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81.
82.
In the present study WO3 thin films were deposited by sputtering onto ITO glass, W/ITO and Si substrates by using the glancing angle deposition (GLAD) technique, with the objective of applying these materials in electrochemical intercalation devices. The thin films microstructure and electrochemical behavior were determined through scanning electron microscopy (SEM) and cycling at constant current with potential limitation. By mainly adjusting the substrate holder speed rotation, pillar-type and helical-type structures were obtained under high and low speed rotation levels, respectively. The electrochemical results showed that the best charge capacity performance was obtained for the WO3/W/ITO films with pillar-type structures, which are more porous. 相似文献
83.
84.
SO_4~(2-)(S_2O_8~(2-))/Fe_2O_3-SiO_2固体超强酸对乙酸/丁醇酯化反应的催化性能研究 总被引:1,自引:0,他引:1
研究了SO2 -4/Fe2 O3 SiO2 固体超强酸对乙酸 /丁醇酯化反应的催化作用 ,得到合适的工艺条件 :复合氧化物中n(Fe)∶n(Si) =1∶2 ,浸渍的H2 SO4浓度 1mol/L ,5 5 0℃预焙烧活化 3h ,催化剂用量 0 .8g ,酯化反应时间 4h ,乙酸的转化率达 96 .3%。在此条件下制得S2 O2 -8/Fe2 O3 SiO2 固体超强酸催化剂 ,并考察了其催化活性 ,实验结果显示该固体超强酸具有更高的催化活性 ,乙酸转化率高达 98.6 %。 相似文献
85.
H. Launay S. Loridant D.L. Nguyen A.M. Volodin J.L. Dubois J.M.M. Millet 《Catalysis Today》2007,128(3-4):176-182
New vanadium oxide supported on mesoporous silica catalysts for the oxidation of methane to formaldehyde were investigated by infrared and Raman spectroscopies to identify and characterize the molecular structure of the most active and selective catalytic sites. In situ and operando experiments have been conducted in order to understand the redox and hydroxylation/dehydroxylation processes of the vanadium species. (SiO)2VO(OH) species were identified in these catalysts in reaction conditions and shown to undergo a deprotonation at 580 °C under vacuum, leading to a site giving a photoluminescence band at 550 nm attributed to reverse radiative decay from the excited triplet state:
(V4+–O−)* (V5+O2−). An activation mechanism of vanadium monomeric species with electrophilic oxygen species is proposed. 相似文献
86.
87.
Alkylated ureas: mineralization and evaluation as N sources 总被引:2,自引:0,他引:2
An incubation experiment was conducted for 11 weeks to study the mineralization of ten alkylated ureas and urea in soil. Six of the alkylated ureas viz. methylurea(MU), 1,3-dimethylurea(1,3DMU), 1,1-dimethylurea(1,1DMU), ethylurea(EU), 1,3-diethylurea(1,3DEU) and butylurea(BU) and urea mineralized during the experiment. Urea mineralized immediately, while alkylated ureas mineralized after an incubation period ranging from less than a week to four weeks (delay period of mineralization). The delay period increased in the following sequence MU < 1,3DMU < EU < BU < 1,1DMU < 1,3DEU, but after the delay period was over the compounds mineralized almost as rapidly as urea. The delay period varied according to the number of carbon atoms in the alkyl group and their position with respect to each other on the molecule. It appeared to be specific for each compound and was apparently not influenced by the presence of urea or other alkylated ureas. This character can be used to develop mixture of various alkylated ureas to obtain N mineralization at the desired time. Rapid evolution of CO2 and N2O was observed during the mineralization of urea as well as alkylated ureas. Increase in soil pH was also observed during this period. The simultaneous ocurrence of these events suggested the formation of urea as an intermediate during the mieralization of alkylated ureas. None of the alkylated ureas showed adverse affect on emergence of wheat seedlings and except DEU and BU at high concentration no other alkylated urea showed any adverse effect on initial growth of wheat seedlings. 相似文献
88.
89.
Dynamic light scattering is a suitable method for the investigation of transport properties such as the thermal diffusivity of optically transparent fluids. The main advantages of the method are its quickness, the fact of the thermodynamic state of equilibrium of the sample (gradients are not required), and the relatively simple evaluation of data without the necessity of calibration. However, an insufficient production of intensity of scattered light may be a limiting effect. For that reason the vicinity of the gas-liquid critical point represents the classical range of application. In this paper, it is shown that by means of an appropriate choice of experimental apparatus, measurements are also feasible in an extended range of states. Broad regions around critical points of three pure fluids (sulfur hexafluoride, SF6; ethane, C2H6; nitrous oxide, N2O) over temperature ranges ¦T-T
c¦ of 0.02 to 50 K and density ranges (/c) of 0.2 to 2 were investigated. In this region the thermal diffusivity shows great variations with temperature and density and cannot be described by means of ideal-gas behavior or relations for liquids. The measurements were carried out along the coexistence curve for both phases, along the critical isochore and along some isotherms with TT
c. The measured or calculated density, pressure, and thermal diffusivity data as well as some correlations are presented. 相似文献
90.
X. Q. Ma H. Zhang J. Dai J. Roth R. Hui T. D. Xiao D. E. Reisner 《Journal of Thermal Spray Technology》2005,14(1):61-66
This work addresses the fabrication of membrane-type solid oxide fuel cells (SOFCs) operating at medium temperatures, where
all components are fabricated by plasma spray technology, and the evaluation of the performance of the SOFC single unit in
a temperature range of 500 to 800 °C. Single cells composed of LaSrMgO3 cathodes, LaSrGaMgO3 (LSGM) electrolytes, and Ni/yttria-stabilized zirconia anodes were fabricated in successive atmospheric plasma-spraying processes.
Plasma-spraying processes have been optimized and tailored to each layer to achieve highly porous cathode and anode layers
as well as high-density electrolyte layers. A major effort has been devoted to the production of the LSGM electrolyte that
has a high density and is free of cracks. Electrochemical impedance spectroscopy was used to investigate the conductivity
of the electrode layers, and particularly the resistance of the electrolyte layer. It revealed that the heat treatment had
a great influence on the specific conductivity of the sprayed electrolyte layers and that the specific conductivity of the
heat-treated layers was dramatically increased to the same magnitude as is typical for sintered LSGM pellets. The experimental
results have demonstrated that the plasma-spraying process has a great potential for the integrated fabrication of medium-temperature
SOFC units.
The original version of this article was published as part of the ASM Proceedings, Thermal Spray 2003: Advancing the Science and Applying the Technology, International Thermal Spray Conference (Orlando, FL), May 5–8, 2003, Basil R. Marple and Christian Moreau, Ed., ASM International,
2003. 相似文献