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고상법으로 합성한 YVO<sub>4</sub>:Eu<sup>3+</sup> 적색 형광체의 비대칭비와 발광 특성
장재영,안세혁,방준혁,마권도,김춘수,조신호,Jang, Jae-Young,Ahn, Se-Hyeok,Bang, Jun-Hyuk,Ma, Kwon-Do,Kim, Choon-Soo,Cho, Shin-Ho 한국전기전자재료학회 2012 전기전자재료학회논문지 Vol.25 No.4
$Y_{1-x}VO_4:Eu_x^{3+}$ red phosphors were synthesized with changing the mol ratios of $Eu^{3+}$ ions by using the solid-state reaction method. The crystalline structure of phosphors was found to be a tetragonal system with the maximum diffraction intensity at $25.02^{\circ}$. The grain particles showed the truncated hexagonal patterns with a very homogeneous size distribution at 0.05 mol of $Eu^{3+}$ ion. The excitation spectra of the phosphor ceramics were composed of a broad band centered at 303 nm and weak narrow multilines peaked in the range of 360-420 nm. The dominant emission spectrum was the strong red emission centered at 619 nm due to the $^5D_0{\rightarrow}^7F_2$ electric dipole transition. The experimental results suggest that the optimum doping mol ratio of $Eu^{3+}$ ions for preparing the red phosphors is 0.10 mol with the asymmetry ratio of 5.21.
논문 : 정밀여과법 하수재이용 공정에서 오존의 전처리 효과에 관한 연구
문성용 ( Seong Yong Moon ),안세혁 ( Se Hyuk Ahn ),이상협 ( Sang Hyup Lee ),박종훈 ( Jong Hoon Park ),홍석원 ( Suk Won Hong ),최용수 ( Yong Su Choi ) 대한상하수도학회 2006 상하수도학회지 Vol.20 No.4
The Ozone oxidation process was applied to increase the efficiency of reuse process when treating the secondary effluent by the membrane system. This paper focus on decreasing efficiency of membrane fouling, because of membrane fouling reduction by ozone and evaluation of application of the ozone oxidation. The feed water was secondary effluent from BNR process. The result shows that the ozone pretreatment can reduce membrane fouling effectively. Also, the improvement of treated water quality was obvious. The reduction of the membrane fouling led decrease of following pollutant and increase of Inner adsorptive ability of hydrophilic organic matter and decrease of molecular weight. MF membrane process alone can meet the domestic reuse water standards. And ozone pretreatment process also can increase the removal rates of turbidity, COD, nitrogen, and color.