• Title/Summary/Keyword: Fenton산화

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A Study on Treatment of Livestock wastewater using Fenton Oxidation and Zeolite Adsorption Process (Fenton 산화공정과 Zeolite 흡착공정을 연계한 축산폐수처리에 관한 연구)

  • Cho, Chang-Woo;Kim, Youn-Jeong;Chung, Paul-Gene
    • Journal of Korean Society on Water Environment
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    • v.21 no.5
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    • pp.505-510
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    • 2005
  • The objective of this study was to remove non-biodegradable matters and ammonia ion in livestock wastewater using Fenton oxidation and Zeolite adsorption process. After coagulation process as 1st treatment, non-biodegradable matters remained after 1st treatment were removed by using OH radical produced in Fenton oxidation process. Zeolite as cation adsoption process was used to remove ammonia ion in 2nd treatment water. As a result of treatment using these processes, NBDCOD removal efficiency was over 90% and ammonia ion was almost removed. Most aromatics or polynuclear aromatics like benzene, phenol and scatol in livestock wastewater wasn't detected after Fenton oxidation process.

Astudy on Treatment of Livestock Wastewater using Coagulation and Fenton Oxidation Process (응집 및 fenton 산화공정을 연계한 축산폐수처리에 관한 연구)

  • Cho, Chang-Woo;Ryou, Jae-Woong;Chung, Paul-Gene
    • Journal of Korean Society on Water Environment
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    • v.20 no.6
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    • pp.610-614
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    • 2004
  • The objective of this study was to remove organics and color in livestock wastewater using coagulation and Fenton oxidation process. After coagulation process as $1^{st}$ treatment, organics in $1^{st}$ treatment water were removed by using OH radical produced in Fenton oxidation process. Removal efficiencies of $COD_{Mn}$ and color were 87.2% and 95.7% separately. At that time, the ratio of $Fe^{2+}/H_2O_2$ was 0.8~1.0, and range of reaction pH was effective at the pH of 3.5~3.8. The Reaction time of 120min more than 60min or 90min was sufficient in Fenton process. Removal efficiency of organics was higher two- or multi-stage treatment than one-stage treatment.

Degradation Kinetic and Mechanism of Methyl Tert-butyl Ether (MTBE) by the Modified Photo-Fenton Reaction (Modified Photo-Fenton Reaction을 이용한 Methyl Tert-butyl Ether (MTBE)의 분해 Kinetic 및 메커니즘 규명에 관한 연구)

  • Kim, Min-Kyoung;Kong, Sung-Ho
    • Journal of Soil and Groundwater Environment
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    • v.11 no.6
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    • pp.69-75
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    • 2006
  • Improper disposal of petroleum and spills from underground storage tanks have created large areas with highly toxic contamination of the soil and groundwater. Methyl tert-butyl ether (MTBE) is widely used as a fuel additive because of its advantageous properties of increasing the octane value and reducing carbon monoxide and hydrocarbon exhausts. However, MTBE is categorized as a possible human carcinogen. This research investigated the Modified Photo-Fenton system which is based on the Modified Fenton reaction and UV light irradiation. The Modified Fenton reaction is effective for MTBE degradation near a neutral pH, using the ferric ion complex composed of a ferric ion and environmentally friendly organic chelating agents. This research was intended to treat high concentrations of MTBE; thus, 1,000 mg/L MTBE was chosen. The objectives of this research are to find the optimal reaction conditions and to elucidate the kinetic and mechanism of MTBE degradation by the Modified Photo-Fenton reaction. Based on the results of experiments, citrate was chosen among eight chelating agents as the candidate for the Modified Photo-Fenton reaction because it has a relatively higher final pH and MTBE removal efficiency than the others, and it has a relatively low toxicity and is rapidly biodegradable. MTBE degradation was found to follow pseudo-first-order kinetics. Under the optimum conditions, [$Fe^{3+}$] : [Citrate] = 1 mM: 4 mM, 3% $H_2O_2$, 17.4 kWh/L UV dose, and initial pH 6.0, the 1000 ppm MTBE was degraded by 86.75% within 6 hours and 99.99% within 16 hours. The final pH value was 6.02. The degradation mechanism of MTBE by the Modified Photo-Fenton Reaction included two diverse pathways and tert-butyl formate (TBF) was identified to be the major degradation intermediate. Attributed to the high solubility, stability, and reactivity of the ferric-citrate complexes in the near neutral condition, this Modified Photo-Fenton reaction is a promising treatment process for high concentrations of MTBE under or near a neutral pH.

Treatment Study of Textile Wastewater by Fenton's Oxidation (펜톤 산화반응에 의한 염색폐수처리 연구)

  • 박영규
    • Journal of environmental and Sanitary engineering
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    • v.15 no.4
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    • pp.20-25
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    • 2000
  • The wastewater treatment for the purpose of water-recycling was performed using Fenton's & ozone's methods. These methods were used to increase the treatment efficiency of textile wastewater and to search for the optimal operating conditions. The optimal conditions by Fenton process were determined so that input amounts of $FeSO_4{\cdot}7H_2O$ and $H_2O_2$ were $7.2mM/{\;}{\ell}$ and $49.0m/{\;}{\ell}$ respectively, treatment by ozone process had 92% removal efficiency at ozone concentration of 9.73g/min and $130mM/{\;}{\ell}$ of $H_2O_2$.

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An Electro-Fenton System Using Magnetite Coated One-body Catalyst as an Electrode (일체형 산화철 촉매를 전극으로 하는 전기펜톤산화법)

  • Choe, Yun Jeong;Ju, Jeh Beck;Kim, Sang Hoon
    • Applied Chemistry for Engineering
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    • v.29 no.1
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    • pp.117-121
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    • 2018
  • A stainless steel mesh was applied to the cathode of an electro-Fenton system. Methylene blue (MB) solution was chosen as the model waste water with non-biodegradable pollutants. For the model waste water, the degradation efficiency was compared among various SUS mesh cathodes with different surface treatments and magnetite coatings on them. With increasing amount of the magnetite coating on SUS mesh, the degradation efficiency also increased. The improved electro-catalytic characteristic was explained by the increased amount of in situ generated hydrogen peroxide near the cathode surface. Cyclic voltammetry data also showed improved electro-catalytic performance for SUS mesh with more magnetite coatings on them.

Removal of Linear Alkylbenzenesulfonate by Fenton's Oxidants and Coagulation

  • Hwan Lee;Yoon Jin Lee;Hea Tae Kim;Sang Ho Nam
    • Journal of environmental and Sanitary engineering
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    • v.16 no.2
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    • pp.71-78
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    • 2001
  • 본 연구는 폐수 중 함유된 고농도의 LAS를 제거하기 위해 $FeSO_4$를 이용한 응집, 펜톤산화, 펜톤 공정 전.후에 응집공정을 조합시킨 Coagu-oxidation 및 Renton's Coagulation을 이용하여, 처리 시 최적 조건을 도출하고, 효율적인 화학적 처리방법을 검토하기 위해 수행되었다. 연구로부터 얻어진 결론은 다음과 같다. 응집공정은 pH 8, 응집제의 주입량 200mg/L인 조건에서, 펜톤산화는 pH 3, $H_2$$O_2$에 대한 ${Fe^2}^{+}$의 비가 1:1인 조건에서 최적효율을 보였다. Fenton's Coagulation 처리 시 LAS의 개환율은 높아졌고, 주입된 LAS농도의 73~96%가 제거되어 4가지 처리 방법 중 가 장 좋은 처리효율을 보였다. 따라서, LAS의 생물학적 처리 시 거품 및 부산물 생성 등에 의해 저해작용을 감안한다면, LAS가 다량으로 함유한 산업 폐수에서 화학적 처리방법의 도 입이 적절할 것으로 생각되며, 이들 중 Fenton's Coagulation을 유용하게 적용될 수 있을 것으로 판단된다.

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A Role of Dissolved Iron ion in Combined Fenton Reaction for Treatment of TNT Contaminated Soil (오염토양처리를 위한 혼합 Fenton 공정에서 용존 철이온이 오염산화처리에 미치는 역할에 관한 연구)

  • Seo, Seung-Won;Kong, Sung-Ho
    • Journal of Soil and Groundwater Environment
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    • v.11 no.6
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    • pp.76-82
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    • 2006
  • Fenton's reaction are difficult to apply in the field due to the low pH requirements for the reaction and the loss of reactivity caused by the precipitation of iron (II) at neutral pH. Moreover, Fenton-like reactions using iron mineral instead of injection of iron ion as a catalyst are operated to get high removal result at low pH. Because hydroxyl radical can generate at the surface of iron mineral, there are competition with a lot of hydroxide at around neutral pH. On the other side, to operate Fenton's reaction series at neutral pH, modified Fenton reaction is suggested. The complexes, composed by iron ions (ferrous ion or ferric ion)-chelating agent, could be acted as a catalyst and presented in the solution at neutral pH. However, modified Fenton reaction requires a lot of hydrogen peroxide. Accordingly, the purpose of this experiment was to effectively combine Fenton-like reaction and modified Fenton reaction for extending application of Fenton's reaction. i.e., injecting chelating agents in Fenton-like reaction at around neutral pH is increasing the concentration of dissolved iron ion and highly promoting the oxidation effect. 2,4,6-trinitrotoluene (TNT) was used as a probe compound for comparing reaction efficiencies in this study. If the concentration of dissolved iron ion in combined Fenton process were existed more than 0.1 mM, the total TNT removal were increased. Magnetite-NTA system showed the best TNT removal (76%) and Magnetite-EDTA system indicated about 56% of TNT removal. The results of these experiments proved more promoted 40-60% of TNT removal than Fenton-like reaction's.

Manganese Oxide Catalyzed Fenton-like Reduction of Chlorinated Compounds (산화망간으로 촉매화된 펜톤유사반응을 적용한 염소계화합물의 환원분해)

  • 김상민;공성호;김용수
    • Journal of Soil and Groundwater Environment
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    • v.7 no.3
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    • pp.95-102
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    • 2002
  • Manganese oxide/ hydrogen peroxide($MnO_2$/${H_2}{O_2}$) reactions were investigated as an alternative to Fenton-like reaction to reduce chlorinated organic compounds in groundwater This system showed high degradation of CT with low ${H_2}{O_2}$concentration($\leq$294mM) at neutral condition, and CT degradation increased with increasing pH values. The rate of CT degradation was not so much dependent on increase in $MnO_2$concentration since increase in production of oxygen during the reaction obstructed reaction of ${H_2}{O_2}$ on the surface of $MnO_2$. These results show that $MnO_2$catalyzed Ponton-like reaction could be a potential alternative method for treating chlorinated organic compounds in groundwater.

A Study on the Characteristics of Fenton Oxidation of Bisphenol A and Nitrobenzene (비스페놀A와 니트로벤젠의 펜톤 산화분해 특성)

  • Bae, Su-Jin;Kwon, Hee-won;Kim, Ji-young;Hwang, In-Seong;Kim, Young-Hun
    • Journal of Environmental Science International
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    • v.30 no.12
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    • pp.1005-1014
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    • 2021
  • Organic contaminants can be released into water environments due to chemical accidents and exist as dissolved and non-aqueous phase liquids (NAPL). Fenton oxidation was tested for bisphenol A and nitrobenzene as model organic contaminants in dissolved and NAPL states. Fenton oxidation was successfully applied for both of the dissolved and NAPL states of the two pollutants and the results indicated that a quick treatment was needed to reduce the risk from a chemical accidents instead of carrying out oxidation after the contaminants dissolve in water. A set of Fenton reactions were tested under seawater conditions because chemical accidents often occurs in the ocean. Chloride ions act as radical scavengers and inhibit Fenton oxidation. The reaction rate is inversely proportional to salt contents and the reduced reaction rate can be compensated by increasing the quantity of the oxidizing agents. The current study showes that Fenton oxidation could be applied as a quick treatments for organic contaminant in dissolved and NAPL state organic contaminants released as a result of leaks or chemical accidents.

A Study on the Improvement of Water Environment in Retention Pond by Seawater Flocculation and Fenton Oxidation (해수 응집과 펜턴 산화에 의한 유수지 수환경 개선에 관한 연구)

  • Kim, Jin-Han;Jun, Se-Jin;Lim, Ji-Young;Song, Yun-Min;Yoo, Kun-Woo;Jung, Jong-Tai;Park, Jung-Hwan
    • Journal of Wetlands Research
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    • v.12 no.1
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    • pp.75-82
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    • 2010
  • This study was performed to figure out what would be effective to improve water environment in a retention pond which was located in Incheon. Chemical coagulation, seawater flocculation and Fenton treatment were carried out to improve water and sediment quality for the retention pond. Experimental results showed that pH of 11 was optimum pH for seawater flocculation and the high removal rates in terms of SS and T-P can be obtained by seawater flocculation. To eliminate the pollutants from the sediments we applied Fenton oxidation process. We compared whether direct oxidizing the sediments would be more effective than oxidizing them after elution. By Fenton oxidation only, the COD removal rate was 0.55 grams per one $H_2O_2$ gram. Whereas the removed COD grams per one $H_2O_2$ gram were 0.69 by Fenton oxidation after elution. It showed that the oxidizing after elution was about 25% more effective than the oxidizing without elution. Both treatments could improve the water quality of a retention pond from a level 6(very bad) to a level 3(normal) of Lake Water Quality Standard.