• 제목/요약/키워드: isotope fractionation

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안정동위원소 조성을 이용한 TCE 오염원 규명방법 소개 (A Review on Identification Methods for TCE Contamination Sources using Stable Isotope Compositions)

  • 박영윤;이진용;나원종;김락현;최필성;전성천
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권3호
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    • pp.1-10
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    • 2013
  • This study was performed to summarize application of ${\delta}^{13}C$, ${\delta}^{37}Cl$ and ${\delta}D$ of trichloroethylene (TCE) to studies on environmental forensic field regarding identification of TCE sources and evaluation of contribution of TCE to groundwater using data collected from literatures. ${\delta}^{13}C$, ${\delta}^{37}Cl$ and ${\delta}D$ of TCE give some information regarding sources of TCE because they show specific value according to manufacturing method. Also, TCE do not show a significant isotopic fractionation owing to adsorption and dilution. The isotopic fractionation mainly occurs by biodegradation. In addition, isotopic fractionation factor for TCE is different according to a kind of microorganism participated in biodegradation. However, the isotopic data of TCE have to be applied with chemical compositions of TCE and other hydrogeologic factors because isotopic fractionation of TCE is influenced by various factors.

Variation Pattern of ${\delta}^{13}C_{DIC}$ of the Odaecheon Stream Water

  • Shin, Woo-Jin;Chung, Gong-Soo
    • 한국지구과학회:학술대회논문집
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    • 한국지구과학회 2005년도 춘계학술발표회 논문집
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    • pp.115-125
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    • 2005
  • Carbon isotopic composition of a stream (Odaecheon Stream) monitored over 7 months from July 2004 to January 2005 in Gangweon Province ranges from -9.24 to -4.69‰. Strong negative correlation between ${\delta}^{13}C_{DIC}$ and water temperature suggests that temperature is a dominant factor controlling ${\delta}^{13}C_{DIC}$ in the Odaecheon Stream. The variation pattern of ${\delta}^{13}C_{DIC}$ was thought to be caused by fractionation of C isotope between stream water and atmosphere and more fractionation at reduced temperature. More fractionation of C isotope between stream water and atmosphere at reduced temperature resulted in increase of ${\delta}^{13}C_{DIC}$ of stream water in winter compared to summer. Photosynthesis and respiration of aqueous biota seem to affect little in ${\delta}^{13}C_{DIC}$ as indicated by little variation of dissolved oxygen and reverse variation pattern of Eh in the stream and scarce aqueous biota in stream water. pH seems to be controlled by $CO_2{2}$ exchange between stream water and atmosphere. During summer more $CO_2{2}$ exchange between stream water and atmosphere resulted in decrease in pH value.

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안정동위원소를 이용한 하천에서의 질소오염원 기여율 정량화: Bayesian 혼합모델의 적용 (Quantifying nitrogen source contribution ratios using stable isotope method: Application of Bayesian mixing model)

  • 남태희;류희성;강태우;한영운;김지현;이경희;황순홍;김경현
    • 한국물환경학회지
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    • 제35권6호
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    • pp.510-519
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    • 2019
  • The 'Stable Isotope Analysis in R' (SIAR), one of the Bayesian mixing models for stable isotopes, has been proven to be useful for source apportionment of nitrates in rivers. In this study, the contribution ratios of nitrate sources were quantified by using the SIAR based on nitrogen and oxygen stable isotope measurements in the Yeongsan River. From the measurements, it was found that the values of δ15N-NO3 and δ18O-NO3 ranged from -8.2 ‰ to +13.4 ‰ and from +2.2 ‰ to +9.8 ‰, respectively. We further analyzed the contribution ratios of the five nitrate sources by using the SIAR. From the modeling results, the main nitrate source was found to be soil N (29.3 %), followed by sewage (26.7 %), manure (19.6 %), chemical fertilizer (17.9 %) and precipitation (6.3 %). From the results, it was found that the anthropogenic sources, i.e., sewage, manure and chemical fertilizer contribute 64.2% of the total nitrate inflow from the watershed. Due to the significant correlation of δ15N-NO3 and lnNO3- in this study, the fractionation factors reflecting the biogeochemical processes of stable isotope ratios could be directly obtained. This may make the contribution ratios obtained in this study more precise. The fractionation factors were identified as +3.64 ± 0.91 ‰ for δ15N-NO3 (p<0.01) and -5.67 ± 1.73 ‰ for δ18O-NO3(p<0.01), respectively, and were applied in using the SIAR. The study showed that the stable isotope method using the SIAR could be applied to quantitatively calculate the contribution ratios of nitrate sources in the Yeongsan River.

Carbon Stable Isotope Ratios of Phytoplankton and Benthic Diatoms in Lake Katanuma with Reference to Those of Other Lakes

  • Kikuchi, Eisuke;Takagi, Shigeto;Shikano, Shuichi;Hideyuki, Doi
    • 생태와환경
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    • 제38권spc호
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    • pp.8-11
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    • 2005
  • Carbon stable isotope ratios of producers varied in lake ecosystems. In tile present study, we tried to estimate the seasonal variations of carbon isotope ratios of phytoplankton and benthic diatoms in a strongly acidic lake ecosystem. Lake Katanuma is a volcanic, strongly acidic lake (average pH of 2.2), located in Miyagi, Japan. Only two algal species dominate in Lake Katanuma; Pinnularia acidojaponica as a benthic diatom, and Chlamydomonas acidophila as a green alga. Carbon isotope values of P. acidojaponica varied seasonally, while those of particulate organic matter, which were mainly composed of C. acidophila remained fairly stable. The differences suggested that $CO_2$ gas was more frequently limited for P. acidojaponica than C. acidophila, since high density patches of benthic diatoms were sometimes observed on the lake sediment. Generally, carbon concentration mechanisms (CCMs)of microalgae can fix bicarbonate in lakes, and affect the carbon isotope values of microalgae. While, in Lake Katanuma, CCMs of the microalgae may scarcely function because of high $CO_2$ gas concentration and low pH. This is the reason for low seasonal amplitude of carbon isotope values of phytoplankton relative to those in other lakes.

미국 위시컨신주의 올프리버 저반에 대한 산소동위원소 연구 (Oxygen Isotope Study on the Wolf River Batholith, Wisconsin in U.S.A.)

  • Sun-Joon Kim;Yuch-Ning Shieh
    • 암석학회지
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    • 제4권2호
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    • pp.124-133
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    • 1995
  • 미국 위스콘신주의 울프리버 저반의 산소동위원소의 조성을 분석한 결과, 분화계열에 속하는 심성암들 간의 산소동위원소 조성은 거의 유사한 경향을 보이고 있으며, 미분화계열에 속하는 신성암체 간의 조성도 거의 유사한 경향을 보였다. 이는 고온에서의 극히 미약한 동위원소 분별작용을 보여주는 것이다. 주변 모암인 피노키안 심성암체의 산소동위원소 조성이 울프리버 저반보다 약 1-2 퍼밀이 높기 때문에 울프리버 저반의 근원 암으로 볼 수는 없으나, 울프리버 저반보다 약간 낮은 산소동위원소 조성을 갖는 근원 마그마가 존배하였다면, 이 마그마에 의한 주변 모암의 동화작용에 의해서 울프리버 저반의 산소동위원소조성의 생성이 가능한 것으로 판단된다.

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Oxygen isotope study on the hydrothermal alteration in the Wolf River Batholith, Wisconsin in U.S.A

  • Kim, Sun-Joon
    • 암석학회지
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    • 제2권1호
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    • pp.19-31
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    • 1993
  • Oxygen isotope compositions of whole rock and/or mineral separates (quartz and feldspar) have been determined for the granitic and related rocks from the Wolf River Batholith, Wisconsin. Hydrothermal alteration resulting in the decrease of ${\Delta}_{Q-F}$/ values was obaserved locally throughout the batholith. Feldspars of different colors (pink, gray and red) were separated whenever feasible and analyzed. Most red feldspars (An$_{10-30}$/) show the highest and constant ${\delta}^18O$/ values (9.3~10.0 permil) suggesting nearly complete isotope exchange with hydrothermal fluid. Based on ${\delta}^18O$/ values and the alteration temperatures (260~$350^{\circ}C$) estimated from fluid inclusion study, ${\delta}^18O$/ of fluid is calculated to be $5.0{\pm}1.4$ permil. Phanerozoic sedimentary formation water in Wisconsin is most likely the source of the fluid.

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가수된 산화 망간(Ⅳ)에 의한 리튬 동위원소의 크로마토그래피적 분리 (Chromatographic Separation of Lithum Isotopes by Hydrous Managanese(Ⅳ) Oxide)

  • 김동원
    • 대한화학회지
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    • 제45권3호
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    • pp.219-222
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    • 2001
  • 용리 크로마토그래피를 사용하여 가수된 산화 망간(Ⅳ)이온교환체로 화학적 이온교환을 통하여, 리튬 동위원소를 분리하는 연구를 하였다. 산화 망간(Ⅳ)이온교환체의 이온교환 용량은 0.5meq/g이었다. 무거운 리튬 동위원소는 용액상에, 그리고 가벼운 동위원소는 이온교환 수지상에 농축되었다. 분리인자는, Glueckauf의 방법으로 용리곡선과 동위원서 분석 값들로부터 구하였다. $^6Li^+$-$^7Li^+$ 동위원소쌍의 분별로부터 얻은 분리인자의 값은 1.018이었다.

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화강암류의 성인 해석에 대한 마그네슘 동위원소 자료의 활용 (Use of Magnesium Stable Isotope Signatures for the Petrogenetic Interpretation of Granitic Rocks)

  • 정창식;류종식
    • 암석학회지
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    • 제23권3호
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    • pp.221-227
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    • 2014
  • 최근 분석법의 발달에 따라 금속 안정동위원소의 지질학적인 활용이 두드러지고 있다. 이 논평에서는 Mg 동위원소 분석 자료를 화강암류의 성인 해석에 활용하는 원리와 분석 방법, 적용의 예를 소개한다. 먼저 Mg 동위원소가 분별되는 원리를 설명하고 다검출기 유도결합 플라즈마 질량분석기를 활용한 분석 방법을 기술하며 마지막으로 북미 서해안과 호주, 중국의 I형, S형, A형 화강암에 대한 최근의 적용 사례를 살펴볼 것이다.