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开放骨架磷酸铁的合成与性质 被引量:1
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作者 王艳艳 张铮 +1 位作者 孙延俊 李激扬 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2014年第3期449-454,共6页
通过使用二丙烯基三胺为结构导向剂,在水热体系中合成出一例具有新型三维开放骨架结构的磷酸铁化合物JU94(2H3O[Fe2P2O8(OH)2]).单晶X射线衍射分析结果显示,该化合物结晶在单斜晶系P21/c空间群,晶胞参数a=0.97566(5)nm,b=0.98560(5)nm,c... 通过使用二丙烯基三胺为结构导向剂,在水热体系中合成出一例具有新型三维开放骨架结构的磷酸铁化合物JU94(2H3O[Fe2P2O8(OH)2]).单晶X射线衍射分析结果显示,该化合物结晶在单斜晶系P21/c空间群,晶胞参数a=0.97566(5)nm,b=0.98560(5)nm,c=1.24514(5)nm,β=129.651(3)°,V=0.92189(8)nm3.该化合物的骨架结构是由FeO6八面体和PO4四面体连接构成,以四核铁簇作为结构构筑单元.JU94沿[101],[101],[010]和[111]方向含有扭曲八元环孔道,水分子分布于孔道中.穆斯堡尔谱研究结果表明,该结构具有2个晶体学独立的正三价铁离子.磁性研究结果表明,该物质具有反铁磁性. 展开更多
关键词 磷酸铁 开放骨架 水热合成 反铁磁性
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Screening of MgO- and CeO_2-Based Catalysts for Carbon Dioxide Oxidative Coupling of Methane to C_(2+) Hydrocarbons 被引量:5
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作者 Istadi Nor Aishah Saidina Amin 《Journal of Natural Gas Chemistry》 CAS CSCD 2004年第1期23-35,共13页
The catalyst screening tests for carbon dioxide oxidative coupling of methane (CO2-OCM) have been investigated over ternary and binary metal oxide catalysts. The catalysts are prepared by doping MgO- and CeO2-based so... The catalyst screening tests for carbon dioxide oxidative coupling of methane (CO2-OCM) have been investigated over ternary and binary metal oxide catalysts. The catalysts are prepared by doping MgO- and CeO2-based solids with oxides from alkali (Li2O), alkaline earth (CaO), and transition metal groups (WO3 or MnO). The presence of the peroxide (O2-2) active sites on the Li2O2, revealed by Raman spectroscopy, may be the key factor in the enhanced performance of some of the Li2O/MgO catalysts. The high reducibility of the CeO2 catalyst, an important factor in the CO2-OCM catalyst activity, may be enhanced by the presence of manganese oxide species. The manganese oxide species increases oxygen mobility and oxygen vacancies in the CeO2 catalyst. Raman and Fourier Transform Infra Red (FT-IR) spectroscopies revealed the presence of lattice vibrations of metal-oxygen bondings and active sites in which the peaks corresponding to the bulk crystalline structures of Li2O, CaO, WO3 and MnO are detected. The performance of 5%MnO/15%CaO/CeO2 catalyst is the most potential among the CeO2-based catalysts, although lower than the 2%Li2O/MgO catalyst. The 2%Li2O/MgO catalyst showed the most promising C2+ hydrocarbons selectivity and yield at 98.0% and 5.7%, respectively. 展开更多
关键词 catalyst screening carbon dioxide oxidative coupling METHANE ternary metal oxide binary metal oxide MGO CEO2 C2+ hydrocarbons
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Coke-tolerant SiW_(20)-Al/Zr_(10) catalyst for glycerol dehydration to acrolein 被引量:4
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作者 Amin Talebian-Kiakalaieh Nor Aishah Saidina Amin 《Chinese Journal of Catalysis》 CSCD 北大核心 2017年第10期1697-1710,共14页
Glycerol dehydration to acrolein over a series of supported silicotungstic acid catalysts(SiWx‐Al/Zry)was investigated.Characterization results showed that the final catalyst had high thermal stability,a large pore d... Glycerol dehydration to acrolein over a series of supported silicotungstic acid catalysts(SiWx‐Al/Zry)was investigated.Characterization results showed that the final catalyst had high thermal stability,a large pore diameter,strong Lewis acidic sites,and a large specific surface area.X‐ray photoelectron survey spectra clearly showed peaks attributable to W(W4f=35.8eV),Al2O3(Al2p=74.9eV),and ZrO2(Zr3d=182.8eV).The highest acrolein selectivity achieved was87.3%at97%glycerol conversion over the SiW20‐Al/Zr10catalyst.The prepared catalysts were highly active and selective for acrolein formation even after40h because of the presence of high concentrations of Lewis acidic sites,which significantly reduced the amount of coke on the catalyst surface.Response surface methodology optimization showed that87.7%acrolein selectivity at97.0%glycerol conversion could be obtained under the following optimal reaction conditions:0.5wt%catalyst,reaction temperature300°C,and feed glycerol concentration10wt%.Evaluation of a mass‐transfer‐limited regime showed the absence of internal and external diffusions over pellets of diameter dP<20μm.These results show that glycerol dehydration over a strong Lewis acid catalyst is a promising method for acrolein production. 展开更多
关键词 GLYCEROL DEHYDRATION ACROLEIN Heterogeneous catalysis Heteropoly acid
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Co-Generation of C_2 Hydrocarbons and Synthesis Gases from Methane and Carbon Dioxide: a Thermodynamic Analysis
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作者 Istadi Nor Aishah Saidina Amin 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2005年第3期140-150,共11页
This paper deals with thermodynamic chemical equilibrium analysis using the method of direct minimization of Gibbs free energy for all possible CH4 and CO2 reactions. The effects of CO2/CH4 feed ratio, reaction temper... This paper deals with thermodynamic chemical equilibrium analysis using the method of direct minimization of Gibbs free energy for all possible CH4 and CO2 reactions. The effects of CO2/CH4 feed ratio, reaction temperature, and system pressure on equilibrium composition, conversion, selectivity and yield were studied. In addition, carbon and no carbon formation regions were also considered at various reaction temperatures and CO2/CH4 feed ratios in the reaction system at equilibrium. It was found that the reaction temperature above 1100 K and CO2/CH4 ratio=1 were favourable for synthesis gas production with H2/CO ratio unity, while carbon dioxide oxidative coupling of methane (CO2 OCM) reaction to produce ethane and ethylene is less favourable thermodynamically. Numerical results indicated that the no carbon formation region was at temperatures above 1000 K and CO2/CH4 ratio larger than 1. 展开更多
关键词 thermodynamic chemical equilibrium CO-GENERATION synthesis gas C2 hydrocarbons Gibbs free energy CH4 C02 carbon
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Dual-Bed Catalytic System for Direct Conversion of Methane to Liquid Hydrocarbons
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作者 N. A. S. Amin Sriraj Ammasi 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2006年第3期191-202,共12页
A dual-bed catalytic system is proposed for the direct conversion of methane to liquid hydrocarbons. In this system, methane is converted in the first stage to oxidative coupling of methane (OCM) products by selecti... A dual-bed catalytic system is proposed for the direct conversion of methane to liquid hydrocarbons. In this system, methane is converted in the first stage to oxidative coupling of methane (OCM) products by selective catalytic oxidation with oxygen over La-supported MgO catalyst. The second bed, comprising of the HZSM-5 zeolite catalyst, is used for the oligomerization of OCM light hydrocarbon products to liquid hydrocarbons. The effects of temperature (650-800 ℃), methane to oxygen ratio (4-10), and SIO2/Al2O3 ratio of the HZSM-5 zeolite catalyst on the process are studied. At higher reaction temperatures, there is considerable dealumination of HZSM-5, and thus its catalytic performance is reduced. The acidity of HZSM-5 in the second bed is responsible for the oligomerization reaction that leads to the formation of liquid hydrocarbons. The activities of the oligomerization sites were unequivocally affected by the SiO2/Al2O3 ratio. The relation between the acidity and the activity of HZSM-5 is studied by means of TPD-NH3 techniques. The rise in oxygen concentration is not beneficial for the C5+ selectivity, where the combustion reaction of intermediate hydrocarbon products that leads to the formation of carbon oxide (CO+CO2) products is more dominant than the oligomerization reaction. The dual-bed catalytic system is highly potential for directly converting methane to liquid fuels. 展开更多
关键词 dual-bed HZSM-5 OLIGOMERIZATION ACIDITY liquid hydrocarbons
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