• 제목/요약/키워드: Sulfate-reducing Bacteria

검색결과 119건 처리시간 0.028초

산성광산폐수 처리를 위한 반응벽체의 반응물질로서 산업부산물 적용에 관한 연구

  • 한완수;최재규;이재영;최상일
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 총회 및 춘계학술발표회
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    • pp.260-265
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    • 2004
  • Acid mine drainage(AMD) is one of the most serious environmental concerns associated with the mining industry around the world. The objective of this study is to assess the potential of sewage sludge as a carbon source for sulfate reducing bacteria and waste lime and steel slag as a neutralize agent for acid mine drainage bioremediation for use in permeable reactive materials. The study was performed using synthetic AMD in six column experiments. The effluent solution was systematically analysed throughout the experiments. The results of the study indicated that sewage sludge, waste lime and steel slag were the most effective for the AMD treatment as a permeable reactive materials.

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Distribution of Methyl Mercury in Sediments from Kyeonggi Bay, Namyang Bay, Chinhae Bay, and Lake Shihwa, Korea

  • Lee, Kyu-Tae;Kannan, Kurunthachalam;Shim, Won-Joon;Koh, Chul-Hwan
    • Journal of the korean society of oceanography
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    • 제33권4호
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    • pp.178-184
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    • 1998
  • To elucidate contamination levels and distribution of methyl mercury (Me-Hg) in Korean coastal areas, 126 sediment samples were collected from Kyeonggi Bay, Namyang Bay, Chinhae Bay, and Lake Shihwa during 1995-1996, and the Me-Hg concentrations were determined by cold vapor atomic fluorescence spectrometry (CVAFS). Contamination levels of Me-Hg in sediments from Kyeonggi Bay, Namyang Bay, Chinhae Bay, and Lake Shihwa were 274 ${\pm}$ 990, 108 ${\pm}$ 24, 294 ${\pm}$ 342, and 1080 ${\pm}$ 760 pg/g, respectively. Concentrations of Me-Hg in sediments were significantly correlated with total organic carbon and sulfur contents, but were independent of mud contents and mean grain size. The highest concentration of Me-Hg (7100 pg/g) was observed at Incheon North Harbor (Site Kl9) in Kyeonggi Bay. This Me-Hg concentration was one or two orders of magnitude higher than those in other Kyeonggi Bay sediments were. The average concentration of Me-Hg in sediments from Lake Shihwa was higher than in those from other study areas. The three peaks of Me-Hg concentrations were observed on three sites (55, 56,and 510) in Lake Shihwa and gradually decreased in distance-dependent manner around these sites. High concentrations of Me-Hg at surface and 10-cm sediment depth in Chinhae Bay maybe due to higher rates of methylation process by active sulfate-reducing bacteria or higher concentrations of total mercury available to sulfate-reducing bacteria.

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The Specific Case Analysis of Biomineralization Induced by Sulfate Reducing Bacteria

  • Liu, Hongwei;Qin, Shuang;Fu, Chaoyang;Xiao, Fei;Wang, Deli;Han, Xia;Wang, Tianli;Liu, Hongfang
    • Corrosion Science and Technology
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    • 제16권6호
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    • pp.285-293
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    • 2017
  • The effects of sulfate reducing bacteria (SRB) on the corrosion and scaling of the Q235 carbon steel has been investigated in the simulated sewage water and oil field gathering pipelines production water, using scanning electron microscopy (SEM), energy dispersive x-ray spectrometry (EDS), and three-dimensional stereoscopic microscope. Results indicated that the concentration of SRB reached the maximum value on the ninth day in simulated sewage water with a large amount of scaling on the surface of specimen. In oil field gathering pipelines, a large amount of scaling and mineralization of mineral salts and thick deposition of extracellular polymeric substance (EPS) layers were also observed on the surface of specimen. The thickness of biofilm was about $245{\mu}m$ within 30 days. After adding microbicides, the thickness of corrosion products film was only up to $48-106{\mu}m$ within 30 days, suggesting that SRB could induce biomineralization. Under-deposit corrosion morphology was uniform in the absence of microbicides while local corrosion was observed in the presence of microbicides.

Enhanced Current Production by Electroactive Biofilm of Sulfate-Reducing Bacteria in the Microbial Fuel Cell

  • Eaktasang, Numfon;Kang, Christina S.;Ryu, Song Jung;Suma, Yanasinee;Kim, Han S.
    • Environmental Engineering Research
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    • 제18권4호
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    • pp.277-281
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    • 2013
  • A dual-chamber microbial fuel cell (MFC) inoculated with Desulfovibrio desulfuricans and supplemented with lactate as an organic fuel was employed in this study. Biofilm formed on the anodic electrode was examined by scanning electron microscopy, revealing that the amount of biofilm was increased with repeated cycles of MFC operation. The maximum current production was notably increased from the first cycle ($1,310.0{\pm}22.3mA/m^2$) to the final cycle ($1,539.4{\pm}25.8mA/m^2$) of MFC run. Coulombic efficiency was also increased from $89.4%{\pm}0.2%$ to $98.9%{\pm}0.5%$. We suggest that the current production efficiency was related to the biomass of biofilm formed on the electrode, which was also increased as the MFC run was repeated. It was also found that D. desulfuricans, which colonized on the electrode, produced filaments or nano-pili. Nano-pili were effective for the attachment of cells on the electrode. In addition, the nano-pili provided a cell-to-cell link and stimulated the development of thicker electroactive biofilm, and therefore, they facilitated electron transfer to the anode. Conclusively, the biofilm of D. desulfuricans enhanced the current production in the MFC as a result of effective attachment of cells and electron transfer from the cell network to the electrode.

실시간 정량 중합효소연쇄반응을 이용한 광산 배수의 수계 영향 평가 (Evaluation of the Effect of Mine Drainage on the Aquatic Environment by Quantitative Real-time PCR)

  • 한지선;서장원;지원현;박현성;김창균
    • 대한환경공학회지
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    • 제32권2호
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    • pp.121-130
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    • 2010
  • 산성광산배수(Acid Mine Drainage; AMD)는 낮은 pH조건에서 중금속 및 황산염이온 등이 다량 용존되어 환경오염 문제를 발생시킨다. 국내의 폐광산 일부에서는 산성광산배수를 처리하기 위해 정화시설이 운영되고 있으나 여전히 주변 하천에 영향을 미치고 있다. 본 연구는 산성광산배수 및 영향을 받는 하천에서 지표미생물의 특이적 유전자를 실시간 정량 중합효소 연쇄반응(Real-time quantitative Polymerase Chain Reaction; Real-time qPCR)을 이용하여 확인 및 정량함으로써 광산배수의 환경영향을 미생물학적으로 판단하고자 수행되었다. 지표 종으로 선정한 미생물은 16S rRNA 미생물 군집분석 결과 발견된 미생물 중 철환원균인 Rhodoferax ferrireducens T118, Acidiphilium cryptum JF-5이며 이 외에 기존에 광산에 존재하는 것으로 알려진 미생물 중 호산성 황환원균인 Desulfosporosinus orientus, 철산화균인 Leptosprillum ferrooxidans, 철 및 황산화균인 Acidothiobacillus ferrooxidans이었다. 최종적으로, 본 연구에서 각 광산의 광산배수가 하천에 미치는 영향을 정량적으로 판단하여 비교하기 위해 광산배수로 인한 하천에서의 미생물 변동 지수를 산정하였으며 연구 대상 4개 광산 중 광산배수 처리시설이 없는 삼탄의 광산배수의 경우 주변 방류 하천으로의 미생물학적 환경영향이 가장 큰것으로 나타났다

광합성 세균을 이용한 고농도 양돈슬러리의 무취화 관리방안에 관한 연구 (Deodorization Management of Swine-Slurry by Addition of Phototrophic Bacteria)

  • 이명규;권오중;정진영;태민호;허재숙
    • 한국축산시설환경학회지
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    • 제4권2호
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    • pp.137-147
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    • 1998
  • This study was carried out to find deodorization effect of swine-slurry by addition of phototrophic bacteria(PTB). The pilot-scale reactors operation conditions was designed by the inoculum amounts of PTB and light-conditions. Treatment conditions was divided into 3 types; 106 MPN/ml$.$Dark(T-1), 108 MPN/ml$.$Dark(T-2), 108 MPN/ml$.$Natural light(T-3). The changes of the concentration of volatile fatty acids(VFAs), hydrogen sulfide(H2S), ammonia (NH3) and odor intensity were analyzed during the treatment period(35 days). From results of this study, the maximum intensity of odor in the headspace of the reactor T-1 was 4.82 and T-2, T-3 was 2.63, respectively. In swine-slurry of reactors used, it almost took 10 days until to be stabilized with solid and liquid phase. Intensity of odor in headspace was mainly derived from the liquid phase. The PTB inoculum method to swine-slurry was very effective in reduction of VFAs, H2S and Sulfate-reducing bacteria(SRB) concentration. Expecially, It was interested in reverse growth behaviour of SRB and PTB in these conditions.

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Application of Biotechnology to Wastewater Treatments in Japan

  • Mori, Tadahiro
    • 한국미생물생명공학회:학술대회논문집
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    • 한국미생물생명공학회 1986년도 추계학술대회
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    • pp.510.2-511
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    • 1986
  • The biotechnology including genetic engineering is expected to be applied to various fields of wastewater treatments in order to promote biological reaction rate, to grade up the effluent quality and to advance the stability of microorganisms against temperature, pH and toxic substances. The current topics in Japan on application of biotechnology to wastewater treatment will be reviewed at the beginning of the presentation. Next, the research of Biochemical Engineering Laboratory is to be presented, especially focused on the following subjects ; (1) Application of genetic engineering to the investiation of heavy metal uptake by the resistant bacteria of Hg Cd or Zn. (2) Relationship between sulfate reducing bacteria and wastewater treatment, offensive odor and corrosion of sewer tranks.

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Involvement of Organic Acid During Corrosion of Iron Coupon by Desulfovibrio desulfuricans

  • Park, Kyung-Ran;Lee, Hyun-Jin;Lee, Hong-Keum;Kim, Yeong-Kwan;Oh, Young-Sook;Choi, Sung-Chan
    • Journal of Microbiology and Biotechnology
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    • 제13권6호
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    • pp.937-941
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    • 2003
  • Microbiologically influenced corrosion (MIC) is an electrochemical process where the participation of microorganisms initiates, facilitates, or accelerates the corrosion reaction. Sulfate-reducing bacteria (SRB) reduce sulfate to sulfide and are known to be the most destructive microorganisms in anaerobic MIC. Accordingly, the current study attempted to elucidate the mechanisms involved and the relative importance of the corrosive products in SRB-induced corrosion. The measured rate of anaerobic corrosion of iron coupons by Desulfovibrio desulfuricans was $89.9{\;}\mu\textrm{g}{\;}\textrm{m}^{-2}{\;}d^{-1}$. Direct contact between the cells and the iron coupon did not seem to be necessary for corrosion to occur, since the corrosion rate was similar ($100.8{\;}\mu\textrm{g}{\;}\textrm{m}^{-2}{\;}d^{-1}$) when the coupon was enclosed in a dialysis bag. The participation of sulfide in the corrosion process was only marginal, as the specific corrosion rate was 2.5 times higher in a sulfate-free pyruvate medium than in an $H_2S-producing$ lactate medium. Acetate (18.8-22.1 mM), the end-product of pyruvate and lactate metabolism, was identified in the culture medium and thus presumed to play a major role in the corrosion process involving Desulfovibrio desulfuricans.

Changes in Phosphorus and Sediment Oxygen Demand in Coastal Sediments Promoted by Functionalized Oyster Shell Powder as an Oxygen Release Compound

  • Kim, Beom-geun;Khirul, Md Akhte;Cho, Dae-chul;Kwon, Sung-Hyun
    • 한국환경과학회지
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    • 제28권10호
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    • pp.851-861
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    • 2019
  • In this study, we performed a sediment elution experiment to evaluate water quality in terms of phosphorus, as influenced by the dissolved oxygen consumed by sediments. Three separate model column treatments, namely, raw, calcined, and sonicated oyster shell powders, were used in this experiment. Essential phosphorus fractions were examined to verify their roles in nutrient release from sediment based on correlation analyses. When treated with calcined or sonicated oyster shell powder, the sediment-water interface became "less anaerobic," thereby producing conditions conducive to partial oxidation and activities of aerobic bacteria. Sediment Oxygen Demand (SOD) was found to be closely correlated with the growth of algae, which confirmed an intermittent input of organic biomass at the sediment surface. SOD was positively correlated with exchangeable and loosely adsorbed phosphorus and organic phosphorus, owing to the accumulation of unbound algal biomass-derived phosphates in sediment, whereas it was negatively correlated with ferric iron-bound phosphorus or calcium fluorapatite-bound phosphorus, which were present in the form of "insoluble" complexes, thereby facilitating the free migration of sulfate-reducing bacteria or limiting the release from complexes, depending on applied local conditions. PCR-denaturing gradient gel electrophoresis revealed that iron-reducing bacteria were the dominant species in control and non-calcined oyster shell columns, whereas certain sulfur-oxidizing bacteria were identified in the column treated with calcined oyster powder.

고준위방사성폐기물 심층처분에 미치는 황산염과 황화물의 영향에 대한 고찰 (A Review of the Influence of Sulfate and Sulfide on the Deep Geological Disposal of High-level Radioactive Waste)

  • 김진석;이승엽;이상호;권장순
    • 자원환경지질
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    • 제56권4호
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    • pp.421-433
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    • 2023
  • 원자력발전소의 사용후핵연료(Spent Nuclear Fuel: SNF)에 대한 최종처분은 지하 심부의 지질학적 저장소에서 이루어진다. 사용후핵연료를 감싸는 금속처분용기는 주철과 구리 등으로 제작되어 방사성핵종을 장기간 격리할 예정이며, 공학적방벽과 천연방벽으로 구성된 다중방벽처분시스템에 의해 보호를 받도록 설계된다. 지하 심부의 환경(심층처분환경)은 점차 무산소의 환원환경으로 바뀌게 되며, 이러한 환경에서 구리처분용기의 부식을 일으킬 수 있는 유력한 물질 중 하나는 황화물이다. 황화물에 의한 응력균열부식은 구리처분용기의 안정성을 크게 저하시켜 처분장의 장기안전성에 큰 영향을 미칠 수 있다. 심층처분환경에는 황산염이 다양한 형태로 존재 또는 유입될 수 있으며, 황산염환원미생물에 의해 황화물로 전환되어 구리처분용기의 부식에 기여할 수 있다. 완충재와 뒤채움재의 유력한 후보물질인 벤토나이트에는 주로 석고(CaSO4)와 같은 산화형태의 황산염 광물이 포함되어 있다. 심층처분환경 내에 미생물이 생장할 만한 공간이 있고 유기 탄소 등 전자공여체가 충분히 공급된다면 미생물 활동에 의해 황산염이 황화물로 환원될 수 있다. 하지만 근계영역에서 생성된 황화물과 지권으로부터 유입되는 황화물 중 대부분은 완충재에 의해 차단되어 극히 일부만이 처분용기에 도달할 것이다. 처분환경에서 존재가능한 황화철 광물 중 하나인 황철석은 용해과정에서 황산염을 발생시켜 구리처분용기의 부식에 기여할 수 있다. 하지만 황철석의 극히 낮은 용해도로 인해 산화 생성물의 양은 매우 적을 것이고 포화된 벤토나이트의 낮은 수리전도도로 인해 처분용기로 산화 생성물의 이동은 제한될 것이다. 우리는 심층처분환경에서 황산염의 존재와 환원 그리고 황화물과 황철석의 형성 및 거동 특성 등에 관한 주요 연구 사례 등을 종합적으로 분석, 정리하였고, 고준위방사성폐기물 처분장의 장기안전성에 대한 황산염과 황화물의 영향을 이해하고자 하였다.