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51.
The influence of HCl, Cl2, Br2 and I2 on the vapor phase growth of carbon fibers from naphthalene was examined at 1100°C with the expectation of a promotive effect similar to H2S. However, these halogen additives were found not to catalyse but to inhibit the growth. Employment of 1-chloronaphthalene as the source material also resulted in the remarkable suppression of fiber formation. The fibers obtained in the presence of the halogens exhibited highly pockmarked surfaces, due to deposition of soot-like carbon. In addition, the deposition was preferential at the growing end of the fiber, so that the diameter became thick progressively from root to tip. From these observations, the inhibition of the fiber growth with halogens was attributed to the accelerated decomposition of naphthalene into soot-like carbon. 相似文献
52.
Convex mirrors are universally used as rear-view mirrors in automobiles. However, the ocular accommodative responses during the use of these mirrors have not yet been examined. This study investigated the effects of a convex mirror on the ocular accommodative systems. Seven young adults with normal visual functions were ordered to binocularly watch an object in a convex or plane mirror. The accommodative responses were measured with an infrared optometer. The average of the accommodation of all subjects while viewing the object in the convex mirror were significantly nearer than in the plane mirror, although all subjects perceived the position of the object in the convex mirror as being farther away. Moreover, the fluctuations of accommodation were significantly larger for the convex mirror. The convex mirror caused the 'false recognition of distance', which induced the large accommodative fluctuations and blurred vision. Manufactures should consider the ocular accommodative responses as a new indicator for increasing automotive safety. 相似文献
53.
54.
Jung-Moo Lee Chang-Gil Lee Suk-Bong Kang Akihiko Kamio 《Metals and Materials International》2000,6(4):389-394
Aluminum matrix composites were produced via the plasma injection of reinforcing particulates into aluminum melts stirred
electromagnetically. In this process, a metallic wire supplied to the active zone of plasma torch disintegrated into fine
metallic particles. In the plasma arc, the particles are heated above the melting point and accelerated to close to sonic
speed, which helps with the incorporation of the particles into the melt. In this study, the possibility of producing aluminum
matrix composites reinforced by intermetallic compound particles via plasma synthesis is demonstrated. 相似文献
55.
56.
Crystallization behaviours around the glass transition temperature in an amorphous Fe70Nb10B20 alloy were investigated by means of transmission electron microscopy. Dense bcc-Fe nanocrystals initially appeared as the primary phase, followed by the dense formation of the (Fe,Nb)23B6 nanocrystalline phase. The bcc-Fe nanocrystals were formed even by annealing at a temperature that is 38 K lower than the glass transition temperature. A difference of the low temperature behaviours between the present conventional amorphous alloy and a bulk metallic glass was discussed. 相似文献
57.
58.
Akihiko Wakai Keizo Ugai Atsuo Onoue Seiichiro Kuroda Kunihiro Higuchi 《Soils and Foundations》2010,50(4):533-545
The damage caused by an earthquake-induced landslide can generally be classified as either a limited deformation or a catastrophic failure. From an engineering point of view, the latter can be much more dangerous because the sliding mass may continue moving until it collides with another object. If a catastrophic failure occurs near a river, the debris may block the river, causing serious damage to the adjacent area. Therefore, examination of the mechanism of such catastrophic slope failures is important with respect to the mitigation of earthquake disasters in mountainous districts, although numerical modeling of such phenomena is rather difficult. In the present study, a new numerical model is developed to simulate an earthquake-induced catastrophic landslide that occured at a typical dip slope, namely, the Yokowatashi Landslide in Japan. In this case, the upper part of the bedrock on the planer tectonic dip surface slid more than 70 m. Only shear-strength degradation at the bedding plane could cause such a long-distance traveling failure. To investigate the strain-softening characteristics of the materials that filled the bedding plane, a series of laboratory tests involving undisturbed block samples was performed. The measured stress-displacement relationships under cyclic loading were numerically modeled as a newly proposed elasto-plastic constitutive model to be used in numerical simulations of landslide, based on the dynamic finite element method. The observed phenomena were appropriately simulated by the proposed method. The mechanism of catastrophic failure is discussed in detail in this paper in order to clarify the relationships between the strain-softening characteristics and the global slope stability. Our newly proposed method to evaluate the possibility of a catastrophic failure was applied to the landslide, and the moment when the slope becomes unstable was able to be predicted. The results confirm that the proposed method can predict the catastrophic failure of a slope. 相似文献
59.
Nitritation performance in membrane-aerated biofilm reactors differs from conventional biofilm systems 总被引:1,自引:0,他引:1
Susanne Lackner Akihiko Terada Harald Horn Mogens Henze Barth F. Smets 《Water research》2010,44(20):6073-6084
Nitrogen removal via nitrite has gained increasing attention in recent years due to its potential cost savings. Membrane-aerated biofilm reactors (MABRs) are one potential technology suitable to achieve nitritation. In this study we compared lab scale MABRs with conventional biofilm reactors to evaluate the influence of environmental conditions and operational parameters on nitritation performance. The oxygen mass transfer rate is postulated as a crucial parameter to control nitritation in the MABR: Clean water measurements showed significant underestimation of the total oxygen mass transfer, however, accurate determination of the oxygen mass transfer coefficient (km) of the system could be achieved by adjusting the liquid-phase mass transfer resistance in the constructed model. Batch experiments at different initial ammonium concentrations revealed that the conventional biofilm geometry was superior for nitritation compared to MABRs. These differences were reflected well in estimates of the oxygen affinity constants of the key microbial players, AOB and NOB (KO,AOB < KO,NOB (in both systems) and KO,NOB values smaller in the MABR vs. the conventional biofilm system). It also appeared that – in addition to oxygen limitation – the absolute and relative substrate concentrations in the biofilm (esp. of oxygen) are very important for successful nitritation. Initial biomass composition, furthermore, impacted reactor performance in the MABR systems indicating the need for appropriate inoculum choice. 相似文献
60.
Purification and characterization of a protease from Pseudomonas aeruginosa grown in cutting oil 总被引:2,自引:0,他引:2
The Pseudomonas aeruginosa san-ai strain was isolated from water-soluble cutting oil used for cooling and lubrication during industrial metal-working processes. This strain, which is grown in a high alkaline (pH 10) mixture of surfactants and mineral oil, produces an extracellular proteolytic enzyme. We have purified and characterized this 18 kDa protease. The P. aeruginosa san-ai protease functions optimally at pH 9.0 and 60 degrees C. Additionally, it is a Zn-containing metalloenzyme, and its monomeric structure contains at least one disulfide bond. Because the enzyme is stable in the presence of organic solvents, it is suitable for peptide synthesis. Furthermore, the P. aeruginosa san-ai protease could be used in an intelligent drug delivery system (DDS) designed for applications in the metal industry for prevention of putrefaction of cutting oil. 相似文献