• 제목/요약/키워드: Fenton-oxidation

검색결과 164건 처리시간 0.023초

광펜톤반응과 펜톤반응에 의한 수중 클로로페놀 분해비교연구 (Degradation Of 4-chlorophenol By Photo-Fenton Process and Fenton Process in Aqueous Solutions)

  • 김현승;김일규
    • 상하수도학회지
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    • 제25권4호
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    • pp.463-469
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    • 2011
  • The degradation of 4-chlorophenol by various AOPs(Advanced Oxidation Processes) including the Fenton and the photo-Fenton process has been examined. In sole Fe, UV or $H_2O_2$ process without combination, low removal efficiencies have been achieved. But the photo-Fenton process showed higher removal efficiency for degradation of 4-chlorophenol than those of other AOPs including the Fenton process. Generally more hydrogen peroxide was required to achieve higher removal efficiencies of 4-CP at constant dosage of $FeSO_4$ in both of the Fenton and the photo-Fenton processes. Based on the results, The photo-Fenton process is proposed to be the most efficient alternative for degradation of 4-chlorophenol among the processes studied in this research.

축산폐수 전처리를 위한 펜톤산화 적정조건에 관한 연구 (A Study on Proper Fenton Oxidation Conditions for Pretreatment of Livestock Wastewater)

  • 김종오;정성욱
    • 유기물자원화
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    • 제13권4호
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    • pp.107-117
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    • 2005
  • 본 연구에서는 펜톤산화 공정을 축산폐수의 전처리 시스템으로 활용하고자 초기 pH, $H_2O_2/Fe^{2+}$ 비율, $H_2O_2/Fe^{2+}$ 약품주입량, 응집 및 침전을 위한 중화제 등과 같은 펜톤산화의 적정 운영조건을 도출하는 실험적 연구를 실시하였다. 적정 조건을 도출하기 위해 교반시험기를 이용하여 120 rpm에서 2시간 동안 각 조건을 변화시키면서 펜톤산화 반응을 진행한 후 2시간 동안 침전시켜 그 상등액의 잔류 과산화수소, $COD_{Cr}$, SS 등을 분석하였다. 실험결과 도출된 최적조건은 초기 pH는 4, $H_2O_2/Fe^{2+}$비율은 10:1, $H_2O_2/Fe^{2+}$ 약품주입량은 5,000/500mg/L 그리고 중화제로는 $Ca(OH)_2$가 양호한 것으로 나타났다. 이러한 최적 조건에서 펜톤산화에 의해 축산폐수의 $COD_{Cr}$ 제거율은 43% 그리고 SS는 84%의 제거율을 나타내었다.

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${H_2}{O_2}$/$Fe^0시스템을 이용한 유류오염 미세토양의 화학적 산화처리 (Chemical Oxidation Treatment of Hydrocarbon-Contaminated Eine Soil by ${H_2}{O_2}$/$Fe^0 System)

  • 지원현;김지형;강정우;김성용;장윤영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제6권3호
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    • pp.13-20
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    • 2001
  • 본 연구에서는 고농도 유류오염토양 처리를 위해 ${H_2}{O_2}$/$Fe^0 시스템을 이용한 Fenton-like oxidation을 제시하였다. 주요 반응조건인 초기 PH, $Fe^0${H_2}{O_2}$ 주입량과 초기 오염농도를 변화시켜가며 본 산화처리 시스템의 반응특성을 회분식 실험을 통하여 알아보았다. 유류 오염물은 디젤을 사용하였으며 오염농도는 가스 크로마토그래피를 사용하여 TPH (Total Petroleum Hydrocarbon)로 나타내었다. 제거효율을 보면 적정 ${H_2}{O_2}$/$Fe^0 주입조건인 10% ${H_2}{O_2}$+ 20% Fe$^{0}$ 에서 반응시간 24이내에 약 65% 이상의 제거율(초기 TPH 농도 : 10,000mg/kg)을 나타내었으며, 초기 pH조건은 높은 제거효과를 얻기 위해서 3~4범위이내가 적정함을 알 수 있었다. 기존의 과산화수소의 분해촉매로 사용하는 철 염($FeSO_4)과의 비교실험에서는 $Fe^0를 촉매로 사용하였을 때 유류오염토양의 화학적 산화 처리가 처리효율과 경제성에서 더 효과적임을 알 수 있었고, 특히 고농도 오염토양 처리에서 더 유리한 것으로 나타났다.

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가축 사체 매몰지 침출수 처리를 위한 Fenton 산화공정의 최적조건 (Optimal Condition of Operation Parameter for Livestock Carcass Leachate using Fenton Oxidation Process)

  • 안상우;정영철;유지영;민지은;이시진;박재우
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권1호
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    • pp.26-35
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    • 2013
  • Outbreak of animal infectious diseases such as foot-and-mouth disease, avian influenza are becoming prevalent worldwide. For prevent the further infection, tremendous numbers of the infected or culled stocks are buried around farm. This burial method can generate a wide range of detrimental components such as leachate, nutrient, salt, and pathogenic bacteria, consequently. In this study, for the stabilization of livestock carcasses leachate, advanced oxidation processes utilizing the Fenton reaction was investigated in lab-scale experiments for the treatment for $COD_{Cr}$ of livestock carcass leachate. $COD_{Cr}$ reduction by the Fenton oxidation was investigated response surface methodology using the Box-Begnken methods were applied to the experimental results. A central composite design was used to investigate the effects of the independent variables of pH ($x_1$), dosage of $FeCl_2{\cdot}4H_2O$ ($x_2$) and dosage of $H_2O_2$ ($x_3$) on the dependent variables $COD_{Cr}$ concentration ($y_1$). A 1 M NaOH and $H_2SO_4$ was using for pH control, $FeCl_2{\cdot}4H_2O$ was used as iron catalyst and NaOH was used for Fenton reaction. The optimal conditions for Fenton oxidation process were determined: pH, dosage of $FeCl_2{\cdot}4H_2O$ and dosage of $H_2O_2$ were 3, 0.6 g (0.0151 M) and 7 mL(0.259 M), respectively. Statistical results showed the order of significance of the independent variables to be pH > initial concentration of ferrous ion > initial concentration of hydrogen peroxide.

광펜톤 반응에 의한 수중 2-클로로페놀 분해특성연구 (Degradation of 2-Chlorophenol in the Aqueous Phase by a Photo-Fenton Process)

  • 김일규
    • 상하수도학회지
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    • 제26권6호
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    • pp.779-786
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    • 2012
  • The degradation of 2-chlorophenol(2-CP) by various AOPs(Advanced Oxidation Processes) including the photo-Fenton process has been examined. In sole $Fe^{2+}$, UV or $H_2O_2$ process without combination, low removal efficiencies have been achieved. But the photo-Fenton process showed higher removal efficiency for degradation of 2-chlorophenol than those of other AOPs including the Fenton process and the UV processes. In the photo-Fenton process, the optimal experimental conditions of 2-chlorophenol degradation were obtained at pH 3 and the $Fe^{2+}/H_2O_2$molar ratio of 1. Also the 2-chlorophenol removal efficiency increased with decreasing of the initial 2-chlorophenol concentration. 3-chlorocatechol and chlorohydroquinone were identified as photo-Fenton reaction intermediates, and a degradation pathway of 2-chlorophenol in the aqueous phase during the photo-Fenton reaction was proposed.

과산화수소 연속주입식 광펜톤산화공정에 의한 4-염화페놀 분해연구 (Degradation of 4-Chlorophenol by a Photo-Fenton Process with Continuous Feeding of Hydrogen Peroxide)

  • 김일규
    • 상하수도학회지
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    • 제27권1호
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    • pp.31-38
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    • 2013
  • The degradation of 4-chlorophenol(4-CP) by various AOPs(Advanced Oxidation Processes) with continuous feeding of $H_2O_2$, including the ultraviolet/hydrogen peroxide, the Fenton and the photo-Fenton process has been investigated. The photo-Fenton process showed the highest removal efficiency for degradation of 4-chlorophenol than those of other AOPs including the Fenton process and the combined UV process with continuous feeding of $H_2O_2$. In the photo-Fenton process, the optimal experimental condition for 4-CP degradation was obtained at pH 3. Also the 4-CP removal efficiency increased with decreasing of the initial 4-CP concentration. 4-chlorocatechol and 4-chlororesorcinol were identified as photo-Fenton reaction intermediates, and the degradation pathways of 4-CP in the aqueous phase during the photo-Fenton reaction were proposed.

광-펜톤 산화반응을 이용한 Rhodamine B의 탈색 (Decolorization of Rhodamine B by Photo-Fenton Oxidation)

  • 박영식
    • 한국물환경학회지
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    • 제23권2호
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    • pp.274-280
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    • 2007
  • The photochemical decolorization of Rhodamine B (RhB) in water has been carried out by photo-Fenton process. The effect of applied $H_2O_2$, $Fe^{2+}$ dose, solution pH and UV dose have been studied. The influence of constituent processes of photo-Fenton such as UV, $H_2O_2$ and Fenton has been investigated. Comparison of RhB removal was made between the photo-Fenton and $UV/H_2O_2$ process. The results obtained showed that the optimum dosage of $Fe^{2+}$ and $H_2O_2$ were 0.0031 mmol and 0.625 mol, respectively. pH 3 is found to be the optimum pH of for photo-Fenton process. pH and UV dose strongly influenced the decolorization of RhB in photo-Fenton process. The photo-Fenton and $UV/H_2O_2$ processes showed similar decolorization and seem to be appropriate for the decolorization of dye wastewater.

PAHs 오영 토양의 Fenton 보조 동시산화 (Fenton Reaction Assisted Cooxidation for PAHs Contaminated Soils)

  • 류선정;박갑성
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 1998년도 총회 및 춘계 학술발표회 논문집
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    • pp.53-60
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    • 1998
  • The effect of chemically oxidized intermediated of PAH compounds on the degradation of the parent PAHs was characterized and evaluated for the context of cooxidation. Anthracene and pyrene exhibited extensive degradation (mean percent removal of 57.5%) after 28 days of incubation by introducing the Fenton oxidation intermediate of the PAH compounds, while unoxidized anthracene and pyrene exhibited 12.5% removal. Dehydrogenase activities for the oxidized PAH studies ware enhanced two to five folds to the unoxidized PAHs studies. The chemical oxidation products can serve as a structually very similar analogue substrates for a consortia of soil microorganisms and as a metabolic intermediates in the biodegradation sequence of the parent PAH compounds. These results may be interpreted in the context of cooxidation mechanism whereby high recalcitrant PAH compounds are biodegraded in the soil and suggest a potential tool for bioremediation of PAHs contaminated soils and protection of groundwater.

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Artificial Radical Generating and Scavenging Systems: Synthesis and Utilization of Photo-Fenton Regent in Biological Systems

  • Matsugo, Seiichi
    • Journal of Photoscience
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    • 제9권2호
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    • pp.138-141
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    • 2002
  • A photo-labile compound which is bioinactive but, upon irradiation with light, yields bioactive species is called as "caged compound". Photolysis of caged compounds generating bioactive species, has become a general method to produce a desired amounts of bioactive species in the specific time interval at the desired place or area of the target biological systems. For this purpose, we designed and synthesized caged hydroxyl radical., "Photo-Fenton Reagent" NP-IIl. NP-IIl has a strong absorption maximum at 377 nm and yields hydroxyl radicals upon UV light irradiation. The antioxidant activity of the ${\alpha}$ -lipoic acid and other naturally occurring compounds has been examined by using NP-IIl as a molecular probe. For example, upon photoirradiation of NP-lII with BSA or apolipoprotein of human low density (LDL), the significant oxidative modifications were observed in both cases. The oxidation was completely suppressed in the presence of ${\alpha}$-lipoic acid, which clearly demonstrates the strong hydroxyl radical scavenging activity of ${\alpha}$-lipoic acid. Other applications of NP-lII will also be described

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화학적 및 생물학적 연속 처리에 의한 플루오렌 오염토양의 정화 (Cleanup of Fluorene-Contaminated Soil by Continuous Chemical and Biological Treatment)

  • 이병대
    • 한국환경보건학회지
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    • 제37권2호
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    • pp.159-164
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    • 2011
  • We describe a method for effectively pretreating soil highly that has been contaminated with fluorene (${\gg}$ 120 mg/kg soil), i.e., we apply Fenton oxidation in which ethanol is added to increase fluorene removal. To obtain maximum fluorene removal efficiency, a minimum of 1.0 ml of ethanol, 0.35 ml of $H_2O_2$, and 0.2 ml of 0.5M $Fe^{2+}$ was needed per 1 g of fluorene-contaminated soil. Under optimal Fenton oxidation conditions, 13% of 9-fluorene was generated during Fenton oxidation of 43% fluorene. The biodegradability of 9-fluorenone was subsequently confirmed to be much more rapid than that of fluorene, i.e., biodegradability of 96% versus 35% over 31 days. These results demonstrate that the proposed treatment method can be effectively applied to remove fluorene prior to disposal at industrial waste sites.