• Title/Summary/Keyword: 환원침전

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Fabrication and thermal stability of flower-like CeO2 with high surface area via anisotropic crystallization of carbonate precipitation (탄산염 침전 전구체의 결정 이방성 제어를 통한 고 비표면적 flower-like CeO2 분말의 제조 및 고온 안정성 평가)

  • Kim, Hanbit;Shin, Tae Ho
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.29 no.4
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    • pp.160-166
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    • 2019
  • Cerium oxide ($CeO_2$, often called as Ceria) is one of the valuable rare earth oxide materials, which has been widely used for high temperature applications such as solid oxide fuel cells, automotive three-way catalysts and oxygen storage capacity. Considering those application, it is important to improve high redox and thermal stability with high surface morphology because the high surface area of $CeO_2$ could improve the catalytic reactivity at high temperature conditions. Herein we successfully fabricated hierarchical flower-like $CeO_2$ deposited via controlling pathway of precipitation reaction to supply carbonate ion lead to the flower-like morphology. The hexagonal lattice system of precipitated precursor shows better thermal stability then orthorhombic one during thermal cycling condition.

도금폐수 중 역삼투법에 의한 크롬이온의 분리에 관한 연구

  • 이선주;이효숙;정헌생;황재동;주창업
    • Proceedings of the Membrane Society of Korea Conference
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    • 1994.10a
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    • pp.68-68
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    • 1994
  • 현재의 도금폐수처리는 침전옹집법에 의해 슬러지화 하여 매립되고 있으나, 이 매립물은 침출수를 방출하여 수질오염에 문제가 되고 있다. 특히 크롬폐수는 환원 침전시키고 있으나, 공기에 의한 산화로 재용출 가능성이 비교적 높다. 따라서 크롬 고금폐수를 역삼투압법에 의해 크롬이온을 농축 회수하고, 생성되는 투과수는 도금공정에 재투입하여 공해물질이 발생되지 않는 무배출 공정 (Zero-Discharge System)을 개발하는데 본 연구의 목적이 있다. 본 실험에서는 유가금속 중 크롬을 회수하기 위하여 크롬 모델폐수의 농도, pH등을 변화시키면서 연속공정으로 R.O. Cell에 의한 투과수와 막의 상태 변화등을 살펴보았으며, 크롬 실폐수를 R.O. Cell 테스트와 역삼투기기 (1-2ton/day)를 이용하여 농축수 및 투과수의 재이용에 관하여 실험하였다.

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Microbial Reduction of Iron Oxides and Removal of TCE using the Iron Reduced by Iron Reducing Bacteria (철 환원 박테리아에 의한 산화철의 환원과 환원된 철을 이용한 TCE 제거에 관한 연구)

  • Shin, Hwa-Young;Park, Jae-Woo
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.2
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    • pp.123-129
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    • 2005
  • In situ permeable reactive barrier (PRB) technologies have been proposed to reductively remove organic contaminants from the subsurface environment. The major reactive material, zero valent iron ($Fe^0$), is oxidized to ferrous iron or ferric iron in the barriers, resulting in the decreased reactivity. Iron-reducing bacteria can reduce ferric iron to ferrous iron and iron reduced by these bacteria can be applied to dechlorinate chlorinated organic contaminants. Iron reduction by iron reducing bacteria, Shewanella algae BrY, was observed both in aqueous and solid phase and the enhancement of TCE removal by reduced iron was examined in this study. S. algae BrY preferentially reduced Fe(III) in ferric citrate medium and secondly used Fe(III) on the surface of iron oxides as an electron acceptor. Reduced iron formed reactive materials such as green rust ferrihydrite, and biochemical precipitation. These reactive materials formed by the bacteria can enhance TCE removal rate and removal capacity of the reactive barrier in the field.

Geomicrobiological Behavior of Heavy Metals in Paddy Soil Near Abandoned Au-Ag Mine Supplied with Carbon Sources (탄소원을 공급한 폐금은광산 주변 논토양 내 중금속의 지구미생물학적 거동 연구)

  • Ko, M.S.;Lee, J.U.;Park, H.S.;Shin, J.S.;Bang, K.M.;Chon, H.T.;Lee, J.S.;Kim, J.Y.
    • Economic and Environmental Geology
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    • v.42 no.5
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    • pp.413-426
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    • 2009
  • The study was conducted to investigate the effects of indigenous bacteria on geochemical behavior of toxic heavy metals in contaminated paddy soil near an abandoned mine. The effects of sulfate amendment to stimulate microbial sulfate reduction on heavy metal behaviors were also investigated. Batch-type experiments were performed with lactate or glucose as a carbon source to activate indigenous bacteria in the soil under anaerobic condition for 100 days. Sulfate (250 mg/L) was artificially injected at 60 days after the onset of the experiments. In the case of glucose supply, solution pH increased from 4.8 to 7.6 while pH was maintained at 7~8 in the lactate solution. The initial low pH in the case of glucose supply likely resulted in the enhanced extraction of Fe and most heavy metals at the initial experimental period. Lactate supply exerted no significant difference on the amounts of dissolved Zn, Pb, Ni and Cu between microbial and abiotic control slurries; however, lower Zn, Pb and Ni and higher Cu concentrations were observed in the microbial slurries than in the controls when glucose supplied. Sulfate amendment led to dramatic decrease in dissolved Cr and maintenance of dissolved As, both of which had gradually increased over time till the sulfate injection. Black precipitates formed in solution after sulfate amendment, and violarite($Fe^{+2}{Ni^{+3}}_2S_4$) was found with XRD analysis in the microbial precipitates. Conceivably the mineral might be formed after Fe(III) reduction and microbial sulfate reduction with coprecipitation of heavy metal. The results suggested that heavy metals which can be readily extracted from contaminated paddy soils may be stabilized in soil formation by microbial sulfate reduction.

Interaction between Selenium and Bacterium and Mineralogical Characteristics of Biotreated Selenium (셀레늄-미생물간의 반응 및 셀레늄 광물화 특성)

  • Lee, Seung-Yeop;Oh, Jong-Min;Baik, Min-Hoon
    • Journal of the Mineralogical Society of Korea
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    • v.24 no.3
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    • pp.217-224
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    • 2011
  • Removal of dissolved selenium by D. michiganensis, a iron-reducing bacterium, and effects of dissolved metal elements such as iron, sulfate, and copper were investigated. Selenide that was reduced from selenite (2 mM) by D. michiganensis was gradually removed from the aqueous medium. As the reduced selenide was combined with aqueous iron, it was precipitated as a nanoparticulate iron-selenide. Sulfate and copper negatively affected the microbial selenite reduction, and the copper was especially toxic to the bacterium, inhibiting a microbial removal of dissolved selenite. These results show that it should be carefully biotreated for a selenium-contaminated site considering in situ sulfate or copper distribution and concentration. Consequently, the formation of iron-selenide by bacteria will be an important measure for preventing a long-distance migration of selenium in the subsurface environments.

Change of Oxidation/Reduction Potential of Solution by Metal-Reducing Bacteria and Roles of Biosynthesized Mackinawite (금속환원미생물에 의한 수용액의 산화/환원전위 변화 및 생합성 맥키나와이트의 역할)

  • Lee, Seung-Yeop;Oh, Jong-Min;Baik, Min-Hoon;Lee, Yong-Jae
    • Journal of the Mineralogical Society of Korea
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    • v.24 no.4
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    • pp.279-287
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    • 2011
  • In order to identify if bacteria surviving in soils and groundwater can change the oxidation/reduction potential of groundwater, Eh values of solution that contained bacteria were measured for 2 weeks. The Eh values of the solution reacted with sulfate-reducing bacteria decreased from -120 mV to -500 mV in 5 days, and $Desulfuricans$ was superior to $Vulgaris$ in reducing the solution. The Eh value was relatively higher for the solution containing $Shewanella$, iron-reducing bacteria, showing -400 mV. During the Eh decrease by the metal-reducing bacteria, a sulfide mineral such as mackinawite (FeS) started precipitating through the microbial reducing process for sulfate and ferric iron. These results show that the ORP of natrual groundwater may be sensitive to the geomicrobial respiration. In addition, a subsurface environment where groundwater is highly reduced and sulfide minerals are largely biogenerated may be a good place to retard the migration of oxidized radionu-clides by making them precipitated as reduced forms.

무방류 폐수처리와 분리막공정

  • 노수홍
    • Proceedings of the Membrane Society of Korea Conference
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    • 1991.10a
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    • pp.49-50
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    • 1991
  • 최근 산업폐수의 수질오염에 대한 국민적 관심이 높아지면서 정부의 배출수 수질기준강화 및 배출부과금의 인상 등으로 기업의 폐수처리에 관한 인식이 상당히 달라졌다. 기존의 폐수처리는 각공정에서 발생되는 폐수는 종합적으로 수집하여 처리하는 소위 END OF PIPE 처리방법이 대부분이며 산화/환원, 응집/침전, 미생물분해, 여과 등이 주로 사용되고 있다. 그러나 END OF PIPE 처리방식에서는 소량이지만 처리가 어렵거나 독성이 강한 물질이 일부분의 공정에서 발생되어도 분리처리되지 않고 전체적으로 합쳐지므로 처리시설이 복잡하고 규모도 커진다. 따라서 최근의 폐수처리는 각 생산공정에서 발생되는 폐수를 소규모의 처리시설로 처리하기 어려운 소량의 오염물질을 제거하거나 유효성분일 경우 회수하여 재활용하는 방향으로 연구가 진행되고 있다.

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장풍광산 폐광석의 중금속 존재형태 연구

  • 이평구;이인경;최상훈;신성천
    • Proceedings of the KSEEG Conference
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    • 2003.04a
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    • pp.53-56
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    • 2003
  • 폐광석에 함유되어 있는 중금속 원소는 물리ㆍ화학적 환경의 변화에 따라서 안정화 되어 자연적으로 정화가 진행되거나 혹은 재 용출될 수 있어 중요한 오염원으로 작용할 수 있다. 따라서 폐광석에 함유된 중금속이 흡착된 상태로 존재하는지, 광물형태(탄산염광물, 산화광물, 황산염광물 및 황화광물)로 존재하는지, 산화환경 혹은 환원환경에서 안정한 다른 광물의 결정 내에 치환된 형태로 존재하는 지를 규명하는 것은 물리화학적 환경변화에 따른 중금속의 거동(흡착반응, 탈착반응, 용해반응, 침전반응)을 예측할 수 있는 매우 유용한 평가 방법이라고 할 수 있다. (중략)

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Quality Characteristics of Instant Nuroong-gi to which Dioscorea japonica powder was added (마 분말이 첨가된 즉석 누룽지의 품질특성)

  • Lee, Hyun-Seok;Kwon, Ki-Hyun;Kim, Byeong-Sam;Kim, Jong-Hoon
    • Food Science and Preservation
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    • v.16 no.5
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    • pp.680-685
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    • 2009
  • We assessed the quality characteristics of instant Nuroong-gi prepared with 0%, 2%, 4%, 6%, or 8% (all w/w) yam powder. We measured color, water binding capacity, viscosity, the sedimented volume of insoluble solids, turbidity, total sugar, and reducing sugar and conducted sensory evaluation. Lightness decreased with a rise in the proportion of yam powder. However, both redness and yellowness rose with an increasing proportion of powder. The water binding capacities of Nuroong-gi prepared with yam powder were higher than that of rice powder. The viscosity increased with increasing levels of powder. The level of insoluble solids, the turbidity, and the concentrations of total sugar and reducing sugar all rose with increasing cooking temperature. Sensory evaluation showed that Nuroong-gi with yam powder at 2% (w/w) was optimally acceptable.

Reduction of perchlorate in aqueous solution using zero valence iron stabilized with alginate bead (알지네이트 비드를 이용하여 안정화한 0가 철의 수용액 상에서의 과염소산 이온의 환원 분해 특성)

  • Joo, Tae-Kyeong;Lee, Jong-Chol;Paeng, Ki-Jung
    • Analytical Science and Technology
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    • v.23 no.6
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    • pp.560-565
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    • 2010
  • Perchlorate ion ($ClO_4^-$) has been widely used as oxidizing agent in military weapon system such as rocket and missile fuel propellant. So it has been challenging to remove the pollutant of perchlorate ion. nanoscale zero valence iron (nZVI) particles are widely employing reduction catalyst for decomposition of perchlorate ion. nZVI particles has increasingly been utilized in groundwater purification and waste water treatment. But it have strong tendency of aggregation, rapid sedimentation and limited mobility. In this study, we focused on reduction of perchlorate ion using nZVI particles immobilized in alginate polymer bead for stabilization. The stabilized nZVI particles displayed much greater surface area, and much faster reaction rates of reduction of perchlorate ion. In this study, an efficient way to immobilize nZVI particles in a support material, alginate bead, was developed by using $Ca^{2+}$ as the cross-linking cations. The efficiency and reusability of the immobilized Fe-alginate beads on the reduction of perchlorate was tested at various temperature conditions.