• Title/Summary/Keyword: ZnS: Cu

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A Seasonal Variation of Elemental Composition of Fine Particles in Chongju Area using PIXE (PIXE를 이용한 청주지역 미세입자 중 원소의 계절 변동 특성)

  • 강병욱;이학성;김희강
    • Journal of Korean Society for Atmospheric Environment
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    • v.13 no.4
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    • pp.307-317
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    • 1997
  • Samples of fine particle $(d_P<2.5 \mum)$ were taken in Chongju area using a dichotomous sampler. The data set was collected on fifty-eight different days with 24 hour sampling period from October 27, 1995 through August 25, 1996. The samples were analyzed using a proton induced x-ray emission (PIXE) for Na, Mg, Al, Si, S, Cl, K, Ca, Ti, V, Cr, M, Fe, Ni, Cu, Zn, Br and Pb. Values of Fe, Ca, Si, Cu, K and Cl exhibit marked seasonal variations. Mean concentrations for this study had the following order S > Cl > Si > K > Al > Fe on fine particle. Concentrations of Ca, Si and Fe were higher during the spring season compared with any other season. These phenomena may be attributable to soil dust. Cl and K were higher in the winter, which may be explained by combustion of fossil fuel. Higher values for Cu and Zn in the Winter may be due to the combustion and incineration.

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Continuous removal of heavy metals by coupling a microbial fuel cell and a microbial electrolytic cell

  • Xie, Guo R.;Choi, Chan S.;Lim, Bong S.;Chu, Shao X.
    • Membrane and Water Treatment
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    • v.11 no.4
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    • pp.283-294
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    • 2020
  • This work aims at studying the feasibility of continuous removal of mixed heavy metal ions from simulated zinc plating wastewaters by coupling a microbial fuel cell and a microbial electrolysis cell in batch and continuous modes. The discharging voltage of MFC increased initially from 0.4621 ± 0.0005 V to 0.4864 ± 0.0006 V as the initial concentration of Cr6+ increased from 10 ppm to 60 ppm. Almost complete removal of Cr6+ and low removal of Cu2+ occurred in MFC of the MFC-MEC-coupled system after 8 hours under the batch mode; removal efficiencies (REs) of Cr6+ and Cu2+ were 99.76% and 30.49%. After the same reaction time, REs of nickel and zinc ions were 55.15% and 76.21% in its MEC. Cu2+, Ni2+, and Zn2+ removal efficiencies of 54.98%, 30.63%, 55.04%, and 75.35% were achieved in the effluent within optimum HRT of 2 hours under the continuous mode. The incomplete removal of Cu2+, Ni2+ and Zn2+ ions in the effluent was due to the fact that the Cr6+ was almost completely consumed at the end of MFC reaction. After HRT of 12 hours, at the different sampling locations, Cr6+ and Cu2+ removal efficiencies in the cathodic chamber of MFC were 89.95% and 34.69%, respectively. 94.58%, 33.95%, 56.57%, and 75.76% were achieved for Cr6+, Cu2+, Ni2+ and Zn2+ in the cathodic chamber of MEC. It can be concluded that those metal ions can be removed completely by repeatedly passing high concentration of Cr6+ through the cathode chamber of MFC of the MFC-MEC-coupled system.

ZnO 나노구조를 이용한 $CuInS_2$ Superstrate 태양전지 제조

  • Lee, Dong-Uk;Yong, Gi-Jung
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.665-665
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    • 2013
  • 박막형 태양전지에서 광흡수층으로 널리 쓰이는 metal chalcogenide 화합물 중, CuInS2(CIS)은 전기적, 광학적 특성이 우수하여 널리 연구되고 있다. CIS계 태양전지 최근 동시 증발법을 이용하여 20.3%의 고효율을 기록한 바 있으나 기존 진공, 고온 기반 공정 기술은 초기 투자 비용이 높고, 고가의 희귀원소인 In 등의 원료 활용도가 떨어져 원가 절감에 있어 한계가 있다. 이에 따라 제조 비용 절감과 원료 사용 효율을 향상시키기 위해 비진공 방식을 이용한 광흡수 층 증착 공정에 관한 연구가 활발히 진행되고 있다. 본 연구에서는 상온, 상압, 저온에서 합성이 가능한 CIS계 광흡수층을 전자 전달 및 빛 포집에 유리한 ZnO 나노구조와 응용함으로써 superstrate 구조의 박막형 태양전지를 구현하고 그 특성을 평가하였다. CIS 박막 태양전지에서 투명창층으로 쓰이는 ZnO 박막을 수열합성법으로 합성된 ZnO 나노로드 어레이로 대체하여 빛 산란 효과를 줄이고, 전하 수집 및 이동 효과를 극대화하였다. 또한 CIS 광흡수층은amine계 용매와 금속염 및 thiourea를 조합하여 저온에서 코팅 후 건조시켜 박막을 제조하였다. 각 요소 박막들의 물성을SEM, XRD, UV-transmittance 분석을 통해 살펴보았으며, 소면적 태양전지 제작을 통해 박막 구조 대비 30배 이상의 광변환효율(최고효율 3.30%)을 기록하였다.

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Removal of water pollutants and its application to swine wastewater treatment through the establishment of best optimal growth conditions of Ankistrodesmus bibraianus (Ankistrodesmus bibraianus의 최적 배양조건 설정을 통한 수질오염물질 제거 및 축산 폐수 처리 적용)

  • Hwang, In-Seong;Park, Young-Min;Lee, Ye-Eun;Kim, Deok-Won;Park, Ji-Su;Oh, Eun-Ji;Yoo, Jin;Chung, Keun-Yook
    • Korean Journal of Environmental Biology
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    • v.38 no.1
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    • pp.82-92
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    • 2020
  • Since swine wastewater contains high concentrations of nutrients and heavy metals, it deteriorates water quality when discharged. Compared to conventional methods, bioremediation can be a promising method for its treatment. Specifically, microalgae have the potential to remove these pollutants. In this study, the removal of nutrients (nitrogen (N) and phosphorus (P)) and heavy metals (copper (Cu) and zinc (Zn)) from swine wastewater by Ankistrodesmus bibraianus was evaluated and the organism's optimal growth conditions were investigated. The optimal growth conditions were established at 28℃, pH 7, and light and dark cycles of 14:10 h. The removal efficiencies of N and P by a single treatment (500, 1,000, 5,000, and 10,000 mg L-1) ranged from 22.9 to 80.6% and from 11.9 to 50.0%, respectively. The removal efficiencies of N and P in the binary treatments ranged from 16.4 to 58.3% and from 7.80 to 49.8%, respectively. The removal efficiencies of Cu and Zn by a single treatment(10, 30, and 50 mg L-1) ranged from 15.5 to 81.5% and from 6.28 to 34.3%, respectively. Similarly, the removal efficiencies of Cu and Zn in the binary treatments ranged from 16.7 to 74.5% and from 5.58 to 27.5%, respectively. In addition, the study showed the optimal growth conditions for microalgae and the removal efficiency of nutrients (N and P) and heavy metals (Cu and Zn), which could be applied to swine wastewater. Based on the results in this study, it appears that Ankistrodesmus bibraianus could be used for the removal of nutrients and heavy metals present in swine wastewater.

Properties of ZnS:Cu,Cl Thick Film Electroluminescent Devices by Screen Printing Method (스크린인쇄법에 의한 ZnS:Cu,Cl 후막 전계발광소자의 특성)

  • No, Jun-Seo;Yu, Su-Ho;Jang, Ho-Jeong
    • Korean Journal of Materials Research
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    • v.11 no.6
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    • pp.448-452
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    • 2001
  • The ZnS:Cu,Cl thick film electroluminescent devices with the stacking type(separated with phosphors and insulator layers) and the composite type (mixed with phosphor and insulator materials) emission layers were fabricated on ITO/glass substrates by the screen printing methods. The opical and electrical properties were investigated as fundations of applied voltages and frequencies. In the stacking type, the luminance was about 58 cd/$\m^2$ at the applied voltage of 400Hz, 200V and increased to 420 cd/$\m^2$ with increasing the frequency to 30Hz. For the composite type devices, the threshold voltage was 45V and the maximum luminance was 670 cd/$\m^2$ at the driving condition of 200V, 30Hz. The value of luminance of the composite type device showed 1.5 times higher than that of stacking type device. The main emission peak was 512 nm of bluish-green color at 1Hz frequency below and shifted to 452 nm in the driving frequency over 5Hz showing the blue omission color. There were no distinct differences of the main emission peaks and color coordinate for both samples.

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Influence of Dislocation Substructure on Ultrasonic Velocity under Tensile Deformation

  • Kim, C.S.;Lissenden, Cliff J.;Kang, Kae-Myhung;Park, Ik-Keun
    • Journal of the Korean Society for Nondestructive Testing
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    • v.28 no.6
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    • pp.477-482
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    • 2008
  • The influence of dislocation substructure of metallic materials on ultrasonic velocity has been experimentally investigated. The test materials of pure Cu, brass (Cu-35Zn), 2.25Cr-1Mo steel, and AISI 316 with different stacking fault energy (SFE) are plastically deformed in order to generate dislocation substructures. The longitudinal wave velocit $(C_L)$ decreases as a function of tensile strain in each material. The $C_L$ of Cu-35Zn and AISI 316 decreases monotonously with tensile strain, but $C_L$ of Cu and 2.25Cr-1Mo steel shows plateau phenomena due to the stable dislocation substructure. The variation of ultrasonic velocity with the extent of dislocation damping and dislocation substructures is discussed.

Cytotoxicity of Environmental Estrogenic Compound, Bisphenol A, via Generation of Free Radicals (내분비계 장애물질인 Bisphenol A의 free radical 생성을 통한 독성발현)

  • 안광현;김봉희
    • Environmental Analysis Health and Toxicology
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    • v.18 no.3
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    • pp.175-182
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    • 2003
  • Bisphenol A shares similarities in structure, metabolism and action with DES, a known human teratogen and carcinogen. Bisphenol A, a monomer of polycarbonate and epoxy resins, has been detected in canned food and human saliva. The purpose of the this study was to evaluate the cytotoxicity, cell proliferation of bisphenol A In the presence of a rat liver S9 mix, contaning cytochrome P450 enzymes, and Cu (II). In the present study, Bisphenol A in combination with Cu (II) exhibited a enhancement in cytotoxicity which were inhibited by free radical scavengers. The content of malondialdehyde, an end product of lipid peroxidation, was also found to increase with concentration of bisphenol A. Also, we examined the change of CuZn-SOD, Mn-SOD, catalase and GPx activities in the MCF-7 cells exposed to bisphenol A. The activities of CuZn-SOD, CPx, catalase were found to decrease with bisphenol A concentration. Meanwhile, the activity of Mn-SOD was unchanged. This indicated that elevated oxidative stress caused by imbalance between the production and removal of free radicals occurred in cells.

Solution-Processed Anti Reflective Transparent Conducting Electrode for Cu(In,Ga)Se2 Thin Film Solar Cells (CIGS 박막태양전지를 위한 반사방지특성을 가진 용액공정 투명전극)

  • Park, Sewoong;Park, Taejun;Lee, Sangyeob;Chung, Choong-Heui
    • Korean Journal of Materials Research
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    • v.30 no.3
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    • pp.131-135
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    • 2020
  • Silver nanowire (AgNW) networks have been adopted as a front electrode in Cu(In,Ga)Se2 (CIGS) thin film solar cells due to their low cost and compatibility with the solution process. When an AgNW network is applied to a CIGS thin film solar cell, reflection loss can increase because the CdS layer, with a relatively high refractive index (n ~ 2.5 at 550 nm), is exposed to air. To resolve the issue, we apply solution-processed ZnO nanorods to the AgNW network as an anti-reflective coating. To obtain high performance of the optical and electrical properties of the ZnO nanorod and AgNW network composite, we optimize the process parameters - the spin coating of AgNWs and the concentration of zinc nitrate and hexamethylene tetramine (HMT - to fabricate ZnO nanorods. We verify that 10 mM of zinc nitrate and HMT show the lowest reflectance and 10% cell efficiency increase when applied to CIGS thin film solar cells.

Synthesis and Characterization of CuInS2 Semiconductor Nanoparticles and Evolution of Optical Properties via Surface Modification (CuInS2 나노 반도체 합성 및 표면 개질을 통한 광학적 효율 분석 연구)

  • Yang, Hee-Seung;Kim, Yoo-Jin
    • Journal of Powder Materials
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    • v.19 no.3
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    • pp.177-181
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    • 2012
  • Copper composite materials have attracted wide attention for energy applications. Especially $CuInS_2$ has a desirable direct band gap of 1.5 eV, which is well matched with the solar spectrum. $CuInS_2$ nanoparticles could make it possible to develop color-tunable $CuInS_2$ nanoparticle emitter in the near-infrared region (NIR) for energy application and bio imaging sensors. In this paper, $CuInS_2$ nanoparticles were successfully synthesized by thermo-decomposition methods. Surface modification of $CuInS_2$ nanoparticles were carried out with various semiconductor materials (CdS, ZnS) for enhanced optical properties. Surface modification and silica coating of hydrophobic nanoparticles could be dispersed in polar solvent for potential applications. Their optical properties were characterized by UV-vis spectroscopy and photoluminescence spectroscopy (PL). The structures of silica coated $CuInS_2$ were observed by transmission electron microscopy (TEM).

Pollution Level of Heavy Metals of Asian Dust in Daejeon Area, 2008 (2008년 대전지역에서 발생한 황사의 중금속 오염도)

  • Lee, Pyeong-Koo;Bae, Beob-Geun
    • Journal of Soil and Groundwater Environment
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    • v.19 no.1
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    • pp.8-25
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    • 2014
  • The aims of this study were to determine concentrations of selected metals in Asian and non-Asian dust collected in Daejeon, Korea between February 2008 and December 2008 and to estimate the pollution level. The geochemical analyses of Asian dust (AD) and Non Asian dust (NAD) show that the mean concentrations of As, Cd, Cu, Pb, Zn, Zr, Sb, Mo and S reached levels up to 16, 209, 31, 43, 81, 28, 31, 122 and 302 times higher, respectively, than those in uncontaminated Chinese desert soils. These results indicate that both AD and NAD serve as an atmospheric repository for trace and heavymetal accumulation. The the enrichment factor (EF) and pollution index (PI) show that AD and NAD were severely contaminated by S, Mo, Zr, Cd, Pb, Zn, Sb, Cu, and As. All indices for these metals showed either strong or notably high level of pollution relative to Chinese desert soil, principally due to the severe atmospheric pollution derived from anthropogenic activities in heavily industrial Chinese cities. Therefore, Mo, Cd, Zr, As, Cu, Sb, Pb, and Zn are the ones most strongly affected by anthropogenic inputs such as airborne pollutants.