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151.
Hye Sun Shin Ik Jun Jang Na Ra Shin Su Hyun Kim Sung June Cho 《Research on Chemical Intermediates》2011,37(9):1239-1246
Dealumination of the small-pore zeolite chabazite (CHA) was performed with ammonium hexafluorosilicate under solid and liquid-state conditions to increase the Si-to-Al ratio from 2.0 to 6.0. In the solid state, the mesopore fraction increased with repeating hydrothermal synthesis at 423 K, which was confirmed by nitrogen adsorption?Cdesorption. In the liquid state, the formation of mesopores decreased substantially and the resulting CHA had an Si-to-Al ratio of ca. 5. The result of desorption of NO?CNO2 from the Cu ion-exchanged dealuminated CHA in the solid state indicated that the presence of mesopores reduced NO?CNO2 adsorption and desorption of NO2 occurred at 383 and 683 K whereas for the high-silica analog SSZ-13 desorption of NO2 occurred mostly at 473 and at 673 K. 相似文献
152.
By using unique experimental techniques and carefully constructed experimental apparatus, the characteristics of flow boiling of water in microscale were investigated using a single horizontal rectangular microchannel. A polydimethylsiloxane rectangular microchannel (Dh = 103.5 and 133 μm) was fabricated by using the replica molding technique, a kind of soft lithography. A piecewise serpentine platinum microheater array on a Pyrex substrate was fabricated with the surface micromachining MEMS technique. Real time flow visualization of the phase change phenomena inside the microchannel was performed using a high speed CCD camera with microscope. The experimental local boiling heat transfer coefficients were studied, and single bubble inception, growth, and departure, as well as elongated bubble behavior were analyzed to elucidate the microscale heat transfer mechanisms. Tests were performed for mass fluxes of 77.5, 154.9, and 309.8 kg/m2 s and heat fluxes of 180–500 kW/m2. The effects of mass flux, heat flux, and vapor qualities on flow boiling heat transfer in a microchannel were studied. 相似文献
153.
8‐Hydroxy‐2′‐deoxyguanosine (8‐OHdG) is one of the major forms of oxidative DNA damage, and is commonly analyzed as an excellent marker of DNA lesions. The purpose of this study was to develop a sensitive method to accurately and rapidly quantify the 8‐OHdG by using CE‐LIF detection. The method involved the use of specific antibody to detect the DNA lesion (8‐OHdG) and consecutive fluorescence labeling. Next, urinary 8‐OHdG fluorescently labeled along with other constituents were resolved by capillary electrophoretic system and the lesion of interest was detected using a fluorescence detector. The limit of detection was 0.18 fmol, which proved sufficient sensitivity for detection and quantification of 8‐OHdG in untreated urine samples. The relative standard deviation was found to be 11.32% for migration time and 5.52% for peak area. To demonstrate the utility of this method, the urinary concentration of 8‐OHdG in an Alzheimer's transgenic mouse model was determined. Collectively, our results indicate that this methodology offers great advantages, such as high separation efficiency, good selectivity, low limit of detection, simplicity and low cost of analysis. 相似文献
154.
155.
In this paper, we consider the pseudo-conjugation and its variations on the sets of partitions with restricted cranks and involutions on Frobenius symbols. We give several partition identities revealing relations between the number of equivalence classes in the set of partitions arising from an involution and the number of partitions satisfying a certain parity condition. 相似文献
156.
Analysis of combustion regimes and conditional statistics of autoigniting turbulent n-heptane sprays
DNS is performed for a statistically one dimensional layer of a spray region resembling diesel engine conditions. The group and collective combustion regimes are identified according to the ratio of the chemical and transport time scales for a single droplet. The statistics in group combustion are similar with those in gas phase combustion. The collective combustion regime involves interspersed rich regions with different dissipation characteristics. Reasonable agreements are shown with the scaled AMC model and the linear evaporation model in the ranges of meaningful probability. Initially the evaporation terms are dominant in the budgets of the conditional enthalpy equation. After ignition the chemical reaction term becomes dominant to be balanced by the time rate of change term. For modeling turbulent spray combustion it may not be essential to consider detailed micro structures around each droplet, unless in the droplet combustion regime. 相似文献
157.
In roll draft operation mechanisms, the behavior of floating fibers is known to cause the thickness variation in output fiber bundles. Despite the significance of this phenomenon, few studies have sought to explain the underlying mechanism theoretically. We analyzed the dynamic characteristics of bundle flow in roll draft systems, based on a model of bundle flow. By applying both linear stability and phase plane analyses, we investigated an occurrence of draft waves. Our results suggest that the principles of linear stability can be applied to analyze bundle flow dynamics. The nonlinearity of bundle flow, however, reveals that the stable fixed point disappears when draft ratio changes, which in turn implies that the topological structure of the phase portrait changes as the process parameter is varied: a bifurcation property. As the process parameter increases above certain critical values, fixed points are destroyed and oscillations within the limit cycle occur. Also the system oscillates at a critical draw ratio harmonically, indicating the onset of a Hopf bifurcation, which corresponds to the draft wave. The phase portrait converges to a shell-shaped curve if the process parameter increases further. The results of this study also show that there is a specific draft ratio below which flow is always stable. 相似文献
158.
159.
Three‐dimensional symmetric dendrites of BaWO4 were prepared by performing solvothermal reactions in water‐hexane bilayer solutions that contained a barium‐oleate complex in the hexane layer and sodium tungstate in the water layer. The barium‐oleate complex in hexane was obtained via a phase transfer reaction in which aqueous Ba2+ ions pass into the hexane phase with the assistance of sodium oleate, oleic acid, and oleylamine. Each of the BaWO4 dendrites has a three‐dimensional structure with one trunk along the c‐axis and a series of four branches perpendicular to the trunk. As the reaction temperature or the amount of oleylamine increases, BaWO4 dendrites with sharper branches and higher order hierarchical structures are formed. The presence of oleylamine plays an important role in the formation of the hierarchical superstructures of BaWO4 dendrites. 相似文献
160.
We report a new three-dimensional potential energy surface for the He–CS2 complex including the Q 3 normal mode for the υ 3 antisymmetric stretching vibration of the CS2 molecule. The potential energies were calculated at the coupled-cluster singles and doubles with noniterative inclusion of connected triples level with augmented correlation-consistent quadruple-zeta basis set plus midpoint bond functions. Two vibrationally averaged potentials with CS2 at both the ground (υ = 0) and the first excited (υ = 1) υ 3 vibrational states were generated from the integration of the three-dimensional potential over the Q 3 coordinate. Both potentials have a T-shaped global minimum and two equivalent linear local minima. The radial discrete variable representation/angular finite basis representation method and the Lanczos algorithm were applied to calculate the rovibrational energy levels. Our calculated results show that the two potentials support eight vibrational bound states. The calculated band origin shift of the complex (0.1759 cm?1) agrees very well with the observed one (0.1709 cm?1). The predicted infrared spectra and spectroscopic constants based on the two averaged potentials are in excellent agreement with the available experimental values. 相似文献