• 제목/요약/키워드: Redox potential (ORP)

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Corynebacterium glutamicum에 의한 Lysine 생산에 있어서 산화환원 전위가 발효속도론적 특성에 미치는 영향 (The Effect of Redox Potential on the Kinetics of Lysine Production by Corynebacterium glutamicum)

  • 이진희;김성준;이재흥
    • 한국미생물·생명공학회지
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    • 제19권1호
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    • pp.76-81
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    • 1991
  • 2l 발효조에서 pH6.9, 온도 $32^{\circ}C$일 때 당밀배지를 이용하여 Corynebacterium glutamicum의 영양요구성 유사체 내성변이주에 의한 라이신 발효시 산화환원 전위 (ORP)가 라이신 발효속도의 특성에 미치는 영향을 조사하였다. 희석률이 0.1$h ^1$일때 탄소원이 제한되건 로이신이 제한되건 산소가 제한되지 않는 한 최대의 대당수율 24를 보였으며, 이 때의 산화환원 전윈 값은 -60mV와 -100mV 범위에 해당하였다. 산화화원 전위 값이 -130mV의 매우 낮은 용존산소 조건하에서는 대당수율 밀 $q_s, q_p$ 등의 발효 반응속도 상수값들이 크게 감소하였으며 glvcine, alanine, valine을 포함하는 발효 부산물의 축적량이 매우 높아졌다.

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1년 동안 서울지역 토양에 매설된 스테인리스강의 부식 (Corrosion of Stainless Steel Pipes Buried in the Soils of Seoul Metropolitan During One Year)

  • 현영민;김희산;김영호;장현정;박영복;최영준
    • Corrosion Science and Technology
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    • 제11권2호
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    • pp.56-64
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    • 2012
  • Factors affecting corrosion of stainless steels such as pH, oxidation and redox potential (ORP), soil resistivity, water content of soil, chloride ion concentration, bacteria activity, and corrosion potential have been investigated using soil analysis, bacterial analysis, surfacial analysis, and analysis of corrosion potentials of several stainless steels buried in 8 sites of Seoul metropolitan for one year. Corrosion potential was affected by occurrance of corrosion as well as bacteria activity but the behavior of corrosion potential with time is different depending on occurrance of corrosion and bacteria activity. The main factor affecting corrosion of stainless steels in soil is level of chloride ion concentration which is also a main factor affecting corrosion of stainless steels in chloride containing drinkable water. Furthermore, guideline of stainless steels in drinkable water is concluded to be applicable to that in soil by the results from surfacial analysis.

Characteristics of Electricity Production by Metallic and Non-metallic Anodes Immersed in Mud Sediment Using Sediment Microbial Fuel Cell

  • Haque, Niamul;Cho, Dae-Chul;Kwon, Sung-Hyun
    • 한국환경과학회지
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    • 제23권10호
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    • pp.1745-1753
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    • 2014
  • Sediment microbial fuel cell (SMFC), equipped with Zn, Al, Cu, Fe or graphite felt (GF) anode and marine sediment, was performed. Graphite felt was used as a common cathode. SMFC was single chambered and did not use any redox mediator. The aim of this work was to find efficient anodic material. Oxidation reduction potential (ORP), cell voltage, current density, power density, pH and chemical oxygen demand (COD) were measured for SMFC's performance.. The order of maximum power density was $913mWm^{-2}$ for Zn, $646mWm^{-2}$ for Fe, $387.8mWm^{-2}$ for Cu, $266mWm^{-2}$ for Al, and $127mWm^{-2}$ for graphite felt (GF). The current density over voltage was found to be strongly correlated with metal electrodes, but the graphite felt electrode, in which relatively weaker electricity was observed because of its bio-oriented mechanism. Metal corrosion reactions and/or a complicated microbial electron transfer mechanism acting around the anodic compartment may facilitate to generate electricity. We presume that more sophisticated selection of anodic material can lead to better performance in SMFC.

황산화세균 Thiobacillus thiooxidans에 의한 fly ash의 중금속 제거 특성:고형물 농도의 영향 (Characterization of Heavy Metals Bioleaching from Fly Ash by a Sulfur-Oxidizing Bacterium Thiobacillus thiooxidans: Effect of Solid Concentrations)

  • 조경숙;문희선;이인숙
    • 환경생물
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    • 제17권2호
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    • pp.183-190
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    • 1999
  • The bioleaching of heavy metals from fly ash was performed by Thiobacillus thiooxidans MET isolated from the enrichment culture of an anaerobically digested sludge. The effect of solid concentrations on the efficiency of metal leaching was studied in shaken flasks. In the range of solid concentrations 20 g.L­$^1$to 100 g.L­$^1$T. thiooxidans MET oxidized S$^{0}$ to sulfate without any lag period. The final pH of slurry solution was decreased to below pH 1, and the final oxide-redox potential (ORP) was increased to over 420 mV in the solid concentrations below 100 g.L­$^1$. However, the initial lag period of 4 to 8 days was required to obtain the pH reduction and ORP increase of the slurry solutions in the range of solid concentrations 150 g.L­$^1$to 300 g.L­$^1$. The sulfur oxidation rate of T. thiooxidans MET in 20~100 g.L­$^1$solid concentrations was 0.70~0.75 g-S.L­$^1$ㆍ d­$^1$, but its sulfur oxidation activity was remarkably inhibited with increasing solid concentration over 150 g.L­$^1$. Increasing fly ash solids concentration in the range of solids concentration 20 g.L­$^1$ to 200 g.L­$^1$decreased the removal efficiency of Zn, Cu, Mn, Cr and Pb. The solubilization of heavy metals from fly ash was strongly correlated with the pH value of slurry solution. When the pH of slurry solution was reduced to 3, the solubilization process of Zn, Cu and Mn started, and their solubilization efficiency of Zn, Cu and Mn was progressively increased below pH 2. However, the solubilization process of Cr and Pb started at pH 2.5 and 2.0, respectively.

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사용종료 비위생매립지 주변 지하수의 수질변화 특성 (Evaluation of Groundwater Quality Characteristics around Uncontrolled Closed Valley Landfill)

  • 박정구;김태동;최동혁;이진용
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제12권3호
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    • pp.75-80
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    • 2007
  • 본 연구에서는 W시에 있는 비위생매립지 주변의 지하수질 약 2년간 관측하고 그 결과를 평가하였다. 주요관심 인자는 산화환원조건에 민감한 pH, 용존산소, 전기전도도, 산화환원전위, 용존 유기탄소, 암모니아, 질산성질소 및 황산이온 등이다. 본 매립지는 생활쓰레기 매립지로 매립종료 약 10년이 경과하였다. 매립지 침출수는 COD 136${\sim}$263 mg/L, T-N 121${\sim}$186 mg/L, NH3-N 14${\sim}$369 mg/L이며, 계절적 변동이 크게 나타났다. 매립지 직하부 지하수는 약산성을 띄나 전기전도도가 매우 높아 침출수 누출의 영향을 나타내었다. 염소이온의 경우 200 mg/L 이상으로 높으나 거리가 멀어짐에 따라 점차 감소하였는데 확산 및 희석 등의 자연저감효과가 큰 것으로 사료된다. 매립지 내부에서는 산화 환원전위가 음의 값을 보이나 하부에서는 350 mV까지 증가하여 혐기성환경에서 산화환경으로의 전이를 나타내었다. 암모니아는 가장 우려되는 지하수질 인자인데 대부분의 관측정에서 크게 부화되어 있으며, 먹는물 수질기준을 상회하였다. 본 매립지 하부의 오염지하수질은 시공간적으로 자연저감 현상이 뚜렷하나 지속적인 수질모니터링이 필요한 것으로 판단된다.

Gpx3-dependent Responses Against Oxidative Stress in Saccharomyces cerevisiae

  • Kho, Chang-Won;Lee, Phil-Young;Bae, Kwang-Hee;Kang, Sung-Hyun;Cho, Sa-Yeon;Lee, Do-Hee;Sun, Choong-Hyun;Yi, Gwan-Su;Park, Byoung-Chul;Park, Sung-Goo
    • Journal of Microbiology and Biotechnology
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    • 제18권2호
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    • pp.270-282
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    • 2008
  • The yeast Saccharomyces cerevisiae has defense mechanisms identical to higher eukaryotes. It offers the potential for genome-wide experimental approaches owing to its smaller genome size and the availability of the complete sequence. It therefore represents an ideal eukaryotic model for studying cellular redox control and oxidative stress responses. S. cerevisiae Yap1 is a well-known transcription factor that is required for $H_2O_2$-dependent stress responses. Yap1 is involved in various signaling pathways in an oxidative stress response. The Gpx3 (Orp1/PHGpx3) protein is one of the factors related to these signaling pathways. It plays the role of a transducer that transfers the hydroperoxide signal to Yap1. In this study, using extensive proteomic and bioinformatics analyses, the function of the Gpx3 protein in an adaptive response against oxidative stress was investigated in wild-type, gpx3-deletion mutant, and gpx3-deletion mutant overexpressing Gpx3 protein strains. We identified 30 proteins that are related to the Gpx3-dependent oxidative stress responses and 17 proteins that are changed in a Gpx3-dependent manner regardless of oxidative stress. As expected, $H_2O_2$-responsive Gpx3-dependent proteins include a number of antioxidants related with cell rescue and defense. In addition, they contain a variety of proteins related to energy and carbohydrate metabolism, transcription, and protein fate. Based upon the experimental results, it is suggested that Gpx3-dependent stress adaptive response includes the regulation of genes related to the capacity to detoxify oxidants and repair oxidative stress-induced damages affected by Yap1 as well as metabolism and protein fate independent from Yap1.

CaO2 적용에 따른 퇴적물의 P fraction 변화와 수질에 미치는 영향 (The Effect of CaO2 Application on the Change of Sedimentary Phosphorus Fraction and Water Quality)

  • 김범근;모하메드아케트키룰;권성현
    • 한국환경과학회지
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    • 제28권5호
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    • pp.511-520
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    • 2019
  • This study was investigated to improve the phosphorus release and water quality by transformation of sedimentary P fraction for application of $CaO_2$. For the experiment, 0.5% (w/w) of $CaO_2$ was homogenized in the sediment and incubated with the control for 20 days. The analytical results showed that pH increased with $CaO_2$ and redox potential (ORP) was improved in the sediment of the reactor. The growth rate of chlorophyll-a was lower in the $CaO_2$ reactor and Dissolved Oxygen (DO) of overlying water maintained higher than that of the control. Total phosphorus (T-P) concentration in the overlying water increased from the initial concentration to 0.304mg/L in the control at 20 days. The reactor of $CaO_2$ was lowered by 29.3%. Ex-P, Fe-P and Ca-P in sediment P fraction were increased with the $CaO_2$. The formation of bound Fe-P and Ca-P in the sediments seemed to control the release of P by removing the Soluble Reactive Phosphorus (SRP) presented in the pore water. From the result, this indicated that the reduction of P release from the sediments seems to be effective in suppressing the eutrophication of P and improving the oxygen condition in the water quality with the application of $CaO_2$.