• 제목/요약/키워드: Li Diffusion

검색결과 261건 처리시간 0.024초

산소/질소 분리를 위한 다층구조 제올라이트 5A를 함유한 탄소분자체 분리막 제조 (Hierarchical 5A Zeolite-Containing Carbon Molecular Sieve Membranes for O2/N2 Separation)

  • 리웬;추아총양;배태현
    • 멤브레인
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    • 제30권4호
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    • pp.260-268
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    • 2020
  • 다층 구조를 가진 5A 제올라이트를 탄소 분자체 분리막에 첨가한 복합막을 제조하고 질소/산소의 분리 특성을 평가하였다. 제올라이트의 첨가는 선택도에는 미세한 영향을 주지만 투과도를 크게 증가시키는 방법으로 전체적인 탄소막의 질소/산소의 분리 성능을 상승시켰다. 특히 메조포어를 함유한 다층구조의 제올라이트 첨가제는 분리막의 투과도를 보다 효율적으로 상승시켜 아주 우수한 분리 성능에 도달하였다. 이 연구의 결과는 저렴한 탄소막 전구체와 제올라이트 소재를 활용하고도 고성능의 질소/산소 분리막을 손쉽게 제조할 수 있다는 것을 제시한다.

구리 프탈로시아닌으로 표면처리된 흑연 음극의 속도특성 및 저온성능 개선 (Improvement of Rate Capability and Low-temperature Performances of Graphite Negative Electrode by Surface Treatment with Copper Phthalocyanine)

  • 정선형;박상진;류지헌;오승모
    • 전기화학회지
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    • 제18권3호
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    • pp.130-135
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    • 2015
  • 흑연 분말을 프탈로시아닌 또는 구리 프탈로시아닌과 함께 비활성 분위기에서 각각 열처리하여 표면처리를 진행하였고, 이의 속도특성과 저온 작동특성을 조사하였다. 표면처리 후 흑연 분말의 표면에 비정질 탄소와 구리의 코팅 층이 균일하게 형성되었다. 표면처리를 통하여 흑연 전극의 속도특성이 개선되는 것을 확인하였는데, 특히 구리 프탈로시아닌으로 처리한 경우 속도특성의 향상이 두드러졌다. 흑연 전극의 저항을 교류 임피던스와 펄스 저항측정법을 활용하여 조사하였는데, 구리 프탈로시아닌으로 처리된 흑연 전극의 경우가 저항이 가장 작았다. 프탈로시아닌으로 부터 유도된 비정질 탄소 층이 리튬이온의 확산을 용이하게 하고, 구리 프탈로시아닌으로부터 유도된 금속상태의 구리는 전자 전도도를 증가시키기 때문에 저항을 감소시키는 것으로 판단된다.

리튬금속전극의 덴드라이트 성장 억제 방안의 연구 동향 (Review on Effective Skills to Inhibit Dendrite Growth for Stable Lithium Metal Electrode)

  • 김예랑;박지혜;황유진;정철수
    • 전기화학회지
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    • 제25권2호
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    • pp.51-68
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    • 2022
  • 리튬금속전지는 높은 에너지 밀도를 구현시킬 수 있음에도 불구하고, 단락, 낮은 쿨롱 효율, 용량 손실, 사이클 성능 감소 등의 문제를 초래하는 덴드라이트 성장을 억제시키는 기술은 아직 학술연구 단계에 머물러 있다. 본 논문에서는 최근까지 발표된 리튬금속전극에서 덴드라이트 성장을 억제시킬 수 있는 방법을 4가지로 분류하여 분석해보았다. 즉, 리튬금속전극의 부피 팽창에 대응할 수 있는 유연한 SEI (solid electrolyte interface) 층, 덴드라이트 성장을 물리적으로 억제시킬 수 있는 SEI 지지층, 균일한 리튬 확산을 유도하여 리튬 성장을 조절하는 SHES (self-healing electrostatic shield) 메커니즘, 그리고 리튬의 균일한 전착을 유도하는 마이크로패터닝 등에 대해 연구된 사례들의 장단점을 분석하여, 리튬금속전극의 실용화 연구에 도움을 주고자 한다.

Improvement and validation of aerosol models for natural deposition mechanism in reactor containment

  • Jishen Li ;Bin Zhang ;Pengcheng Gao ;Fan Miao ;Jianqiang Shan
    • Nuclear Engineering and Technology
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    • 제55권7호
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    • pp.2628-2641
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    • 2023
  • Nuclear safety is the lifeline for the development and application of nuclear energy. In severe accidents of pressurized water reactor (PWR), aerosols, as the main carrier of fission products, are suspended in the containment vessel, posing a potential threat of radioactive contamination caused by leakage into the environment. The gas-phase aerosols suspended in the containment will settle onto the wall or sump water through the natural deposition mechanism, thereby reducing atmospheric radioactivity. Aiming at the low accuracy of the aerosol model in the ISAA code, this paper improves the natural deposition model of aerosol in the containment. The aerosol dynamic shape factor was introduced to correct the natural deposition rate of non-spherical aerosols. Moreover, the gravity, Brownian diffusion, thermophoresis and diffusiophoresis deposition models were improved. In addition, ABCOVE, AHMED and LACE experiments were selected to validate and evaluate the improved ISAA code. According to the calculation results, the improved model can more accurately simulate the peak aerosol mass and respond to the influence of the containment pressure and temperature on the natural deposition rate of aerosols. At the same time, it can significantly improve the calculation accuracy of the residual mass of aerosols in the containment. The performance of improved ISAA can meet the requirements for analyzing the natural deposition behavior of aerosol in containment of advanced PWRs in severe accident. In the future, further optimization will be made to address the problems found in the current aerosol model.

Research of Diffusion Bonding of Tungsten/Copper and Their Properties under High Heat Flux

  • Li, Jun;Yang, Jianfeng
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.14-14
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    • 2011
  • W (tungsten)-alloys will be the most promising plasma facing armor materials in highly loaded plasma interactive components of the next step fusion reactors due to its high melting point, high sputtering resistance and low deuterium/tritium retention. The bonding technology of tungsten to Cu alloy was one of the key issues. In this paper, W/CuCrZr diffusion bonding has been performed successfully by inserting pure metal interlay. The joint microstructure, interfacial elements migration and phase composition were analyzed by SEM, EDS, XRD, and the joint shear strength and micro-hardness were investigated. The mock-ups were fabricated successfully with diffusion bonding and the cladding technology respectively, and the high heat flux test and thermal fatigue test were carried out under actively cooling condition. When Ni foil was used for the bonding of tungsten to CuCrZr, two reaction layers, Ni4W and Ni(W) layer, appeared between the tungsten and Ni interlayer with the optimized condition. Even though Ni4W is hard and brittle, and the strength of the joint was oppositely increased (217 MPa) due primarily to extremely small thicknesses (2~3 ${\mu}m$). When Ti foil was selected as the interlayer, the Ti foil diffused quickly with Cu and was transformed into liquid phase at $1,000^{\circ}C$. Almost all of the liquid was extruded out of the interface zone under bonding pressure, and an extremely thin residual layer (1~2 ${\mu}m$) of the liquid phase was retained between the tungsten and CuCrZr, which shear strength exceeded 160 MPa. When Ni/Ti/Ni multiple interlayers were used for bonding of tungsten to CuCrZr, a large number of intermetallic compound ($Ni_4W/NiTi_2/NiTi/Ni_3T$) were formed for the interdiffusion among W, Ni and Ti. Therefore, the shear strength of the joint was low and just about 85 MPa. The residual stresses in the clad samples with flat, arc, rectangle and trapezoid interface were estimated by Finite Element Analysis. The simulation results show that the flat clad sample was subjected maximum residual stress at the edge of the interface, which could be cracked at the edge and propagated along the interface. As for the rectangle and trapezoid interface, the residual stresses of the interface were lower than that of the flat interface, and the interface of the arc clad sample have lowest residual stress and all of the residual stress with arc interface were divided into different grooved zones, so the probabilities of cracking and propagation were lower than other interfaces. The residual stresses of the mock-ups under high heat flux of 10 $MW/m^2$ were estimated by Finite Element Analysis. The tungsten of the flat interfaces was subjected to tensile stresses (positive $S_x$), and the CuCrZr was subjected to compressive stresses (negative $S_x$). If the interface have a little microcrack, the tungsten of joint was more liable to propagate than the CuCrZr due to the brittle of the tungsten. However, when the flat interface was substituted by arc interfaces, the periodical residual stresses in the joining region were either released or formed a stress field prohibiting the growth or nucleation of the interfacial cracks. Thermal fatigue tests were performed on the mock-ups of flat and arc interface under the heat flux of 10 $MW/m^2$ with the cooling water velocity of 10 m/s. After thermal cycle experiments, a large number of microcracks appeared at the tungsten substrate due to large radial tensile stress on the flat mock-up. The defects would largely affect the heat transfer capability and the structure reliability of the mock-up. As for the arc mock-up, even though some microcracks were found at the interface of the regions, all microcracks with arc interface were divided into different arc-grooved zones, so the propagation of microcracks is difficult.

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Numerical study on conjugate heat transfer in a liquid-metal-cooled pipe based on a four-equation turbulent heat transfer model

  • Xian-Wen Li;Xing-Kang Su;Long Gu;Xiang-Yang Wang;Da-Jun Fan
    • Nuclear Engineering and Technology
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    • 제55권5호
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    • pp.1802-1813
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    • 2023
  • Conjugate heat transfer between liquid metal and solid is a common phenomenon in a liquid-metal-cooled fast reactor's fuel assembly and heat exchanger, dramatically affecting the reactor's safety and economy. Therefore, comprehensively studying the sophisticated conjugate heat transfer in a liquid-metal-cooled fast reactor is profound. However, it has been evidenced that the traditional Simple Gradient Diffusion Hypothesis (SGDH), assuming a constant turbulent Prandtl number (Prt,, usually 0.85 - 1.0), is inappropriate in the Computational Fluid Dynamics (CFD) simulations of liquid metal. In recent decades, numerous studies have been performed on the four-equation model, which is expected to improve the precision of liquid metal's CFD simulations but has not been introduced into the conjugate heat transfer calculation between liquid metal and solid. Consequently, a four-equation model, consisting of the Abe k - ε turbulence model and the Manservisi k𝜃 - ε𝜃 heat transfer model, is applied to study the conjugate heat transfer concerning liquid metal in the present work. To verify the numerical validity of the four-equation model used in the conjugate heat transfer simulations, we reproduce Johnson's experiments of the liquid lead-bismuth-cooled turbulent pipe flow using the four-equation model and the traditional SGDH model. The simulation results obtained with different models are compared with the available experimental data, revealing that the relative errors of the local Nusselt number and mean heat transfer coefficient obtained with the four-equation model are considerably reduced compared with the SGDH model. Then, the thermal-hydraulic characteristics of liquid metal turbulent pipe flow obtained with the four-equation model are analyzed. Moreover, the impact of the turbulence model used in the four-equation model on overall simulation performance is investigated. At last, the effectiveness of the four-equation model in the CFD simulations of liquid sodium conjugate heat transfer is assessed. This paper mainly proves that it is feasible to use the four-equation model in the study of liquid metal conjugate heat transfer and provides a reference for the research of conjugate heat transfer in a liquid-metal-cooled fast reactor.

Texture Analysis of Three-Dimensional MRI Images May Differentiate Borderline and Malignant Epithelial Ovarian Tumors

  • Rongping Ye;Shuping Weng;Yueming Li;Chuan Yan;Jianwei Chen;Yuemin Zhu;Liting Wen
    • Korean Journal of Radiology
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    • 제22권1호
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    • pp.106-117
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    • 2021
  • Objective: To explore the value of magnetic resonance imaging (MRI)-based whole tumor texture analysis in differentiating borderline epithelial ovarian tumors (BEOTs) from FIGO stage I/II malignant epithelial ovarian tumors (MEOTs). Materials and Methods: A total of 88 patients with histopathologically confirmed ovarian epithelial tumors after surgical resection, including 30 BEOT and 58 MEOT patients, were divided into a training group (n = 62) and a test group (n = 26). The clinical and conventional MRI features were retrospectively reviewed. The texture features of tumors, based on T2-weighted imaging, diffusion-weighted imaging, and contrast-enhanced T1-weighted imaging, were extracted using MaZda software and the three top weighted texture features were selected by using the Random Forest algorithm. A non-texture logistic regression model in the training group was built to include those clinical and conventional MRI variables with p value < 0.10. Subsequently, a combined model integrating non-texture information and texture features was built for the training group. The model, evaluated using patients in the training group, was then applied to patients in the test group. Finally, receiver operating characteristic (ROC) curves were used to assess the diagnostic performance of the models. Results: The combined model showed superior performance in categorizing BEOTs and MEOTs (sensitivity, 92.5%; specificity, 86.4%; accuracy, 90.3%; area under the ROC curve [AUC], 0.962) than the non-texture model (sensitivity, 78.3%; specificity, 84.6%; accuracy, 82.3%; AUC, 0.818). The AUCs were statistically different (p value = 0.038). In the test group, the AUCs, sensitivity, specificity, and accuracy were 0.840, 73.3%, 90.1%, and 80.8% when the non-texture model was used and 0.896, 75.0%, 94.0%, and 88.5% when the combined model was used. Conclusion: MRI-based texture features combined with clinical and conventional MRI features may assist in differentitating between BEOT and FIGO stage I/II MEOT patients.

초피 추출물을 이용한 친환경 항균 실내 직물 블라인드 소재 개발 (Application of the Extract of Zanthoxylum piperitum DC to Manufacturing Eco-friendly Antimicrobial Interior Fabric Blind Materials)

  • 시에 리루에이;전도연;박주은;권기현;조봉근;박현우;이창우;김창영;정효일;김영호
    • 생명과학회지
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    • 제26권8호
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    • pp.936-942
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    • 2016
  • 본 연구는 초피의 항균 활성 소재의 산업화 타진 연구로 초피과피 정유 성분의 경우 높은 생산단가로 인해 그 활용이 제한적이다. 이에 초피잎을 대상으로 항균 활성소재를 탐색하고 초피의 천연 방향성과 항균력을 이용하여 실내 환경 개선 소재 특히 친환경 항균블라인드 개발에 대한 활용 가능성을 타진하였다. 그 결과, 초피잎 추출물의 항균 활성은 초피과피 추출물보다 약하게 나타났지만, K. pneumoniae, S. aureus와 S.mutans 균에 대하여 IC50 값은 0.5 mg/ml, 0.1 mg/ml와 1.0 mg/ml로 운향과 유래 타 Zanthoxylum 속 보다 항균력이 강한 것으로 나타났다. 항균력이 강하게 확인된 초피잎 EtOH 추출물과 EtOAc 추출물의 GC-MS 분석을 통해 초피잎 유래의 항균력 관련 화합물로서 quinic acid, 3,5-dihydroxy-6-methyl-2,3-dihydro-4H-pyran-4-one과 kaempferol 등을 확인할 수 있었다. 또한, International Standard Fabrics Test Method에 준하여 초피 추출물을 처리한 블라인드 소재의 항균력을 조사한 결과, 1% 농도의 초피잎 EtOH 추출물을 처리한 직물 블라인드 소재의 경우는 항생제 내성균 S. aureus의 생육을 99.9% 저해하였고, 2% 농도의 처리에 의해서는 K. pneumoniae 생육도 완전히 저해하였다. 이러한 연구결과는, 고가인 초피과피에 비해 농산폐자원으로 폐기되고 있는 초피잎의 항균력을 이용하여 친환경 기능성 항균 직물 블라인드 및 실내 창호 소재를 개발한다면 최근 급증하는 실내 환경성 질환의 예방 및 제어에 매우 유용할 수 있음을 시사한다.

포항 지역 토양 CO2의 분포 및 거동 특성 연구: CO2 지중저장 부지 자연 배경 조사 및 예비 해석 (Distribution and Behavior of Soil CO2 in Pohang area: Baseline Survey and Preliminary Interpretation in a Candidate Geological CO2 Storage Site)

  • 박진영;성기성;유순영;채기탁;이세인;염병우;박권규;김정찬
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제21권1호
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    • pp.49-60
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    • 2016
  • Distribution and behavior of baseline soil CO2 were investigated in a candidate geologic CO2 storage site in Pohang, with measuring CO2 concentrations and carbon isotopes in the vadose zone as well as CO2 fluxes and concentrations through ground surface. This investigation aimed to assess the baseline CO2 levels and to build the CO2 monitoring system before injecting CO2. The gas in the vadose zone was collected using a peristaltic pump from the depth of 60 cm below ground surface, and stored at gas bags. Then the gas components (CO2, O2, N2, CH4) and δ13CCO2 were analyzed using GC and CRDS (cavity ringdown spectroscopy) respectively in laboratory. CO2 fluxes and CO2 concentrations through ground surface were measured using Li-COR in field. In result, the median of the CO2 concentrations in the vadose zone was about 3,000 ppm, and the δ13CCO2 were in the wide range between −36.9‰ and −10.6‰. The results imply that the fate of CO2 in the vadose zone was affected by soil property and vegetations. CO2 in sandy or loamy soils originated from the respiration of microorganisms and the decomposition of C3 plants. In gravel areas, the CO2 concentrations decreased while the δ13CCO2 increased because of the mixing with the atmospheric gas. In addition, the relation between O2 and CO2, N2, and the relation between N2/O2 and CO2 implied that the gases in the vadose zone dissolved in the infiltrating precipitation or the soil moisture. The median CO2 flux through ground surface was 2.9 g/m2/d which is lower than the reported soil CO2 fluxes in areas with temperate climates. CO2 fluxes measured in sandy and loamy soil areas were higher (median 5.2 g/m2/d) than those in gravel areas (2.6 g/m2/d). The relationships between CO2 fluxes and concentrations suggested that the transport of CO2 from the vadose zone to ground surface was dominated by diffusion in the study area. In gravel areas, the mixing with atmospheric gases was significant. Based on this study result, a soil monitoring procedure has been established for a candidate geologic CO2 storage site. Also, this study result provides ideas for innovating soil monitoring technologies.

조경 BIM 라이브러리 표준화를 위한 조경객체 및 속성정보 분류체계 (Landscape Object Classification and Attribute Information System for Standardizing Landscape BIM Library)

  • 김복영
    • 한국조경학회지
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    • 제51권2호
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    • pp.103-119
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    • 2023
  • BIM(건설정보모델링)을 건설사업 전반에 적용하려는 정부정책 이후 업계는 이를 적극적으로 도입, 활용하려는 동향을 보이고 있다. BIM 도입은 모델 객체들을 표준에 맞춰 라이브러리로 구축하여 반복 사용함으로써 업무량을 줄이고 데이터의 정합성과 호환성, 일관된 품질을 확보함으로써 촉진될 수 있다. 이에 국내 건축과 토목분야, 해외 조경분야에서는 이미 상당수의 BIM 라이브러리 표준화 연구를 수행하고 이를 토대로 지침을 마련하였다. 현재 국내 조경분야에서도 BIM에 관한 기초연구 및 도입을 시도하고 있으나 산업현장 적용에 어려움이 많아 확산이 지연되고 있다. 이는 표준화된 라이브러리 사용으로 BIM 설계업무의 효율성을 향상시킴으로써 개선될 수 있으므로 본 연구는 이에 대한 논의의 시발점을 마련함과 동시에 조경실무에서 라이브러리를 제작할 때 참고할 수 있는 객체의 기준을 제시하고자 하였다. 조경 BIM 라이브러리 표준화는 객체분류와 속성정보 도출이라는 두 가지 측면에서 모색되었다. 먼저 국내 건설정보분류체계, 물품분류체계, 조경설계기준, 조경공사표준시방서, 그리고 노르웨이 조경가협회의 BIM 객체분류체계를 참고로 객체분류를 시도하였다. 그 결과 조경객체는 조경식재, 조경시설물, 조경구조물, 조경포장재, 관수 및 배수시설의 5개 대분류하에 교목, 관목, 지피초화류, 옥외시설물, 옥외조명시설, 계단 및 경사로, 옥외벽체, 옥외구조물, 포장재, 경계석, 관수시설, 그리고 급배수시설을 포함하는 12개의 중분류로 나뉘었다. 다음으로 조경객체에 탑재될 속성정보를 도출하고 구조화하였다. 이를 위해 KBIMS(한국 BIM 표준)의 공통 속성정보를 항목에 포함하였고 객체의 종류에 따라 달라지는 객체 속성정보를 영국 조경협회의 PDT(제품정보 템플릿)를 참고하여 추가하였다. 이로써 공통 속성정보에 식별, 보급, 분류체계, 공급정보가 포함되었고, 객체 속성정보에 명명, 규격, 설치 또는 시공, 성능, 지속가능성, 유지관리에 관련된 정보들이 포함되었다. 본 연구는 조경객체의 라이브러리 표준화 방안을 제시함으로써 모델링의 업무 효율성 및 분야 간 BIM 모델의 데이터 정합성을 향상시킴으로써 조경 BIM 도입의 토대를 마련했다는 데에 의의가 있다.