• Title/Summary/Keyword: 난분해성 물질

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Treatment of hazardous chemicals by Nanoscale Iron powder (나노크기 철 분말을 이용한 난분해성 유해화합물질의 처리)

  • 최승희;장윤영;황경엽;김지형
    • Journal of Korea Soil Environment Society
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    • v.4 no.3
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    • pp.85-93
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    • 1999
  • The destruction of hazardous chemicals such as chlorinated organic compounds(COCs) and nitroaromatic compounds(NACs) by zero-valent iron powder is one of the latest innovative technologies. In this paper. the rapid dechlorination of chlorinated compounds as well as transformation of nitro functional group to amine functional group in the nitroaromatic compounds using synthesized zero-valent iron powder with nanoscale were studied in anaerobic batch system. Nanoscale iron, characterized by high surface area to mass ratios(31.4$\textrm{m}^2$/g) and high reactivity, could quickly reacts with compounds such as TCE, chloroform, nitrobenzene, nitrotoluene, dinitrobenzene and dinitrotoluene, at concentration of 10mg/L in aqueous solution at room temperature and pressure. In this study, the TCE was dechlorinated to ethane and chloroform to methane and nitro groups in NACs were transformed to amino groups in less than 30min. These results indicated that this chemical method using nanoscale iron powder has the high potential for the remediation of soils and groundwater contaminated with hazardous toxic chemicals including chlorinated organic compounds and nitro aromatic compounds.

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Photocatalysis: From Environmental Remediation to Energy Conversion (환경, 에너지 분야에서의 광촉매 활용기술)

  • Choe, Ji-Na;Kim, Beom-Sik;Gwon, Sun-Il;Yu, Ji-Seon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.08a
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    • pp.72.1-72.1
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    • 2013
  • 광촉매 활용 기술은 수질 및 대기 중의 난분해성 오염 물질 처리 등의 환경 분야에서부터 항균 및 초친수성 기능을 활용한 소재 분야, 그리고 태양광을 이용한 물분해 수소 제조 및 이산화탄소의 전환 등의 인공 광합성 연구 분야까지 그 응용분야가 대단히 넓은 기술이다. 본 강연에서는 이러한 광촉매의 반응 원리와 대표적인 응용분야인 환경 정화 분야 및 에너지 분야에서의 광촉매 기술의 활용, 그리고 현재 광촉매 관련 연구 분야의 주요 관심사 및 미래 성장을 위한 과제 등을 포괄적으로 다루고자 한다. 광촉매 반응은 반도체의 따간격 에너지 흡수에 따라 전자와 정공(+전하를 가진 전자와 같은 거동을 하는 입자)가 발생한 뒤에 일어나는 계면에서의 전자전달 반응을 기초한다. 발생한 정공과 전자는 각각 산화와 환원 반응을 유발하며 이러한 산화, 환원반응을 통해 다양한 분야로의 응용이 가능하다. 환경 정화 분야의 경우, 정공이 물 혹은 공기 속에 존재하는 수분과 반응하여 생성되는 OH 라디칼 ($OH{\cdot}$)의 강력한 산화력을 주로 이용하게 된다. OH 라디칼에 의한 다양한 난분해성 유기물질의 산화분해 반응을 활용하여 고도처리공정이 가능하게 되며, 수계 난분해성 유기오염물질의 제거뿐만 아니라 대기 중에 존재하는 VOCs, 악취물질 등의 분해도 가능하며, 아울러 바이러스나 박테리아와 같은 세균을 제거할 수 있는 것으로 알려져 있다. 한편, 물 분해 수소제조 및 이산화탄소의 전환과 같은 에너지 분야 응용의 경우, 전도대의 전자를 활용한 환원반응에 기초한다. 앞서 언급한 다양한 응용분야에서 활용될 수 있는 광촉매의 종류 또한 매우 다양하며, 이사화티탄(TiO2)는 대표적인 고효율 상용 광촉매이다. 아울러, 원하는 응용 분야에서의 광활성이 높은 새로운 광촉매의 제조 및 평가가 꾸준히 진행되고 있으며, 그 가운데 태양광의 가장 많은 영역을 차지하고 있는 가시광 활성을 갖는 광촉매 개발에 관한 연구가 활발히 수행되고 있다. 이에, 현재까지 개발된 다양한 가시광 광촉매 시스템에 대한 소개 및 각 광촉매 응용분야에서 최근 새롭게 대두되고 있는 이슈들에 대하여 중점적으로 고찰하고자 한다.

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A Study on the Treatment of Refractory Organics by Redox Reaction of Cu-Zn Metal Alloy (Cu-Zn 금속 합금의 산화.환원 반응에 의한 난분해성 COD처리에 관한 연구)

  • Song, Ju-Yeong;Park, Ji-Won;Kim, Jong-Hwa
    • Journal of the Korean Applied Science and Technology
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    • v.30 no.1
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    • pp.166-172
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    • 2013
  • The purpose of this study is to evaluate the treatment ability of refractory organics in hot rolling precess waste water by redox(reduction and oxidation) reaction. Metal is oxidized in an aqueous solution to generate electron which can reduce water to generate hydroxy radical. These hydroxy radical is very effective to conduct hydrogen abstraction reaction and addition reaction to the carbon - carbon unsaturated link. The surface area of metal alloy reaction material is more than enough to get equilibrium at a single treatment. The efficiency of COD treatment by redox reaction showed maximum at mild pH of pH 7 and pH 6. But it was not effective in acidic atmosphere of pH 3, 4, 5 and basic atmosphere of pH 8 or over. Redox reaction system in much more helpful in a commercial coagulation sedimentation treatment than exclusive system.

Treatment of the dyestuff solution using photocatalyst membrane system (분리막ㆍ광촉매 시스템을 이용한 염료 수용액의 처리)

  • 곽민욱;민병렬;탁태문;정건용
    • Proceedings of the Membrane Society of Korea Conference
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    • 2004.05b
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    • pp.184-187
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    • 2004
  • 고급산화법 중 하나인 광촉매인 TiO$_2$를 이용한 시스템은 300~400nm 파장의 UV영역에서 비교적 적은 에너지로 유기 오염 물질을 $CO_2$$H_2O$로 산화시킨다[1]. 따라서 폐수용액 중 오염물질을 제거한 경우에도 슬러리로 인한 2차 오염의 문제가 없다. 최근에는 난분해성 물질이나 독성을 가진 물질을 포함된 폐수처리 시설의 고도처리를 위하여 분리막을 도입하는 추세이다.(중략)

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Enhancement of biodegradability of the Refractory Organic Substances in Aqueous Solution with Discharged Water Generating (DWG) System (방전시스템(Discharged Water Generator)을 이용한 난분해성 물질의 생분해능 향상에 관한 연구)

  • Yeo, Inho;Ryu, Seung Min;Park, Heekyung
    • Journal of Korean Society of Water and Wastewater
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    • v.20 no.1
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    • pp.79-85
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    • 2006
  • Innovated technique to oxidize pollutants has been developed. The technique for this study uses plasma discharge in 2-phase (Air-Water) and is called Discharged Water Generating (DWG) system. It produces electric arc which generates not only the physical decomposing power against the pollutants but also oxidants to sterilize pollutants depending on the inlet gas species. These physical and chemical products play an important role in COD decrease and biodegradability enhancement. The enhancement of biodegradability for the refractory organic substances in aqueous solution was estimated in this study. Argon discharge reduced NBDCOD of EDTA from 58.7mg/L to 38.8mg/L, but oxygen discharge and ozonation reduced it to 37.74mg/L and 38.73mg/L respectively. Furthermore, Argon discharge changed 1181mg/L of NBDCOD of dye effluent into 606mg/L but oxygen discharge and ozonation changed it into 888mg/L and 790mg/L respectively.

Degradation of Organochlorinated Pollutants by Microorganism -Isolation of PCBs-Degrading Strain and Conditions of Degradation- (미생물에 의한 난분해성 유기염소계 오염물질의 분해 -PCBs 분해 균주의 분리 및 그 분해 조건-)

  • Kim, Chan-Jo;Oh, Man-Jin;Lee, Jong-Soo;Sohn, Hyun-Ju;Sung, Chang-Keun
    • Applied Biological Chemistry
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    • v.29 no.3
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    • pp.273-278
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    • 1986
  • PCBs was degraded by bacterium, which was classified as a strain of Alcaligenes aquamarinus. Its PCB-42 degradation was maximized when grown on mineral salts medium containing 0.1% of PCB-42 as a sole carbon source at $25^{\circ}C$ and initial pH $7.0{\sim}8.0$, and also shaking culture was effective for it. The addition of glucose and peptone were effective for the degradation of PCB-42, but metal ions were not effective.

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Refractory Textile Wastewater Treatment Using Cell-Immobilized Polyethylene glycol Media (PEG 포괄고정화담체를 이용한 난분해성 염색폐수 처리)

  • Han, Duk-Gyu;Cho, Young-Jin;Bae, Woo-Keun;Hwang, Byung-Ho;Lee, Yong-Woo
    • Journal of Korean Society of Environmental Engineers
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    • v.28 no.3
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    • pp.345-350
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    • 2006
  • This study investigated the removal of recalcitrant organics in dyeing wastewater using a fluidized bed reactor(FBR) that contained cell-immobilized pellets. The pellets were manufactured and condensing the gel phase by mixing PEG-polymer and cells to form micro-porous PEG-polymer pellets whose size were ${\Phi}\;4mm{\times}H\;4mm$ on average. An industrial activated sludge without any pre-adaptation was used for the cell immobilization because it gave an equivalent removal efficiency to a pre-adapted sludges. The feed was obtained from an effluent of a biological treatment plant, which contained $SCOD_{Cr}$ of 330 mg/L and $SBOD_5$ of 20 mg/L. The $SCOD_{Cr}$ removal efficiency was over 45% and the effluent $COD_{Mn}$ concentration was less than 100 mg/L at HRTs from 6 to 24 hrs. The optimum HRT in the FBR was determined as 12 hrs considering the removal efficiency and cost. When a raw wastewater containing 768 mg/L of $COD_{Cr}$ was fed to the FBR, the effluent $COD_{Cr}$ concentration increased only slightly, giving a 70% of $COD_{Cr}$ removal or a 97% of $BCOD_5$ removal. This indicated that the FBR had an excellent capability of biodegradable organics removal also. In conclusion, the FBR could be applied to textile wastewater treatment in place of an activated sludge process.