• 제목/요약/키워드: removal catalyst

검색결과 412건 처리시간 0.027초

기계적합금화법에 의해 제조된 ZSM-5촉매특성에 미치는 Cu의 영향 (Effect of Copper on the Properties of ZSM-5 Catalyst Fabricated by Mechanical Alloying Method)

  • 안인섭
    • 한국분말재료학회지
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    • 제3권3호
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    • pp.153-158
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    • 1996
  • The exhaust gas from vehicle engines and industrial boilers contains considerable amount of harmful nitrogen monoxide(NO) which causes air pollusion and acid rain. To remove NO catalytic reduction processes using Cu ion exchanged ZSM-5 zeolite have been widely studied. In this study, an attempt was made to fabricate Cu/zeolite catalyst by using high energy ball mill. The catalytic performance of ball milled Cu/ZSM-5 zeolites is analyzed and optimum copper contents was determined. The processing variables were reaction temperature and copper contents. Complete removal of NO gas was obtained at the temperature of 553 K on 10wt.% CU/ZSM-5 mechanically alloyed composite powders. Mechanically alloyed CU/ZSM-5 catalyst showed homogeneous distribution of Cu in ZSM-5.

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국내산 저품위 실리카를 이용한 포름알데히드 제거용 다공성 촉매의 제조 및 특성 (Preparation and Characterization of Porous Catalyst for Formaldehyde Removal using Domestic Low-grade Silica)

  • 한요셉;전호석;김성민
    • 자원리싸이클링
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    • 제30권2호
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    • pp.68-74
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    • 2021
  • 본 연구에서는 촉매 Co-ZSM5 및 Cu-ZSM5 코팅이 적용된 저품위 실리카를 사용하여 다공성 지지체를 제조하여 포름 알데히드(HCHO) 제거를 수행하였다. 먼저, 지지체 원료는 실리카가 90 % 함유되어 있어 저급 실리카로 확인되었다. EDS 및 FT-IR 분석에 따르면 Co-ZSM5 및 Cu-ZSM5 촉매는 다공성 실리카 지지체의 표면에 성공적으로 코팅되었다. 제조 된 Co-ZSM5 및 Cu-ZSM5 코팅 된 비드를 사용하여 HCHO의 제거 테스트 결과, 반응 온도에 따라 Co-ZSM5 코팅 된 비드는 Cu-ZSM5 비드보다 높은 제거 효율 (> 97 %)을 나타났다. 200 ℃. 전자의 더 높은 효율은 우수한 표면 활성 특성 (BET 표면적 및 기공 부피)에서 기인 할 수 있으며, 아마도 유리한 HCHO 분해로 이어질 수 있다. 따라서 Co-ZSM5 비드는 국산 저급 실리카를 사용하여 제작 된 다공성 지지체를 사용하여 HCHO 제거 용 촉매에 적합한 것으로 판단된다.

선택적 촉매환원법에 의한 배기가스중 NOx 저감에 관한 연구 (A Study of NOx Removal in Flue Gas by Selective Catalytic Reduction)

  • 박해경;김경림;최병선;이인철;최익수
    • 한국대기환경학회지
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    • 제4권2호
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    • pp.38-46
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    • 1988
  • NOx is an important air pollution material which is generated when fossil fuels are burning, NOx removal in flue gas by selective catalytic reduction was studied over various catalysts in a fixed bed continuous flow reactor. The ranges of experimental conditions were at the temperatures between $200^\circ$C and $350^\circ$C, the $NH_3/NOx$ mole ratios between 0.8 and 1.4, oxygen concentrations between 1.5% and 3% and the space velocities between 5, 000 $hr^-1$ and 12, 500 $hr^-1$. The efficiency of NOx removal in the ranges of experimental conditions was highest at the temp. of 300$^\circ$C, oxygen concentration of 2.5-2.6% and $NH_3/NOx$ mole ratios of 1.0-1.2. The catalyst with high activity for NOx removal in flue gas was found to be $MoO_3-V_2O_5/TiO_2$.

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원통형 플라즈마 반응기에서 $NO_x$ 제거에 미치는 슬러지의 촉매효과 (Catalistic effect of sludge on $NO_x$ removal in cylinder type reactor)

  • 박재윤;이경호;박상현;김형만;김종석;하현진
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 하계학술대회 논문집 C
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    • pp.1777-1779
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    • 2001
  • In this experiment, an attempt to use the sludge pellets as catalyst for NO removal from simulated gas is experimentally investigated by using cylinder type reactor. An experimental investigation has been conducted for NO concentration of 50[ppm], 100[ppm], 200[ppm] balanced with air. a gas flow rate of 5[1/min]. Cylinder type reactor is at upstream of system for corona discharge and packed bed type reactor filled with sludge pellets ate put at downstream of Cylinder type reactor for catalystic effect. And AC voltage to discharge the gases was supplied. In the result, NO removal with magnetic field is higher than that without magnetic field, when packed-bed reactor with sludge pellet is installed at downstream of cylinder reactor NO, $NO_2$ removal rate increased and $O_3$ is not generated.

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부식산 제거율 향상을 위한 오존공정의 개선에 관한 연구 (Improvement of Ozone Process for Removal Rate Elevation of Humic Acid)

  • 이유미;손일호;이동석
    • 산업기술연구
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    • 제27권A호
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    • pp.25-29
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    • 2007
  • Ozone alone, Ozone/GAC, Ozone/$H_2O_2$ and Ozone/GAC/$H_2O_2$ processes were introduced for treatment of humic acid, which is a representative refractory organic compound. $H_2O_2$ and GAC used as catalysts for experiment. The treatment efficiencies of humic acid in each process were analyzed for pH variation, DOC removal, and $UV_{254}$ decrease. $UV_{254}$ decrease in Ozone/GAC and Ozone/GAC/$H_2O_2$ processes were the highest with about 93%, and Ozone alone and Ozone/$H_2O_2$ processes were 88%. DOC removal in Ozone/GAC/$H_2O_2$ process was the highest with 71%. Removal by Ozone/GAC, Ozone alone, and Ozone/$H_2O_2$ processes were 66%, 39%, and 47%, respectively.

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미나리 Peroxidase를 이용한 Phenol제거에 관한 연구 (A Study of Removal of Phenol by Peroxidase Extracted from Oenanthe javanica (Blume) DC)

  • 탁창준;최한영;신정식;나규환;이장훈
    • 한국환경보건학회지
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    • 제23권4호
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    • pp.121-126
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    • 1997
  • Peroxidase as one of the organic enzyme catalyst is useful for the oxidation treatment of various aromatic compounds such as phenols. The peroxidase content of Oenanthe javanica was 24.85 unit/g-fw in leaf, 5.74 unit/g-fw in stem, and 34.69 unit/g-fw in root respectively. The crude peroxidase extracted from Oenanthe javanka can be kept under low temperature (-70$\circ$C) condition for 6 months with the maximum 1% activity reduction. The optimum conditions of removal for 100 ppm phenol was pH 6, hydrogen peroxide 3.5 mM, peroxidase activity 8 unit/ml, temperature 20$\circ$C respectively. In the wide range of concentration from 50 ppm to 750 ppm phenol reveals average 54% removal rate under the same peroxidase activity (8 unit/ml) and different amount of hydrogen peroxide proportional to phenol concentration. Especially at the concentration of 100 ppm the maximum phenol removal rate was 72%.

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Synthesis of Magnetic Sonophotocatalyst and its Enhanced Biodegradability of Organophosphate Pesticide

  • Lirong, Meng;Jianjun, Shi;Ming, Zhao;Jie, He
    • Bulletin of the Korean Chemical Society
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    • 제35권12호
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    • pp.3521-3526
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    • 2014
  • A magnetic sonophotocatalyst $Fe_3O_4@SiO_2@TiO_2$ is synthesized for the enhanced biodegradability of organophosphate pesticide. The as-prepared catalysts were characterized using different techniques, such as X-ray diffraction (XRD) and transmission electron microscopy (TEM). The radial sonophotocatalytic activity of $Fe_3O_4@SiO_2@TiO_2$ nanocomposite was investigated, in which commercial dichlorvos (DDVP) was chosen as an object. The degradation efficiency was evaluated in terms of chemical oxygen demand (COD) and enhancement of biodegradability. The effect of different factors, such as reaction time, pH, the added amount of catalyst on $COD_{Cr}$ removal efficiency were investigated. The average $COD_{Cr}$ removal efficiency reached 63.13% after 240 min in 12 L sonophotocatalytic reactor (catalyst $0.2gL^{-1}$, pH 7.3). The synergistic effect occurs in the combined sonolysis and photocatalysis which is proved by the significant improvement in $COD_{Cr}$ removal efficiency compared with that of solo photocatalysis. Under this experimental condition, the $BOD_5/COD_{Cr}$ ratio rose from 0.131 to 0.411, showing a remarkable improvement in biodegradability. These results showed that sonophotocatalysis may be applied as pre-treatment of pesticide wastewater, and then for biological treatment. The synthesized magnetic nanocomposite had good photocatalytic performance and stability, as when it was used for the fifth time, the $COD_{Cr}$ removal efficiency was still about 62.38%.

Dimethyl Naphthalate와 Ethylene Glycol의 에스테르 교환반응에 관한 연구 (A Study on the Ester Interchange Reaction of Dimethyl Naphthalate with Ethylene Glycol)

  • 소순용;정성일
    • 폴리머
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    • 제25권1호
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    • pp.25-32
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    • 2001
  • ${\circ}C$ 범위에서 아연과 망간촉매를 사용하여 에스테르 교환반응시켜 반응속도를 살펴보았다. 반응은 반회분식 반응기에서 비등온 조건으로 진행되었고 반응온도와 메탄올 유출량으로 반응성을 평가하였다. 반응모델로서는 관능기 모델과 분자종 모델을 적용하여 상호 비교하였다. 아연촉매를 사용할 경우 DMN과 EG의 반응속도는 methyl hydroxyethyl naphthalate(MHEN)와 EG의 반응속도에 비해 1.4배정도 였으나 망간촉매를 사용할 경우 4.3배정도로 촉매 종류에 따라 반응성이 크게 차이가 있음을 알 수 있었다. 아연촉매의 경우 DMN 및 MHEN과 EG의 반응에 대한 촉매농도의 반응차수는 1보다 작았으나, 망간촉매의 경우 오히려 1보다 컸다. 활성화에너지는 DMN과 MHEN의 분자종 차이에 관계없이 아연과 망간촉매의 경우 각각 25000, 28750 cal/mol이었다. 두 가지 반응모델을 비교하여 본 결과 분자종 모델이 반응현상을 잘 표현함을 알 수 있었다.

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니켈촉매를 이용한 온도 및 공간속도 변화에 따른 메탄화 반응 특성 (Methanation with Variation of Temperature and Space Velocity on Ni Catalysts)

  • 김수현;유영돈;류재홍;변창대;임효준;김형택
    • 신재생에너지
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    • 제6권4호
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    • pp.30-40
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    • 2010
  • Syngas from gasification of coal can be converted to SNG(Synthesis Natural Gas) through gas cleaning, water gas shift, $CO_2$ removal, and methanation. One of the key technologies involved in the production of SNG is the methanation process. In the methanation process, carbon oxide is converted into methane by reaction with hydrogen. Major factors of methanation are hydrogen-carbon oxide ratio, reaction temperature and space velocity. In order to understand the catalytic behavior, temperature programmed surface reaction (TPSR) experiments and reaction in a fixed bed reactor of carbon monoxide have been performed using two commercial catalyst with different Ni contents (Catalyst A, B). In case of catalyst A, CO conversion was over 99% at the temperature range of $350{\sim}420^{\circ}C$ and CO conversions and $CH_4$ selectivity were lower at the space condition over 3000 1/h. In case of catalyst B, CO conversion was 100% at the temperature over $370^{\circ}C$ and CO conversions and $CH_4$ selectivity were lower at the space condition over 4700 1/h. Also, conditions to satisfy $CH_4$ productivity over 500 ml/h.g-cat were over 2000 1/h of space velocity in case of catalyst A and over 2300 1/h of space velocity in case of catalyst B.

$NaClO_2(s)$와 탄소 분산형 촉매를 이용한 저온에서의 $NO_x$$SO_2$ 동시 제거 (Simultaneous Removal of $NO_x$ and $SO_2$ through the Combination of Sodium Chlorite Powder and Carbon-based Catalyst at Low Temperature)

  • 변영철;이기만;고동준;신동남
    • 대한환경공학회지
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    • 제33권1호
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    • pp.39-46
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    • 2011
  • $250{\sim}400^{\circ}C$ 범위에서 $NO_x$ 제거를 위해 운영되는 선택적 촉매 환원법의 반응 온도를 $200^{\circ}C$ 이하로 낮추기 위해서는 NO를 $NO_2$로 산화시키는 전처리 공정을 필요로 한다. 이번 연구에서는 분말 $NaClO_2(s)$를 이용하여 NO를 $NO_2$로 산화시킨 후, 탄소 분산형 촉매를 이용한 저온에서의 $NO_x$, $SO_2$ 동시 제거에 관한 실험실 규모 실험과 제철소 소결 공장에서 실제 배기가스를 이용하는 bench 규모 실험을 진행하였다. 실험실 규모 실험에서는 반응기에 $NaClO_2(s)$ (2.4~3.6 g)를 충진 하여 $NO_x$ 200 ppm, $SO_2$ 75 ppm, $H_2O$ 10%, $O_2$ 15%의 모사가스(2.6 L/min)를 통과시켰으며, $NaClO_2(s)$와 반응 후의 모사가스를 탄소 분산형 촉매가 충진 된 반응기(공간 속도 = $2,000hr^{-1}$)로 주입하였다. bench 규모 실험에서는 $50Nm^3/hr$의 배기가스 유량에 screw feeder로 $NaClO_2(s)$ 분말을 주입하여 NO를 $NO_2$로 산화 시킨 후, $1,000hr^{-1}$ 탄소 분산형 촉매를 통과하여 $NO_x$ 제거 가능성을 확인하였다. 실험실 규모와 bench 규모 실험 모두 $SO_2$를 측정하며 $NO_x$, $SO_2$ 동시 제거 가능성을 확인하였다. 그 결과 실험실 규모와 bench 규모 실험 모두 $NaClO_2(s)$에 의하여 NO가 $NO_2$로 산화되었고, 이를 결합한 탄소 분산형 촉매에서 90% 이상의 $NO_x$, $SO_2$ 제거 효율을 나타내는 것을 확인하였다. 이상의 실험 결과로부터 $NaClO_2(s)$와 탄소 분산형 촉매의 결합은 저온에서 $NO_x$$SO_2$를 동시에 제거할 수 있음을 알 수 있었다.