• Title/Summary/Keyword: Cu(Mg)

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The Evaluation of Diffusivity of Lithium for Coarsening of δ' Precipitate in AI-Li-Cu-Mg-Zr Alloy (Al-Li-Cu-Mg-Zr 합금에 있어서 δ'상 조대화를 위한 Lithium의 확산계수 평가)

  • Chung, D.S.;Kim, E.S.;Cho, H.K.
    • Journal of the Korean Society for Heat Treatment
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    • v.7 no.1
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    • pp.17-24
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    • 1994
  • The evaluation and analysis of diffusivity of lithium for coarsening and coarsening kinetics of ${\delta}^{\prime}$ precipitate in Al-Li-Cu-Mg-Zr alloy aged at $170^{\circ}C$ have been investigated by transmission electron microscopy. With ageing time, ${\delta}^{\prime}$ precipitate coaesened to followed $\bar{\gamma}{\propto}t^{1/3}$ and coarsening kinetics was found to be obeyed to the Lifshitz-Slyozov-Wagner(LSW) theory and diffusivity of lithium for coarsening of ${\delta}^{\prime}$ precipitate in Al-Li-Cu-Mg-Zr alloy was obtained to be $5.85{\times}10^{-17}{\sim}1.53{\times}10^{-16}$ by experimental coarsening rate constant and various coarsening kinetic theory. Diffusivity of lithium measured by using various model but MLSW and Tsumuraya (VI) et al. model in Al-Li-Cu-Mg-Zr alloy is similar to that calculated by the Costas's diffusivity equation. It was, therefore, suggested that additing to the Cu, Mg and Zr element in Al-Li system have no great effect on diiffusivity of lithium for coarsening of ${\delta}^{\prime}$ This suggest that in matrix.

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Precipitation Behavior of Al-Zn-Mg-Cu-(Sc) Alloy (Al-Zn-Mg-Cu-(Sc) 합금의 석출특성)

  • Choi, G.S.;Mun, H.J.;Woo, K.D.
    • Journal of the Korean Society for Heat Treatment
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    • v.19 no.5
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    • pp.257-261
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    • 2006
  • Scandium(Sc) in Al-Zn-Mg-Cu based Al alloy on precipitation phenomenon was compared to a 7001(Al-7.2%Zn-3.2%Mg-1.8%Cu) Al alloy. GP zone and ${\eta}^{\prime}$ phases were the main strengthening phases at low aging temperature under $100^{\circ}C$, but ${\eta}^{\prime}$ and $Al_3Sc$ phases were the main strengthening phases at high aging temperature above $1600^{\circ}C$ in Sc added 7000(Al-7.7%Zn-2.0%Mg-1.9%Cu-0.1%Zr) Al alloy. With the addition of 0.1%Sc in 7000 Al alloy, the activation energy for the GP zone, ${\eta}^{\prime}$ and ${\eta}$ phase decreased compared to the 7001 Al alloy. This result indicates that the Sc accelerated the precipitation for the GP zone, ${\eta}^{\prime}$ and ${\eta}$ phases in 7000 Al alloy. Al-7.7%Zn-2.0%Mg-1.9%Cu-0.1%Zr-0.1 Sc alloy has higher strength than 7001 Al alloy, which has high strength.

The Recovery Performance of Co, Ni, and Cu Ions Using Zeolites Synthesized from Inorganic Solid Wastes (무기물계 폐기물로 합성한 제올라이트의 코발트, 니켈, 구리 이온의 회수 성능)

  • Lee, ChangHan
    • Journal of Korean Society on Water Environment
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    • v.28 no.5
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    • pp.723-728
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    • 2012
  • In this study, zeolites were synthesized by a fusion and a hydrothermal methods using a coal fly ash and a waste catalyst. The recovery performance of metal ions on the structure property of synthetic zeolites was evaluated as comparing the adsorption kinetics (Lagergen 2nd order model) and isotherm (Langmuir model) of $Co^{2+},\;Ni^{2+}$, and $Cu^{2+}$ ions. The synthetic zeolites (Z-C1 and Z-W5) were similarly assigned to XRD peaks in a reagent grade Na-A zeolite (Z-WK : $Na_{12}Al_{12}Si_{12}O_{48}\;27.4H_2O$). Adsorption rates of Z-W5 and Z-C1 were in the order of $Cu^{2+}\;>\;Co^{2+}\;>\;Ni^{2+}\;and\;Ni^{2+}\;>\;Cu^{2+}\;>\;Co^{2+}$, respectively. They had influenced upon structure properties of zeolite. Selectivities of metal ions and maximum equilibrium adsorption capacities, $q_{max}$, in Z-C1 and Z-W5 were in the order of $Ni^{2+}$ (127.9 mg/g) > $Cu^{2+}$ (94.7 mg/g) > $Co^{2+}$ (82.6 mg/g) and $Cu^{2+}$ (141.3 mg/g) > $Co^{2+}$ (122.2 mg/g) > $Ni^{2+}$ (87.6 mg/g), respectively. The results show that the synthetic zeolites, Z-C1 and Z-W5, are able to recover metal ions selectively in wastewater.

A study on the factors affecting Cu(Mg) alloy resistivity (Cu(Mg) alloy의 비저항에 영향을 미치는 인자에 대한 연구)

  • 조흥렬;조범석;이재갑;박원욱;이은구
    • Journal of Surface Science and Engineering
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    • v.32 no.6
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    • pp.695-702
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    • 1999
  • We have explored the factors affecting the resistivity of Cu (Mg) alloy, which was prepared by sputtering. The results show that the resistivity is a function of Mg content, annealing temperature, annealing time, and Cu-alloy thickness. Addition of Mg to copper increases the resistivity through solute scattering. In addition, increasing Mg content promotes the interfacial reaction between Mg and SiO$_2$ to produce the free silicon and the generated free silicon dissolves into copper, resulting in a significant increase of resistivity. Furthermore, increasing oxidation temperature rapidly decreases the resistivity at the initial stage of oxidation and then continues to increase the resistivity to the saturation value with increasing oxidation time. The saturation value depends on the residual Mg content and the thickness of the alloy. TEM and AES analyses reveal that dense, uniform MgO grows to the limiting thickness of about $150\AA$. However, interfacial MgO does not show the limiting thickness, instead continues to grow until Mg is completely exhausted. From these facts, we proposed the maximum available Mg content needed to from the dense MgO on the surface and suppress the excessive interfacial reaction.

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Comparison of Macro and Micro Mineral Contents in Domestic and Imported Tricholoma matsutake (국내산과 수입산 송이의 다량 및 미량 미네랄 함량 비교)

  • Jeong, Hee-Gyeong;Kim, Kyung-Je;Seo, Kyoung-Sun;Jin, Seong-Woo;Koh, Young-Woo;Im, Seung-Bin;Ha, Neul-I;Kim, Jung-Beom
    • Journal of Food Hygiene and Safety
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    • v.37 no.5
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    • pp.323-327
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    • 2022
  • The mineral content of Tricholoma matsutake was evaluated for comparison of mineral contents according to the area of cultivation. Ten domestic and thirty Chinese (10 Yanji, 10 Yunnan and 10 Tibet) T. matsutake specimens were assessed using an atomic absorption spectrophotometer (AAS) and inductively coupled plasma mass spectrometer (ICP-MS). The Na, Mg, K, and Ca contents of domestic T. matsutake were 128.12±85.25 mg/kg, 218.52±105.35 mg/kg, 7,534.58±2,691.52 mg/kg, and 17.69±7.14 mg/kg, respectively, while those of Yanji T. matsutake were 124.89±57.24 mg/kg, 64.07±27.52 mg/kg, 1,439.18±311.04 mg/kg, and 10.88±4.52 mg/kg, respectively. The Na, Mg, K, and Ca contents of Yunnan T. matsutake were 90.78±23.23 mg/kg, 77.40±28.36 mg/kg, 1,446.29±126.33 mg/kg, and 28.42±5.18 mg/kg respectively, while those of Tibet T. matsutake were 143.50±41.54 mg/kg, 124.64±50.18 mg/kg, 3,530.95±2,714.99 mg/kg, and 21.05±8.71 mg/kg, respectively. The Cu contents of domestic, Yanji, Yunnan, and Tibet T. matsutake were 105.43±32.97 mg/kg, 19.92±8.95 mg/kg, 54.51±16.91 mg/kg, and 64.80±23.01 mg/kg, respectively. Both domestic and Chinese T. matsutake samples showed significantly different K, Mg, and Cu levels in this study. Therefore, a comparative evaluation of the K, Mg, and Cu contents of multiple domestic and Chinese T. matsutake varieties is needed to determine the appropriate area of cultivation in the future.

Cathodic Reduction of Cu2+ and Electric Power Generation Using a Microbial Fuel Cell

  • Wang, Zejie;Lim, Bong-Su;Lu, Hui;Fan, Juan;Choi, Chan-Soo
    • Bulletin of the Korean Chemical Society
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    • v.31 no.7
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    • pp.2025-2030
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    • 2010
  • When $Cu^{2+}$ was used as an electron acceptor, removal of $Cu^{2+}$ was achieved from the synthesized wastewater (SW) in the cathode compartment of a microbial fuel cell (MFC). By addition of $KNO_3$, the different initial pH of the SW showed no effect on the removal efficiency of $Cu^{2+}$. For $Cu^{2+}$ concentration of 50 mg/L the removal efficiencies were found to be 99.82%, 99.95%, 99.58%, and 99.97% for the $KNO_3$ concentrations of 0, 50, 100 and 200 mM, and to be 99.4%, 99.9%, 99.7%, and 99.7% for pH values of 2, 3, 4, and 5, respectively. More than 99% $Cu^{2+}$ was removed for the $Cu^{2+}$ concentrations of 10, 50, and 100 mg/L, while only 60.1% of $Cu^{2+}$ was removed for the initial concentration of 200 mg/L (pH 3). The maximum power density was affected by both $KNO_3$ concentration and initial concentration of $Cu^{2+}$. It was increased by a factor of 1.5 (from 96.2 to 143.6 mW/$m^2$) when the $KNO_3$ concentration was increased from 0 to 200 mM (50 mg/L $Cu^{2+}$), and by a factor of 2.7 (from 118 to 319 mW/$m^2$) when $Cu^{2+}$ concentration was increased from 10 to 200 mg/L (pH 3).

Removal of Mixed Cd, Cr, Cu, Ni and Zn by Hibiscus canabinas (Hibiscus canabinas를 이용한 Cd, Cr, Cu, Ni 및 Zn의 제거)

  • 최문술;임철호
    • Korean Journal of Environmental Biology
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    • v.22 no.1
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    • pp.120-126
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    • 2004
  • Kenaf plants were hydroponically grown in reactor containing toxic metals as Cd, Cu, Cr, Ni and Zn to examine the ability to take up heavy metal. The plants were fertilized using a nutrient solution, which was appropriately adjusted to optimum pH, DO and conductivity. For n hydraulic retention time of 8 days, Cr, Cd, Cu, Ni and Zn were removed up to 90.5, 80.5, 66.1%, 71.1% and 79.4%, and reduced from 2.34 to 0.54 mg $L^{-1}$, 3.37 to 1.07 mg $L^{-1}$, 4.92 to 3.19 mg $L^{-1}$, 6.31 to 4.41 mg $L^{-1}$ and 6.27 to 2.09 mg $L^{-1}$. Especially, accumulation rate of Cr, Cd, Cu, Ni and Zn in the plant were measured up to 347.32, 275.39, 157.52, 50.48 and 211.01 mg DW kg $L^{-1}d^{-1}$, respectively. We considered that Kenaf plants removed Cr, Cd and Zn more effectively than other toxic metals applied.

Thermoluminescent Response of Thin LiF:Mg,Cu,Na,Si Detectors to Beta Radiation (얇은 LiF:Mg,Cu,Na,Si 검출기의 베타선장에 대한 TL 반응)

  • Nam, Y.M.;Kim, J.L.;Chang, S.Y.;Cho, H.W.;Kim, H.J.
    • Journal of Radiation Protection and Research
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    • v.24 no.1
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    • pp.39-43
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    • 1999
  • Thermoluminescent (TL) response characteristics of a thin LiF:Mg,Cu,Na,Si Teflon detectors have been studied for use in beta radiation detection. The detectors were fabricated from a mixture of LiF:Mg,Cu,Na,Si phosphor and Teflon powder which was molded into a thin disk form of $50mg/cm^2$ thickness. These detectors were irradiated to beta fields of $^{147}Pm,\;^{204}Tl\;and\;^{90}Sr/^{90}Y$ sources with a covering of Kapton foil ($2mg/cm^2$) and photon irradiation was carried out with a $^{137}Cs$ source at the Korea Atomic Energy Research Institute (KAERI). Batch uniformity was estimated to be 4.7% and the beta dose response presented linear relationship from 0.1 mGy to 100 Gy. The beta energy responses of thin detectors normalized to $^{137}Cs$ were presented as 0.46, 1.09 and 1.06 for $^{147}Pm,\;^{204}Tl\;and\;^{90}Sr/^{90}Y$ beta rays, respectively. The evaluated values for angular responses were $0.93{\pm}0.03\;(^{147}Pm),\;0.94{\pm}0.04\;(^{204}Tl),\;and\;0.92{\pm}0.05\;(^{90}Sr/^{90}Y)$. The results satisfied well a proposed ISO Standard for beta ray dosimeters.

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Development of Physiological and Biochemical Bioindicators of Barnacle, Megabalanus rosa for Marine Pollution Assessment (해양오염 평가를 위한 빨강따개비(Megabalanus rosa)의 생리생화학적 오염지표의 개발)

  • LEE Jang-Won;CHIN Pyung
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.36 no.3
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    • pp.276-282
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    • 2003
  • Using Megabalanus rosa a sessile filterfeeder, its scope for growth (SFG) by analysis of energy budget were examined and free amino acids composition of whole body tissue were analyzed under the exposure to different concentrations of Hg Cu and Cd. The $96\;hr-LC_{50}$ of the barnacle after 96 hr exposure to Hg, Cu, and Cd were 0.220, 0.269 and $1.380\;mgL^{-1}$, respectively. Hg and Cu showed stronger toxicity than Cd, while Hg and Cu had similar influence on the survival of the barnacle. SFG of the barnacles exposed to sublethal concentrations of mercury was 18.936 $Jgdrywt.^{-1}hr^{-1}$ in control group and as increase of mercury concentration the SFG remarkably reduced to 0.041 $Jgdrywt.^{-1}hr^{-1}\;at\;0.1\;mgL^{-1}$ concentration of Hg. In the case of Cu, the SFG was 29.841 $Jgdrywt.^{-1}hr^{-1}$ in control group and as increase of concentration, the SFG remarkably reduced to -8.304 $Jgdrywt.^{-1}hr^{-1}\;at\;0.1\;mgL^{-1}$ concentration. In Cd the SFG was 15.852 $Jgdrywt.^{-1}hr^{-1}$ in control group, and as increasing concentration, the SFG remarkably reduced to -19.490 $Jgdrywt.^{-1}hr^{-1}\;at\;0.1\;mgL^{-1}.$ Content of free amino acid (FAA) of whole body tissue of the barnacle was 45084 $mgkg^{-1}$ in control group, but it was reduced remarkably to 28,130, 37,500 and 37,106 $mgkg^{-1}$ at 0.1 $mgL^{-1}$ concentration of Hg and Cu, and 0.4 $mgL^{-1}$of Cd, respectively. Sum of threonine + serine was 1,334 $mgkg^{-1}$ if control but reduced remarkably to 1,223, 849 and 888 $mgkg^{-1}$ at 0.1 $mgL^{-1}$ of Hg and Cu, and 0.4 $mgL^{-1}$ of Cd, respectively.