• 제목/요약/키워드: Formaldehyde oxidation

검색결과 34건 처리시간 0.026초

酸化還元樹脂에 關한 硏究 (第一報) Hydroquinone-Formaldehyde Resin 에 關하여 (A Study on Oxidation Reduction Resin (I) On Hydroquinone-Formaldehyde Resin)

  • 성좌경;김용준
    • 대한화학회지
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    • 제4권1호
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    • pp.51-57
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    • 1957
  • Hydroquinone-formaldehyde resin prepared from hydroquinone, formaldehyde and hydrochloric acid as a catalyst was shown to be oxidized with ferric chloride solution and regenerated by stannous chloride solution. The influence of various conditions of preparation on the capacity of oxidation was studied. Results show that the concentration of a solution of hydroquinone has not any effects below 14 parts of water to 1 part of hydroquinone, by the after-heat-treatment for 5-6 hours at 100-120 deg. C. the capacity of oxidation is exhibited a maximum, and decreased as the mole ratio of hydroquinone to formaldehyde increase. The optimum conditions for the preparation of this resin are as follows: hydroquinone 1 part to distilled water 10 parts, mole ratio of formaldehyde 1.2 to hydroquinone 1, and 5 hours of after-heat-treatment at 120 deg. C. The maximum capacity under the above conditions is 13.99 meq/g-ersin.

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광촉매/광산화를 이용한 VOCs 처리장치 개발 (Development for UV/TiO2 Photocatalytic Oxidation Indoor Air Compound Process)

  • 전보경;최금찬;서정민
    • 한국환경과학회지
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    • 제15권9호
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    • pp.855-864
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    • 2006
  • This study introduces a method to eliminate formaldehyde and benzene, toluene from indoor air by means of a photocatalytic oxidation reaction. In the method introduced, for the good performance of the reaction, the effect and interactions of the $TiO_2$ catalyst and ultraviolet in photocatalytic degradation on the reaction area, dosages of catalysts, humidity and light should be precisely examined and controled. Experiments has been carried out under various intensities of UV light and initial concentrations of formaldehyde, benzene and toluene to investigate the removal efficiency of the pollutants. Reactors in the experiments consist of an annular type Pyrex glass flow reactor and an 11W germicidal lamp. Results of the experiments showed reduction of formaldehyde, benzene and toluene in ultraviolet $/TiO_2/$ activated carbon processes (photooxidation-photocatalytic oxidation-adsorption processes), from 98% to 90%, from 98% to 93% and from 99% to 97% respectively. Form the results we can get a conclusion that a ultraviolet/Tio2/activated carbon system used in the method introduced is a powerful one for th treatment of formaldehyde, benzene and toluene of indoor spaces.

부식산의 오존처리시 포름알데히드 생성에 관한 연구 (A Study on the Formation of Formaldehyde from Humic Acid by Ozonation)

  • 임용섭;이정주;이동석
    • 산업기술연구
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    • 제19권
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    • pp.409-413
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    • 1999
  • Chemical oxidation of humic acid by ozonation process was investigated in the batch reactor. Aldehydes and ketone were identified as PFBOA derivatives in ozonated humic acid solutions using gas chromatography with PDECD. The formaldehyde was as a main by-product of ozonation. The characteristics of the formaldehyde production were discussed with respect to concentration at different experimental conditions.

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소형 가솔린엔진의 포름알데히드 배출특성 및 저감법에 관한 연구 (Characteristics of Formaldehyde Emission from Small Gasoline Engine and Its Reduction Technology)

  • 최병철;이남석
    • 동력기계공학회지
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    • 제3권2호
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    • pp.20-25
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    • 1999
  • Experiments were carried out to investigate the characteristics of formaldehyde emission from the small gasoline engine and its reduction technologies. Catalytic converters used are Pt/Rh, Pd/Rh, Pd/Pt, $62cell/cm^2$ monolith type. The measurement of formaldehyde was conducted by using the method of DNPH-GC. From the experimental results, formaldehyde emission increased in a lean mixture due to incomplete combustion of the hydrocarbons. The order of catalytic activity of formaldehyde oxidation was Pt/Rh > Pd/Rh > Pd/Pt. As the distance from the exhaust manifold to the inlet of the catalyst became far, in spite of lower catalyst temperature, formaldehyde concentration decreased because of the adsorption of formaldehyde.

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나노 은입자가 첨착된 활성탄의 포름알데히드 제거특성 (Removals of Formaldehyde by Silver Nano Particles Attached on the Surface of Activated Carbon)

  • 신승규;강정희;송지현
    • 대한환경공학회지
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    • 제32권10호
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    • pp.936-941
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    • 2010
  • 본 연구에서는 나노 사이즈의 은입자가 첨착된 입상활성탄을 적용하여 기체상 포름알데히드의 흡착특성을 확인하고 실험결과를 수치해석 결과와 비교 평가하였다. 나노 은입자 첨착활성탄에 대해 BET분석 결과, 나노 은입자가 활성탄 표면의 미세기공을 막아 활성탄의 비표면적이 다소 감소하였으며, 특히 $20{\AA}$ 이하 micropore의 총 부피가 크게 감소한 것을 확인하였다. 포름알데히드에 대한 등온흡착실험 결과, 최대 겉보기 흡착능은 나노 은입자 첨착활성탄의 값이 일반활성탄에 비해 높았다. BET 표면적이나 미세기공의 감소에도 불구하고 나노 은입자 첨착활성탄이 향상된 포름알데히드 제거능을 나타낸 것은 은입자 첨착활성탄에서 흡착 외에 추가적인 포름알데히드의 촉매산화가 이루어지고 있기 때문으로 판단된다. 흡착강도를 의미하는 1/n은 두 가지 활성탄에 대해 모두 비슷한 기울기를 보여 활성탄의 표면 개질에 의해 활성탄 고유의 물리 화학적 흡착 성능은 영향을 받지 않은 것으로 판단된다. 연속유입 실험 결과에서도 나노 은입자 첨착활성탄이 일반활성탄보다 높은 포름알데히드 제거능을 나타내어 포름알데히드 산화효과를 확인하였다. 활성탄의 연속유입 실험결과를 수치해석 결과와 비교했을 때 나노 은입자 첨착활성탄에 대해서는 나노 은입자에 의한 산화효과를 반영하지 않고 있지 않아 실험결과와 거의 일치하지 않았다. 따라서 금속물질로 표면 개질된 활성탄 컬럼 설계에 수치해석 모델을 활용하고자 한다면 흡착뿐만이 아니라 촉매산화 효과가 반영된 새로운 수치모델의 개발이 필요할 것으로 판단된다.

Biodegration of Formaldehyde-Releasing Preservatives

  • Park, Won-Jae;Yang, Seung-Kak
    • 대한화장품학회지
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    • 제11권1호
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    • pp.1-12
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    • 1985
  • A strain of Pseudomonas aeruginosa was isolated from the spoiled product and its characteristics on various formaldehyde-releasing preservatives were investigated. This strain, P. aeruginosa FR, could utilize 1.0% of imidazolidinyl urea and 0.2% of DMDM hydantoin as a sole carbon and nitrogen source in the minimal salts medium. With the growth of the strain in minimal salts medium containing imidazolidinyl urea, formic acid was initially accumulated according to the decrease of formaldehyde concentration. It was suggested that formaldehyde dehydrogenase was involved in this oxidation process and could catalyze formaldehyde, imidazolidinyl urea, DMDM hydantoin and quaternium-15, but not bronopol. MICs of this strain to each preservation were 0.03% in formaldehyde, 1.0% in imidazolidinyl urea, 0.2% in DMDM hydantoin, 0.2% in quaternium-15 and 0.1% of EDTA-2Na. But the MICs were diminished about ten times when 0.01% of EDTA-2Na was added to the preservative systems. In actual challenge test, the eyeliner and the pack which contained paraben and imidazolidinyl urea were not able to be protected from this strain, but when 0.05% EDTA-2Na was added the products were sufficiently preserved.

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복합산화물 촉매 상에서 메탄의 부분산화에 의한 메탄올 및 포름알데히드의 합성 (Synthesis of Methanol and Formaldehyde by Partial Oxidation of Methane over Mixed Oxide Catalysts)

  • 함현식;신기석;안성환;김송형;홍석영;박홍수
    • 한국응용과학기술학회지
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    • 제23권3호
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    • pp.223-229
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    • 2006
  • Methanol and formaldehyde were produced directly by the partial oxidation of methane over mixed oxide catalysts. The catalysts were composed of Mo and Bi with late-transition metals, such as Mn, Fe, and Co. The reaction was carried out at $450^{\circ}C$, 50 bar in a fixed-bed differential reactor. The prepared catalysts were characterized by $O_2-TPD$ and BET apparatus. Among the catalysts used, the catalyst composed of 1:1:2.5 molar ratio of Mo:Bi:Mn showed the best methane conversion and methanol selectivity. The change in ratio of methane to oxygen affected at the conversion and selectivity, and the most proper ratio was 10:1.5. Methane conversion, methanol and formaldehyde selectivities increased with the surface areas of the catalysts. From the $O_2-TPD$ result, it was found that the oxygen species responsible for this reaction might be the lattice oxygen species desorbed at high temperature around $800^{\circ}C$.

메탄의 부분산화에 의한 메탄올 및 포름알데히드의 합성 (Synthesis of Methanol and Formaldehyde by Partial Oxidation of Methane)

  • 함현식;신기석;김송형;안성환;김명수;박홍수
    • 한국응용과학기술학회지
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    • 제23권1호
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    • pp.63-69
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    • 2006
  • Methanol and formaldehyde were produced directly by the partial oxidation of methane. The catalysts used were mixed oxides of late-transition metals, such as Mn, Fe, Co, Ni and Cu. The reaction was carried out at $450^{\circ}C$, 50 bar in a fixed-bed differential reactor. The prepared catalysts were characterized by XRD, TPD and BET apparatus. Of the catalysts, A-Mn0.2-6, which contains 0.2 mole of Mn and calcined at $600^{\circ}C$, showed the best catalytic activity: 3.7% methane conversion, and 30 and 28% methanol and formaldehyde selectivities, respectively. The catalytic activity was changed with the content of Mn and the calcination temperature. Catalytic activity increased with the specific surface areas of the catalysts. With XRD, it was found that the structure of the catalysts are changed with calcination temperature. Through $O_2-TPD$ experiment, it was found that the catalysts showing good catalytic activity showed $O_2$ desorption peak around $800^{\circ}C$.