• 제목/요약/키워드: Temporal variation of ions

검색결과 12건 처리시간 0.023초

산성비 모델을 이용한 시간별 강우성분 예측 (Prediction of Temporal Variation of Son Concentrations in Rainwater)

  • 김순태;홍민선;문수호;최종인
    • 한국대기환경학회지
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    • 제19권2호
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    • pp.191-204
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    • 2003
  • A one dimensional time dependent acid rain model considering size distribution of aerosols and hydrometeors is developed to predict observed chemical and physical properties of precipitation. Temporal variations of anions and cations observed are predicted fairly well with acid rain model simulations. It is found that aerosol depletion rates are highly dependent on aerosol sizes under the assumption of Marshall - Palmer raindrop size distribution. Also, the aerosol depletion during the initial rain event largely influences on ion concentrations in rainwaters.

Spatial distribution and temporal variation of hydrogeochemistry in coastal lagoons and groundwater on the eastern area of korea

  • Chanyoung Jeong;Soo Min Song;Woo-Hyun Jeon;Hee Sun Moon
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.247-247
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    • 2023
  • Coastal lagoons play a crucial role in water exchange, water quality, and biodiversity. It is essential to monitor and understand the dynamics of hydrogeochemistry in lagoon water and its groundwater to preserve and sustainably manage the groundwater-dependent ecosystems like coastal lagoons. This study investigated the spatial and temporal hydrogeochemical characteristics of coastal lagoon (Songjiho) and groundwater on the east coast of Korea. The concentrations of major ions, water isotopes, and nutrients (nitrogen and dissolved organic carbon) in lagoon water and groundwater were periodically monitored for one year. The study revealed that major ions and total dissolved solids (TDS) concentration were higher at deeper depths of aquifers and closer to the coastal area. The hydrogeochemical characteristics of coastal lagoon and groundwater chemistry were classified into two types, Ca-Mg-HCO3 and Na-Cl, based on their spatial location from inland to coastal area. Moreover, the hydrogeochemical characteristics of coastal lagoons and groundwater varied significantly depending on the season. During the wet season, the increased precipitation and evaporation lead to changes in water chemistry. As a result, the total organic carbon (TOC) of coastal lagoons increases during this season, likely due to increased runoff by rainfall whereas the variation of chemical compositions in the lagoon and groundwater were not significant because there is reduced precipitation, resulting in stable water levels and during the dry season. The study emphasizes the impact of spatial distribution and seasonal changes in precipitation, evaporation, and river discharge on the hydrogeochemical characteristics of the coastal aquifer and lagoon system. Understanding these impacts is crucial for managing and protecting coastal lagoons and groundwater resources.

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제주도 교래휴양림 지역의 대기질의 음이온 및 양이온의 분포와 변이성 (Variation and Distribution of Anions and Cations in the Aerosols of Gyorae Forests in Jeju Island)

  • 신방식;임동호;이근광
    • 한국산학기술학회논문지
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    • 제19권7호
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    • pp.384-395
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    • 2018
  • 본 연구는 교래자연휴양림 지역을 A와 B 지역으로 나누어서 대기질의 음이온과 양이온수를 측정하여 일별 그 분포와 변이에 대한 연구가 목적이었다. 이온수 측정은 이온수 측정기로 2017년 6월 28일-7월 13일 사이에 실시하였다. A지역의 5개 지점의 전체 평균 음이온수는 $734.5ions/cm^3$, 양이온 수는 $463.3ions/cm^3$, 대기온도는 $25.51^{\circ}C$, 습도는 81.6%, 풍속은 0.28 m/sec, 해발 고도는 455.7 m 이었다. B지역의 4개 지역 전체 측정한 평균 음이온수는 $780ions/cm^3$, 양이온수는 $379.55ions/cm^3$, 대기온도는 $27.6^{\circ}C$, 습도는 80%, 풍속은 0.1 m/sec, 측정지역의 해발고도는 477 m 이었다. 교래지역 A와 B전체의 음이온수의 평균치는 $757.5ions/cm^3$, 양이온수의 평균치는 $419.41ions/cm^3$이었다. 이온의수는 시간별로 측정별로 변이성이 높았다. 음이온수가 양이온수보다 평균 $275.73ions/cm^3$ 만큼 더 높게 유지되었다. A와 B점의 음이온과 양이온수의 측정치를 Pearson 분산분석에서는 음이온 측정지점별 및 측정지점 내의 분석이 유의하게 나타났으며(p<.001), 양이온의 측정지점별 및 측정지점 내의 분석에서도 유의하게 나타났다(p<.001). 음이온과 양이온수의 지역별 평균측정치 간의 상관관계분석에 서 r=.386으로 유의한 정적인 상관관계가 있었다(p<.001). 결론적으로 상기 음이온과 양이온 함량의 시간적 분포와 변이를 나타낸 결과는 교래자연휴양림의 대기질의 성분과 변화에 대한 기초정보를 제공하고 있다고 본다.

제주지역의 대기질 중의 음이온 및 양이온의 분포와 변이성 (Daily Variation and Distribution of Anions and Cations in the Aerosols of Jeju Island)

  • 신방식;이형환;이근광
    • 한국자연치유학회지
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    • 제7권1호
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    • pp.10-19
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    • 2018
  • 본 연구는 제주의 휴양림 지역을 중심으로 16개 지점을 정해서 일간 별에 따른 대기질 중의 음이온과 양이온수를 측정하여 그 분포와 변이에 대한 연구가 목적이었다. 측정 평균수의 범위는 제일 낮은 제주시 4449.35 ions/cm3, 제일 높은 천지연폭포는 3471.25 ions/cm3 의 범주로 나타났다. 순서로 보면, 제일 낮은 제주시< 함덕 < 1100 m < 농장 < 교래A < 사려니 < 절물 < 교래B < 거문오름 < 제주시< 한라 숲길 < 한라산 수목원 < 성판악 < 동백산 < 정방 < 원양< 천지연 순이었다. 고도순으로 측정치의 음이온 본 연구는 제주의 휴양림 지역을 중심으로 16개 지점을 정해서 일간 별에 따른 대기질 중의 음이온과 양이온수를 측정하여 그 분포와 변이에 대한 연구가 목적이었다. 측정 평균수의 범위는 제일 낮은 제주시 4449.35 ions/cm3, 제일 높은 천지연폭포는 3471.25 ions/cm3의 범주로 나타났다. 순서로 보면, 제일 낮은 제주시< 함덕 < 1100 m < 농장 < 교래A < 사려니 < 절물 < 교래B < 거문오름 < 제주시< 한라 숲길 < 한라산 수목원 < 성판악 < 동백산 < 정방 < 원양 < 천지연 순이었다. 고도순으로 측정치의 음이온수치 함량의 차이를 일정하게 차이를 보이지는 않았으나, 통계적으로는 유의한 차이(p<.001)가 있었다. 양이온 평균수가 낮은 천지연폭포는 90 ions/cm3, 제일 높게 나타난 한라산 수목원의 수는 729.8 ions/cm3이었으며, 그 차이는 729.8 ions/cm3로 높게 나타났다. 높은 순서로 보면 제일 낮은 천지연 < 1100 m < 동백산 < 제주시 < 사려니 < 원양 < 성판악 < 함덕 < 정방 < 교래B < 절물 < 농장 < 교래A < 한라산 숲길 < 거문오름 < 한라수목원 순으로 측정되었다. 음양이온 모두 지형적으로 낮은 지대와 높은 지역은 함량이 낮게 측정되었다. 음이온과 양이온 및 고도의 분산분석에서 측정지역 간의 함량차이는 모두 유의성이 있었고, 또한 음이온과 양이온의 함량차이도 유의성이 있었으며, 고도와의 차이도 모두 유의성이 있었다. 상기의 음이온, 양이온 함량과 고도와의 요인간의 상관관계분석에서도 정적인 상관관계가 유의하게 나타났다(r=.396, p<001). 결론적으로 본 연구는 제주도 지역의 곶자왈 대기질 중의 이온의 분포에 대한 기초 연구로서 삼림욕을 통한 건강관리에 중요한 정보를 제공하고 있다. 수치함량의 차이를 일정하게 차이를 보이지는 않았으나, 통계적으로는 유의한 차이(p<.001)가 있었다. 양이온 평균수가 낮은 천지연폭포는 90 ions/cm3, 제일 높게 나타난 한라산 수목원의 수는 729.8 ions/cm3 이었으며, 그 차이는 729.8 ions/cm3 로 높게 나타났다. 높은 순서로 보면 제일 낮은 천지연 < 1100 m < 동백산 < 제주시 < 사려니 < 원양 < 성판악 < 함덕 < 정방 < 교래B < 절물 < 농장 < 교래A < 한라산 숲길 < 거문오름 < 한라수목원 순으로 측정되었다. 음양이온 모두 지형적으로 낮은 지대와 높은 지역은 함량이 낮게 측정되었다. 음이온과 양이온 및 고도의 분산분석에서 측정지역 간의 함량차이는 모두 유의성이 있었고, 또한 음이온과 양이온의 함량 차이도 유의성이 있었으며, 고도와의 차이도 모두 유의성이 있었다. 상기의 음이온, 양이온 함량과 고도와의 요인간의 상관관계분석에서도 정적인 상관관계가 유의하게 나타났다(r=.396, p<001). 결론적으로 본 연구는 제주도 지역의 곶자왈 대기질 중의 이온의 분포에 대한 기초 연구로서 삼림욕을 통한 건강관리에 중요한 정보를 제공하고 있다.

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Wet Deposition Fluxes of Ions Contributed by Cyclone-, Stationary Front- and Typhoon-associated Rains at the Southwestern Japan Coast

  • Toyonaga, Satoshi;Zhang, Daizhou
    • Asian Journal of Atmospheric Environment
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    • 제10권2호
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    • pp.57-66
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    • 2016
  • Wet deposition fluxes of ions at a coastal site in southwestern Japan in the period 1996-2003 were investigated to quantify the respective contributions of cyclone-, stationary front- and typhoon-associated rains. On average, the deposition fluxes of terrigenous-origin ions, nss-$SO_4{^{2-}}$, $NO_3{^-}$, $NH_4{^+}$ and nss-$Ca^{2+}$ were $37.6{\pm}7.3$, $16.3{\pm}4.2$, $19.0{\pm}3.4$ and $9.6{\pm}4.8meq\;m^{-2}yr^{-1}$, and those of $Na^+$ and $Cl^-$, the major ions in sea water, were $97.0{\pm}38.2$ and $115.2{\pm}48.2meq\;m^{-2}yr^{-1}$, respectively. Cyclone-associated rain constituted more than 50% of the fluxes of the terrigenous ions in almost all years. Stationary front-associated rain also contributed significantly, although the contribution was lower than the contribution by Cyclone-associated rain in almost all years. In particular, the wet deposition flux of nitrogen compounds of $NO_3{^-}$ and $NH_4{^+}$, which are important nutrients for micro-bioactivities in sea surface water, was dominated by cyclone-associated rain. Due to the extreme abundance of $Na^+$ and $Cl^-$ in the rainwater of typhoons, the fluxes of $Na^+$ and $Cl^-$ were contributed substantially by typhoons in years with typhoons' passage although cyclones were still the largest contributor to the fluxes. These results indicate the dominance of cyclones in the wet deposition to the East China Sea areas and the necessity to take rain types into account for a more accurate elucidation of the temporal and spatial variation of the wet deposition.

Proton Transfer Reactions and Ion-Molecule Reactions of Ionized XCH2CH2Y (X and Y = OH or NH2)

  • Choi, Sung-Seen;So, Hun-Young
    • Bulletin of the Korean Chemical Society
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    • 제27권4호
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    • pp.539-544
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    • 2006
  • Proton transfer reactions and ion-molecule reactions of bifunctional ethanes of $H_2NCH_2CH_2NH_2$, $H_2NCH_2CH_2OH$, and $HOCH_2CH_2OH$ were studied using Fourier transform mass spectrometry (FTMS). The rate constants for proton transfer reactions between the fragment ions and neutral molecules were obtained from the temporal variation of the ion abundances. The rate constants were consistent with the heats of reaction. The fastest proton transfer reactions were the reactions of $CH_2N^+$, $CHO^+$, and $CH_3O^+$ for $H_2NCH_2CH_2NH_2$, $H_2NCH_2CH_2OH$, and $HOCH_2CH_2OH$, respectively. The $[M+13]^+$ ion was formed by the ion-molecule reaction between $H_2C=NH_2 ^+$ or $H_2C=OH^+$ and the neutral molecule. The major product ions generated from the ion-molecule reactions between the protonated molecule and neutral molecule were $[2M+H]^+$, $[M+27]^+$, and $[M+15]^+$.

지구통계 기법을 활용한 울진 지역 천부 지하수의 수질 및 수리지구화학 특성 해석 (Geostatistical Interpretation of Water Quality and Hydrogeochemistry of shallow Groundwater in the Uljin Area, Korea)

  • 김남진;윤성택;김형수;정경문;김규범
    • 자원환경지질
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    • 제34권2호
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    • pp.175-192
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    • 2001
  • 동해안 울진 지역 천부 지하수의 수리지구화학 자료에 대하여 지구통계 분석(이원배치 분산 분석, 군집 분석, 요인 분석)을 수행함으로써, 수질 자료와 오염 특성의 시간적.공간적 변화 양상을 규명하고 대수층에서 일어나는 주요 반응을 고찰하였다. 이원배치 분산 분석 결과, 광역적 수질 특성은 8개 수계분지를 따라 유의한 공간적 변화를 보여주지 않았으나, Ca, HCO$_3$,SO$_4$등 일부 이온종은 수계분지별로 의미 있는 변화를 나타내었다. 시료 채취시기에 따른 계절 변화는 SO$_4$를 제외하고는 인지되지 않았다. 그러나 군집 분석 결과, 수리지구화학 특성의 변화는 해안으로부터의 거리에 따라 아주 잘 설명될 수 있음을 지시하였다. 요인 분석 결과, 연구 지역 천부 지하수의 수리지구화학 특성은 다양한 요인에 의해 지배됨을 확인하였다. 중요 순서로 그 요인을 나열하면, 1) 물-암석 반응(주로 탄산염 광물의 용해), 2) 바다에서 기원한 해염의 혼입, 3) 비료와 각종 농화학 약품에 의한 오염으로 밝혀졌다.

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부산지역 강우의 화학적 특성 I. pH 및 주요이온의 시ㆍ공간적 변화 (Chemical Characteristics of Precipitation in Pusan I. Temporal and spatial variation of pH and major ions)

  • 전은주;양한섭;옥곤;김영섭
    • 한국환경과학회지
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    • 제7권5호
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    • pp.707-716
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    • 1998
  • The chemical characteristics of precipitation was investigated in Pusan area. Samples were collected from January to November in 1996 at 4 sites, and analyzed pH, major soluble ionic components(C $l^{[-10]}$ , N $O_3$$^{[-10]}$ , S $O_4$$^{2-}$, N $a^{+}$, $K^{+}$, N $H_4$$^{+}$, $Mg^{2+}$, $Ca^{2+}$). The order of anion and cation concentrations for the initial precipitation were C $l^{[-10]}$ > S $O_4$$^{2-}$ > N $O_3$$^{[-10]}$ , and $Ca^{2+}$ > N $a^{+}$ > N $H_4$$^{+}$$Mg^{2+}$$K^{+}$, respectively. At coastal sites(P1 and P2) C $l^{[-10]}$ and N $a^{+}$ of maritime sources (seasalt) were high, but at inland sites(P3 and P4) nss-C $a^{2+}$ and nss-S $O_4$$^{2-}$ were high. Calcium ion for the initial precipitation showed high value of enrichement factor(EF) relative to seawater composition. The contribution of seasalt to the composition of precipitation was higher at bite P1 (53.5%) than those of the other sites. Throughout the year the concentrations of major ions for the initial precipitation were low in the heavy rain season. The mean pH for the initial precipitation was 5.4 and showed the negative relationship with the precipitaion amount. The S $O_4$$^{2-}$ and N $O_3$$^{[-10]}$ do not play an important role in rain acidification due to the high(97%) neutralizing effect of amonia and calcium species.and calcium species.

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한반도의 황사 관측현황 및 배경지역 미세먼지의 화학적 조성에 관한 연구 (Study on the Yellow Sandy Dust Phenomena in Korean Peninsula and Chemical Compositions in Fine Particles at Background Sites of Korea.)

  • 백광욱;정진도
    • 환경위생공학
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    • 제19권4호
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    • pp.9-18
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    • 2004
  • In this study, the observation data for the yellow sandy dust phenomena from the year 1999 to 2003 at background sites in Korea were collected at Global Atmospheric Observatory at An-Myeon island and its temporal variation were analyzed. The chemical characteristics of the fine particles were also analyzed in order to evaluate sources of the yellow sandy dust particles. The results showed that the monthly average mass concentration of the fine particles was the highest in springtime and the lowest in summertime in general. The magnitude of its variation was also the highest in March in which the occurrence of yellow sandy dust was the most frequent and thus the number of samples was the largest, while the lowest in June through September. The yearly variation of ion components contributions to the total mass concentration of the fine particles was slowly decreasing, showing that $63\%$ in 1999, $59\%$ in 2000 and $56\%$ in 2003. The most prevalent ion components in the fine particles were found to be $NO_3$ and $SO_4^{2-}$, which are known to be source materials of acidic precipitation, and $NH_4^+$, a neutralizing material of the acid precipitation. Relative proportion of metal components in the fine particles was calculated as $14\%$ in average, and their concentrations are in an order of Fe > Al > Na > Ca > Zn > Pb > Cu > Mn > Ni > Cd > Cr > Co > U. The results indicated that main sources of the metals was soil-originated Fe, Al, Ca, and Mg, and the contribution of anthropogenic air Pollution-originated Zn, Pb, Cu, Mn were also high and keep slightly increasing. Statistical analysis showed that the chemical components could be divided into soil-originated group of Mg, Al, Ca, Fe, and Mn and air pollution-originated group of $NO_3$, Zn, Pb, and they are occupying more than $60\%$of all the components in the dusty sand. The results explain that An-Myeon island is more influenced by soil-originated source than ocean-originated one and also the influencing strength of anthropogenic poilution-originated source is less than $50\%$ of that of soil-originated sources. Compared to non-yellow sandy period, the yellow sandy dust period showed that the amounts of soil-originated $Mg^{2+}$ and $Ca^{2+}$ and ocean-originated $Na^+$ and $Cl^-$ were increased to more than double and the metals of Mg, Al, Ca, Fe were also highly increased, while micro metal components such as Pb, Cd, Zn, which have a tendency of concentrating in air, were either decreased or maintained at nearly constant level. In the period of yellow sandy dust, a strong positive correlation was observed between water soluble ions and between metals in terms of its concentration, respectively. Factor analysis showed that the first group being comprised of about $43\%$ of the total inorganic components was affected by soil and they are ions of $Na^+,\;Mg^{2+}\;and\;Ca^{2+}$ and metals of Na, Fe, Mn and Ni. The result also showed that the metals of Mg and Cr were classified as second group and they were also highly affected by soil sources.

제주도 지하수 내 바나듐의 산출 특성 (Occurrence of Vanadium in Groundwater of Jeju Island, Korea)

  • 현익현;윤성택;김호림;감상규
    • 한국환경과학회지
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    • 제25권11호
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    • pp.1563-1573
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    • 2016
  • The aim of this study was to evaluate the occurrence of vanadium in Jeju Island groundwater, focusing on the spatio-temporal patterns and geochemical controlling factors of vanadium. For this, we collected two sets of groundwater data: 1) concentrations of major constituents of 2,595 groundwater samples between 2008 and 2014 and 2) 258 groundwater samples between December 2006 and June 2008. The concentrations of groundwater vanadium were in the range of $0.2{\sim}71.0{\mu}g/L$ (average, $12.0{\mu}g/L$) and showed local enrichments without temporal/seasonal variation. This indicated that vanadium distribution was controlled by 1) the geochemical/mineralogical composition and dissolution processes of original materials (i.e., volcanic rock) and 2) the flow and chemical properties of groundwater. Vanadium concentration was significantly positively correlated with that of major ions ($Cl^-$, $Na^+$, and $K^+$) and trace metals (As, Cr, and Al), and with pH, but was negatively correlated with $NO_3-N$ concentration. The high concentrations of vanadium (>$15{\mu}g/L$) occurred in typically alkaline groundwater with high pH (${\geq}8.0$), indicating that a higher degree of water-rock interaction resulted in vanadium enrichment. Thus, higher concentrations of vanadium occurred in groundwater of $Na-Ca-HCO_3$, $Na-Mg-HCO_3$ and $Na-HCO_3$ types and were remarkably lower in groundwater of $Na-Ca-NO_3$(Cl) type that represented the influences from anthropogenic pollution.