• 제목/요약/키워드: Fenton산화

검색결과 126건 처리시간 0.026초

폴리에스테르 중합 공정에서 발생되는 1,4-dioxane의 분해를 위한 파일럿 규모의 광펜톤산화처리 (Photo-Fenton Oxidation Treatment of Pilot Scale for the Decomposition of 1,4-dioxane Generated in a Polyester Manufacturing Process)

  • 소명호;한지선;한티힙;서장원;김창균
    • 대한환경공학회지
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    • 제31권1호
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    • pp.9-14
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    • 2009
  • 본 연구에서는 폴리에스테르 중합폐수의 배출 원수에 약 600 mg/L의 고농도로 존재하는 1,4-dioxane을 5 mg/L 이하까지 (2011년 규제 시행) 제거할 수 있는 고급산화공정의 현장 적용 기술을 개발하고자 구미지역 폴리에스테르 제조회사 중 K사의 폐수처리 시설을 선정하여 연구를 하였다. 공기의 공급 하에 광펜톤산화반응을 K사에 설치된 pilot에서 운전하였다. 막대형 산기관을 통해 공기를 공급하면서 10개의 UV-C 램프(240 ${\mu}W/cm^2$)의 조사 하에 과산화수소(2,800 ppm)와 철염(1,400 ppm)을 주입하였을 때 1,4-dioxane의 제거 효율이 2시간 만에 90%까지 나타나는 결과를 도출할 수 있었다. 그러나 처리수의 1,4-dioxane 농도는 약 60 mg/L으로 여전히 높았다. 그리하여 후속 처리로 bench-scale의 활성슬러지공정(V=8.9 L)을 이용하여 광펜톤산화 처리수 내의 1,4-dioxane 제거 가능성을 평가하였다. 그 결과로서 활성슬러지공정의 유출수내의 1,4-dioxane의 농도는 약 2~3 mg/L까지 저감되었으며 이를 통해, 광펜톤산화공정과 활성슬러지공정의 연계처리를 통해 1,4-dioxane 배출 허용기준(5 mg/L, 2011년)에 부합될 수 있는 효과적인 처리공정임을 입증하였다.

Photo-Fenton 공정과 UV/$H_2O_2$ 공정을 이용한 Lindane의 분해특성 비교 연구 (A Study on the degradation of Lindane in water by a Photo-Fenton process and a UV/$H_2O_2$ process)

  • 이주현;최혜민;김일규
    • 상하수도학회지
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    • 제24권1호
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    • pp.109-117
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    • 2010
  • In the present study, the degradation characteristics of Lindane by Advanced Oxidation Processes(UV/$H_2O_2$, Photo-Fenton process) were studied. The degradation efficiency of Lindane in aqueous solution was investigated at various initial pH values, Fenton's reagent concentrations and initial concentrations of Lindane. GC-ECD was used to analyze lindane. Lindane has not been degraded without application of AOPs over two hours. But, approximately 5% of lindane was degraded with UV or $H_2O_2$ alone. Lindane with UV/$H_2O_2$ process showed approximately 7% higher removal efficiency than $H_2O_2$ process. In the UV/$H_2O_2$ process, the pH values did not affect the removal efficiency. The optimal mole ratio of $H_2O_2/Fe^{2+}$ for lindane degradation is about 1.0 in Photo-Fenton process. Also, the experimental results showed that lindane removal efficiency increased with the decrease of initial concentration of lindane. Under the same conditions, the order lindane of removal efficiency is as following : Photo-Fenton process > UV/$H_2O_2$ process > $H_2O_2$ process. In addition, intermediate products were identified by GC-MS techniques. Than PCCH(Pentachlorocyclohexene) was identified as a reaction intermediate of the Photo-Fenton process.

Fenton 산화법에 의한 매립장 침출수의 생물 분해성 증진에 관한 평가 (Evaluation on Enhanced Biodegradability in Landfill Leachate by Fenton Oxidation)

  • 이병대
    • 한국응용과학기술학회지
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    • 제22권3호
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    • pp.250-256
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    • 2005
  • This study was aimed to investigate treatment feasibility of leachate from D landfill that is located in gyr대ungbuk. From the analytical results of leachate, organic and nonbiodegradable matters were contained in high concentration. Thus chemical treatment was introduced to degrade nonbiodegradable matters in pre or post biological process. Two types of Fenton oxidation were adapted in this study. The first one is pre treatment process before biological treatment. The second one is post treatment process after biological treatment. The optimal conditions of both treatment methods were investigated as follows. In case of pre treatment process, the optimal conditions appeared in $Fe^{+2}/H_2O_2$(mmol/mmol): 0.1, $H_2O_2/CODcr$(mg/mg): 27.0, pH: 3 and reaction time: 2hrs. On the other hand, in case of post treatment process, the optimal conditions appeared in $Fe^{2+}$(mmol/mmol): 0.14, $H_2O_2/COD_{cr}$(mg/mg): 57.4, pH: 3 and reaction time: 1.25hrs. In the above optimal conditions, high COD removal was obtained in pre and post treatment process. Also it can expect that Fenton oxidation converted nonbiodegradable matters into biodegradable matters.

펜톤산화에 따른 복합폐수의 처리효율연구 (Treatment Efficiency of Complex Wastewater by Fenton's Oxidation Condition)

  • 성일화
    • 한국환경보건학회지
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    • 제32권5호
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    • pp.446-450
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    • 2006
  • In order to treat the wastewater containing organic compound, pre-treatment system connected with MSP(molecular separation process) was investigated. With the aim of selecting an optimum process of Fenton's oxidation, removal efficiency of each process in the optimum reaction condition was recommended. The $Fe/H_{2}O_{2}$(ferric sulfate to hydrogen peroxide)reagent is referred to as the Fenton's regent, which produces hydroxyl radicals by the interaction of Fe with $H_{2}O_{2}$. The powerful oxidizing ability and extreme kinetic reactively of the hydroxyl radical was well established. Increasing dosage of $Fe/H_{2}O_{2}$ increased removal efficiency as molar ratio of $Fe/H_{2}O_{2}$ between 0.2 and 2.5. Optimum dosage of molar ratio was 1. The removal efficiency for reaction condition was increased as pH decreased when the molar ratio of $Fe/H_{2}O_{2}$ was 1.7. Fenton's oxidation was most efficient in the reaction time 35 min for complex wastewater. Also, coagulation aid experiments using kaolin resulted in 3% of kaolin dosage.

석유화학폐수 처리장 방류수의 재이용을 위한 고정생물막 공정에서 Fenton 산화전처리의 적응가능성 (Applicability of the lenten's Reagent Oxidation to Biological Fixed-Film Process for Reuse of Effluents from the Petrochemical Wastewster Effluent Treatment Plant)

  • 이규훈;김미화;박태주
    • 한국환경과학회지
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    • 제4권5호
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    • pp.115-115
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    • 1995
  • Reuse of industrial effluents through the cooling systems in a petrochemical complex was described. The partial oxidation of the effluents from the biological treatment plant was examined, using Fenton''s reagent as a pretreatment step prior to a next treatment of the effluents. Next tertiary treatment using fixed-film reactor resulted in marked reductions in COD and suspended solids. The continuous fixed-film process with Fenton oxidation pretreatment showed a 23% increase in the COD removal efficiency when compared to that without pretreatment of Fenton oxidation under the volumetric organic loading rate of 0.1 kg COD/m3/day. The Fenton oxidation treatment seemed to be a possible method for tertiary biological treatment to reduce the residual toxicity with the enhanced biodegradation of the effluents.

석유화학폐수 처리장 방류수의 재이용을 위한 고정생물막 공정에서 Fenton 산화전처리의 적응가능성 (Applicability of the lenten류s Reagent Oxidation to Biological Fixed-Film Process for Reuse of Effluents from the Petrochemical Wastewster Effluent Treatment Plant)

  • 이규훈;김미화;박태주
    • 한국환경과학회지
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    • 제4권5호
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    • pp.501-508
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    • 1995
  • Reuse of industrial effluents through the cooling systems in a petrochemical complex was described. The partial oxidation of the effluents from the biological treatment plant was examined, using Fenton's reagent as a pretreatment step prior to a next treatment of the effluents. Next tertiary treatment using fixed-film reactor resulted in marked reductions in COD and suspended solids. The continuous fixed-film process with Fenton oxidation pretreatment showed a 23% increase in the COD removal efficiency when compared to that without pretreatment of Fenton oxidation under the volumetric organic loading rate of 0.1 kg COD/m3/day. The Fenton oxidation treatment seemed to be a possible method for tertiary biological treatment to reduce the residual toxicity with the enhanced biodegradation of the effluents.

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펜톤산화에 의한 acenaphthene 또는 acenaphthylene 분해특성 (Degradation characteristics of acenaphthene or acenaphthylene by Fenton oxidation)

  • 이병대;김영찬
    • 한국응용과학기술학회지
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    • 제24권1호
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    • pp.47-53
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    • 2007
  • The acenaphthene(ACE) or acenaphthylene(ACEL) is one of the most frequently found compound in polycyclic aromatic hydrocarbon (PAH)-contaminated soil. In this study, we make 10mg/L ACE or ACEL in ethanol which is the model washing solvent for contaminated soil. This was followed by Fenton treatment in which 0.2 or 0.3mL of 30% $H_2O_2$ and 0.2 ml of 0.5 M $Fe^{2+}$ were added. The results showed more than 88 or 99% of ACE or ACEL removal efficiency, respectively. Additionally, we employed GC-MS to identify the main oxidation product generated by the optimized Fenton oxidation [i.e., ACE or ACEL degraded in to 21, 34 % 1,8-naphthalic anhydride(NAPAN), repectively]. It is expected that biodegradability of NAPAN is enhanced because NAPAN has three oxygens compared with ACE and ACEL. Therefore the results suggest that the hybrid treatment system (i.e., ethanol washing -Fenton oxidation treatment) can be effectively applied to remove ACE or ACEL from soil..

석유화학공장 방류수내 난분해성 유기물의 Fenton 산화처리 (Fenton난s Reagent Oxidation of Refractory Organics in Petrochemical Plant Effluent)

  • 이규훈;정대영;박태주
    • 한국환경과학회지
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    • 제5권1호
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    • pp.51-59
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    • 1996
  • The purpose of this study was to evaluate the partial oxidation of the biological treatment plant effluents using Fenton's reagent as a pretreatment step prior to a tertiary biological oxidation of these effluents. Fenton's reagent was evaluated as a pretreatment process for inhibitory or refractory organics. Based on the Fenton oxidation system, the petrochemical wastewater treatment plant effluent was shown to have significant improvement in toxicity after oxidation with hydrogen peroxide. For example, at ranee of 42 ∼ 184 mg/L COD of petrochemical plant effluents, the COD removal efficiencies were from 38.2% to 60.1% after reaction with hydrogen peroxide 200 mg/L and Fe2+ 100 mg/L and reaction time was 30 minutes. The total TOC reduction were about 15.8∼22.4% with same test condition and difference between the overall removal rate and BOD/COD ratio after Fenton's oxidation estabilished in the biodegradation and otherwise meets the discharge standard or reuse for cooling tower make-up water.

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Cu - CN 함유 폐수의 화학적 산화 (Chemical Oxidation of Cu - and CN - contained Wastewater)

  • 유근우;서형준
    • 청정기술
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    • 제5권1호
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    • pp.20-29
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    • 1999
  • Cu-CN을 함유한 폐수를 펜톤산화 - 응집 - 침전의 공정으로 처리할 때, 펜톤 산화시 pH, 반응시간, 시안과 과산화수소의 몰비, 철염과 과산화수소 농도의 질량비 변화 그리고 수산화물 침전시 pH 변화에 따른 시안화물 및 구리의 최적의 제거율 조건을 조사하였다. 실험에 사용된 모든 폐수에 대해 펜톤 산화 반응의 최적 pH는 3~5 그리고 반응시간은 30분에서 시안의 제거율이 81.2%~99%로 가장 높게 나타났으며, $H_2O_2$$FeSO_4{\cdot}7H_2O$의 최적 주입량은 $Cu^{2+}$:CN(molar ratio)=2:1, 1:1, 1:2, 1:10인 폐수에서는 각각 214, $428mg/{\ell}$, 107, $161mg/{\ell}$, 214, $214mg/{\ell}$, 520, $500mg/{\ell}$으로, $Cu^+$:CN=1:10인 폐수에서는 900, $1050mg/{\ell}$으로 나타났다. 산화 반응 후 구리를 수산화물로 침전 시킨 결과 모든 폐수에 대해 pH 7에서 그 제거율이 각각 98.92, 98.52, 92.46, 90.6% 그리고 95%로 가장 높게 나타났다.

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제강분진을 촉매로 활용한 펜톤유사산화에 의한 고농도 para-Nitrophenol의 처리 (Treatment of High Strength para-Nitrophenol using Fenton-like Oxidation Catalyzed by Steeler's Dust)

  • 배범한;정재훈;이성재;장윤영;박규홍;장윤석
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2000년도 추계학술대회
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    • pp.136-139
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    • 2000
  • Fenton-like oxidation of para-nitrophenol(PNP) was studied using hydrogen peroxide iii combination with steeler's dust substituted for ferrous iron in Fenton's reaction. Various factors critical in the degradation of PNP were studied, including hydrogen peroxide dosage, concentration of steeler's dust. and initial pH. Experimental results showed that 1,000mg/L PNP and its oxidation intermediate could be mostly decomposed within 30m1n by 10g/L steeler's dust, 0.25% hydrogen peroxide, and initila pH of 3.0. The reaction rate constant (k) of CODcr concentration were calculated with the addition of steeler's dust(0.0059 min$^{-1}$ (g/L)$^{-1}$ ) and hydrogen peroxide(0.2965 min$^{-1}$ (%)$^{-1}$ ), respectively.

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