• 제목/요약/키워드: Cu uptake

검색결과 199건 처리시간 0.025초

Orchardgrass 및 White clover의 단파 및 혼파 재배에서 미량요소(Fe, Mn, Cu, Zn, Mo, B)의 조합시비가 목초의 총 함량, 상대 함량, 탈취량 및 상호비율 변화에 미치는 영향 (Effects of Combined Application of Micronutrients on these Total and Relative Contents, Uptake Amounts, and Mutual Ratios in Orchardgrass and White Clover)

  • Jung, Yeun-Kyu
    • 한국초지조사료학회지
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    • 제24권2호
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    • pp.93-104
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    • 2004
  • Orcharduass 및 white clover의 단파 및 혼파재배조건에서 미량요소 Fe, Mn, Cu, Zn, Mo 및 B의 조합시비가 목초의 생육, 개화, 수양, 양분함량 및 식생구성비율 등에 미치는 영향을 구명하였다. 다양요소 양분을 동일량 시비한 조건에서 7 수준의 미량요소 조합시비는 $T_1$; 대조구, $T_2$; Fe, $T_3$: Fe+Mn, $T_4$; Fe+Mn+Cu, $T_5$ ; Fe+Mn+Cu+Zn, $T_6$ : Fe+Mn+Cu+Zn+Mo 및 $T_7$ ; Fe + Mn +Cu+Zn+Mo + B로 하였다. 본 V보에서는 조합시비가 목초 중 미량요소의 충 함량, 상대함량, 탈취량 및 상호비율의 변화 등에 미치는 영향을 검토하였다. 1) Fe과 Mn-상대함량(총 미량요소 함량=100% 대비)은 이들간의 길항적인 흡수생리와 초종간 he-흡수경합의 차이에 크게 영향을 받았다. orcharduass는 단파에 비해서 혼파재배에서 Mn-상대함량이 더 높았고 B와 Fe-상대함량은 더 낮았으나 white clover는 이와 반대의 경향을 보였다. $T_6$ 6/ 처리에서는 일반적으로 Fe-상대함량의 감소를 보였다. 에서 orchardgrass는 B와 Mn-상대함량의 증가와 Cu와 Zn-상대함량의 감소를 보였으나 white clover는 Mo-상대함량의 감소만 보였다. 2) 미량요소의 탈취량은 일반적으로 수양의 증감에 따른 특성과는 차이를 보였다. 각 미량요소의 탈취량과 미량요소 간 상대함량(당량기준)은 초종, 단파/혼파재배, 추비 및 일부 길항작용의 특성에 따라서 차이를 보였다. 총 미량요소의 탈취량은 일반적으로 증가되는 조합시비 처리에 따라서 증가하였다. Mn을 시비한 조합시비에서는 수양의 면화보다 Fe-탈취량이 상대적으로 더 낮았고 Mn-탈취량은 더 높았다. $T_7$ 처리로 Mn과 B-탈취량은 증가하였고 Mo-탈취량은 감소되었다. 3) Fe/Mn, Fe/Cu와 Mn/Cu 비율은 길항적인 Fe과 Mn 간의 흡수경합에 따라서 크게 영향을 받았다. $T_6$ 처리에 의해서 Fe/Mo 비율은 크게 낮아졌고 이 비율은 $T_7$ 처리로 Mo 함량의 감소와 더불어 다소 높아졌다. B/Mo 비율은 orchardgrass보다 특히 white clover에서 높았고 $T_6$ 에서의 생육불량/황화현상이 $T_7$ 처리에서 양호해진 것은 높아진 B/Mo 비율과도 연관된 것으로 보였다.

Cu(II)를 이용하여 표면개질된 활성탄의 인산염 제거효율 향상 (Enhancement of phosphate removal using copper impregnated activated carbon(GAC-Cu))

  • 신정우;강서연;안병렬
    • 상하수도학회지
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    • 제35권6호
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    • pp.455-463
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    • 2021
  • The adsorption process using GAC is one of the most secured methods to remove of phosphate from solution. This study was conducted by impregnating Cu(II) to GAC(GAC-Cu) to enhance phosphate adsorption for GAC. In the preparation of GAC-Cu, increasing the concentration of Cu(II) increased the phosphate uptake, confirming the effect of Cu(II) on phosphate uptake. A pH experiment was conducted at pH 4-8 to investigate the effect of the solution pH. Decrease of phosphate removal efficiency was found with increase of pH for both adsorbents, but the reduction rate of GAC-Cu slowed, indicating electrostatic interaction and coordinating bonding were simultaneously involved in phosphate removal. The adsorption was analyzed by Langmuir and Freundlich isotherm to determine the maximum phosphate uptake(qm) and adsorption mechanism. According to correlation of determination(R2), Freundlich isotherm model showed a better fit than Langmuir isotherm model. Based on the negative values of qm, Langmuir adsorption constant(b), and the value of 1/n, phosphate adsorption was shown to be unfavorable and favorable for GAC and GAC-Cu, respectively. The attempt of the linearization of each isotherm obtained very poor R2. Batch kinetic tests verified that ~30% and ~90 phosphate adsorptions were completed within 1h and 24 h, respectively. Pseudo second order(PSO) model showed more suitable than pseudo first order(PFO) because of higher R2. Regardless of type of kinetic model, GAC-Cu obtained higher constant of reaction(K) than GAC.

미역 추출물을 이용한 견직물의 천연염색 (Natural Dyeing of Silk Fabrics with Undaria Pinnatifida Extracts)

  • 김상률;전순덕
    • 패션비즈니스
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    • 제18권5호
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    • pp.69-81
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    • 2014
  • Fabric made of 100% silk was dyed with Undaria pinnatifida extracts under different conditions such as varing colorant concentration, temperature, time and dyebath pH. The dye uptake (K/S, value), CIE L*,a*,b* and Munsell values of the dyed samples and mordanted samples were measured. Colorfastness, antibacterial property and UV protection property were also evaluated. As colorants concentration increased, the dye uptake increased progressively and maximum color strength was obtained at 100% V/V. Dye uptake also increased with increasing temperature and time, and the maximum color strength was obtained at $80^{\circ}C$ and 60min. With pre-mordanting, the color of the Al and Fe mordanted silk fabrics was yellow on the Munsell color system, while the Cu mordanted fabric was a greenish color. Al and Fe post-mordanted fabrics had a yellow tone, and the Cu post-mordanted fabric had a yellow greenish tone. The light fastness property of the Cu mordanted silk fabric was relatively good, The effect of Al and Fe mordanting on fastness was insignificant. The antibacterial activity of dyed and unmordanted silk fabric was excellent, whereas fabric dyed and mordanted with Undaria pinnatifida extract demonstrated superior ultraviolet protection.

Role of Proline Accumulation in Response to Toxic Copper in Microcystis aeruginosa

  • Park, So-Hyun;Hong, Jung-Hee
    • Environmental Sciences Bulletin of The Korean Environmental Sciences Society
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    • 제10권S_4호
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    • pp.189-196
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    • 2001
  • The blue green alga, Microcystis aeruginosa, was found to accumulate proline under the stressful concentration of cupric ions. The changes of proline level in Microcystis aeruginosa in response to copper(Cu) have been monitored and the function of the accumulated proline was studied with respect to its effect on Cu uptake. Exposure of Microcystis aeruginosa elevated concentrations of Cu led to accumulation of fee proline depending on the concentrations of the metal in the external medium. The greater the toxicity or accumulation of the metal, the higher the amount of proline in algal cells were found. When proline was exogenously supplied prior to Cu treatment, the absorption of Cu was markedly reduced. When exogenous proline was supplied after Cu treatment, it resulted in a remarkable desorption of the adsorbed Cu immediately after the addition of proline. Pretreatment of Microcystis aeruginosa with proline counteracted with metal-induced lipid peroxidation. The results of the present study showed a protective elect of proline on metal toxicity through inhibition of lipid peroxidation and suggested that the accumulation of proline may be related to the tolerance mechanism for dealing with Cu stress.

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Hydrogel 키토산비드를 이용한 수중의 양이온 중금속과 음이온의 제거 효율 평가 (Removal of both cation and anion pollutant from solution using hydrogel chitosan bead)

  • 안병렬
    • 상하수도학회지
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    • 제32권3호
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    • pp.253-259
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    • 2018
  • Cu(II) can cause health problem for human being and phosphate is a key pollutant induces eutrophication in rivers and ponds. To remove of Cu(II) and phosphate from solution, chitosan as adsorbent was chosen and used as a form of hydrogel bead. Due to the chemical instability of hydrogel chitosan bead (HCB), the crosslinked HCB by glutaraldehyde (GA) was prepared (HCB-G). HCB-G maintained the spherical bead type at 1% HCl without a loss of chitosan. A variety of batch experiment tests were carried out to determine the removal efficiency (%), maximum uptake (Q, mg/g), and reaction rate. In the single presence of Cu(II) or phosphate, the removal efficiency was obtained to 17 and 16%, respectively. However, the removal efficiency of Cu(II) and phosphate was increased to 50~55% at a mixed solution. The maximum uptake (Q) for Cu(II) and phosphate was enhanced from 11.3 to74.4 mg/g and from 3.34 to 36.6 mg/g, respectively. While the reaction rate of Cu(II) and phosphate was almost finished within 24 and 6 h at single solution, it was not changed for Cu(II) but was retarded for phosphate at mixed solution.

Heavy Metals Biosorption from Aqueous Solution by Endophytic Drechslera hawaiiensis of Morus alba L. Derived from Heavy Metals Habitats

  • El-Gendy, Mervat Morsy Abbas Ahmed;Hassanein, Naziha M.;El-Hay Ibrahim, Hussein Abd;El-Baky, Doaa H. Abd
    • Mycobiology
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    • 제45권2호
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    • pp.73-83
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    • 2017
  • The ability of dead cells of endophytic Drechslera hawaiiensis of Morus alba L. grown in heavy metals habitats for bioremoval of cadmium ($Cd^{2+}$), copper ($Cu^{2+}$), and lead ($Pb^{2+}$) in aqueous solution was evaluated under different conditions. Whereas the highest extent of $Cd^{2+}$ and $Cu^{2+}$ removal and uptake occurred at pH 8 as well as $Pb^{2+}$ occurred at neutral pH (6-7) after equilibrium time 10 min. Initial concentration 30 mg/L of $Cd^{+2}$ for 10 min contact time and 50 to 90 mg/L of $Pb^{2+}$ and $Cu^{2+}$ supported the highest biosorption after optimal contact time of 30 min achieved with biomass dose equal to 5 mg of dried died biomass of D. hawaiiensis. The maximum removal of $Cd^{2+}$, $Cu^{2+}$, and $Pb^{2+}$ equal to 100%, 100%, and 99.6% with uptake capacity estimated to be 0.28, 2.33, and 9.63 mg/g from real industrial wastewater, respectively were achieved within 3 hr contact time at pH 7.0, 7.0, and 6.0, respectively by using the dead biomass of D. hawaiiensis compared to 94.7%, 98%, and 99.26% removal with uptake equal to 0.264, 2.3, and 9.58 mg/g of $Cd^{2+}$, $Cu^{2+}$, and $Pb^{2+}$, respectively with the living cells of the strain under the same conditions. The biosorbent was analyzed by Fourier Transformer Infrared Spectroscopy (FT-IR) analysis to identify the various functional groups contributing in the sorption process. From FT-IR spectra analysis, hydroxyl and amides were the major functional groups contributed in biosorption process. It was concluded that endophytic D. hawaiiensis biomass can be used potentially as biosorbent for removing $Cd^{2+}$, $Cu^{2+}$, and $Pb^{2+}$ in aqueous solutions.

염욕의 pH와 매염제의 변화에 따른 코치닐의 염색성 연구 I -면직물을 중심으로- (A Study on Cochineal Dyeing by Various Mordants and pH Conditions I -Treatment on Cotton Fabric-)

  • 김경선;전동원;김종준;최인려
    • 복식문화연구
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    • 제13권2호
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    • pp.240-247
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    • 2005
  • In this study, cotton fabric specimens were pre-mordanted using Sn, Al, Cu, Cr, and Fe, and subsequently dyed using cochineal, maintaining the pH of the dye bath constant using pH buffer solutions of 4, 5, 6, 7, and 8. In the cases of Al, Cr, and Sn mordanting, the dye-uptake was well accomplished in the acidic range of pH 4 and 5. However, the dye-uptake was not accomplished in the range over pH 6. In the cases of Cu and Fe mordanting, however, the pH value did not affect the dye-uptake and the dyeability in the alkaline range was not decreased remarkably. In the case of non-mordant, the dye-uptake was not accomplished at all, and the Cu and Fe mordanting gave rise to the best dyeability. In the cases of non-mordanting and Al, Cu mordanting, there was no change in the $\lambda_{max}$, and in the cases of Sn and Cr mordanting, the $\lambda_{max}$ moved toward the shorter wavelength. In the case of Fe mordanting only, the $\lambda_{max}$ moved gradually toward the longer wavelength, and due to the pH effect deep-dyeing effect was revealed.

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Intratumoral distribution of 64Cu-ATSM and 18F-FDG in VX2tumor xenografted rabbit

  • Yoo, Ran Ji;Lee, Ji Woong;Lee, Kyo Chul;An, Gwang Il;Ko, In Ok;Chung, Wee Sup;Park, Ji Ae;Kim, Kyeong Min;Choi, Yang-Kyu;Kang, Joo Hyun;Lim, Sang Moo;Lee, Yong Jin
    • 대한방사성의약품학회지
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    • 제1권2호
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    • pp.123-129
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    • 2015
  • $^{64}Cu$-labeled diacetyl-bis($N^4$-methylthiosemicarbazone) is a promising agent for internal radiation therapy and imaging of hypoxic tissues. In the study, we confirmed hypoxia regions in VX2 tumor implanted rabbits with injection $^{64}Cu$-ATSM and $^{18}F$-FDG using positron emission tomography (PET)/computed tomography (CT). PET images with $^{18}F$-FDG and $^{64}Cu$-ATSM were obtained for 40 min by dynamic scan and additional delayed PET images of $^{64}Cu$-ATSM the acquired up to 48 hours. Correlation between intratumoral $O_2$ level and $^{64}Cu$-ATSM PET image was analyzed. $^{64}Cu$-ATSM and $^{18}F$-FDG were intravenously co-injected and the tumor was dissected and cut into slices for a dual-tracer autoradiographic analysis. In the PET imaging, $^{64}Cu$-ATSM in VX2 tumors displayed a specific uptake in hypoxic region for48 h. The uptake pattern of $^{64}Cu$-ATSM in VX2 tumor at 24 and 48 h did not match to the $^{18}F$-FDG. Through ROI analysis, in the early phase (dynamic scan), $^{18}F$-FDG has positive correlation with $^{64}Cu$-ATSM but late phase (24 and 48 h) of the $^{64}Cu$-ATSM showed negative correlation with $^{18}F$-FDG. High uptake of $^{64}Cu$-ATSM in hypoxic region was responded with significant decrease of oxygen pressure, which confirmed by $^{64}Cu$-ATSM PET imaging and autoradiographic analysis. In conclusion, $^{64}Cu$-ATSM can utilize for specific targeting of hypoxic region in tumor, and discrimination between necrotic- and viable hypoxic tissue.

Evaluation of Aluminum and Copper Biosorption in Two-Metal System using Algal Biosorbent

  • Lee, Hak-Sung;Volesky, Bohumil
    • Environmental Sciences Bulletin of The Korean Environmental Sciences Society
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    • 제2권2호
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    • pp.149-158
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    • 1998
  • Biomass of non-living brown seaweed Sargassun fluitans pretreated with NaOH is capable of taking up more than $10\%$ $(q_{max}$ : 3.85 mmol/g for Al and 1.48 mmol/g for Cu) of its dry weight in the Al and Cu at pH of 4.5. However, the maximum Al and Cu uptakes calculated from Langmuir isotherm were 1.58 mmol/g for Al and 1.35 mmol/g for Cu at pH 3.5. Equilibrium batch sorption study was performed using two-metal system containing Al and Cu. The mathematical model of the two-metal sorption system enabled quantitative estimation of one-metal biosorption inhibition due to the influence of a second metal. NaOH-treated S. fluitans contained 2.19 mmol $(43\;wt.\%)$ carboxyl groups per gram of biomass. A modified form of Langmuir, which assumes binding of Cu as $Cu^{2+}$ and Al as $Al(OH)_2^+,$ was used to model the experimental data. This result agrees with the one of mono-valent sorption for Al in single-metal system. The modified Langmuir model gives the following affinity correlated coefficients: 0.196 for Cu and 6.820 for Ah at pH 4.5, and 2.904 for Cu and 3.131 for Al at pH 3.5. The interference of Al in Cu biosorptive uptake was assessed by `cutting' the three dimensional uptake isotherm surfaces at constant second-metal final concentrations. Equimolar final equilibrium concentrations of Cu and Al of 1 mM at pH 4.5 give Cu and hi uptakes reduced by $82.5\%\;and\;5.4\%,$ respectively. However, these values at pH 3.5 were $55\%\;(Cu)\;and\;31\%$ (Al).

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구리로 이온교환된 NaY 제올라이트에 의한 유기 황 화합물들의 흡착제거 비교연구 (Comparative Study on Adsorptive Removal of Organic Sulfur Compounds over Cu-Exchanged NaY Zeolites)

  • 정갑순;이석희;천재기;박동호;우희철
    • Korean Chemical Engineering Research
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    • 제48권4호
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    • pp.534-539
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    • 2010
  • 메탄 속에 포함되어 있는 TBM, THT, DMS 등의 유기 황 화합물에 대한 흡착 제거가 NaY와 CuNaY 제올라이트를 이용하여 303 K, 대기압 조건하에서 수행되었다. 삼성분계 흡착시스템 실험을 통해, NaY에서는 THT의 선택적 흡착이 목격되었으며, CuNaY에서는 모든 유기 황 화합물의 동시 흡착이 일어났다. 이러한 현상은 파과흡착곡선, 승온탈착, 겉보기 탈착 활성화 에너지 등의 실험결과로 부터 설명될 수 있었다. 황에 대한 흡착능은 CuNaY(2.90~3.20 mmol/g)가 NaY(0.70~0.90 mmol/g)보다 매우 우수하였다. 본 연구결과는 CuNaY에 존재하는 $Cu^{1+}$ 흡착점과 강한 산의 세기가 황 원자와의 강한 상호작용을 유발하여 높은 황 흡착능을 갖게 하는 것으로 이해된다.