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        검색결과 137

        61.
        2009.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Al2O3 현탁액의 폴리에틸렌 정밀여과에 있어 역세척이 막오염에 미치는 영향에 대하여 분석하였다. 현탁액의 투과저항은 역세척을 한 경우가 역세척을 하지 않은 경우보다 작았으나 투과저항 증가율은 역세척을 하지 않은 때보다도 더 컸다. 막오염 형태는 역세척을 한 경우나 하지 않은 경우 운전초기에는 케익오염이 지배적이었으며, 이어 세공막힘오염이 나타났고, 정상상태에 도달하면 투과유속은 다시 케익여과 오염에 의해 지배받는 것으로 나타났다. 한편, 세척공정에 앞선 막은 운전초기에 세공막힘오염이 케익오염에 앞서 일어났다. 총오염에 대한 케익여과 오염의 비율은 역세척에 관계없이 역세척 전에 비하여 증가하였다. 세공크기가 0.24 μm인 막의 투과저항은 세공이 0.34 μm인 막에 비해 더 컸으나, 막오염 형태는 세공의 크기가 0.34 μm인 막에 비해 케익오염이 작았다. 총오염에 대한 성분오염의 비율은 역세척을 한 경우에는 세공막힘이 약 7.8%, 케익오염 약 92.2%이었고, 역세척을 하지 않은 경우에는 세공막힘은 9.6% 그리고 케익오염이 90.4%이었다.
        4,500원
        62.
        2008.08 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        Al2O3 sol with long-term stability was prepared by mechanical milling. Thin films were evaluated and created for use as coating materials. The particle size of the manufactured sol was 98 nm when 2 wt% of nitric acid was added. This indicates that the viscosity of the sol is 12 cps and that it has long-term stability. The thickness of the thin films, which varied from 100 nm to 500 nm, could be managed by adjusting the draw rate and the amount of an organic additive. A thin film heated to 500˚C indicated a hydrophilic property against water and excellent permeability against a visible ray.
        4,000원
        64.
        2008.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This article presents the challenges toward the successful consolidation of nanopowder using magnetic pulsed compaction (MPC). In this research the ultrafine-structured bulks have been fabricated by the combined application of magnetic pulsed compaction (MPC) and subsequent sintering, and their properties were investigated. The obtained density of bulk prepared by the combined processes was increased with increasing MPC pressure from 0.5 to 1.25 GPa. Relatively higher hardness and fracture toughness in the MPCed specimen at 1.25 GPa were attributed to the retention of the nanostructure in the consolidated bulk without cracks. The higher fracture toughness could be attributed to the crack deflection by homogeneous distribution and the retention of nanostructure, regardless of the presence of porosities. In addition, the as consolidated bulk using magnetic pulsed compaction showed enhanced breakdown voltage.
        4,000원
        65.
        2007.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Nanocrystalline transient aluminas (-alumina) were coated on core particles (-alumina) by a carbonate precipitation and thermal-assisted combustion, which is environmentally friend. The ammonium aluminum carbonate hydroxide (AACH) as a precursor for coating of transient aluminas was produced from precipitation reaction of ammonium aluminum sulfate and ammonium hydrogen carbonate. The crystalline size and morphology of the synthetic, AACH, were greatly dependent on pH and temperature. AACH with a size of 5 nm was coated on the core alumina particle at pH 9. whereas rod shape and large agglomerates were coated at pH 8 and 11, respectively. The AACH was tightly bonded coated on the core particle due to formation of surface complexes by the adsorption of carbonates, hydroxyl and ammonia groups on the surface of the core alumina powder. The synthetic precursor successfully converted to amorphous- and -alumina phase at low temperature through decomposition of surface complexes and thermal-assisted phase transformation.
        4,000원
        66.
        2007.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The alumina nano powders synthesized by levitational gas condensation (LGC) method were applied to catalyst in manufacturing process of Hanzsch reaction for Nitrendipine. The L-tartaric acid on the surface is carried out with participation of carbonyl fragments, O-H, C-H bonds which affects stereo selectivity, yield on the reagents positively. From the analysis of the IR-spectroscopy, the carbonyl fragments, O-H, and C-H bond were created by the catalytic reaction. From the analysis of the rR-spectroscopy, the carbonyl fragments, O-H, and C-H bond were created by the catalytic reaction. The newly created bonds made a chiral center on the final product.
        4,000원
        68.
        2005.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The with various phases were prepared by simple ex-situ hydrolysis and spark plasma sintering (SPS) process of Al powder. The nano bayerite phase was derived by hydrolysis of commercial powder of Al with micrometer size, whereas the bohemite (AlO(OH)) phase was obtained by hydrolysis of nano Al powder synthesized by pulsed wire evaporation (PWE) method. Compaction as well as dehydration of both nano bayerite and bohemite was carried out simultaneously by SPS method, which is used to fabricate dense powder compacts with a rapid heating rate of per min. under the pressure of 50MPa. After compaction treatment in the temperature ranges from , the bayerite and bohemite phases change into various alumina phases depending on the compaction temperatures. The bayerite shows phase transition of sequences. On the other hand, the bohemite experiences the phase transition from AlO(OH) to It shows AlO(OH) sequences. The compacted at shows a high surface area .
        4,000원
        69.
        2005.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In this study the nanostructured ceramics have been fabricated by the combined application of magnetic pulsed compaction (MPC) and subsequent spark plasma sintering (SPS), and their density and hardness properties were investigated. The prepared by the combined processes showed an increase by in density, approaching the value close to the true density, and an enhancement by in hardness, compared to those fabricated by MPC or static compaction method followed by sintering treatment.
        4,000원
        70.
        2005.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Aluminum tri-butoxide was mixed with the water/ethanol solution and then chloroplatinic acid was added to the solution. The solution was dried at 100℃ for 15hrs to remove the solvent and water then it was calcined at 500℃. The catalyst was activated with a gas mixture. During the activation, the temperature was increased from 150℃ to 500℃. The necessary amount of urea was dissolved in 50mL water and injected. Aqueous urea solution was then mixed with the feed gas stream. At low temperatures, nitrogen containing compounds of urea decomposition are used as reductants in the reducton of NOX. However at high temperatures the nitrogen containing compounds are oxidized to NO and NO2 by oxygen instead of being used in the reduction. The activity of the catalyst was dependent on urea concentration in the feed stream when there was not adequate water vapor in the feed. The maximum conversion was shifted from 250℃ to 150℃ when water concentration was increased from 2 to 17%. It seems that the maximum temperature shifts to lower temperatures because the hydrolysis rate of HNCO increases with water, resulting in higher amounts of NH3.
        4,000원
        74.
        2003.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Two-component ceramic (alumina-zirconia) composites were fabricated by a soft-solution process in which polyethylene glycol (PEG) was used as a polymeric carrier. Metal salts and PEG were dissolved in ethyl alcohol without any precipitation in 1:1 volume ratio of alumina and zirconia. In the non-aqueous system, the flammable solvent made explosive, exothermic reaction during drying process. The reaction resulted in formation of volume expanded, porous precursor powders by a vigorous decomposition of organic components in the precursor sol. The PEG content affected the grain size of sintered composites as well as the morphology of precursor powders. The difference of microstructure in sintered composite was attribute to the solubility and homogeneity of metal cations in precursor sol. At the optimum amount of the PEG polymer, the metal ions were dispersed effectively in solution and a homogeneous polymeric network was formed. It made less agglomerated particles in the precursor sol and affected on uniform grain size in sintered composite.
        4,000원
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