http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
$SrTiO_3$계 Grain Boundary Layer Capacitor에서 2차 열처리 산화물의 Frit화가 유전적 성질에 미치는 영향
유재근,최성철,이응상 한국세라믹학회 1991 한국세라믹학회지 Vol.28 No.4
The dielectric properties and microstructure of SrTiO3-based grain boundary layer (GBL) capacitor were investigated, and SrTiO3 GBL capacitor was made by penetrating the Frit (PbO-Bi2O3-B2O3 system). The Nb2O5-doped SrTiO3 ceramics were fired for 4-hours, at 145$0^{\circ}C$ in H2-N2 atomsphere to get semiconductive ceramics. The grain size of SrTiO3 sintered at reduction atmosphere had increased as the amount of Nb2O5 increases and then decreased as the amount of Nb2O5 exceeded 0.2 mole%. Insulating reagents which contained PbO-Bi2O3-B2O3 system frit and oxide mixture were printed on the each semiconductive ceramics and fired at varying temperature and for different holding time. The optimum dielectric properties could be obtained by second heat treatment at 110$0^{\circ}C$ for 1 hour, when frit paste was printed. A SrTiO3-based GBLC had the apparent permitivity of about 3.2$\times$104, the dielectric loss of 0.01~0.02 and the stable temperature coefficient of capacitance. The influence of frit paste on dielectric properties was similiar to that of oxide paste but the stability of temperature property of capacitance was improved.
축산폐수가 하천오염에 미치는 영향에 관한 연구 (하) -세균학적 조사를 중심으로-
유재근,이희수,이원창,김태종,이택주,Ryu J. K.,Lee H. S.,Lee W. C.,Kim T. J.,Lee T. J. 대한수의사회 1986 대한수의사회지 Vol.22 No.4
To evaluate effects of livestock wastewater on stream pollution, the survey on the environmental sanitation, hydrology, water quality, Pollutant loads and bacterial indicators in a stream receiving livestock wastewater discharged from Chun Sung livestock
새도우마스크 제조 공정중 발생되는 폐액으로부터 분무열분해 공정에 의한 복합산화물 나노 분말 제조
유재근,Yu Jae-Keun 한국자원리싸이클링학회 2003 資源 리싸이클링 Vol.12 No.6
본 연구에서는 새도우마스크 제조공정 중 발생되는 Fe-Ni계 복합 폐산을 원료로 하여 공기압력 1kg/$ extrm{cm}^2$의 조건에서 분무열분해 공정에 의해 평균입도 100nm 이하의 니켈 페라이트($NiFe _2$$O_4$)및 $_Fe2$O$_3$+NiO 나노 분말을 제조하였으며, 반응온도, 폐산용액의 농도 및 nozzle tip 크기의 반응인자들의 변화에 따른 생성된 분말의 특성 변화를 파악하였다. 반응온도가 $800^{\circ}C$로부터 $1100 ^{\circ}C$로 변화함에 따라 분말의 평균입도는 40nm로부터 100nm 정도까지 증가하고 있었으며 조직은 더욱 치밀화되는 반면 입도분포는 점점 불균일하게 됨을 알 수 있었다. 반응온도의 증가에 따라 니켈 페라이트 상의 생성 비율이 현저히 증가하고 있었으며 분말의 비표면적은 현저히 감소하고 있었다. 원료용액 내의 Fe 성분의 농도가 20g/l로 부터 200g/l로 증가됨에 따라 분말의 평균 입도는 30m로 부터 60nm 정도까지 점점 증가하는 반면 입도분포는 더욱 불균일하게 나타나고 있었다. 또한 용액의 농도 증가에 따라 니켈 페라이트 상의 생성 비율이 증가하고 있었으며, 분말의 비표면적은 현저히 감소하였다. Nozzle tip 크기 증가에 따라 분말의 입도분포는 점점 불균일하게 나타나는 반면 평균 입도는 현저한 변화를 나타내지 않았다. Tip 크기가 2mm까지는 tip 크기 증가에 따라 니켈 페라이트 상의 생성 비율에 현저한 변화는 나타나지 않는 반면 분말의 비표면적은 약간 감소하였다. Tip 크기가 3mm 및 5mm로 증가하는 경우에는 니켈 페라이트 상의 생성 비율이 점점 감소하고 있었으며, 분말의 비표면적은 약간씩 증가하고 있음을 알 수 있었다. In this study, nano-sized Ni-ferrite and $Fe_2$$O_3$+NiO powder was fabricated by spray pyrolysis process in the condition of 1kg/$\textrm{cm}^2$ air pressure using the Fe-Ni complex waste acid solution generated during the manufacturing process of shadow mask. The average particle size of the produced powder was below 100 nm. The effects of the reaction temperature, the concentration of raw material solution and the nozzle tip size on the properties of powder were studied. As the reaction temperature increased from $800 ^{\circ}C$ to $1100^{\circ}C$, the average particle size of the powder increased from 40 nm to 100 nm, the structure of the powder gradually became solid, yet the distribution of the particle size appeared more irregular. Along with the increase of the reaction temperature, the fraction of the Ni-ferrite phase were also on the rise, and the surface area of the powder was greatly reduced. As the concentration of Fe in solution increased from 20g/l to 200g/l, the average particle size of the powder gradually increased from 30 nm to 60 nm, while the distribution of the particle size appeared more irregular. Along with the increase of the concentration of solution, tie fraction of the Ni-ferrite phase was on the rise, and the surface area of the powder was greatly reduced. Along with the increase of the nozzle tip size, the distribution of the particle size appeared more irregular, yet the average particle size of the powder showed no significant change. As the nozzle tip size increased from 1 mm to 2 mm, the fraction of the Ni-ferrite phase showed no significant change, while the surface area of the powder slightly reduced. As the nozzle tip size increased to 3 mm and 5 mm, the fraction of the Ni-ferrite phase gradually reduced, and the surface area of the powder slightly increased.