• 제목/요약/키워드: cadmium complex

검색결과 103건 처리시간 0.049초

불꽃 및 비불꽃원자흡수분광법을 이용한 뇨중 카드뮴 분석 (Analysis of Cadmium in Urine using Flame and Flameless Atomic Absorption Spectrophotometry)

  • 함용규;이석기;전해홍;정창웅;손부순
    • 분석과학
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    • 제12권5호
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    • pp.355-359
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    • 1999
  • 뇨중 미량 카드뮴 분석에 흑연로 장치가 부착된 원자흡수분광광도계(GFAAS)를 사용하였다. 불꽃분광법에서 시료는 회화하여 Na-DDTC로 착물을 형성한 후 MIBK로 추출하였으며, 비불꽃분광법에서는 1% Triton X-100과 1% $HNO_3$으로 5배 희석시킨 후 $Pd(NO_3)_2$를 매트릭스 개선제로 농도를 변화시키면서 회화 온도 $450-750^{\circ}C$에서 pyrocoated 흑연 튜브를 사용하여 분석하였다. 그 결과 불꽃분광법보다는 비불꽃분광법이 전처리가 간단하고 재현성있게 나타났으며, 비불꽃분광법을 이용한 경우 $Pd(NO_3)_2$ 100 mg/L을 사용하여 회화온도 $550^{\circ}C$에서 분석시 가장 높은 흡광도를 나타냈다. 본 분석법을 표준뇨인 Lononorm-Metalle 3 중의 카드뮴 분석에 적용하였다.

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천연수중 구리 및 카드뮴의 화학종 예측 (Prediction of Chemical Species of Copper and Cadmium in Natural Waters)

  • 박청길;김은식
    • 대한화학회지
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    • 제29권6호
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    • pp.637-645
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    • 1985
  • 천연수중에 들어간 구리 및 카드뮴이 천연수중의 각종물질들과 상호작용하여 어떤 화학종으로 존재하게 될 것인가를 예측하기 위하여 금속과의 착화반응에 관한 자료가 아직까지 잘 알려져 있지 않은 천연유기물과 구리 및 카드뮴간의 착화물의 안정도 상수를 측정하였다. 이온 선택성 전극을 사용하여 pH6에서 전위차 적정법으로 구한 천연유기물과 구리 및 카드뮴 간의 착화물의 안정도 상수는 각각 log $K'_{CuL} = 5.80,\;log K'_{CdL}=3.82$였다. 이 값을 MINEQL 컴퓨터 프로그램의 자료에 새로이 넣고 모델 하천수에 대하여 전연유기물의 존재를 고려했을 때와 고려하지 않았을 때의 구리 및 카드뮴의 화학종을 계산하여 비교 검토해 보았다. 천연유기물이 $10^{-6}M$ 정도만 있어도 구리와 착화물을 형성하였으며 카드뮴의 경우는 천연유기물이 $10^{-5}M$ 정도 있으면 착화물을 형성 함으로서 천연유기물이 금속들의 화학종 분포에 상당히 영향을 미치고 있음을 알 수 있다.

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아세토니트릴에서 구리와 카드뮴의 2,2'-Bipyridine과 Ethylenediamine 착물에 대한 폴라로그래프적 연구 (Polarographic Behaviors of Copper and Cadmium Complexes with 2,2'-Bipyridine and Ethylenediamine in Acetonitrile)

  • 박두원;이흥락;배준웅
    • 대한화학회지
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    • 제18권3호
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    • pp.202-209
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    • 1974
  • 물 아닌 용매 아세토니트릴에서 구리와 카드뮴의 2,2´-비피리딘(bipy.)과 에틸렌디아민(en.) 착물의 성질의 직류와 교류폴라로그래프로 조사한 결과 각 착물의 전극과정은 아래와 같이 생각된다. $Cu(II)-bipy. \;complex\;{\longrightarrow^{e^-}_{E_{1/2}\risingdotseq+0.1V}}\;Cu(I)-bipy.\;complex\;{\longrightarrow^{e^-}_{E_{1/2}=-0.43V}}\;Cu(Hg)$$Cu(II)-en.\;complex\;{\longrightarrow^{e^-}}\;Cu(I)-en.\;complex\;{times}\;{\longrightarrow^{e^-}_{E_{1/2}=-0.56V}}\;Cu(Hg)$$Cu(II)-bipy. \;complex\;{\longrightarrow^{e^-}_{E_{1/2}=-0.57V}}\;Cu(I)-bipy.\;complex\;{\longrightarrow^{2e^-}_{E_{1/2}=-0.97V}}\;Cd(I)-bipy\;complex$$Cu(II)-en.\;complex\;{\longrightarrow^{e^-}_{E_{1/2}=+0.05V}\;Cu(I)-en.\;complex{\longrightarrow^{e^-}_{E_{1/2}=-0.92V}}\;Cu(Hg)$이상의 모든 파는 학산에만 의존한다. 또 Cu(Ⅰ)-bipy. 착물의 리간드의 수는 2이며, 착물해리상수 $K_d=(1.5{\pm}0.1){\times}10^{-7}$이었다.

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Electron Paramagnetic Resonance Study of Bis(N-methyl-2-amino-1-cyclopentenedithiocarboxylato)Copper (II)

  • Woo-Seong Kim;Young-Inn Kim;Sung-Nak Choi
    • Bulletin of the Korean Chemical Society
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    • 제11권2호
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    • pp.85-88
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    • 1990
  • The electron paramagnetic resonance (EPR) spectrum of the copper (II) complex with the 2-methylamino-1-cyclo-pentene-1-dithiocarboxylate (acdc) anion, $Cu(N-CH_3acdc)_2$ has been studied in the diamagnetic host lattices afforded by the corresponding divalent nickel, zinc, cadmium and mercury complexes. EPR parameters of the complex support the exclusive use of sulfur atoms by the ligand in metal binding. A combination of host lattice structure and covalency effects can be account for the observed spin-Hamiltonian parameters.

수생식물의 중금속 흡수능에 관한 연구 (Uptake Capacity of Heavy Metals by Water Plants)

  • 이종화;함용규;박종안
    • Environmental Analysis Health and Toxicology
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    • 제11권3_4호
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    • pp.23-32
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    • 1996
  • In this study, we investgated the uptake capacity of several water plants for heavy metals (lead and cadmium) in soil of rivers where are adjacent to a industrial complex in Chun-An city and in A-San city. We also examined the deposition pattern of heavy metal in plants. The results are as follows: 1. The soil of river in Chun-An city was polluted more serious than that of A-San city. In Chun-An city, mean values of lead and cadmium contents in soil were 26.224 $\pm$ 28.037 $\mu$g/g, and 0.854 $\pm$ 1. 127 $\mu$g/g, respectively. 2. Water plants examined in this study were Slum suave KITAGAWA, Persicaria thunbergii H. GROSS, Phragmiles japonica STEUD, Echinochloa crus-galli var. frumentacea WIGHT and Persicaria hydropiper SPACH. Both metal contents of several water plants distributed in Chun-An city were higher than those in A-San city. In these plants, Slum suave showed the highest uptake capacity for lead and cadmium. The mean values of lead and cadmium contents in Slum suave were 40.957 $\pm$ 29.577 $\mu$g/g and 1. 930 $\pm$ 1. 076 $\mu$g/g, respectively. Persicaria thunbergii also showed a relatively high uptake capacity for both metal. 3. Correlation between metal contents in soil and water plants was high. In both cases of Sium suave and Persicaria thunbergii correlation coefficients were 0.605 and 0.549, respectively. 4. We analyzed lead and cadmium contents in root, stem and leaf of several water plants. Both metals were mostly deposited in root. Much of both metals were also deposited in leaf. From the results, we suggest that Slum suave KITAGAWA and Persicaria thunbegii H. GROSS can be used to reduce heavy metals from industrial waste water.

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디메틸술폭시드 속에서 1,5-디페닐카르보히드라지드의 카드뮴 (II) 및 구리 (II) 착물에 대한 폴라로그래피적 거동 (Polarographic Behavior of Cadmium (II) and Copper (II) Complexes of 1,5-Diphenylcarbohydrazide in Dimethylsulfoxide)

  • 최칠남
    • 대한화학회지
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    • 제30권1호
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    • pp.51-56
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    • 1986
  • 디메틸술폭시드 속에서 카드뮴(II)과 구리(II)의 1,5-diphenylcarbohydrazide 錯物의 性質을 直流 폴라로그래프로 調査한 結果 各 錯物의 電極過程은 다음과 같이 생각된다. Cd(II)${\cdot}$DPH Complex$\frac{e^-}{(E_{\frac{1}{2}}=-0.12V)}$${\to}$Cd(I)${\cdot}$DPH Complex. Cd(I)${\cdot}$DPH Complex$\frac{e^-}{(E_{\frac{1}{2}}=-0.74V)}$${\to}$ Cd(Hg) + nDPH. Cu(II)${\cdot}$DPH Complex$\frac{e^-}{(E_\frac{1}{2}=-0.44V)}$${\to}$Cu(I)${\cdot}$DPH Complex. Cu(I)${\cdot}$DPH Complex$\frac{e^-}{(E_{\frac{1}{2}}=-0.84V)}$${\to}$Cu(Hg) + nDPH. 모든 波는 擴散에만 依存하고, 또 Cd(I)${\cdot}$DPH 착물의 ligand의 자리수는 2이며, 錯物의 解離常數 Kd는 5.12 ${\times}10^{-8}$이었다. 이들 各 錯物의 還元波는 非可逆的이었으며, 디메틸 술폭시드 溶液속에서 錯物들의 還元波는 1電子 2段階임을 알 수 있다.

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Effects of Organic Matter Concentration in Soil on Phytoavailability of Cadmium in Medicinal Plants

  • Noh, Yong-dong;Kim, Kwon-Rae;Kim, Won-Il;Jung, Ki-Yuol;Hong, Chang Oh
    • 한국토양비료학회지
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    • 제48권5호
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    • pp.319-325
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    • 2015
  • The safety of plant species used as a source for herbal medicines and dietary supplements has recently been questioned due to poisonings associated with the presence of cadmium (Cd) in these plants. These plants can derive Cd from their presence in the soil. Organic matter (OM) concentrations in soils could affect the availability of Cd for plants. To determine the effect of OM concentration in soil on the concentration of plant available Cd and uptake of this toxic element by medicinal plants, soil and plant samples were collected from 102 fields supporting for 5 species of medicinal plants in 6 province of South Korea. Concentrations of OM and dissolved organic carbon (DOC) in soils affected the phytoavailability of Cd. One M $NH_4OAc$ extractable Cd concentration in soil increased with increasing OM concentrations. There were significantly positive relationships between 1 M $NH_4OAc$ extractable Cd concentration and OM concentration in soil and between 1 M $NH_4OAc$ extractable Cd concentration and DOC concentration. Likewise, OM and DOC concentrations significantly affected Cd concentration in medicinal plant soils. Cadmium concentration in medicinal plants increased with increasing OM concentration in soil [Cd concentration $(mg\;kg^{-1})= 0.179+1.424{\times}10^{-3}$ OM concentrations, $R^2=0.042*$] and with DOC concentration [Cd concentration $(mg\;kg^{-1})= 0.150+5.870{\times}10^{-4}$ DOC concentrations, $R^2=0.124***$]. These results might result from Cd-DOC complex which is easily absorbed Cd form by plant root. Dissolved organic carbon concentration had more positive relationship with Cd concentration in medicinal plants and 1 M $NH_4OAc$ extractable Cd concentration in soils than OM. Cadmium concentration in all 5 species of medicinal plant (Atractylodes macrocephala Koidzumi, Astragalus membranaceus, Codonopsis lanceolata, Platycodon grandiflorum, and Rehmannia glutinosa) significantly increased with increasing DOC concentration in soil. From the above results, formation of Cd-DOC complex caused by OM application might be mainly attributed to increase in Cd concentration in medicinal plants.

섬, 도심, 공단지역에서 서식하는 비둘기의 체내 납, 카드뮴 농도 비교 (Comparison of Lead and Cadmium Levels in Tissues of Feral Pigeons(Columba livia) from Rural, Central Urban, and Industrial Complex Areas)

  • 남동하;이두표;구태회
    • The Korean Journal of Ecology
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    • 제25권5호
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    • pp.329-334
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    • 2002
  • 본 연구는 중금속 오염 모니터링의 일환으로 섬 지역(경기도 덕적도), 도심지역(서울), 공단 지역(여천, 안산, 울산, 부산)에서 서식하는 비둘기(Columba livia)의 체내 조직 중 납과 카드뮴 농도를 측정하고, 각 지역의 중금속 오염 정도를 비교, 평가한 것이다. 도심지역과 공단지역에 서식하는 비둘기 체내 납과 카드뮴 농도는 섬 지역에 비해 신장, 뼈, 간, 허파의 모든 조직에서 높은 것으로 나타났다. 특히, 납은 뼈 조직에서, 카드뮴은 신장 조직에서 각각 섬 지역의 평균 1.80㎍/wet g, 0.06㎍/wet g보다 도심 및 공단지역이 10배 이상 높았다. 다만, 여천 공단지역의 뼈 조직내 납 농도는 다른 공단지역에 비해 현저히 낮았으며, 섬 지역과 비슷한 농도가 검출되었다. 이러한 결과는 먹이 및 먹이와 함께 섭취한 모래알갱이에 부착된 오염 물질뿐만 아니라 대기 오염 농도와도 관계가 있는 것으로 나타났다.

Transport of Tetraethylammonium in Renal Cortical Endosomes of Cadmium-Intoxicated Rats

  • Park, Hee-Seok;Kim, Kyoung-Ryong;Park, Yang-Saeng
    • The Korean Journal of Physiology and Pharmacology
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    • 제6권1호
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    • pp.21-26
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    • 2002
  • Effects of cadmium (Cd) intoxication on renal endosomal accumulation of organic cations $(OC^+)$ were studied in rats using $^{14}C-tetraethylammnium$ (TEA) as a substrate. Cd intoxication was induced by s.c. injections of 2 mg Cd/kg/day for $2{\sim}3$ weeks. Renal cortical endosomes were isolated and the endosomal acidification (acridine orange fluorescence change) and TEA uptake (Millipore filtration technique) were assessed. The TEA uptake was an uphill transport mediated by $H^+/OC^+$ antiporter driven by the pH gradient established by $H^+-ATPase.$ In endosomes of Cd-intoxicated rats, the ATP-dependent TEA uptake was markedly attenuated due to inhibition of endosomal acidification as well as $H^+/TEA$ antiport. In kinetic analysis of $H^+/TEA$ antiport, Vmax was reduced and Km was increased in the Cd group. Inhibition of $H^+/TEA$ antiport was also observed in normal endosomes directly exposed to free Cd (but not Cd-metallothionein complex, CdMt) in vitro. These data suggest that during chronic Cd exposure, free Cd ions liberated by lysosomal degradation of CdMt in proximal tubule cells may impair the endosomal accumulation of $OC^+$ by directly inhibiting the $H^+/OC^+$ antiporter activity and indirectly by reducing the intravesicular acidification, the driving force for $H^+/OC^+$ exchange.