• 제목/요약/키워드: Ceramic Bead

검색결과 46건 처리시간 0.032초

세라믹과 유리에 코팅한 TiO2 광촉매를 이용한 가스상 벤젠의 제거 (Photocatalytic Degradation of Benzene in the Gas Phase using TiO2 Coated on Ceramic and Glass Beads)

  • 손현석;양원호;김현용;이소진;박종래;조경덕
    • 한국대기환경학회지
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    • 제19권1호
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    • pp.57-66
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    • 2003
  • TiO$_2$ sol was prepared by sol-gel method, and this sol was coated in ceramic and glass bead by dip-coating method. The coated catalyst was applied to degrade benzene in the gas phase by exposing to UV -lamp (365 nm) in a batch reactor. The removal efficiency of the benzene was compared by changing various conditions such as the kind of chemical additives, the coating beads (ceramic and glass), solution pH, the initial concentration of TiO$_2$ sol, UV intensity, and benzene concentration. The physical structure of TiO$_2$ sol used in this study was found to be pu-rely anatase type from XRD analysis. The results showed that ceramic bead was effective as the coating agent rath-er than glass bead. The significant change in the benzene removal efficiency of benzene did not occur with chang-ing coating frequency and the initial concentration of TiO$_2$ sol. The removal efficiency of benzene increased with increasing UV intensity, and with acidic treatment of TiO$_2$-coated ceramic bead.

초음파 촉매 공정에서 주파수와 고정된 고체 촉매가 라디칼 생성에 미치는 영향 (Effect of Frequency and Fixed Solid Catalyst for Radical Production in Sonocatalysis)

  • 조은주;나승민;이세반;김지형
    • 한국물환경학회지
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    • 제28권2호
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    • pp.219-223
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    • 2012
  • The fixed solid catalysts such as glass bead, steel mesh, and $TiO_2$ coated ceramic bead were used to investigate effect of radical production at different frequencies. The radical production rate at 300 kHz was faster than that at 35 kHz without solid, but the tendency was changed with the presence of glass bead. The presence of glass beads create non-continuous points between the solid and liquid phases leading to increased formation of cavitation bubbles. However, the radical production decreased when steel mesh was used at 35 kHz although the surface area of contact with liquid was same when glass bead was used. Hence the solid catalyst did not always enhance the radical production. The radical production using $TiO_2$ coated ceramic bead was dramatically increased at 35 kHz due to the breakage of $TiO_2$ coated ceramic bead. Therefore the radical productions at 300 kHz using fixed solid catalysts generally increased while at 35 kHz the results fluctuated according to the experimental conditions.

응집된 Y2O3:Eu Red 형광체의 나노분산 및 나노졸의 형광특성 (Nano Dispersion of Aggregated Y2O3:Eu Red Phosphor and Photoluminescent Properties of Its Nanosol)

  • 이현진;반세민;정경열;최병기;강광중;김대성
    • 한국재료학회지
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    • 제27권2호
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    • pp.100-106
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    • 2017
  • Nanosized and aggregated $Y_2O_3:Eu$ Red phosphors were prepared by template method from metal salt impregnated into crystalline cellulose. The particle size and photoluminescent property of $Y_2O_3:Eu$ red phosphors were controlled by variation of the calcination temperature and time. Dispersed nanosol was also obtained from the aggregated $Y_2O_3:Eu$ Red phosphor under bead mill wet process. The dispersion property of the $Y_2O_3:Eu$ nanosol was optimized by controlling the bead size, bead content ratio and milling time. The median particle size ($D_{50}$) of $Y_2O_3:Eu$ nanosol was found to be around 100 nm, and to be below 90 nm after centrifuging. In spite of the low photoluminescent properties of $Y_2O_3:Eu$ nanosol, it was observed that the photoluminescent property recovered after re-calcination. The dispersion and photoluminescent properties of $Y_2O_3:Eu$ nanosol were investigated using a particle size analyzer, FE-SEM, and a fluorescence spectrometer.

AlN 분말의 고에너지 밀링에 따른 소결체의 절연 특성 (Insulating Behavior of Sintered AlN Ceramics Prepared by High-Energy Bead Milling of AlN Powder)

  • 류성수;이성민
    • 한국분말재료학회지
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    • 제24권6호
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    • pp.444-449
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    • 2017
  • Aluminum nitride (AlN) powder specimens are treated by high-energy bead milling and then sintered at various temperatures. Depending on the solvent and milling time, the oxygen content in the AlN powder varies significantly. When isopropyl alcohol is used, the oxygen content increases with the milling time. In contrast, hexane is very effective at suppressing the oxygen content increase in the AlN powder, although severe particle sedimentation after the milling process is observed in the AlN slurry. With an increase in the milling time, the primary particle size remains nearly constant, but the particle agglomeration is reduced. After spark plasma sintering at $1400^{\circ}C$, the second crystalline phase changes to compounds containing more $Al_2O_3$ when the AlN raw material with an increased milling time is used. When the sintering temperature is decreased from $1750^{\circ}C$ to $1400^{\circ}C$, the DC resistivity increases by approximately two orders of magnitude, which implies that controlling the sintering temperature is a very effective way to improve the DC resistivity of AlN ceramics.

세라믹 한외여과 및 광촉매 혼성공정에 의한 고탁도 원수의 고도정수처리: 1. 광촉매 및 물역세척 조건의 영향 (Advanced Water Treatment of High Turbidity Source by Hybrid Process of Ceramic Ultrafiltration and Photocatalyst: 1. Effects of Photocatalyst and Water-back-flushing Condition)

  • 고사총;박진용
    • 멤브레인
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    • 제21권2호
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    • pp.127-140
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    • 2011
  • 본 연구에서는 정수처리용 세라믹 한외여과 및 광촉매의 혼성공정에서 $TiO_2$ 광촉매 코팅 구(bead)의 농도 및 물역세척 주기(FT), 물역세척 시간(BT) 변화의 영향을 알아보았다. 광촉매 코팅 구의 농도는 10~40 g/L로, FT는 2~10분으로, BT는 6~30초로 변화시키면서, 그 영향을 180분 운전 후 막오염에 의한 저항$(R_f)$, 투과선속(J)과 총여과부피$(V_T)$ 측면에서 고찰하였다. 광촉매 코팅 구의 농도가 감소할수록 $R_f$는 증가하고 J는 감소하였다. 광촉매 코팅 구의 농도 40 g/L 에서 $V_T$가 8.85 L로 가장 높았다. FT 변화 실험에서는 FT가 감소할수록, $R_f$는 감소하고 J는 증가하였다. 한편, BT 변화 실험에서는 BT가 증가할수록, $R_f$는 감소하고 J는 증가하였다. 또한, NBF(no back-flushing)에서 급격한 막오염에 의한 분리막 기공의 감소로 탁도 및 용존유기물($UV_{254}$ 흡광도)이 효과적으로 제거되었기 때문에, 탁도 및 용존유기물의 처리효율이 NBF 조건에서 가장 높았다. 한편, 광촉매 코팅 구의 세척 효과로 FT가 감소할수록, BT가 증가할수록 탁도 및 용존유기물의 처리효율은 증가하였다.

주형법으로 제조된 Gd2O3:Eu3+ 적색 형광체의 나노입자 분산 및 형상제어 (Dispersion and Shape Control on Nanoparticles of Gd2O3:Eu3+ Red Phosphor Prepared by Template Method)

  • 박정민;반세민;정경열;최병기;강광중;김대성
    • 한국재료학회지
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    • 제27권10호
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    • pp.534-543
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    • 2017
  • $Gd_2O_3:Eu^{3+}$ red phosphors were prepared by template method from crystalline cellulose impregnated by metal salt. The crystallite size and photoluminescence(PL) property of $Gd_2O_3:Eu^{3+}$ red phosphors were controlled by varying the calcination temperature and $Eu^{3+}$ mol ratio. The nano dispersion of $Gd_2O_3:Eu^{3+}$ was also conducted with a bead mill wet process. Dependent on the time of bead milling, $Gd_2O_3:Eu^{3+}$ nanosol of around 100 nm (median particle size : $D_{50}$) was produced. As the bead milling process proceeded, the luminescent efficiency decreased due to the low crystallinity of the $Gd_2O_3:Eu^{3+}$ nanoparticles. In spite of the low PL property of $Gd_2O_3:Eu^{3+}$ nanosol, it was observed that the photoluminescent property was recovered after re-calcination. In addition, in the dispersed nanosol treated at $85^{\circ}C$, a self assembly phenomenon between particles appeared, and the particles changed from spherical to rod-shaped. These results indicate that particle growth occurs due to mutual assembly of $Gd(OH)_3$ particles, which is the hydration of $Gd_2O_3$ particles, in aqueous solvent at $85^{\circ}C$.

흄드실리카로부터 제조된 실리카졸의 분산인자 상관성 연구 (Correlation Research of Dispersion Factors on the Silica Sol Prepared from Fumed Silica)

  • 박민경;김훈;임형미;최진섭;김대성
    • 한국재료학회지
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    • 제26권3호
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    • pp.136-142
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    • 2016
  • To study the dispersion factors of silica sol prepared from fumed silica powder, we prepared silica sol under an aqueous system using a batch type bead mill. The dispersion properties of silica sol have a close relationship to dispersion factors such as pH, milling time and speed, the size and amount of zirconia beads, the solid content of fumed silica, and the shape and diameter of the milling impellers. Especially, the silica particles in silica sol were found to show dispersion stability on a pH value above 7, due to the electrostatic repulsion between the particles having a high zeta potential value. The shape and diameter of the impellers installed in the bead mill for the dispersion of fumed silica was very important in reducing the particle size of the aggregated silica. The median particle size ($D_{50}$) of silica sol obtained after milling was also optimized according to the variation of the size and amount of the zirconia beads that were used as the grinding medium, and according to the solid content of fumed silica. The dispersion properties of silica sol were investigated using zeta potential, turbiscan, particle size analyzer, and transmission electron microscopy.

직접질화법 AlN 분말의 소결거동 및 열전도도에 미치는 고에너지 볼밀링 효과 (Effect of High Energy Ball Milling on Sintering Behavior and Thermal Conductivity of Direct Nitrided AlN Powder)

  • 박해룡;김형태;이성민;김영도;류성수
    • 한국세라믹학회지
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    • 제48권5호
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    • pp.418-425
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    • 2011
  • In this study, a high energy ball milling process was introduced in order to improve the densification of direct nitrided AlN powder. The sintering behavior and thermal conductivity of the AlN milled powder was investigated. The mixture of AlN powder and 5 wt% $Y_2O_3$ as a sintering additive was pulverized and dispersed by a bead mill with very small $ZrO_2$ bead media. The milled powders were sintered at $1700^{\circ}C-1800^{\circ}C$ for 4 h under $N_2$ atmosphere. The results showed that the sintered density was enhanced with increasing milling time due to the particle refinement as well as the increase in oxygen contents. Appropriate milling time was effective for the improvement of thermal conductivity, but the extensive millied powder formed more fractions of secondary phase during sintering, resulted in the decrease in thermal conductivity. The AlN powder milled for 10min after sintering at $1800^{\circ}C$ revealed the highest thermal conductivity, of 164W/$m{\cdot}K$ in tne densified AlN sintered at $1800^{\circ}C$.

산화티탄 광촉매를 이용한 VOC 가스 처리효과에 관한 연구 (A Study on the Photocatalytic Degradation of VOC over TiO2 Coated on Glass Bead)

  • 윤석영;노준형;박순제;이승호
    • 한국재료학회지
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    • 제10권5호
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    • pp.328-334
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    • 2000
  • 산화티탄의 광촉매 반응을 이용하여 휘발성 유기화합물(VOC)를 분해제거 하기 위하여 산화티탄을 glass bead에 sol-gel법으로 코팅하였다. 코팅막의 물성은 XRD, BET, SEM을 통해 분헉하였으며, 산화티탄이 galss bead를 채운 실험실규모의 광촉매 반응기를 이용 VOC중 벤젠 및 TCE 가스의 광촉매반응에 의한 분해효율에 대해 연구 컴토하였다. 반응기내의 잔류시간에 따른 가스농도 차이를 gas chromatography로 비교 분석하여 그 분해효율을 계산하였다. 이와 같은 정적인 상태의 실험결과, 400ppmv의 농도의 TCE인 경우 80%의 분해효율을 얻었으며, 50ppmv에서 300ppmv 농도의 벤젠인 경우 65%의 분해효율을 얻었다.

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