• 제목/요약/키워드: Bubble column reactor

검색결과 47건 처리시간 0.023초

O3/H2O2와 O3/Catalyst 고급산화공정에서 1,4-dioxane의 제거 특성 (Removal Characteristics of 1,4-dioxane with O3/H2O2 and O3/Catalyst Advanced Oxidation Process)

  • 박진도;서정호;이학성
    • 한국환경과학회지
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    • 제15권3호
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    • pp.193-201
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    • 2006
  • Advanced oxidation processes involving $O_3/H_2O_2$ and $O_3/catalyst$ were used to compare the degradability and the effect of pH on the oxidation of 1,4-dioxane, Oxidation processes were carried out in a bubble column reactor under different pH. Initial hydrogen peroxide concentration was 3.52 mM in $O_3/H_2O_2$ process and 115 g/L (0.65 wt.%) of activated carbon impregnated with palladium was packed in $O_3/catalyst$ column. 1,4-dioxane concentration was reduced steadily with reaction time in $O_3/H_2O_2$ oxidation process, however, in case of $O_3/catalyst$ process, about $50{\sim}75%$ of 1,4-dioxane was degraded only in 5 minutes after reaction. Overall reaction efficiency of $O_3/catalyst$ was also higher than that of $O_3/H_2O_2$ process. TOC and $COD_{cr}$ were analyzed in order to examine the oxidation characteristics with $O_3/H_2O_2\;and\;O_3/catalyst$ process. The results of $COD_{cr}$ removal efficiency and ${\Delta}TOC/{\Delta}ThOC$ ratio in $O_3/catalyst$ process gave that this process could more proceed the oxidation reaction than $O_3/H_2O_2$ oxidation process. Therefore, it was considered that $O_3/catalyst$ advanced oxidation process could be used as a effective oxidation process for removing non-degradable toxic organic materials.

$O_3/H_2O_2$를 이용한 고급산화공정에서 초기 $H_2O_2$ 농도에 따른 1,4-dioxane의 제거 특성 연구 (A Study on the Degradation Characteristics of 1,4-dioxane at Different Initial $H_2O_2$ Concentration with Advanced Oxidation Process using Ozone and Hydrogen Peroxide)

  • 박진도;서정호;이학성
    • 대한환경공학회지
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    • 제27권10호
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    • pp.1108-1113
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    • 2005
  • 본 연구는 1,4-dioxane을 함유한 폐수를 $O_3/H_2O_2$ 고급산화공정에서 1,4-dioxane의 제거율 및 생물학적분해 가능성을 실험하였다. 산화공정에 사용한 반응기는 bubble column 형태이며, 초기 pH 및 과산화수소의 초기농도를 달리하여 14-dioxane의 제거특성을 실험하였다. $H_2O_2$의 초기농도는 $40{\sim}120\;mg/L$로 조절하였으며, 초기 pH는 6과 9로 조절하여 산화반응에 의한 1,4-dioxane의 제거율 및 $BOD_5$, TOC 등을 분석하였다. 실험 결과 동일한 초기 pH에서 $H_2O_2$의 초기농도가 높을수록 1,4-dioxane의 제거율은 증가하였다. 오존의 소비량과 과산화수소의 초기농도 사이에는 직선적인 제거율을 나타내었으며, 이러한 이유는 높은 초기 $H_2O_2$ 농도에서 hydroxyl radical($OH{\cdot}$) 및 hydroperoxy ions(${HO_2}^-$)의 생성을 가속화 시킨 것에 기인한다고 판단되었다. $O_3/H_2O_2$ 고급산화공정에서 과산화수소의 초기농도는 1,4-dioxane의 제거와 생물학적 분해가능성을 높이는 것으로 관찰되었다.

Sulfamethoxazole의 오존산화처리에 관한 연구 (A Study on Ozonation of Sulfamethoxazole)

  • 이철규
    • 한국물환경학회지
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    • 제35권6호
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    • pp.459-469
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    • 2019
  • The ozonation of sulfamethoxazole (SMX) was performed at 20℃ using a pilot scale countercurrent bubble column reactor. Ozonation systems were combined with UV irradiation and TiO2 addition. As the oxidation reaction proceeded in each treatment system, the pH of the sample decreased and in the O3/UV/TiO2 system, the pH change was the largest from 4.54 to 2.02. Under these experimental conditions, the scavenger impact of carbonate is negligible. The highest COD and TOC removal rate was observed in the O3/UV/TiO2 system due to the UV irradiation and the photocatalytic effect of TiO2. Also, the highest mineralization ratio(ε) value is 0.2 in the O3/UV/TiO2 system, which means theoxidation capacity of the systems. The highest SMX degradation rate constants calculated by COD and TOC values (COD and TOC) were 2.15 × 10-4 sec-1 and 1.00 × 10-4 sec-1 in the O3/UV/TiO2 system, respectively. The activation energy (Ea) of ozone treatment follows the Arrhenius law. It was calculated based on COD and TOC. Each activation energy decreased in order of single O3> O3/TiO2> O3/UV > O3/UV/TiO2 system. The result showed that ΔH is more effective than ΔS in each SMX ozontaionsystem, that is characteristic of the common oxidation reaction.

Fe-EDTA 착물을 이용한 황화수소 제거의 최적 반응 조건 (Optimum Conditions for Removal of Hydrogen Sulfide Using Fe-EDTA Complex)

  • 진상기;차진명;이인화;윤석진;김시욱
    • 공업화학
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    • 제7권1호
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    • pp.177-185
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    • 1996
  • Fe-EDTA 착물을 이용한 황화수소 제거의 최적 반응 조건을 기포탑 반응기에서 조사하였다. 착물의 농도가 증가할수록 황화수소 산화 반응에서 전환량은 증가하였고 pH 변화와 Fe 농도는 완만하게 감소하였으며, elemental sulfur의 생성량은 증가하였다. 또한 황화수소는 0.05M 이상의 착물 농도에서 효율적으로 제거되었다. pH에 따른 황화수소 산화반응에서 pH는 착물의 안정도에 중요한 인자이고 반응 중 최적 pH 범위는 8.5~9.5 이었다. [EDTA]/[Fe] 비가 증가할수록 황화수소 산화 반응의 전환량은 증가하였고 반응 중 EDTA 농도가 감소하면 FeS로 침전이 촉진되어 전환량은 감소하였다. 즉 EDTA 농도가 증가될수록 Fe-EDTA 착물이 안정되어 전환량이 증가하였다.

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A New Detergentless Micro-Emulsion System Using Urushiol as an Enzyme Reaction System

  • Kim, John-Woo-Shik;Yoo, Young-Je
    • Journal of Microbiology and Biotechnology
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    • 제11권3호
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    • pp.369-375
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    • 2001
  • Urushiol, a natural monomeric oil, was used to prepare a detergentless micro-emulsion with water and 2-propanol The formation of micro-emulsion was verified by conductivity measurements and dynamic light scattering. The conductivity data showed phase change dynamics, a characteristics of micro-emulsions, and subsequent dynamic light scattering study further confirmed the phenomenon. Average water droplet diameter was 10 nm to 500 nm when the molar ratio of 2-propanol ranged from 0.40 to 0.44 . Earlier studies were performed on toluene and hexane, in which the insoluble substrate in water phase was added to the solvents to be reacted on by enzymes. However, in the present urushiol system, urushiol was used as both solvent and substrate in the laccase polymerization of urushiol. The laccase activity in the system was examined using polymerization of urushiol. The laccase activity in the system was examined using syringaldezine as a substrate, and the activity increased rapidly near the molar ratio of 2-propanol at 0.4, where micro-emulsion started. The activity rose until 0.46 and fell dramatically thereafter. The study of laccase activity in differing mole fractions of 2-propanol showed the existence of an ‘optimal zone’, where the activity of laccase was significantly higher. In order to analyze urushiol polymerization by laccase, a bubble column reactor using a detergentless micro-emulsion system was constructed. Comparative study using other organic solvents systems were conducted and the 2-propanol system was shown to yield the highest polymerization level. The study of laccase activity at a differing mole fraction of 2-propanol showed the existence of an ‘optimal zone’ where the activity was significantly higher. Also, 3,000 cP viscosity was achieved in actual urushi processing, using only 1/100 level of laccase present in urushi.

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Evaluation of electrical energy consumption in UV/H2O2 advanced oxidation process for simultaneous removal of NO and SO2

  • Shahrestani, Masoumeh Moheb;Rahimi, Amir
    • Environmental Engineering Research
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    • 제24권3호
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    • pp.389-396
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    • 2019
  • The electrical energy consumption (EEC) in removal of NO by a $UV/H_2O_2$ oxidation process was introduced and related to removal efficiency of this gas. The absorption-reaction of NO was conducted in a bubble column reactor in the presence of $SO_2$. The variation in NO removal efficiency was investigated for various process parameters including NO and $SO_2$ inlet concentrations, initial concentration of $H_2O_2$ solution and gas flow rate. EEC values were obtained in these different conditions. The removal efficiency was increased from about 22% to 54.7% when $H_2O_2$ concentration increased from 0.1 to 1.5 M, while EEC decreased by about 70%. However, further increase in $H_2O_2$ concentration, from 1.5 to 2, had no significant effect on NO absorption and EEC. An increase in NO inlet concentration, from 200 to 500 ppm, decreased its removal efficiency by about 10%. However, EEC increased from $2.9{\times}10^{-2}$ to $3.9{\times}10^{-2}kWh/m^3$. Results also revealed that the presence of $SO_2$ had negative effect on NO removal percentage and EEC values. Some experiments were conducted to investigate the effect of $H_2O_2$ solution pH. The changing of pH of oxidation-absorption medium in the ranges between 3 to 10, had positive and negative effects on removal efficiency depending on pH value.

쓰레기 매립지 MGT 발전 및 유리온실 설계기술개발 (Development of Land Fill Gas(LFG)-MGT Power Generation and Green House Design Technology)

  • 허광범;박정극;이정빈
    • 에너지공학
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    • 제20권1호
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    • pp.13-20
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    • 2011
  • 마이크로 가스터빈의 높은 연료 다양성은 광범위한 범위의 적용처에 적용할 수 있도록 설계되었다. 최근에는 가스터빈 발전시스템의 연료로서, 유기성폐기물의 소화가스와 쓰레기 매립지로부터 발생되는 바이오 가스에 대한 수요가 증가하고 있다. 우리는 매립지 가스를 이용하여 마이크로 가스터빈 열병합 발전시스템의 성능특성 및 운전 특성에 대한 영향을 연구하고 있다. 메탄과 이산화탄소를 동시에 회수하는 공정을 개발하여 현장 실증 플랜트 규모로 시험을 수행하였으며, 유리온실에 농작물의 이산화탄소 고농도 집적을 목적으로 철-킬레이트 화합물을 기본으로 하는 액상촉매를 이용하여 매립지 가스내에 있는 불순물을 저렴한 비용으로 제거하고자 한다. Fe-EDTA(철-킬레이트)를 이용한 내부순환 다판식 기포탑 반응기에 의하여 농축정제와 이산화탄소 제거가 매립지 가스의 최적화 연료화를 추진하였다. 매립지가스의 유량은 0.207 $m^3$/min이고 5.5 kg/$cm^2$의 압력으로 공급되며 메탄농도 70%, 이산화탄소 27%로 공급되도록 농축반응기를 설계하였고 황화수소 99% 제거를 목표로 한다. 유리온실은 마이크로 가스터빈 배가스와 온수를 이용하여 대기중의 이산화탄소 농도에서 1500 ppm의 농도범위로 공급되도록 설계되었다.