• 제목/요약/키워드: $NH_3$ Concentration Distribution

검색결과 93건 처리시간 0.031초

한반도 서부유입권역에서 대기 중 에어로졸 성분의 화학적 특성 연구 I. PM 농도 및 화학 성분 특성 (A Study on Chemical Characteristics of Aerosol Composition at West Inflow Regions in the Korean Peninsula I. Characteristics of PM Concentration and Chemical Components)

  • 최진수;김정호;이태형;최용주;박태현;오준;박진수;안준영;전하은;구윤서;김신도;홍유덕;홍지형
    • 한국대기환경학회지
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    • 제32권5호
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    • pp.469-484
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    • 2016
  • HR-ToF-AMS was applied for a seasonal and size-distributional measurements for inorganic ($SO{_4}^{2-}$, $NO_3{^-}$, $NH_4{^+}$, $Cl^-$) and organic components in Baegryung Island Super Site. The average concentration of $PM_{1.0}$ remarks $12.9{\mu}g/m^3$ while $14.5{\mu}g/m^3$ in Spring time, $14.2{\mu}g/m^3$ in Winter, $13.1{\mu}g/m^3$ in Summer and $9.86{\mu}g/m^3$ in Autumn. The mass of measured $PM_{1.0}$ shows 54.6% of $PM_{2.5}$ which is similar to those of Beijing and Lanzhou, China. The highest portion of Chemical composition is $SO{_4}^{2-}$ marking 41.0%, 31.8% by organics, 13.5% by $NH_4{^+}$, 12.8% by $NO_3{^-}$ and 1% by $Cl^-$. In every seasons, except winter, $SO{_4}^{2-}$ remarks the highest level, organic components take place the highest in winter time. The size-distribution of $PM_{1.0}$ components scattered at accumulation mode of 200 nm~800 nm which means the influence of primary emission is low. In case of air stream from the industrialized area of Sandung, Shanghai, China, the concentrations of such components were distributed a bit higher.

Clonazepam Release from Core-shell Type Nanoparticles In Vitro

  • Kim, Hyun-Jung;Jeong, Young-Il;Kim, Sung-Ho;Lee, Young-Moo;Cho, Chong-Su
    • Archives of Pharmacal Research
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    • 제20권4호
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    • pp.324-329
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    • 1997
  • AB-type amphiphilic copolymers (abbreviated as LE) composed of poly (L-leucine) (PLL) as the A component and poly (ethylene oxide) (PEO) as the B component were synthesized by the ring-opening polymerization of L-leucine N-carboxy-anhydride initiated by methoxy polyoxyethylene amine $(Me-PEO-NH_2)$ and characterized. Core-shell type nanoparticles were prepared by the diafiltration method. Particle size distribution obtained by dynamic light scattering was dependent on PLL composition and the size for LE-1, LE-2 and LE-3 was $369.6{\pm}267$, $523.4{\pm}410$ and $561.2{\pm}364 nm$, respectively. Shapes of the nanoparticies observed by transmission electron microscope (TEM) were almostly spherical. The critical micelle concentration (CMC) of the nanoparticles determined by a fluorescence probe technique was dependent on the composition of hydrophobic PLL, and the CMC for LE-1, LE-2 and LE-3 was $2.0{\times}10^{-6},1.7{\times}10^{-6}$ and $1.5{\times}10^{-6}(mol/l) $, respectively. Clonazepam release from core-shell type nanoparticles in vitro was dependent on PLL composition and drug loading content.

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벼 건답직파 재배에서 기비질소의 토층간 분포와 용탈 (Distribution and Leaching of Basal Nitrogen in Direct Seeding Rice on Dry Paddy)

  • 한상준;이호진
    • 한국작물학회지
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    • 제42권6호
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    • pp.752-758
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    • 1997
  • 본 실험은 건답직파재배에서 전체 시비량의 50%를 차지하는 기비의 양을 줄이므로 인해 나타나는 토양내 질소의 농도변화를 알아보기 위하여 기비의 시용량을 이앙재배의 일반적인 시비량인 70kg-N/10a에 대해 75%, 50%, 25%, 무시용구로 하여 각각의 토양 내의 암모니아태 질소, 질산태 질소의 처리 후 농도변화를 조사하였고 그 결과는 다음과 같았다. 1. 암모니아태 질소의 농도는 전체 시비량 140kg-N/ha의 50%를 기비로 시용한 처리구에 대해 75%, 50%, 25%, 0%의 수준으로 절비처리한 토양에서 기비의 시용량이 적을수록, 토심이 깊어질수록 낮아졌으며, 기비처리 후 27일이 경과한 후로는 모든 처리구에서 처리 전과 비슷한 양의 농도를 보였다. 2. 질산태 질소의 농도 또한 기비시용량이 적을수록, 토심이 깊어질수록 낮았다. 기비처리 후 27일 후에는 기비를 70kg-N/ha의 수준으로 시비한 토양에서는 기비를 주지 않은 토양보다 5배 정도 많은 양이 잔존하고 있었으며, 나머지 처리구는 처리 전의 농도보다는 다소 높았지만 처리 후 초기보다는 많은 양이 감소하였다. 3. Pot 실험을 통해 담수상태에서의 질산태 질소의 용탈량을 조사한 결과 시비 14일 후에는 질소시비량에 관계없이 거의 모든 양이 용탈되었다. (감수심≒20mm /일) 4. 40∼50cm 깊이의 토양에 존재하는 암모니아의 농도와 질산의 농도를 누적시킨 결과를 통해 시비처리한 비료의 대부분은 중력수와 함께 계속해서 하향이동하는 것으로 보여지며 이들은 대부분 그대로 용탈된 것으로 보여진다.

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혼합모델을 이용한 새만금호 저층수 내 영양염의 공급과 제거에 관한 연구 (Estimation of Addition and Removal Processes of Nutrients from Bottom Water in the Saemangeum Salt-Water Lake by Using Mixing Model)

  • 정용훈;김창식;양재삼
    • 한국해양환경ㆍ에너지학회지
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    • 제17권4호
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    • pp.306-317
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    • 2014
  • 이 연구는 새만금 방조제가 조성된 이후 새만금호에서 영양염($NO_3$-N, $NO_2$-N, $NH_4$-N, TN, $PO_4$-P, TP, DISi)의 거동을 이해하기 위해 수행되었으며, 특히 2008년~2010년까지 새만금호의 표층과 저층에서 매월 관측된 환경인자(수온, 염분, 용존산소, 부유물질, Chl-a)와 상호 비교하여 특징을 논의하였다. 표층에서 $NO_3$-N, TP, $PO_4$-P, DISi는 제거현상을 보였고, $NO_2$-N, $NH_4$-N, Chl-a는 첨가현상을 보였다. 저층에서는 $NO_3$-N을 제외하고 모든 항목들이 첨가현상을 보였다. 따라서 $NO_3$-N을 제외한 나머지 영양염들은 저층수에서 지속적으로 공급되고 있음을 의미한다. 혼합모델을 이용하여 저층수에서 영양염의 거동을 분석한 결과, 생지화학적 과정에 의해 $NO_3$-N이 주로 하계에 감소되는 것으로 나타났고, $NH_4$-N과 $PO_4$-P는 하계에 증가되는 것으로 나타났다. 특히 $PO_4$-P와 $NH_4$-N의 증가는 강하구 쪽에서 더욱 뚜렷하게 나타났고, 표층과 저층 사이의 DO의 농도 차이와 강한 양의 상관성을 보였다. DISi도 저층수에서 지속적으로 공급되고 있음을 보였으나, $NH_4$-N과 $PO_4$-P와는 다르게 하계뿐만 아니라 춘계에도 공급되는 경향을 보였다. 또한 $NH_4$-N과 $PO_4$-P가 방조제 쪽보다 하구 쪽에서 더 많이 공급되는 것과는 다르게 DISi는 양쪽에서 유사하게 공급됨을 보였다. 이러한 DISi의 특징은 퇴적물로부터 분자확산에 의한 flux를 계산한 결과, 저층수에서 공급되는 영양염은 퇴적물로부터 용출되는 것 이외에 SGD 등 다른 유입기원이 있는 것을 암시한다.

화순너릿재 터널내의 대기오염성분에 관한 조사연구 (A Study on the Air Pollution Component in Hwasoon Nulitjae Tunnel)

  • 신대윤;송금섭;김정규;송연호;임만택
    • 한국환경보건학회지
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    • 제19권3호
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    • pp.52-57
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    • 1993
  • This study was carried out to investigate the air pollution in Hwasoon Nulitjae tunnel for two months, from August 1992 to September 1992. The total suspended particles were collected by high volume air sampler at inside and outside of Hwasoon Nulitjae tunnel, of which major water soluble component and heavy metalic element were analyzed. Size distribution and respirable mass fraction of aerosol at inside were measured by filters on nine stages Andersen air sampler. The average concentration of TSP at inside was 657.57 $\mu$g/m$^3$, which appeared about 9.2 times as high as that of 71.47 $\mu$g/m$^3$ at outside. The decrease effect caused by using new tunnel was 31.2%. As a result of correlation analysis between concentration of TSP at inside of Hwasoon Nulitjae tunnel and that at outside, correlation coefficient was 0.713. The average concentrations of SO$_4^{2-}$ , NO$_3^-$, CI$^-$ were 43.02 $\mu$g/m$^3$, 19.86 $\mu$g/m$^3$, 4.96 $\mu$g/m$^3$, those of NH$_4^+$, Na$^+$, K$^+$ 1.42 $\mu$g/m$^3$, 4.45 $\mu$g/m$^3$, 2.89 $\mu$g/m$^3$ and those of Ca$^{2+}$, Mg$^{2+}$, Pb$^{2+}$ 3.92 $\mu$g/m$^3$, 2.27 $\mu$g/m$^3$. 1.52 $\mu$g/m$^3$, respectively. It was estimated that mass fraction rate of respirable particle at inside was about 84.54% of aerosol. The average concentration of suspended particle to be collected by Andersen sampler was 478.90 $\mu$g/m$^3$, this was about 72.8% of that by high volume air sampler.

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NH3/H2O 혼합냉매를 사용한 압축/흡수식 히트펌프 시스템의 흡수기 최적화에 관한 실험적 연구 (Experimental Study on Optimization of Absorber Configuration in Compression/Absorption Heat Pump with NH3/H2O Mixture)

  • 김지영;김민성;백영진;박성룡;장기창;나호상;김용찬
    • 대한기계학회논문집B
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    • 제35권3호
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    • pp.229-235
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    • 2011
  • 본 연구는 암모니아/물 혼합냉매를 이용한 압축/흡수식하이브리드 히트펌프 개발에 관한 연구이다. 히트펌프 사이클은 증기압축식과흡수식을 혼합한 개념으로 이단압축기, 흡수기, 재생기, 과열냉각기, 용액열교환기(SHX), 용액펌프, 정류기, 기액분리기 등으로 구성되어 있다. 압축/흡수식 히트펌프는 상변화 열교환과정에서 높은 온도구배를 이용하여 $90^{\circ}C$ 이상의 고온을 제조하기 위한 목적으로 고안되었다. 특히 흡수기에서의 응축과정은 비열변화로 인하여 온도변화에 비선형성이 뚜렷한데, 시스템 성능 최적화를 위하여는 흡수기의 설계가 중요하다. 본 연구에서는 다수의 판형열교환기로 흡수기를 구성하였는데 열교환기의 용량, 형태, 배치에 따른 성능특성을 실험적으로 관찰하였다.

DEA 용액에서 암모니아를 함유한 염화니켈 수용액으로부터 니켈 분말의 입경 제어 (Size Control of Nickel Powders from Nickel Chloride Solution Containing Ammonia in DEA Solutions)

  • 최은영;이윤복;윤석영;김광호;김진천;임영목;김형국;김양도
    • 한국분말재료학회지
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    • 제12권3호
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    • pp.201-207
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    • 2005
  • Nickel powders were synthesized by the hydrazine reduction of nickel chloride solution containing ammonia in DEA solutions. The size distribution of nickel powders were investigated as a function of ammonia concentration, hydrazine concentration and the mixed composition ratio of diethanolammine (DEA) and triethanolammine (TEA). Nickel powders with the size in submicron range were obtained at $185^{\circ}C$ for 45 minutes by hydrazine reduction of nickel chloride solution in DEA solutions. The hydrazine concentrations showed significant effects on the particle size and shape distribution of nickel powders under $NH_3/Ni^{2+}$ molar ratio of 2.0 condition. As the mixed volume ratio of TEA and DEA increased, nickel powders with relatively larger particle size and low agglomeration were obtained. Nickel powders with particle size in the ranged from 0.4 to $0.9\;{\mu}m$ were obtained at the 50 $vol.%$ of TEA.

Seasonal Variation of PM2.5 and Its Major Ionic Components in an Urban Monitoring Site

  • Ghosh, Samik;Shon, Zang-Ho;Kim, Ki-Hyun;Song, Sang-Keun;Jung, Kweon;Kim, Nam-Jin
    • Asian Journal of Atmospheric Environment
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    • 제6권1호
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    • pp.23-32
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    • 2012
  • The ionic composition of $PM_{2.5}$ samples was investigated by their datasets of cationic ($Na^+$, $NH_4^+$, $K^+$, $Mg^{2+}$, and $Ca^{2+}$) and anionic components ($Cl^-$, $NO_3^-$, and $SO_4^{2-}$) along with relevant environmental parameters collected from an urban monitoring site in Korea at hourly intervals in 2010. The mean (and SD) annual concentration of $PM_{2.5}$ was computed as 25.3 ${\mu}g\;m^{-3}$ with the wintertime maximum. In addition, sum concentrations (neq $m^{-3}$) of five cationic species (291) were slightly lower than 3 anionic species (308). Most cations exhibited the highest seasonal values in spring, while anions showed more diversified seasonal patterns. According to PCA, five major source categories were apparent with the relative dominance of secondary inorganic aerosols (SIA). The results of our study suggest consistently that the distribution of ionic constituents in an urban area is affected by the combined effects of both natural and anthropogenic processes.

새만금간척지 지역 대기 중 초미세먼지 (PM2.5) 오염 특성 평가 (Characteristics of Fine Particulate Matter (PM2.5) in the Atmosphere of Saemangum Reclaimed Land Area)

  • 송지한;김정수;홍성창;김진호
    • 한국농공학회논문집
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    • 제64권3호
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    • pp.25-32
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    • 2022
  • To understand the distribution characteristics of PM2.5 concentration in the Saemangeum Reclamation Area and nearby areas, three points of the background area, the occurrence area, and the affected area were selected and samples were collected for each season. The chemical composition was determined. As a result of analyzing the chemical composition contained in PM2.5, NO3- (7.2 ㎍/m3), SO42- (4.3 ㎍/m3), NH4+ (4.3 ㎍/m3), OC (2.5 ㎍/m3), Si (1.3 ㎍/m3) m3) and EC (0.5 ㎍/m3) seemed to be the main components, and NO3-, SO42-, NH4+, which are components that form secondary particles, occupied a large proportion. The composition ratio of PM2.5 was investigated in the order of ion component (56.8%) > Unknown (27.4%) > carbon component (11.8%) > heavy metal component (4.0%). During the PM2.5 high concentration case days, the ionic component accounted for 90.7% during atmospheric stagnation cases, whereas the chemical composition ratio was in the order of ionic component (51.7%) > heavy metal component (41.5%) > carbon component (6.8%) during yellow dust cases. It was found that the characteristic of PM2.5 in the Saemangeum reclaimed land and surrounding areas is mainly influenced by outside (domestic and overseas) throughout the year. Ion components accounted for the largest portion of PM2.5 components in this area, but there were few sources of SOx and NOx emission in the Seamangeum area, which are precursors for secondary particle formation. Therefore, it is judged that most of these are generated and influenced as a secondary reaction in the atmosphere from the outside.

대형 디젤엔진용 SCR 시스템의 암모니아 슬립 억제를 위한 인젝터의 형상 및 위치에 관한 수치적 연구 (Numerical Study on the Injector Shape and Location of Urea-SCR System of Heavy-duty Diesel Engine for Preventing $NH_3$ Slip)

  • 정수진;이상진;김우승;이춘범
    • 한국자동차공학회논문집
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    • 제14권1호
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    • pp.68-78
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    • 2006
  • In the past few years, considerable efforts have been directed towards the further development of Urea-SCR(selective catalytic reduction) technique for diesel-driven vehicle. Although urea possesses considerable advantages over Ammonia$(NH_3)$ in terms of toxicity and handling, its necessary decomposition into Ammonia and carbon dioxide complicates the DeNOx process. Moreover, a mobile SCR system has only a short distance between engine exhaust and the catalyst entrance. Hence, this leads to not enough residence times of urea, and therefore evaporation and thermolysis cannot be completed at the catalyst entrance. This may cause high secondary emissions of Ammonia and isocyanic acid from the reducing agent and also leads to the fact that a considerable section of the catalyst may be misused for the purely thermal steps of water evaporation and thermolysis of urea. Hence the key factor to implementation of SCR technology on automobile is fast thermolysis, good mixing of Ammonia and gas, and reducing Ammonia slip. In this context, this study performs three-dimensional numerical simulation of urea injection of heavy-duty diesel engine under various injection pressure, injector locations and number of injector hole. This study employs Eulerian-Lagrangian approach to consider break-up, evaporation and heat and mass-transfer between droplet and exhaust gas with considering thermolysis and the turbulence dispersion effect of droplet. The SCR-monolith brick has been treated as porous medium. The effect of location and number of hole of urea injector on the uniformity of Ammonia concentration distribution and the amount of water at the entrance of SCR-monolith has been examined in detail under various injection pressures. The present results show useful guidelines for the optimum design of urea injector for reducing Ammonia slip and improving DeNOx performance.