• 제목/요약/키워드: Nitrate-N transport

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Bioremediation by Denitrification in the Saturated Zone : Mathematical Model and Experiment

  • Lee Eun-Jung;Lee Kang-Kun;Kim Young;Ha Cheol-Yun
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2005년도 총회 및 춘계학술발표회
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    • pp.393-396
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    • 2005
  • The reactive transport model on the biologically mediated sequential nitrate transformation and its subsequent transport was developed and tested. This model was coded as a reaction module within the RT3D framework (Clement, 1997). Transports of the reasonable six mobile solutes (dissolved organic carbon, $O_2,\;{NO_3}^-,\;{NO_2}^-,\;N_2O,\;N_2$) and two immobile microbes were simulated. The simulation results gave a reasonable match with supposed transport pattern. For the next step, the developed model will be validated against experimental data.

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담배식물(植物)의 엽서별(葉序別) 질산환원능력(窒酸還元能力) 비교(比較) (Nitrate Reduction of Tobacco Leaves along the Stalk Position)

  • 이윤환;임선욱
    • 한국토양비료학회지
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    • 제20권1호
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    • pp.35-41
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    • 1987
  • 질산태질소(窒酸態窒素)를 선택흡수(選擇吸收)하는 담배식물에 대하여 흡수된 $NO_3-N$의 각조직별(各組織別) 이동양상(移動樣相)과 질산환원효소(窒酸還元酵素)의 활성도(活性度)(nitrate reductase activity. NRA)를 조사하고 생육과정(生育過程)에서 출엽(出葉)된 잎들의 질산환원능력(窒酸還元能力)을 비교조사(比較調査)한 결과(結果) 1. 도관조직(導管組織)인 엽맥(葉脈)까지는 함유(含有)된 질소(窒素)의 대부분(大部分)이 $NO_3-N$으로써 무기태질소(無機態窒素)로 엽맥(葉脈)을 통과(通過)하며 엽육(葉肉)에서는 $NO_3-N$이 환원(還元)되어 무기태질소(無機態窒素)가 거의 검출(檢出)되지 않았다. 2. NRA는 성숙(成熟)된 잎에서 가장 왕성하였으며 분열생장중(分裂生長中)인 잎이나 도관조직(導管組織)에서는 환원기능이 매우 낮은 수준에 머물렀다. 3. 하위(下位)의 성숙엽(成熟葉)은 두껍고 수분(水分)을 많이 함유(含有)하였으며 가장 왕성한 질산환원능력(窒酸還元能力)을 보였다. 4. 생장조직(生長組織)으로 유기질소물질(有機窒素物質)을 공급(供給)하기 위하여 유식물(幼植物)때는 소수(小數)의 좁은 잎에서 높은 수준(水準)의 NRA를 유지(維持)했으나 생육(生育)이 진전되어 많은 잎이 착엽(着葉)되면서 상위(上位)쪽의 성숙엽(成熟葉)은 NRA가 낮은 수준에 머물렀다.

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분포형 유역모델을 이용한 농촌지역 소유역의 질산성 질소 지하침출량 평가 (Estimation of Nitrate Leaching Rates for a Small Rural Watershed Using a Distributed Watershed Model)

  • 박민혜;박선화;김현구;황종연;김태승;정현미;조홍래;이태환;구본경;박윤희
    • 한국물환경학회지
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    • 제33권6호
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    • pp.661-669
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    • 2017
  • A distributed watershed model CAMEL (Chemicals, Agricultural Management and Erosion Losses) was applied to a small rural watershed where intensive livestock farming sites are located to estimate nitrate leaching rates from soil to groundwater. The model was calibrated against the stream flows, and T-N and $NO_3-N$ concentrations were observed at the watershed outlet for three rainfall events in 2014. The simulation results showed good agreement with the observed stream flows ($R^2=0.67{\sim}0.93$), T-N concentrations ($R^2=0.40{\sim}0.58$) and $NO_3-N$ concentrations ($R^2=0.43{\sim}0.65$). The estimated annual nitrate leaching rate of the watershed was 33.0 kg N/ha/yr. The contributing proportions of individual activities to the total nitrate leaching rate of the watershed were estimated for livestock farming, applications of chemical fertilizer, and manure. The simulation results showed that the highest contributor to the nitrate leaching rate of the watershed was chemical fertilizer applications. The simulation period was for one year only, however, and results may vary depending on different conditions. Gathering input data over a longer period of time and monitoring data for calibration is needed. When this has been accomplished, it is expected that this model can be applied to small rural watersheds for evaluating temporal and spatial variations of nitrogen transformations and transport processes.

Different Levels of N Supply Impacts on Seed Yield by Modulating C and N Metabolism in Brassica Napus

  • Lee, Bok-Rye;Lee, Hyo;Kim, Tae-Hwan
    • 한국초지조사료학회지
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    • 제39권2호
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    • pp.75-80
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    • 2019
  • Oilseed rape is known to crop having low nitrogen use efficiency (NUE) but requires high levels of N fertilizer. NUE is associated with N remobilization from source to sink organ, consequently affects seed yield. Remobilization of leaf N is also related to transport of C/N metabolites in phloem. However, interaction between seed yield and phloem transport was not fully documented. In response to seed yield, N and C metabolites and their transport into seed from bolting to pod filling stage investigated in two contrasting genotypes (Capitol and Pollen) cultivated under ample (HN) or limiting nitrate (LN) supply. Seed yield was significantly reduced in N limitation and its reduction rate was much lower in Capitol than in Pollen compared to HN treated plants. Amino acid and protein content was higher in Capitol than in Pollen at bolting stage. They gradually decreased during plant development but not significant between two cultivars and/or two treatments. Glucose, fructose and sucrose content were 1.8-,1.6- or 1.25-fold higher in LN condition than in HN condition, respectively. Amino acid and sucrose content in phloem were largely higher in Capitol than in Pollen under LN condition. These results indicate that the higher seed yield might be related to greater transport ability of amino acid and sucrose in phloem under LN condition.

추파 청예작물의 저온 조건하에서 질소의 분배에 관한 연구 II. 흡수된 질산태 질소의 목부, 체관부 및 뿌리로의 전이 (Nitrogen Partitioning at Low Temperature in Fall-Sowing Species II. Distribution to roots, xylem and phloem transport of newly absorbed nitrate)

  • 김태환;김병호
    • 한국초지조사료학회지
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    • 제19권1호
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    • pp.49-56
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    • 1999
  • 저온 조건하에서 추파 청예작물의 의한 질산태 질소 흡수 및 이용에 대한 대사기전을 규명하기 위해 호밀과 사초용 유채의 생육온도를 $5^{\circ}C$$25^{\circ}C$로 처리 후 뿌리를 양분하여 $14^N$$15^N$을 각각 공급하여 $15^N$의 식물체내 이동을 추적하였다. $5^{\circ}C$에서 9일간 호밀과 유채에 의해 흡수된 질산태 질소의 함량은 $25^{\circ}C$ 처리구에 비해 각각 59.3% 및 27.1%가 감소하였다. $25^{\circ}C$ 조건하에서 9일간 호밀 및 유채에 있어 흡수된 질산태 질소의 약 2.5% 및 7.6%가 뿌리로 전이되었고, $5^{\circ}C$ 조건하에서는 뿌리로 전이된 질산태 함량은 각각 3.8% 및 10.9%로 증가하였다. 목부를 통해 잎으로 전이된 질소의 함량은 $25^{\circ}C$ 조건하의 호밀 및 유채에서 개체당 각각 55.9 및 54.4 mg N이었으며, $5^{\circ}C$ 에서는 각각 22.1 및 38.8 mg N으로 저온 처리에 의해 목부를 통한 전이된 질소 함량은 각각 60.4% 및 28.8%가 감소되었음을 보여 주었다. 호밀과 유채 공히 체관부를 통해 잎에서 뿌리로 전이된 질소의 함량은 다른 경로를 통한 질소 전이량에 비해 가장 낮았으며, 저온 처리에 따른 전이량의 변화폭 역시 가장 낮았다. $25^{\circ}C$ 조건하에서 호밀 및 유채에 있어 총 흡수된 질소의 2.5% 및 0.5%이었으며, $5^{\circ}C$ 조건하에서 이 비율은 각각 5.2% 및 0.9%로 증가하였다.

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

  • 양성렬
    • 한국수산과학회지
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    • 제30권5호
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    • pp.782-793
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    • 1997
  • 식물 플랑크톤의 인위적인 용승조건 하에서 생리적 적응 (shift-up)을 알아보기 위하여, 안정동위원소인 $^{15}N-KNO_3$를 이용하여 실험실에서 Dunaliella tertiolecta의 질산염 흡수 능력을 측정하였다. 그 결과 예상과는 달리 최대 질소비 질산염 흡수 속도 $(V_{NO3})$와 초기 질산염 농도 사이에는 유의성 있는 상관관계가 나타나지 않았다. 그러나 최대 질산염 운반 속도 $(\rho_{NO3})$$25\;{\mu}M$ 이하의 초기 질산염 농도 사이에는 강한 상관성이 나타났으며, 이는 배양 세포의 생리적인 상태에 의한 영향에도 기인한다. $\rho_{NO3}$의 증가는 주로 입자성 유기 질소 농도의 증가와 함께 부분적으로는 $V_{NO3}$의 증가에 기인한다. 식물 플랑크톤 개체군이 심하게 shift-down되었을 경우 질산염 흡수의 생리적 적응은 높은 초기 질산염 농도에서 주목할 만큼 저해되었다. 최대 $V_{NO3}$ 또는 $\rho_{NO3}$이 나타나는 시기는 초기 질산염 농도와 관련이 있다. 높은 초기 질산염 농도에서는 $V_{NO3}$$\rho_{NO3}$의 최대치가 낮은 초기 질산염 농도에서보다 $1\~2$일 정도 늦게 나타났다. 이는 Zimmerman et al. (1987)의 shift-up 모델에서의 예측과 상반되는 결과이다. Shift-up 과정은 명백히 내부적인 시간순서와 초기 질산염 농도에 의하여 조절되지만, $V_{NO3}$의 크기는 질산염 농도의 변화에 거의 영향을 받지 알았다.

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Assessment of the Nitrate Radical Chemistry and Chemical Composition on Jeju Island during the Asian Pollution Period in the Spring of 2001

  • Shon, Zang-Ho;Kim, Ki-Hyun;Keith N. Bower;Lee, Gangwoong;Kim, Jiyoung
    • Journal of Korean Society for Atmospheric Environment
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    • 제19권E3호
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    • pp.137-148
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    • 2003
  • In this study, we examined the influence of long-range transport of dust particles and air pollutants on the photochemistry of NO$_3$on Jeju Island, Korea (33.17 N, 126.10$^{\circ}$E) during the Asian Dust-Storm (ADS) period of April 2001. Three ADS events were observed during the periods of 10∼12, 13∼14, and 25∼26 April. Average concentration level of nighttime NO$_3$on Jeju Island during the ADS period was estimated to be about 2 x 10$^{8}$ molecules cm$^{-3}$ ( - 9 pptv). Decreases in NO$_3$levels during the ADS period was likely to be determined mainly by the enhancement of the $N_2$O$_{5}$ heterogeneous reaction on dust aerosol surfaces. The reaction of N20s on aerosol surfaces was a more important sink for nighttime N03 during the ADS due to the significant loading of dust particles. The reaction of $N_2$O$_{5}$ with NMHCs and the gas-phase reaction of N20s with water vapor were both significant loss mechanisms during the study period, especially during the NADS. However, dry deposition of these oxidized nitrogen species and a heterogeneous reaction of NO$_3$were of no importance. Short-term observations of $O_3$, NO$_2$, DMS, and SO$_2$in the MBL indicated that concentrations of most of these chemical species were different between the ADS and non - Asian - Dust-Storm (NADS) periods, implying that their levels were affected sensitively by the differences in air mass trajectories.

Electrodeposition of Graphene-Zn/Al Layered Double Hydroxide (LDH) Composite for Selective Determination of Hydroquinone

  • Kwon, Yeonji;Hong, Hun-Gi
    • Bulletin of the Korean Chemical Society
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    • 제34권6호
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    • pp.1755-1762
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    • 2013
  • A graphene-Zn/Al layered double hydroxide composite film was simultaneously prepared by electrochemical deposition on the surface of a glassy carbon electrode (G-LDH/GCE) from the mixture solution containing GO and nitrate salts of $Zn^{2+}$ and $Al^{3+}$. The modified electrode showed good electrochemical performances toward the simultaneous electrochemical detection of hydroquinone (HQ), catechol (CA) and resorcinol (RE) due to the unique properties of graphene (G) and LDH such as large active surface area, facile electronic transport and high electrocatalytic activity. The redox characteristics of G-LDH/GCE were investigated with cyclic voltammetry and differential pulse voltammetry. The well-separated oxidation peak potentials, corresponding to the oxidation of HQ, CA and RE, were observed at 0.126 V, 0.228 V and 0.620 V respectively. The amperometric response of the modified electrode exhibited that HQ can be detected without interference of CA and RE. Under the optimized conditions, the oxidation peak current of HQ is linear with the concentration of HQ from 6.0 ${\mu}M$ to 325.0 ${\mu}M$ with the detection limit of 0.077 ${\mu}M$ (S/N=3). The modified electrode was successfully applied to the direct determination of HQ in a local tap water, showing reliable recovery data.

Chemically Aged Asian Dust Particles Proven by Traditional Spot Test and the Most Advanced micro-PIXE

  • Ma, Chang-Jin;Tohno, Susumu;Kang, Gong-Unn
    • Asian Journal of Atmospheric Environment
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    • 제10권2호
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    • pp.114-123
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    • 2016
  • A change in chemical compositions of Asian dust (AD) particles can dramatically alter their optical properties, cloud-forming properties, and health effects. The present study was undertaken to evaluate this aging of AD particles by means of two complementary methods (i.e., the traditional spot test and the most advanced micro-PIXE analytical technique) for single particle analysis. Size-classified particles were sampled at the rural peninsula of Korea (Byunsan, 35.37N; 126.27E) during AD event and non-AD period in 2004. Sulfate was principally enriched on the particles in the size range of $7.65-10.85{\mu}m$ collected during AD event. The average number fraction of coarse particles ($>2.05{\mu}m$) containing chloride was 16.2% during AD event. Relatively low particles containing nitrate compared to those containing sulfate and chloride were found in AD event. Micro-PIXE elemental maps indicated that a large number of AD particles were internally mixed with man-made zinc. The highest peaks of EC and OC concentrations were appeared at $0.01-0.43{\mu}m$ particle aerodynamic diameter. High EC concentration in $PM_1$ was might be caused by the Saemangeum Seawall Project that was being conducted during our field measurement.