引量:1
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作者 Song Yun Weizhong Qian +5 位作者 Chaojie Cui Yuntao Yu Chao Zheng Yi Liu Qiang Zhang Fei Wei 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2013年第4期567-572,共6页
For the synthesis of single-walled carbon nanotubes (SWCNTs) from CH4 over a Fe/MgO catalyst, we proposed a coupled Downer-turbulent fluidized-bed (TFB) reactor to enhance the selectivity and yield (or production... For the synthesis of single-walled carbon nanotubes (SWCNTs) from CH4 over a Fe/MgO catalyst, we proposed a coupled Downer-turbulent fluidized-bed (TFB) reactor to enhance the selectivity and yield (or production rate) of SWCNTs. By controlling a very short catalyst residence time (1-3 s) in the Downer, only part of Fe oxides can be reduced to form Fe nano particles (NPs) available for the growth of SWCNTs. The percentage of unreduced Fe oxides increased and the yield of SWCNTs decreased accordingly with the increase of catalyst feeding rate in Downer. SWCNTs were preferentially grown on the catalyst surface and inhibited the sintering of the Fe crystallites which would be formed thereafter in the downstream TFB, evidenced by TEM, Raman and TGA. The coupled Downer-turbulent fluidized-bed reactor technology allowed higher selectivity and higher production rate of SWCNTs as compared to TFB alone. 展开更多
关键词 carbon nanotube chemical vapor deposition METHANE FLUIDIZED-bed catalyst
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Experimental investigation of fluidized-bed reactor performance for oxidative coupling of methane 被引量:2
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作者 S.Jašo S.Sadjadi +8 位作者 H.R.Godini U.Simon S.Arndt O.Görke A.Berthold H.Arellano-Garcia H.Schubert R.Schomäcker G.Wozny 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2012年第5期534-543,共10页
Performance of the oxidative coupling of methane in fluidized-bed reactor was experimentally investigated using Mn-Na2WO4/SiO2,La2O3/CaO and La2O3-SrO/CaO catalysts.These catalysts were found to be stable,especially M... Performance of the oxidative coupling of methane in fluidized-bed reactor was experimentally investigated using Mn-Na2WO4/SiO2,La2O3/CaO and La2O3-SrO/CaO catalysts.These catalysts were found to be stable,especially Mn-Na2WO4/SiO2 catalyst.The effect of sodium content of this catalyst was analyzed and the challenge of catalyst agglomeration was addressed using proper catalyst composition of 2%Mn2.2%Na2WO4/SiO2.For other two catalysts,the effect of Lanthanum-Strontium content was analyzed and 10%La2O 3-20%SrO/CaO catalyst was found to provide higher ethylene yield than La2O3/CaO catalyst.Furthermore,the effect of operating parameters such as temperature and methane to oxygen ratio were also reviewed.The highest ethylene and ethane (C2) yield was achieved with the lowest methane to oxygen ratio around 2.40.5% selectivity to ethylene and ethane and 41% methane conversion were achieved over La2O3-SrO/CaO catalyst while over Mn-Na2WO4 /SiO2 catalyst,40% and 48% were recorded,respectively.Moreover,the consecutive effects of nitrogen dilution,ethylene to ethane production ratio and other performance indicators on the down-stream process units were qualitatively discussed and Mn-Na2WO4/SiO2 catalyst showed a better performance in the reactor and process scale analysis. 展开更多
关键词 oxidative coupling of methane (OCM) fluidized-bed reactor catalyst stability
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Kinetic Study of Methanol Dehydration to Dimethyl Ether in Catalytic Packed Bed Reactor over Resin 被引量:1
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作者 Ghassan J. Hadi Arkan J. Hadi 《Journal of Materials Science and Chemical Engineering》 2022年第6期45-58,共14页
Dimethyl ether (DME) is considered as a significant fuel alternative with a critical manufacturing process. Only a few authors have presented the kinetic analysis of attractive and alternative catalysts to Al<sub&g... Dimethyl ether (DME) is considered as a significant fuel alternative with a critical manufacturing process. Only a few authors have presented the kinetic analysis of attractive and alternative catalysts to Al<sub>2</sub>O<sub>3</sub> and/or zeolite in DME production, despite the fact that there is a large library of kinetic studies for these commercial catalysts. The purpose of this research was to contribute to this direction by conducting a catalytic test to determine kinetic parameters for methanol dehydration over sulfonic acid catalysts (resin). However, due to the relevance of the mathematical description of this process in the industry was also studied, a study of kinetics parameters and mathematical modeling of methanol dehydration in an atmospheric gas phase in a fixed bed reactor with a temperature range (90&degC - 120&degC) was examined. The Langmuir-Hinshelwood (L-H) model provides the best fit to experimental data, with an excellent R<sup>2</sup> = 0.9997, and the experimental results were compared to those predicted by these models with very small deviations. The kinetic parameters were found to be in good agreement with the Arrhenius equation, with acceptable straight-line graphs. The activation energy E was computed and found to be 27.66 kJ/mole, with an average variation of 0.32 percent between the predicted and calculated results. Simple mathematical continuum models (plug flow reactor PFR) showed an acceptable agreement with the experimental data. 展开更多
关键词 catalyst Dimethyl Ether Fixed bed Reactor DEHYDRATION MODELLING
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Fabrication of CeZrO_2 on Ni/SiO_2 and promoted catalysis for methane autothermal reforming in a fluidized bed reactor
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作者 井强山 方林霞 +1 位作者 楼辉 郑小明 《Journal of Rare Earths》 SCIE EI CAS CSCD 2009年第3期431-436,共6页
The methane autothermal reforming in the present of oxygen was studied over cerium- and zirconium-promoted Ni/SiO2 catalysts in a fluidized bed reactor. The addition of CeZrO2 resulted in a significant improvement in ... The methane autothermal reforming in the present of oxygen was studied over cerium- and zirconium-promoted Ni/SiO2 catalysts in a fluidized bed reactor. The addition of CeZrO2 resulted in a significant improvement in the initial activity of the catalysis as well as an increase in the stability. The long-term activity of the promoted catalyst was dependent upon the rapid redox properties between the oxidative zone and the reductive zone in a fluidized bed reactor. H2 temperature-programmed reduction (H2-TPR) and face reaction (TPSR) studies demonstrated that addition of the CeZrO2 resulted in an increase in the reducibility and oxygen transfer ability of the support, Ni/Ceo.5ZrO0.5O2-SiO2 showed improved redox properties compared with Ni/SiO2 due to a low-temperature reduction. X-ray diffraction (XRD) of the fresh and spent catalysts showed that the promoter enhanced the nickel dispersion and retarded metal particle growth during reaction at high temperature, and surface Ni was gradually oxidized by remaining O2, leading to Ni deactivation. 展开更多
关键词 methane: reforming: Ni/Ce-ZrO -SiO catalyst flnidized bed reactor: rare earths
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中低温煤焦油加氢工艺条件研究与技术创新
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作者 赖文良 《山东化工》 2026年第2期17-19,23,共4页
对中低温煤焦油资源化利用中的技术瓶颈,本研究系统探究固定床加氢工艺关键操作条件对产物分布及催化剂性能的影响规律。通过单因素实验与响应面优化法,量化温度(300~400℃)、压力(10~16 MPa)、空速(0.5~2.0 h^(-1))对脱硫率、芳烃饱和... 对中低温煤焦油资源化利用中的技术瓶颈,本研究系统探究固定床加氢工艺关键操作条件对产物分布及催化剂性能的影响规律。通过单因素实验与响应面优化法,量化温度(300~400℃)、压力(10~16 MPa)、空速(0.5~2.0 h^(-1))对脱硫率、芳烃饱和度及结焦抑制的协同作用机制,创新性引入超声波-微波耦合强化技术。实验表明:在优化工艺条件(温度360℃、压力14 MPa、氢油体积比1200∶1)下结合介孔改性Ni-Mo/Al_(2)O_(3)催化剂,柴油馏分收率提升至82.3%,催化剂寿命延长至1800 h以上。技术经济性分析显示该工艺通过床层膨胀率控制实现能耗降低20%,具备工业化推广潜力,为富煤地区煤焦油高值转化提供技术支撑。 展开更多
关键词 中低温煤焦油 固定床加氢 工艺优化 超声波-微波协同 催化剂改性 响应面法 结焦抑制
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Industrial Feasiblity of Direct Methane Conversion to Hydrocarbons over Fe-Based Fischer Tropsch Catalyst
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作者 Ademola M. Rabiu Isa M. Yusuf 《Journal of Power and Energy Engineering》 2013年第5期41-46,共6页
Recently, as a direct consequence of the dwindling world oil reserves and the growing awareness of the environmental problems associated with the use of coal as energy source, there is growing interest in cheaper, abu... Recently, as a direct consequence of the dwindling world oil reserves and the growing awareness of the environmental problems associated with the use of coal as energy source, there is growing interest in cheaper, abundant and cleaner burning methane. The Gas-to-Liquid technology offers perhaps the most attractive routes for the exploitation of the world huge and growing natural gas resources. Using this process the erstwhile stranded gas is converted to premium grade liquid fuels and chemicals that are easily transported. However, a widespread application of the GTL process is being hampered by economical and technical challenges. The high cost of synthesis gas, for instance, weighs heavily on the economics and competitiveness of the process limiting its wider application. This work presented a modified Gas-to-Liquid process that eliminates the costly synthesis gas production step. The proposed process utilized an alternative pathway for methane activation via the production of chloromethane derivatives which are then converted to hydrocarbons. It established that hydrocarbons mainly olefins can be economically produced from di- and tri-chloro- methanes over a typical iron-based Fischer Tropsch catalysts in a moving bed reactor at industrially relevant conditions. Some of the attractions of the proposed process include a) the elimination of the costly air separation plant requirement b) high process selectivity and c) significant reduction of carbon dioxide emissions thereby saving on feedstock loss and the costly CO2 removal and isolation processes. 展开更多
关键词 Gas-to-Liquid Methane CHLORINATION Synthesis Gas Olefinic Hydrocarbons IRON-BASED catalyst Moving-bed Reactor Deacon Process Carbon-Dioxide Emission
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碳四选择加氢催化剂性能评价研究 被引量:1
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作者 高树升 刘海江 石瑞红 《中外能源》 2025年第5期76-81,共6页
通过采用氧化铝负载钯银催化剂在不同的入口丁二烯浓度、碳四液体体积空速、氢/丁二烯物质的量比等条件下对碳四选择加氢反应进行评价研究,结果表明:采用鼓泡床反应器,在入口1,3-丁二烯浓度为2.5%~3.0%(物质的量分数)条件下,1,3-丁二烯... 通过采用氧化铝负载钯银催化剂在不同的入口丁二烯浓度、碳四液体体积空速、氢/丁二烯物质的量比等条件下对碳四选择加氢反应进行评价研究,结果表明:采用鼓泡床反应器,在入口1,3-丁二烯浓度为2.5%~3.0%(物质的量分数)条件下,1,3-丁二烯的转化率大于63%,1-丁烯选择性大于61%;在入口丁二烯浓度为0.8%~1.3%(物质的量分数)条件下,丁二烯浓度可降至<30×10^(-6),1-丁烯选择性>-600%。氢/丁二烯物质的量比提高有利于提高1,3-丁二烯转化率,但氢含量过高会导致更多的丁烯的异构化和加氢反应的发生。此外,还对氧化铝负载的钯银催化剂在反应器入口物料温度38℃的条件下,对鼓泡床反应器进行了1000h的稳定性评价试验,研究发现控制氢/丁二烯比率,特别是低1,3-丁二烯浓度下的氢/丁二烯比率对提高1-丁烯选择性非常关键。 展开更多
关键词 催化加氢 钯银催化剂 鼓泡床反应器 碳四选择加氢 1-丁烯
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Microwave Plasma Treatment for Catalyst Preparation: Application to Alumina Supported Silver Catalysts for SCR NO<sub>x</sub>by Ethanol
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作者 Marjorie Foix Cédric Guyon +1 位作者 Michael Tatoulian Patrick Da Costa 《Modern Research in Catalysis》 2013年第3期68-82,共15页
Thermal treatment either in the presence of oxygen (calcination) or of a reducing agent (reduction) result is all the time a key issue within the preparation of a catalyst. In this work, a microwave plasma treatment w... Thermal treatment either in the presence of oxygen (calcination) or of a reducing agent (reduction) result is all the time a key issue within the preparation of a catalyst. In this work, a microwave plasma treatment was chosen as an alternative to typical calcinations, because it is a more energy efficient process. Thus, a Microwave Fluidized Bed Plasma reactor (MFBP) was employed in catalyst synthesis process under different gas compositions, such as argon and argon/oxygen mixtures over g-alumina supported silver catalysts, which are generally used for selective reduction of NOx by ethanol. After the first catalytic tests performed in the presence of plasma treated catalyst, it can be concluded that plasma treatment process represents an interesting alternative to conventional calcination during catalyst synthesis, resulting in a more sustainable process, moreover in view of its industrial application. In order to understand the particular effect of plasma treatment, the catalysts submitted to this treatment were carefully characterized by means of thermo gravimetric analysis (TGA), differential thermal analysis (DTA) and UV-VIS-NIR. 展开更多
关键词 MICROWAVE Plasma Fluidized bed Reactor catalyst Synthesis Silver catalyst NOx Reduction
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废酸再生装置SO_(2)低温氧化催化剂工业应用总结 被引量:1
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作者 徐翠翠 孙启洪 +3 位作者 潘红年 刘剑利 杨析宗 刘增让 《炼油技术与工程》 2025年第4期47-50,共4页
介绍了SO_(2)低温氧化催化剂LC-01的工业生产及在某炼油厂烷基化废酸装置的工业应用情况。在工业生产装置上进行了LC-01催化剂的工业试生产。该催化剂具有良好的制备重复性及活性。与进口催化剂相比较,LC-01催化剂具有更高的比表面积和... 介绍了SO_(2)低温氧化催化剂LC-01的工业生产及在某炼油厂烷基化废酸装置的工业应用情况。在工业生产装置上进行了LC-01催化剂的工业试生产。该催化剂具有良好的制备重复性及活性。与进口催化剂相比较,LC-01催化剂具有更高的比表面积和孔体积,灰分明显低于进口催化剂。在某炼油厂烷基化废酸装置完成了催化剂的装填及开工,装置开工后三级反应器(R-355)运行稳定,各项参数均在正常范围内,尾气SO_(2)的质量浓度稳定低于1 mg/m^(3),LC-01催化剂运行良好。装置稳定运行两个月后,开展了首次工业应用标定,标定期间R-355入口SO_(2)的质量浓度在41~55 mg/m^(3),出口SO_(2)的质量浓度小于1 mg/m^(3);LC-01催化剂SO_(2)转化率在98%以上,平均转化率为99.07%;高架源SO_(2)排放稳定低于0.58mg/m^(3),满足环保法规要求。LC-01催化剂运行良好,可以满足装置使用要求,实现催化剂的国产化替代。 展开更多
关键词 废酸再生装置 二氧化硫 低温氧化 LC-01催化剂 转化率 床层压力降 床层温度 氮氧化物
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