• Title/Summary/Keyword: 질산염 농도

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Physiological Adaptation of Nitrate Uptake by Phytoplankton Under Simulated Upwelling Conditions (모의 용승조건하에서 식물 플랑크톤 질산염 흡수기작의 생리적 적응)

  • YANG Sung Ryull
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.30 no.5
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    • pp.782-793
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    • 1997
  • To study the physiological adaptation (shift-up) of phytoplankton under the simulated upwelling conditions, nitrate uptake capacity of Dunaliella tertiolecta batch culture was measured in the laboratory using the stable isotope $^{15}N-KNO_3$. Contrary to the expected, there was no significant relationship between the maximum $V_{NO3}$ (nitrogen specific nitrate uptake rate) and the initial nitrate concentration. However, there was a strong relationship between the maximum $\rho_{NO3}$ (nitrate transport rate) and the initial nitrate concentration of $<25\;{\mu}M$, which was also influenced by the physiological status of the culture. The increase in $V_{NO3}$ was mainly due to the increase in PON (particulate organic nitrogen) concentration and partly due to the increase in $V_{NO3}$. When the phytoplankton population was severely shifted-down, the physiological adaptation of nitrate uptake was significantly inhibited at high initial nitrate concentrations. The timing of the maximum $V_{NO3}$ or $\rho_{NO3}$ was related to the initial nitrate concentration. At higher initial nitrate concentrations, maxima in $V_{NO3}$ and $\rho_{NO3}$ occurred 1 or 2 days later than at lower nitrate concentrations. This relationship was the opposite to the prediction from the shift-up model of Zimmerman et al. (1987), The shift-up process is apparently controlled by an internal time sequence and the initial nitrate concentration, but the magnitude of $V_{NO3}$ was affected little by changes in nitrate concentration.

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Lethal Toxicity and Hematological Changes Exposed to Nitrate in Flatfish, Paralichthys olivaceus in Biofloc and Seawater (바이오플락 및 일반 해수에서 질산염의 넙치 (Paralichthys olivaceus)에 미치는 급성 독성 및 혈액학적 성상의 변화)

  • Bae, Sun-Hye;Kim, Ki Wook;Kim, Su Kyoung;Kim, Su-Kyoung;Kim, Jong-Hyun;Kim, Jun-Hwan
    • Korean Journal of Environmental Biology
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    • v.35 no.3
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    • pp.373-379
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    • 2017
  • Juvenile Paralichthys olivaceus (mean length $19.8{\pm}2.6cm$, mean weight $97.8{\pm}15.8g$) were exposed for 96 hours to different nitrate concentrations of 0, 62.5, 125, 250, 500, 1,000, and $1,500mg\;L^{-1}$ in biofloc and 0, 62.5, 125, 250, 500, and $1,000mg\;L^{-1}$ in seawater. Median lethal concentration values ($LC_{50}$, the concentration at which 50% of mortality occurred after 96 hours of exposure) of nitrate to P. olivaceus in biofloc and seawater were 1,226 and $597mg\;NO_3L^{-1}$ (P<0.05), respectively, revealing a higher toxicity of nitrate to P. olivaceus in seawater than in biofloc. In hematological parameters, hematocrit level in P. olivaceus exposed to nitrate was significantly increased only at a concentration of $1,000mg\;L^{-1}$ in biofloc and at concentrations higher than $250mg\;L^{-1}$ in seawater, but no significant changes in hemoglobin were found in biofloc and seawater. In plasma parameters, aspartate aminotransferase (AST) and alanine aminotransminase (ALT) were significantly increased by nitrate exposure in biofloc and seawater, but no significant changes in alkaline phosphatase (ALP) were found in biofloc and seawater. Results of this study indicate that nitrate exposure to P. olivaceus have a lethal toxic effect and alter hematological and plasma constituents of flatfish P. olivaceus. Given relatively lower toxicity of nitrate in biofloc than in seawater, the use of biofloc in aquaculture may reduce potential toxic effect caused by nitrate in feces and feed residue.

잘피(Zostera marina L.)에 부착하는 생물 군집의 생태학적 연구 - II. 잘피와 부착생물의 성장에 미치는 물리ㆍ화학적 요인

  • 정미희;최청일
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2002.10a
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    • pp.211-212
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    • 2002
  • 해초에 서식하는 부착생물의 생태학적인 이해를 위해 수주의 물리 화학적 요인 (수온, 염분, 영양염의 농도)이 잘피와 부착생물 및 부착조류의 성장에 미치는 영향을 알아보고자 하였다. 영양염의 농도 중 특히 질산염은 해양 수주 내에 부족할 경우 식물 플랑크톤을 비롯한 광합성 식물의 성장을 방해하는 요인으로 잘 알려져 있으며 (예, Bougis, 1976), 질산염이 부착생물에 미치는 영향에 대한 많은 연구가 수행되었다(Williams and Ruckelshaus, 1993, Coleman and Burkholde.,1994, 1995). (중략)

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Attachment of Bacillus subtilis to Al-Fe Bimetallic Oxide-coated Sand : Effect of Oxyanions (알루미늄.철 산화물 동시피복모래에서 Bacillus subtilis의 부착: 산화음이온의 영향)

  • Park, Seong-Jik;Lee, Chang-Gu;Han, Yong-Un;Park, Jeong-Ann;Kim, Song-Bae
    • Journal of Korean Society of Environmental Engineers
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    • v.31 no.7
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    • pp.515-520
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    • 2009
  • This study investigated the influence of oxyanions (nitrate, carbonate, phosphate) on the attachment of bacteria (Bacillus subtilis) to Al-Fe bimetallic oxide-coated sand using column experiments. Results showed that bacterial attachment to the coated sand was independent of nitrate concentration. Bacterial mass recovery remained constant (10.9${\pm}$0.2%) with varying nitrate concentrations (0.1, 1, 10 mM). In case of carbonate, mass recovery increased from 25.6% to 39.0% with increasing carbonate concentration from 0.1 mM to 1 mM, and mass recovery also increased from 50.9% to 78.9% at the same concentration condition in case of phosphate. This phenomenon could be attributed to the hindrance effect of carbonate and phosphate to bacterial attachment to the coated sand. Meanwhile, with increasing carbonate/phosphate concentration from 1 mM to 10 mM, mass recovery decreased from 39.0% to 23.8% and from 78.9% to 52.6%, respectively. This phenomenon could be ascribed to the enhancement effect of free carbonate/phosphate ions present in solution phase due to increasing carbonate/phosphate concentration, which increase ionic strength and thus enhance bacterial attachment to the coated sand. In our experimental conditions, the effect of phosphate to bacterial attachment to the coated sand was the greatest among phosphate, carbonate, and nitrate.

Comparison on Growth and Biochemical Composition of Gymnodinium sanguineum and Skeletonema costatum Grown in Different N, P Concentrations (질산염과 인산염 농도 변화에 따른 Gymnodinium sanguineum과 Skeletonema costatum의 성장과 생화학적 구성성분의 비교)

  • Lee, Taek-Kyun;Park, Myung-Whan;Shin, Kyoung-Soon;Chang, Man
    • Korean Journal of Environmental Biology
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    • v.18 no.4
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    • pp.395-401
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    • 2000
  • Growth and biochemical composition were analyzed in Gymnodinium sanguineum and Skeletonema costatum grown in media containing various nitrate and phosphate concentrations. Concentrations of nitrate and phosphate in the growth media were 0, 0.3, 0.6, 0.9, 1.2mM and 0, 15, 30, 45, 60 $\mu$M, respectively. Growth of G. sanguineum was suppressed in the low concentration of nitrate and phosphate (below N = 0.3 mM and P = 15 $\mu$M), whereas growth of S. costatum did not changed. At the low concentrations of nitrate and phosphate, amount of intracellular protein and carbohydrate in G. sanguineum cells were largely decreased, whereas content of carbohydrate in S. costatum cells was increased little. Amount of neutral lipid and phospholipid in G. sanguineum didn't changed, but concentration of glycolipid was largely decreased in the medium containing low concentrations of nitrate and phosphate. However the levels of TAG, glycolipid, and phospholipid did not changed in S. costatum cells. These results show that S. costatum is more adaptable than G. sanguineum in the low concentration of nitrate and phosphate.

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질산염이 Saccharomyces cerevisiae의 발효작용에 미치는 영향

  • 김상준
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1979.04a
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    • pp.115.3-115
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    • 1979
  • 중금속을 함유한 13종의 질산염을 명 농도별로 첨가하여 주정효모 Saccharomyces cerevisine의 주정생산과 발효작용에 미치는 영향을 조사하였다. 1. 일반적으로 중금속을 함유한 질산염은 그 첨가량이 0.0001mo1. 보다 고농도일수록 Saccharo-myces cerevisiae의 발효작용을 점차 억제하였다. 2. Nickel nitrate, chromium nitrate들의 0.0001 moi.의 첨가는 Saccharomyces cerevisiae의 alcohol 발효작용을 약간촉진시켰다. 3. Cadmium nitrate 0.001mo1. 이상, cupric nit-rate, nickel nitrate, cobalt nitrate 0.01mo1. 이상, 그리고 silver nitrate, mercurous nitrate, manganese nitrate, zinc nitrate, lead nitrate, chromiun nitrate, ferric nitrate, bismuth nitrate 0.1mol. 의 농도에서 Saccharomyces cerevisiae 의 발효작용은 완전히 조지되었다.

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Influence of Nitrate on Growth, Chlorophyll Content, Content and Activity of Rubisco and Rubisco Activase of Tobacco Plant Treated with Cadmium in vitro (Cadmium을 처리하여 기내 배양한 담배 식물의 생장, 엽록소 함량 및 rubisco와 rubisco activase의 함량과 활성에 미치는 질산염의 영향)

  • Roh, Kwang-Soo
    • Journal of Life Science
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    • v.20 no.11
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    • pp.1667-1674
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    • 2010
  • Influence of nitrate on growth, chlorophyll content, content and activity of rubisco and rubisco activase of tobacco plant cultured on MS medium treated with cadmium in vitro was studied. In vitro growth and chlorophyll content reduced at 0.2 mM Cd was recovered by nitrate and this recovery was most significant at 80 mM nitrate. Rubisco content at 80 mM nitrate was more increased compared to that at other concentrations. A similar change was also shown in rubisco activity. These resultsindicate that the activation and induction of rubisco reduced by Cd were recovered by nitrate. The degree of intensity of 55 and 15 kD polypeptides identified as the large and small subunits of rubisco by SDS-PAGE analysis at 80 mM nitrate was significantly higher than that at other concentrations. The content and activity of rubisco activase at 80 mM nitrate was significantly increased than that at other concentrations. These data suggest that the recovery effects of rubisco by nitrate may be associated with rubisco activase.

Prediction of Ambient Concentration of Nitrate in Seoul Using a Photochemical Box Model and a Gas-Aerosol Equilibrium Model (광화학 상자모델과 기체/입자 평형모델을 이용한 서울의 계절별 질산염 농도 예측)

  • 이시혜;김영성;김용표;김진영
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2003.05b
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    • pp.347-348
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    • 2003
  • 대기 중의 질산에 의해 생성되는 질산염은 해염성분이나 토양성분과 만나 조대입자 영역에 머물거나 암모늄과 만나 미세입자로 존재할 수 있다. 미세입자로 존재하는 질산염은 여름철과 같은 광화학 반응이 활발할 때 2차적으로 생성되는 물질로, 반휘발성 특성 때문에 측정하는 과정에서 오차가 발생할 가능성도 크다. Seinfeld (1986)에 의하면 미국의 도심 지역에서 미세입자 중 황산염이나 질산염 등 2차 이온 성분의 비율이 전체 입자의 40∼60 %를 차지한다고 보고되고 있으며, 대표적인 도심 지역인 서울에서도 비슷하다 (강충민 등, 1999). (중략)

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Nitrate Contamination of Alluvial Groundwaters in the Keum River Watershed Area: Source and Behaviors of Nitrate, and Suggestion to Secure Water Supply (금강 권역 충적층 지하수의 질산염 오염: 질산성 질소의 기원과 거동 고찰 및 안전한 용수 공급을 위한 제언)

  • 김경호;윤성택;채기탁;최병영;김순오;김강주;김형수;이철우
    • The Journal of Engineering Geology
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    • v.12 no.4
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    • pp.471-484
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    • 2002
  • Alluviums in the Keum River watershed cover an areal extent of $3,029{\;}\textrm{km}^2$ and contain about 8.1 billion tons of groundwater. However, the waters are severely polluted by nitrate, possibly due to the application of nitrogen fertilizer (>250 N kg/ha) on agricultural land. This paper aims to elucidate the pollution status and behaviors of nitrate in alluvial groundwaters in the Keum River watershed area, based on regional hydrogeochemical study. Most of the collected samples (n = 186) are polluted by nitrate (average = 42.2 mg/L, maximum = 295 mg/L). About 29% of the samples have the nitrate concentrations exceeding Korean Drinking Water Standard (44 mg/L $NO_3$). The distribution of nitrate concentrations in the study area is largely dependant on geochemical environments of alluvial aquifers. In particular, the decrease of redox potential of alluvial groundwaters showed a good correlation with the decreases of nitrate, iron, and manganese concentrations. Thus, the change of redox state in alluvial aquifers, likely reflecting their sedimentary environments, controls both the behavior and fate of nitrogen compounds and their natural attenuation (denitrification) in aquifers. A carbon-rich, silty layer within alluvium strata forms a reducing condition and possesses a buffering capacity on nitrate pollution.

Thermal Denitration of High Concentration Nitrate Salts Waste Water (열분해에 의한 고농도 질산염 폐액의 탈질)

  • ;;;;;C. Latge
    • Proceedings of the Korean Radioactive Waste Society Conference
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    • 2003.11a
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    • pp.665-670
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    • 2003
  • This study investigated the thermodynamic and the thermal decomposition properties of high concentration nitrate salts waste water for the lagoon sludge treatment. The thermodynamic property was carried out by COACH and GEMINI II based on the composition of nitrate Salts waste water. The thermal decomposition property was carried out by TG-DTA and XRD. Ammonium nitrate and sodium nitrate were decomposed at $250^{\circ}C$$730^{\circ}C$$450^{\circ}C$$Na_2O$ into stable $Na_2O$.$Al_2O_3$. The flow sheet for nitrate salts waste water treatment was proposed based on the these properties data. These will be used by the basic data of the process simulation.

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