• Title/Summary/Keyword: 금속화

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Fabrication technology for miniaturization of the spin-valve transistor (스핀 밸브 트랜지스터의 소형화 공정 기술)

  • Kim Sungdong;Maeng Hee-young
    • Proceedings of the Korean Society of Machine Tool Engineers Conference
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    • 2005.05a
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    • pp.324-328
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    • 2005
  • 스핀 밸스 트랜지스터를 소형화 할 수 있는 공정 기술을 소개한다. 스핀 밸브 트랜지스터는 두 개의 실리콘 에미터, 컬렉터 사이에 다층 자성 금속 박막이 존재하는 구조를 갖고 있는 스핀트로닉스 소자이다. SU8을 절연층으로 사용한 접촉 패드의 도입, 실리콘 온 인슐레이터의 사용, 그리고 이온빔/습식 복합에칭 공정의 적용으로 수 ${\mu}m$까지 소형화 할 수 있었다. 트랜지스터의 소형화에 따른 특성 변화는 관찰되지 않았으며, 기존의 트랜지스터와 동일한 $240\%$의 자기전류값을 나타내었다.

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Characterization of Microbial Diversity of Metal-Reducing Bacteria Enriched from Groundwater and Reduction/Biomineralization of Iron and Manganese (KURT 지하심부 지하수 내 토착 금속환원미생물의 종 다양성 및 철/망간의 환원과 생광물화작용)

  • Kim, Yumi;Oh, Jong-Min;Jung, Hea-Yeon;Lee, Seung Yeop;Roh, Yul
    • Economic and Environmental Geology
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    • v.47 no.4
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    • pp.431-439
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    • 2014
  • The purposes of this research were to investigate the enrichment of metal-reducing bacteria from KURT groundwater and the identification of the microbial diversity by 16S rRNA as well as to examine microbial Fe(III)/Mn(IV) reduction and to analyze morphological features of interactions between microbes and precipitates and their mineralogical composition. To cultivate metal-reducing bacteria from groundwater sampled at the KURT in S. Korea, different electron donors such as glucose, acetate, lactate, formate, pyruvate and Fe(III)-citrate as an electron accepter were added into growth media. The enriched culture was identified by 16S rRNA gene sequence analysis for the diversity of microbial species. The effect of electron donors (i.e., glucose, acetate, lactate, formate, pyruvate) and electron acceptors (i.e., akaganeite, manganese oxide) on microbial iron/manganese reduction and biomineralization were examined using the 1st enriched culture, respectively. SEM, EDX, and XRD analyses were used to determine morphological features, chemical composition of microbes and mineralogical characteristics of the iron and manganese minerals. Based on 16S rRNA gene analysis, the four species, Fusibacter, Desulfuromonas, Actinobacteria, Pseudomonas sp., from KURT groundwater were identified as anaerobic metal reducers and these microbes precipitated metals outside of cells in common. XRD and EDX analyses showed that Fe(III)-containing mineral, akaganeite (${\beta}$-FeOOH), reduced into Fe(II)/Fe(III)-containing magnetite ($Fe_3O_4$) and Mn(IV)-containing manganese oxide (${\lambda}-MnO_2$) into Mn(II)-containing rhodochrosite ($MnCO_3$) by the microbes. These results implicate that microbial metabolism and respiratory activities under anaerobic condition result in reduction and biomineralization of iron and manganese minerals. Therefore, the microbes cultivated from groundwater in KURT might play a major role to reduce various metals from highly toxic, mobile to less toxic, immobile.

Hydrotreating for Stabilization of Bio-oil Mixture over Ni-based Bimetallic Catalysts (Ni계 이원금속 촉매에 의한 혼합 바이오오일의 안정화를 위한 수소첨가 반응)

  • Lee, Seong Chan;Zuo, Hao;Woo, Hee Chul
    • Clean Technology
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    • v.27 no.1
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    • pp.69-78
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    • 2021
  • Vegetable oils, such as palm oil and cashew nut shell liquid (CNSL), are used as major raw materials for bio-diesel in transportation and bio-heavy oil in power generation in South Korea. However, due to the high unsaturation degree caused by hydrocarbon double bonds and a high content of oxygen originating from the presence of carboxylic acid, the range of applications as fuel oil is limited. In this study, hydrotreating to saturate unsaturated hydrocarbons and remove oxygen in mixed bio-oil containing 1/1 v/v% palm oil and CNSL on monometallic catalysts (Ni and Cu) and bimetallic catalysts (Ni-Zn, Ni-Fe, Ni-Cu Ni-Co, Ni-Pd, and Ni-Pt) was perform under mild conditions (T = 250 ~ 400 ℃, P = 5 ~ 80 bar and LHSV = 1 h-1). The addition of noble metals and transition metals to Ni showed synergistic effects to improve both hydrogenation (HYD) and hydrodeoxygenation (HDO) activities. The most promising catalyst was Ni-Cu/��-Al2O3, and in the wide range of the Ni/Cu atomic ratio of 9/1~1/4, the conversion for HYD and HDO reactions of the catalysts were 90-93% and 95-99%, respectively. The tendency to exhibit almost constant reaction activity in these catalysts of different Ni/Cu atomic ratios implies a typical structure-insensitive reaction. The refined bio-oil produced by hydrotreating (HDY and HDO) had significantly lower iodine value, acid value, and kinetic viscosity than the raw bio-oil and the higher heating value (HHV) was increased by about 10%.

Development of Technology for Recovering Valuable Metals in Detoxified Waste Asbestos-Containing Waste (무해화된 폐석면에 함유된 유가금속 회수 기술 개발)

  • Kim, Dong Nyeon;Yang, Dong Hyeon;Kim, Seok Chan
    • Applied Chemistry for Engineering
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    • v.31 no.4
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    • pp.438-442
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    • 2020
  • Studies on the recovery conditions and optimization process for valuable metal recovery through chemical treatment from detoxified asbestos-containing waste composed of calcium silicate, larnite, merwinite, and akermanite were conducted. The main components, Si, Ca, and Mg, of detoxified asbestos-containing waste (DACW) were separated and recovered in the form of SiO2, CaSO4, and Mg(OH)2 compounds, respectively. Each separated component was confirmed through X-ray diffraction (XRD) and inductively coupled plasma spectrometer (ICP) analysis. The recovery conditions for each component were first treating them with an acid to separate SiO2 and subsequently with H2SO4 to recover Ca in the form of sulfate, CaSO4. The remaining Mg was recovered by precipitation with Mg(OH)2 under strong basic conditions. This study suggested that it is possible to convert existing treatment process of asbestos waste by landfill through recovering the components into a resource-recycling green technology.

Corrsion behavior of Al-Mg-Zn Alloys by homogenization heat treatment (균질화 처리에 따른 Al-Mg-Zn 합금의 내식성 거동)

  • Jo, Yu-Sin;Choe, In-Gyu;Kim, Sang-Ho
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.139-139
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    • 2017
  • 최근 환경오염 문제로 인한 연비 규제 강화 속도가 빨라지고 있으며 이에 따른 연비 향상 기술이 크게 대두 되고 있다. 연비 향상 기술 중 경량화 방안소재로 알루미늄(Al), 마그네슘(Mg) 등의 비철금속을 주로 사용하고 있으며, 이중 알루미늄은 다른 경량화 금속소재보다 우수한 경쟁력을 가지고 있다. 하지만 경제적인 측면에서 철 대비 비용적인 어려움을 가지고 있고 용접성이 떨어지기 때문에, 자동차 부품의 일부만 알루미늄 소재를 선택하여 사용하고 있는 실정이며 알루미늄의 높은 이온화 경향으로 인해 기존 자동차 철강 소재와 접촉 시 쉽게 부식되는 단점을 가지고 있다. 이러한 문제점을 해결하기 위해서는 알루미늄의 금속원소를 첨가하는 연구가 지속적으로 개발 되고 있다. 알루미늄 합금에서 마그네슘의 첨가는 좋은 용접성과 내식성, 강도를 향상시킨다. 하지만 3%이상의 마그네슘 첨가는 입계에 ${\beta}(Al_xMg_y)$석출상이 석출되게 되며, 입계에 연속적으로 형성된 ${\beta}(Al_xMg_y)$석출상은 응력 부식 균열 (Stress corrsion cracking)과 입계 부식(Intergranular corrosion)을 야기하는 결과를 가져온다고 알려져 있다. 이 문제를 해결하기 위해 Al 5000계열 합금의 Zn의 첨가를 통해 ${\tau}(Al_xMg_yZn_z)$을 입계에 석출시켜서 입계에 ${\beta}(Al_xMg_y)$상의 석출을 방지함으로써 내식성을 향상시키거나 Al 5000계열 합금의 열처리를 통해 ${\beta}(Al_xMg_y)$석출상을 고용시킴으로써 응력부식균열의 발생을 억제하는 연구도 있다. 하지만 열처리 후 Polarization test를 이용한 내식성 연구는 잘 안 알려져 있다. 따라서 이번 연구에서는 Al5000계열의 주조한 합금을 DSC분석을 통하여 ${\beta}(Al_xMg_y)$석출상의 고용 온도가 약 $470^{\circ}C$라는 것을 확인한 후, 실온에서 $100^{\circ}C/hr$으로 가열하고 조건에 따라 $450^{\circ}C$에서 3시간, 6시간, 12시간, 24시간, 30시간 항온 유지시킨 후 공냉을 진행하였다. 열처리를 마친 시편은 에폭시를 이용하여 마운팅 하였으며, 시편표면을 2000#까지 연마 후 증류수로 세척한 다음 질소를 이용하여 건조 후 분극 시험을 진행하였다. 3.5wt% NaCl 용액에서 분극 곡선을 통해 부식거동을 확인한 결과 24시간까지 시간이 증가 할수록 내식성이 우수해지는 것을 확인하였으며, 추가적으로 조직사진, SEM & EDS 분석과 XRD, TEM 분석을 통해 내식성은 입계에 존재하는 Mg의 조성이 감소하게 되면 내식성이 향상되는 것을 관찰하였다.

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Effect of Water Addition on Activity of Gold Catalysts Supported on Metal Oxide at Low Temperature CO Oxidation (일산화탄소 저온 산화에서 금속산화물에 담지된 금촉매의 활성에 미치는 수분첨가의 영향)

  • Ahn, Ho-Geun;Kim, Ki-Joong;Chung, Min-Chul
    • Korean Chemical Engineering Research
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    • v.49 no.6
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    • pp.720-725
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    • 2011
  • Gold catalysts supported on metal-oxides were prepared by co-precipitation using the various metal nitrates and chloroauric acid as precursors, and effect of water addition on the catalytic activity in CO oxidation was investigated. Among the various supported gold catalysts, Au/$Co_{3}O_{4}$ and Au/ZnO catalysts showed the excellent activity for CO oxidation. Water in the reactant gas had a negative effect on the oxidation activity over Au/$Co_{3}O_{4}$ catalysts and a positive effect on that over Au/ZnO, which means the activity depends strongly on the nature of support. It was also confirmed that no significant change in the particle size of gold was observed after reaction both in dry and wet conditions. This fact suggested that the deactivated catalyst due to a carbonate species could be regenerated by water addition in the reactant gas.

A Study on the Visualization Method for Figurative Art of Sculptures Using Metallic Materials - Based on the purpose of displaying in the residential complex (금속재료를 활용한 조형물의 비유적 이미지 시각화 방법 연구 - 주거 단지 전시를 목적으로)

  • Ko, Seung-Geun
    • Journal of the Korea Convergence Society
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    • v.12 no.1
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    • pp.225-230
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    • 2021
  • As the quality of our life has improved, residential complexes have become more diverse now. Modern residential complexes function as a place for meeting and communication between families and neighbors, including parks, lakes, and promenades, and exhibiting sculptures in residential spaces has become an important component. This study was conducted for the purpose of researching the design development method for the sculptures displayed in the residential space in accordance with these changes and demands of the era. Through the process of visualizing the figurative arts with metal and stone used as materials, the artist's thoughts and messages were put in the sculpture and the arts were completed as the shape of the sculpture that viewers could sympathize with. This design and formative research shows the possibility that various visual elements for sympathy with the creator's thoughts can be formed in a place with the specificity of living space by using a figurative visualization method. Therefore, further researches on figurative art of sculptures are required.

Microstructural Characterization of $Al_3$(${Nb_{1-x}}{Zn_x}$) Alloy Prepared by Elemental Powder and Intermetallic Powder (원료분말과 금속간화합물 분말로 기계적 합금화한 $Al_3$(${Nb_{1-x}}{Zn_x}$) 합금의 미세구조특성)

  • Lee, Gwang-Min;Lee, Ji-Seong;An, In-Seop
    • Korean Journal of Materials Research
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    • v.11 no.5
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    • pp.345-353
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    • 2001
  • The present study was carried out to investigate the effect of zirconium addition to $Al_3$Nb intermetallic on the crystal structural modification and microstructural characterization of $Al_3$Nb intermetallic. Elemental Al, Nb, Zr powders and arc melted $Al_3$Nb and $Al_3$Zr intermetallic mixed powders were used as starting materials. MA was carried out in an attritor rotated with 300 rpm for 20 hours. The behavior of MA between two starting materials was some-what different in which the value of internal strain of the elemental powders was higher than that of the intermetallic powder. The intermetallic powder was much more disintegrated during the MA processing. In the case of the elemental powders, AlNb$_2$ phase were transformed to Al(Nb.Zr)$_2$ as a result of ternary addition of Zr element. With the successive heat treatment at 873K for 2 hours, the Al(Nb.Zr)$_2$ phase was transformed to more stable $Al_3$(Nb.Zr) phase. This transformation was clearly confirmed by the identification of X-ray peak position shift. On the other hand, in the carte of the intermetallic powder, there was no evidence of phase transformation to other ternary intermetallic compounds or amorphous phases, even in the case of additional heat treatment. However, nano-sized intermetallic with $Al_3$Nb and $Al_3$Zr were just well distributed instead of phase transformation.

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DC 열 플라즈마를 이용한 Cu, Fe 나노 입자 합성 연구

  • An, Gyeong-Seok;Son, Byeong-Gu;Lee, Mun-Won;Kim, Seong-In;Jo, Gwang-Seop
    • Proceedings of the Korean Vacuum Society Conference
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    • 2016.02a
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    • pp.223-223
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    • 2016
  • 산업 및 기술의 발전에 의해 많은 신소재들이 개발되고 있다. 그 중에서 금속 나노 분말의 경우, 자성소재, 차세대 MLCC, 전도성 페이스트, 살균 등 여러 산업분야에서 관심을 보이면서, 다양한 재료들이 개발되고 있는 추세이다. 그 중에서 금속 나노 분말은 입자 미세화에 따른 경도, 인성, 연성들의 기계적 특성 향상, 전자기적 기능의 향상 등 기존재료에 비해 우수한 물성, 새로운 기능의 발현이 입증되면서 차세대 소재로서 많은 연구가 진행되고 있다. 또한 최근에는 단순한 나노입자의 제조단계를 뛰어넘어 입경 및 입도의 제어 형상제어를 통한 입자 균일성이 요구되고 있다 DC 열 플라즈마를 이용한 나노입자 합성 방법은 초고온의 온도의 달성이 가능하여, 모든 금속원소에 대한 나노화 및 고순도화가 용이할 뿐만 아니라, 제조공정이 단순한 친환경 공법으로 저비용으로 나노입자를 제조할 수 있는 장점을 갖고 있다. 본 연구에서는 이송식 DC 열 플라즈마를 이용한 Cu 나노분말 제조, 비이송식 DC 열 플라즈마를 이용한 Fe 나노분말 합성 연구를 통해 반응기의 압력과 플라즈마 파워, Gas 유량등의 공정 변수가 나노입자 생성 특성에 미치는 영향을 확인 하였다. 또한 DC 열플라즈마 나노입자 합성 시스템에 대한 장비와 기술도 소개한다.

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