• Title/Summary/Keyword: 산화이질소

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Antioxidant effect and inhibitory activities of ethyl acetate fraction from Gardenia jasminoides extract on nitric oxide production and pancreatic cancer cell proliferation (치자 에틸아세테이트 분획의 산화방지, 산화질소 제거 및 암세포증식 억제 활성)

  • Park, Min Kyung;Yoon, Hye Ji;Lee, Hwa Jin
    • Korean Journal of Food Science and Technology
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    • v.50 no.2
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    • pp.209-215
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    • 2018
  • To evaluate the radical scavenging activity of phenolic-rich fractions of Gardenia jasminoides, we first measured the levels of total polyphenols in hexane, ethyl acetate, and butanol fractions from the extract of G. jasminoides. The ethyl acetate fraction of G. jasminoides extract (GJ-EA) showed high level of phenolics, potent reducing power, and 2,2-diphenyl-1-picrylhydrazyl/2,2'-azino-bis 3-ethylbenzothiazoline-6-sulfonic acid radical scavenging effect. In addition, GJ-EA inhibited the overproduction of nitric oxide in lipopolysaccharide-activated BV-2 microglia. Furthermore, we found that GJ-EA suppressed $H_2O_2$-induced PANC-1 pancreatic cancer cell proliferation in a concentration-dependent manner and also reduced their migratory ability. These results suggest that GJ-EA may be a good source for functional foods with antioxidant and chemo-preventive activities.

Seasonal Changes of Microflora in Paddy Soil with Long-term Application of Organic Matter (유기물(有機物) 연용답토양(連用畓土壤)에 있어서 미생물상(微生物相)의 계절적(季節的) 변화(變化))

  • Lee, Sang-Bok;Choi, Yoon-Hee;Lee, Kyung-Bo;Yoo, Chul-Hyun;Rhee, Gyeong-Soo
    • Korean Journal of Soil Science and Fertilizer
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    • v.28 no.4
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    • pp.356-362
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    • 1995
  • This experiment was carried out to investigate the effects on the seasonal population change of microflora of long-term application of organic matters in Fluvio-Alluvial plain of Jeonbug series. As organic matters, rice straw and compost of 5 and 10ton/ha, which were applied with the different nitrogen fertilizer level of 0, 150kg/ha into the soil 15cm deep, respectively. A number of total aerobic bacteria were gradually increased from just after water-logging before rice transplanting to pancle formations stage, afterthat decreased at harvest. The other side, a number of actinomycetes, fungi and cellulose-decomposers were slightly fluctuated until panicle formation stage and increased at havesting stage. In general, microorganism numbers were higher in organic matter with long-term nitrogen fertilizer applied plot, while cellulose-decomposers were higher in only organic matter applied plot. The microorganisms of ammonia-oxidizing, nitrate-reducing and nitrite-oxidizing, and denitrifying bacteria showed the maximum number at harvest stage, at panicle formation stage and at early tillering stage, respectively, while that of ammonifying bacteria were variable if nitrogen fertilizer applied or not at the respective periods in nitrogen cycle under water-logging. These bacteria were numerous in the organic matter plots combined with nitrogen fertilizer, especially, denitrifying bacteria in rice straw, others no difference.

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Electrochemical Properties of Carbon Felt Electrode for Vanadium Redox Flow Batteries by Liquid Ammonia Treatment (암모니아수 처리에 따른 바나듐 레독스 흐름전지용 탄소펠트 전극의 전기화학적 특성)

  • Kim, Yesol;Cho, Seho;Park, Se-Kook;Jeon, Jae-Deok;Lee, Young-Seak
    • Applied Chemistry for Engineering
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    • v.25 no.3
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    • pp.292-299
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    • 2014
  • In this study, nitrogen doped carbon felt (CFt) is prepared using thermal oxidation and liquid phase ammonia treatment to improve the efficiency for vanadium redox flow batteries (VRFB). The electrochemical properties of prepared CFt electrodes are investigated using cyclic voltammetry (CV) and charge/discharge test. The XPS result shows that the increase of liquid phase ammonia treatment temperature leads to the increased nitrogen functional group on the CFt surface. Redox reaction characteristics using CV reveal that the liquid phase ammonia treated CFt electrodes are more reversible than the thermally oxidized CFt. When CFt is treated by the liquid phase ammonia at $300^{\circ}C$, VRFB cell energy efficiency, voltage efficiency, and current efficiency are increased about 6.93%, 1.0%, and 4.5%, respectively, compared to those of the thermally oxidized CFt. These results are because nitrogen functional groups on CFt help to improve the electrochemical properties of redox reaction between electrode and electrolyte interface.

Variation of Optimum Operational pH in Partial Nitritation (암모니아 폐수의 부분아질산화에서 최적 운전 pH의 변동)

  • Bae, Wookeun;Khan, Hammad
    • Journal of Korean Society of Environmental Engineers
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    • v.38 no.5
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    • pp.228-235
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    • 2016
  • Nitrite accumulation is essential for constructing an anammox process. As the pH in the reactor exerts a complicated and strong influence on the reaction rate, we investigated its effects upon treatment of an ammonic wastewater (2,000 mgN/L) through modeling and experiment. The modeling results indicated that the reaction stability is strongly affected by pH, which results in a severe reduction of the 'stable region' of operation under alkaline environments. On a coordinate of the total ammonia nitrogen (TAN) concentration vs. pH, the maximal stable reaction rates and the maximal nitrite accumulation potentials could be found on the 'stability ridge' that separates the stable region from the unstable region. We achieved a stable and high ammonia oxidation rate (${\sim}6kgN/m^3-d$) with a nitrite accumulation ratio of ~99% when operated near the 'stability ridge'. The optimum pH that can be observed in experiments varies with the TAN concentrations utilized, although the intrinsic optimum pH is fixed. The direction of change is that the optimum operational pH falls as the TAN concentration increases, which is in excellent accordance with the observations in the literature. The optimum operational pH for 95% nitritation was predicted to be ~8.0, whereas it was ~7.2 for 55% partial nitritation to produce an anammox feed in our experimental conditions.

Drop Tube Furnace Studies of Coal Combustion on the Fuel-N Release and NOx Emission (질소 해리도와 NOx의 방출 특성 비교를 위한 DTF 연소실험)

  • Park, Chu-sik;Han, Woong;Kim, Sung-one;Choi, Sang-Il;Park, Seok-ho
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 1999.11a
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    • pp.41-45
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    • 1999
  • 연소 중에 발생하는 주요 공해물질 중의 하나가 질소산화물(NOx)이며 석탄의 연소에서는 타 연료를 사용하는 연소와 비교하여 많은 양의 질소산화물이 생성된다. 이러한 현상은 석탄에 결합되어있는 연료 중 질소(fuel-N)의 산화에 기인한 것이다. 석탄 연소 시 fuel-N에 의하여 생성되는 질소산화물은 전체 질소산화물의 75%이상, 때에 따라서는 95%까지 점하는 결과를 보여 준다.(중략)

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초전도 박막형 선재

  • 이상헌
    • 전기의세계
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    • v.53 no.8
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    • pp.39-42
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    • 2004
  • 초전도 재료는 선재의 형태로 가공하면 송전선이나, 변압기, 발전기 및 전력 저장장치와 같이 전력 응용의 효율을 극대화시킬 수 있는 재료로서 널리 활용되고 있다. 1987년 개발된 고온 산화물 초전도체는 액체질소 의 비등점인 77K 이상에서 초전도 현상을 나타내어 초전도 현상의 응용에 대한 기대를 고조시켜 이에 대한 연구 개발을 더욱 향상시키고 있다. 초전도 선재에 관한 연구는 주로 PIT( Powder in Tube )공정을 이용한 Ag/Bi 2223 선재가 우수한 전기적 특성과 가공의 우수성으로 인하여 개발되어 왔다. 그러나 Ag/Bi 2223 선재는 강한 자기장 하에서 통전 특성이 현저하게 저하되는 결점이 있다. (중략)

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DC 반응성 스퍼터링법으로 증착한 TiN/Al, TiCN/Al 박막의 전기적.기계적 특성 및 내부식성 평가

  • Lee, Hyeon-Jun;Song, Pung-Geun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.346-347
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    • 2012
  • 최근 화석연료 대체 에너지원으로서 자동차용으로 연구 개발 및 응용되고 있는 고분자 전해질 연료전지(PEMFC: Proton exchange membrane fuel cells)에서 분리판(Bipolar Plate)은 스택 전체 무게의 80%, 스택 가격의 60% 정도로 가장 높은 비중을 차지한다. 분리판은 연료와 산화제를 공급해주는 통로 및 전지 운전 중에 생성된 물을 제거하는 통로 역할과 anode, cathode로서 전극 역할을 통해 스택 전력을 형성하는 핵심 기능과 전지와 전지 사이의 지지대 역할을 한다. 따라서 분리판은 전기전도성, 내부식성 및 기계적 특성이 우수해야함은 물론이고, 얇고 가벼우며 가공성이 뛰어나야 한다. 현재 가장 많이 사용되고 있는 금속 분리판 소재 중 스테인리스 스틸은 전기적, 기계적 특성 및 내부식성이 우수한 반면, 가격이 비싸고, 중량이 무거운 단점이 있다. 따라서 본 연구에서는 DC 반응성 마그네트론 스퍼터링법으로 전기적, 기계적 특성 및 내부 식성이 우수한 TiN, TiCN 박막을 스테인리스에 비해 중량이 1/3, 소재 단가가 1/4인 알루미늄 기판 위에 증착하여 박막 물성을 평가하였다. DC Power는 400 W, 기판과 타겟 사이의 거리는100 mm, 공정 압력은 0.5 Pa로 고정하였고, 3 inch의 지름과 순도 99.95%를 갖는 티타늄 타겟을 사용하였다. 공정 가스는 Ar을 주입하였으며, 질소와 탄소의 공급원으로는 질소($N_2$)와 메탄($CH_4$) 가스를 사용하여 챔버 내 주입혼합가스의 전체 유량을 50 sccm으로 고정시켰다. 증착된 박막의 전기적, 기계적 특성을 측정하였고, X-ray diffraction (XRD), Scanning electron microscope (SEM)을 이용하여 박막의 미세구조 및 표면 상태를 확인하였다. 또한, 내부식 특성을 평가하기 위해 potentiostatic, potentiodynamic 법을 이용하여 박막의 부식저항을 측정하였다. 증착된 TiN 박막의 경우 질소 함량의 증가에 따라 박막 증착속도는 감소하는 경향을 보였다. 이는 타겟 부근의 질소 라디칼 비율이 증가함에 따라 질화반응이 촉진된 것으로 생각된다. 또한, 증착된 TiN과 TiCN 박막은 반응성 질소 유량과 탄소 유량에 따라 각각 다른 미세구조를 가지는 것을 확인하였다. TiN과 TiCN은 NaCl형의 면심입방격자(FCC)로 같은 구조이며, 격자상수가 비슷하여 전율고용되어 TiCN을 형성하고, 탄소와 질소의 비에 따라 전기적 기계적 특성이 달라짐을 확인하였다.

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The Influence of Some Soil-treated Herbicides on the Mineralization of Nitrogen Fertilizers I. In a flooded paddy soil (토양처리형 제초제가 질소비료의 무기화작용에 미치는 영향 I. 침수토양 조건)

  • Kim Moo Key
    • Korean journal of applied entomology
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    • v.15 no.4 s.29
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    • pp.205-214
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    • 1976
  • Effect of Butachlor(2-chloro-2, 6-diethyl N-(buthoxymethyl) acetanilide), Nitrofen(2,4-dichloro-4-nitrodiphenyl ether), Benthiocarb+Simetryne(s-(4-chlorobenzyl)-N, N-diethylthiocarbamate $7\%$+2-methylthio-4, 6-bis(ethylamino)-s-triazine $1.5\%)$, Propanil (3,4-dichloropropionanilide), and Perfluidone {1. 1. 1-trifluoro-N, N-(2-methyl-4-(phenylsulfonyl) Pheny1) methanesulfon amide} on urea hydrolysis and subsequent nitrification was investigated in a flooded soil incubated at $24\pm1^{\circ}C$ for 9 weeks. 1. Butachlor and Perfluidone at the rate of 1,440 and 1,200g, ai/10a, respectively, slightly inhibited the early stage of urea decomposition, and caused a slight decrease in the production of ammomium, which, however, was recovered readily. 2. Propanil at the rate of 2,800g, ai/10a imhibited the first stage of nitrification, and brought about a slight increase in the ammonium conentration and a decrease in the concentration of nitrite and nitrate. This inhibitive effect was a little more evident at higher concentration of applied nitrogen. The other herbicides caused no inhibition of urea decomposition and subsequent nitrification even at the highest rate of application. 3. pH and Eh of the soil were not significantly affected by the herbicides tested.

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Antioxidant activity of wood vinegar by bioconversion (생물전환에 의한 발효 목초액의 항산화 활성)

  • Cho, Young-Ho;Cho, Jae-Soo;Lee, Gye-Won
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.10
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    • pp.4434-4442
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    • 2011
  • Reactive oxygen species (ROS) are reactive and potentially harmful to cells, causing oxidation of lipids, proteins, and DNA. In humans, the deleterious effects of ROS have been linked with aging, carcinogenesis, and atherosclerosis. In order to investigate an antioxidant activity of wood vinegar by bioconversion, we preferentially analyzed the total acidity, acetic acid, pH, and contents of total polyphenols and flavonoids, respectively. Also, we evaluated the scavenging abilities on 1,1-diphenyl-2-picrylhydrazyl (DPPH) radicals, superoxide anion radicals, hydrogen peroxide radicals, and nitric oxide radicals. The total acidity and amount of acetic acid of wood vinegar after bioconversion were lower than those of wood vinegar before bioconversion, but the pH was higher than that of wood vinegar before bioconversion. The contents of total polyphenols and flavonoids of wood vinegar after bioconversion were 11.17 mg/$m{\ell}$ and 0.42 mg/$m{\ell}$, respectively. The $SC_{50}$ values were in order of superoxide anion radical scavenging activity < DPPH radical scavenging activity < hydrogen peroxide radical scavenging activity < nitric oxide radical scavenging activity. Therefore, these results suggest that wood vinegar by bioconversion can be useful as primary antioxidants for medicines and cosmetics.

An Assessment on the Behavior of Nitrogenous Materials during the First High-rate Phase in Composting Process (퇴비화 공정의 1차 발효단계에서 질소성 물질의 거동 평가)

  • Jeong, Yeon-Koo;Kim, Jin-Soo
    • Journal of the Korea Organic Resources Recycling Association
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    • v.8 no.3
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    • pp.81-88
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    • 2000
  • Composting of N-rich wastes such as food waste and wastewater sludges can be associated loss of with substantial gaseous N, which means loss of an essential plant nutrient but may also lead to environmental pollution. We investigated the behavior of nitrogenous materials during the first high-rate phase in composting of food waste. Air dried food waste was mixed with shredded waste paper or wood chip and reacted in a bench scale composting reactor. Samples were analyzed for pH, ammonia, oxidized nitrogen and organic nitrogen. The volatilized ammonia nitrogen was also analyzed using sulfuric acid as an absorbent solution. Initial progress of composting reaction greatly influenced the ammonification of organic nitrogen. A well-balanced composting reaction with an addition of active compost as an inoculum resulted in the promoted mineralization of organic nitrogen and volatilization of ammonia. The prolongation of initial low pH period delayed the production of ammonia. It was also found that nitrogen loss was highly dependent on the air flow supplied. With an increase in input air flow, the loss of nitrogen as an ammonia also increased, resulted in substantial reduction of ammonia content in compost. The conversion ratio of initial nitrogen into ammonia was in the range of 28 to 38% and about 77~94% of the ammonia produced was escaped as a gas. Material balance on the nitrogenous materials was demonstrated to provide an information of importance on the behavior of nitrogen in composting reaction.

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