• 제목/요약/키워드: Hollow carbon

검색결과 153건 처리시간 0.021초

Synthesis of Ultra-long Hollow Chalcogenide Nanofibers

  • 좌용호
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 추계학술발표대회
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    • pp.3.1-3.1
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    • 2011
  • Nanoengineered materials with advanced architectures are critical building blocks to modulate conventional material properties or amplify interface behavior for enhanced device performance. While several techniques exist for creating one dimensional heterostructures, electrospinning has emerged as a versatile, scalable, and cost-effective method to synthesize ultra-long nanofibers with controlled diameter (a few nanometres to several micrometres) and composition. In addition, different morphologies (e.g., nano-webs, beaded or smooth cylindrical fibers, and nanoribbons) and structures (e.g., core-.shell, hollow, branched, helical and porous structures) can be readily obtained by controlling different processing parameters. Although various nanofibers including polymers, carbon, ceramics and metals have been synthesized using direct electrospinning or through post-spinning processes, limited works were reported on the compound semiconducting nanofibers because of incompatibility of precursors. In this work, we combined electrospinning and galvanic displacement reaction to demonstrate cost-effective high throughput fabrication of ultra-long hollow semiconducting chalcogen and chalcogenide nanofibers. This procedure exploits electrospinning to fabricate ultra-long sacrificial nanofibers with controlled dimensions, morphology, and crystal structures, providing a large material database to tune electrode potentials, thereby imparting control over the composition and shape of the nanostructures that evolved during galvanic displacement reaction.

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Strengthening of steel hollow pipe sections subjected to transverse loads using CFRP

  • Narmashiri, Kambiz;Mehramiz, Ghadir
    • Structural Engineering and Mechanics
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    • 제60권1호
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    • pp.163-173
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    • 2016
  • Nowadays using Carbon Fiber Reinforced Polymer (CFRP) has been expanded in strengthening steel structures. Given that few studies have taken about strengthening of steel hollow pipe sections using CFRP, in present study, the effects of CFRP sheets using two layers as well as in combination with additional reinforcing strips has been assessment. Strengthening of five specimens was carried out in laboratory tests. As well as numerical simulation was performed for all specimens by Finite Element Method (FEM) using ABAQUS software and high correlation between the results of numerical models with experimental data indicate the power of FEM in this field. The results of both laboratory and simulated specimens showed that load-bearing capacity of circular cross-sections can be significantly increased using CFRP retrofitting technique. Also, application of additional CFRP reinforcing strips and layers caused more strength for the strengthened specimens.

역추적 기법을 활용한 중공형 LM-Guide Rail의 맨드렐 인발 금형 설계 (Die Design in Mandrel Drawing by using Backward Tracing Scheme: A Case for Hollow Linear Motion Guide Rail)

  • 김병민;김상현;이경훈
    • 소성∙가공
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    • 제26권5호
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    • pp.300-305
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    • 2017
  • In this paper, a design method for an intermediate die was developed to manufacture a hollow linear motion guide rail in mandrel drawing process based on virtual die method and backward tracing scheme. FE simulations and mandrel drawing experiments using Mn55Cr carbon steel were performed to prove the effectiveness of the proposed design method. Results of FE simulations and experiments showed that the proposed design method could lead to drawn products with sound shape and the highest dimensional precision.

Mathematical Modelling and Simulation of CO2 Removal from Natural Gas Using Hollow Fibre Membrane Modules

  • Gu, Boram
    • Korean Chemical Engineering Research
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    • 제60권1호
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    • pp.51-61
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    • 2022
  • Gas separation via hollow fibre membrane modules (HFMM) is deemed to be a promising technology for natural gas sweetening, particularly for lowering the level of carbon dioxide (CO2) in natural gas, which can cause various problems during transportation and process operation. Separation performance via HFMM is affected by membrane properties, module specifications and operating conditions. In this study, a mathematical model for HFMM is developed, which can be used to assess the effects of the aforementioned variables on separation performance. Appropriate boundary conditions are imposed to resolve steady-state values of permeate variables and incorporated in the model equations via an iterative numerical procedure. The developed model is proven to be reliable via model validation against experimental data in the literature. Also, the model is capable of capturing axial variations of process variables as well as predicting key performance indicators. It can be extended to simulate a large-scale plant and identify an optimal process design and operating conditions for improved separation efficiency and reduced cost.

농어촌의 수질오염과 수질특성에 적합한 정수 처리시스템의 개발에 관한 연구(1) (A Survey of water pollution and the development of water treatment system on agricultural Area)

  • 정문호;김영규;조태석;배현주;신명옥;김수연;김민지;김민영;김수복
    • 환경위생공학
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    • 제12권2호
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    • pp.65-74
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    • 1997
  • The purpose of this study was to investigate the removal effect and variation of contaminated water by various water treatment processes using sediment filter, activated carbon, photocatalysis, reverse osmosis, ultra violet sterilizer and ultra filtration. The removal effect of chloride and trace metal was low by activated carbon and ultra filter but high in reverse osmosis. The removal effect of bacteria and E. coli was low by activated carbon and membrane filter system using activated carbon but high in impregnated activated carbon. The removal effect of TCE was low in sand and ultra filter system as compared with activated carbon. Ultra filtration process was effective for purify agricultural water without E.coli. Reverse osmosis was effective to remove heavy metal and activated carbon was effective to remove halogenated organic chemical compound. The flux and the removal effect of COD in spiral wound ultrafilter were higher than the hollow fiber ultrafilter.

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Performance improvement of countercurrent-flow membrane gas absorption in a hollow fiber gas-liquid membrane contactor

  • Ho, Chii-Dong;Sung, Yun-Jen;Chen, Wei-Ting;Tsai, Feng-Chi
    • Membrane and Water Treatment
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    • 제8권1호
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    • pp.35-50
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    • 2017
  • The theoretical membrane gas absorption module treatments in a hollow fiber gas-liquid membrane contactor using Happel's free surface model were obtained under countercurrent-flow operations. The analytical solutions were obtained using the separated variable method with an orthogonal expansion technique extended in power series. The $CO_2$ concentration in the liquid absorbent, total absorption rate and absorption efficiency were calculated theoretically and experimentally with the liquid absorbent flow rate, gas feed flow rate and initial $CO_2$ concentration in the gas feed as parameters. The improvements in device performance under countercurrent-flow operations to increase the absorption efficiency in a carbon dioxide and nitrogen gas feed mixture using a pure water liquid absorbent were achieved and compared with those in the concurrent-flow operation. Both good qualitative and quantitative agreements were achieved between the experimental results and theoretical predictions for countercurrent flow in a hollow fiber gas-liquid membrane contactor with accuracy of $6.62{\times}10^{-2}{\leq}E{\leq}8.98{\times}10^{-2}$.

CTA를 이용한 중공사형 기체분리막의 제조 및 특성 (Preparation and Properties of Hollow Fiber Membrane for Gas Separation Using CTA)

  • 고형철;하성용;남상용
    • 멤브레인
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    • 제21권1호
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    • pp.98-105
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    • 2011
  • 본 연구에서는 셀룰로오스 트리아세테이트(CTA) 고분자를 이용한 중공사형 분리막을 상분리법에 의해 제조하였으며, 제조된 중공사 분리막의 기체분리 성능을 평가하였다. 제조된 중공사형 분리막의 기체분리 특성을 부여하기 위해서 1,4-dioxane을 10 wt.% 내외로 첨가하였다. 1,4-dioxane의 첨가에 의해 중공사 표면에 치밀층 형성을 위해서는 1,4-dioxane이 표면에서 증발되는 것이 필수적이며, 이를 위해 air-gap의 조절에 의해 중공사 표면에 치밀층이 생성되도록 하였다. 제조된 CTA 중공사형 기체분리막의 표면 및 단면의 모폴로지 측정을 위하여 전자주사현미경을 사용하였다. 또한 CTA 중공사형 기체분리막의 산소, 질소, 이산화탄소에 대한 기체투과도를 측정하였으며, 이 때 $P_{CO2}$ = 17 GPU, ${\alpha}_{CO2/N2}$ = 48을 나타내었다.

PVDF/플라즈마 막접촉기를 이용한 이산화탄소의 흡수에 관한 연구 (A Study on the Absorption of Carbon Dioxide using PVDF/Plasma Membrane Contactor)

  • 최승학;;오세중
    • Korean Chemical Engineering Research
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    • 제43권1호
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    • pp.161-169
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    • 2005
  • PVDF(polyvinylidenefluoride)중공사막 접촉기를 이용한 이산화탄소의 흡수에 관한 수치모사 및 실험을 수행하였다. 흡수제로는 물 또는 모노에탄올아민(monoethanolamine, MEA) 수용액을 사용하였다. 수치모사결과, 막접촉기에서의 이산화탄소의 농도분포는 MEA 수용액을 흡수제로 사용하였을 경우가 물을 흡수제로 사용하였을 경우보다 흡수제 공급속도의 영향을 덜 받았으며, 이산화탄소의 흡수속도 및 물질전달계수는 MEA의 농도가 증가할수록 증가하였다. 실험을 통하여 얻은 이산화탄소의 물질전달계수를 수치모사결과 및 이론치와 비교한 결과, 물을 흡수제로 사용하였을 경우 물질전달계수는 실험값과 수치모사결과, 이론값이 모두 잘 일치하였다. 반면에 MEA 수용액을 흡수제로 사용하였을 경우에는 수치모사결과와 이론값은 잘 일치하였으나, 실험값은 플라즈마로 처리한 경우와 처리하지 않은 경우 모두 수치모사 결과보다 낮은 값을 나타내었다. 그러나 막접촉기에 사용된 중공사막의 내구성은 플라즈마로 처리시킨 막이 플라즈마처리를 수행하지 않은 막보다 우수하였다.

CTAB 조성에 따른 할로우 실리콘/탄소 음극 복합소재의 전기화학적 특성 (Electrochemical Characteristics of Hollow Silicon/Carbon Anode Composite for Various CTAB Amounts)

  • 김동민;이종대
    • Korean Chemical Engineering Research
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    • 제62권1호
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    • pp.99-104
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    • 2024
  • 본 연구에서는 고용량 리튬이온배터리용 음극 소재로 탄소 코팅된 할로우 구조의 실리콘(HSi/C) 복합소재를 제조하였다. CTAB (N-Cetyltrimethylammonium bromide)이 첨가된 Stöber법을 통해 할로우 실리카(HSiO2)를 합성하였으며, HSiO2를 마그네슘열 환원한뒤 표면에탄소를 코팅하여 HSi/C 음극복합소재를 제조하였다. 복합소재의물리적 특성과 전기화학적 특성을 CTAB 조성에 따라 조사하였다. FE-SEM 분석 결과 CTAB 조성이 감소할수록 HSiO2 입자의 크기가 커졌으나 두께는 감소하였다. 제조된 HSi/C 소재는 다양한 CTAB 비율(0.5, 1.0, 1.5)에서 각각 2188.6, 2164.5, 1866.7 mAh/g의 높은 초기 방전용량을 나타내었으며, 100 사이클의 충·방전 후 0.5-HSi/C가 1171.3 mAh/g의 높은 가역 용량과 70.9%의 용량 유지율을 보여주었다. 전기화학 임피던스 분광법(Electrochemical Impedance Spectroscopy, EIS)으로 저항 특성을 분석하였으며, 0.5-HSi/C 소재가 20 사이클 이후 다른 CTAB 조성의 HSi/C 복합소재에 비해 안정적인 저항 특성을 보이는 것을 확인하였다.

Fabrication of Carbon Microcapsules Containing Silicon Nanoparticles-Carbon Nanotubes Nanocomposite for Anode in Lithium Ion Battery

  • Bae, Joon-Won;Park, Jong-Nam
    • Bulletin of the Korean Chemical Society
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    • 제33권9호
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    • pp.3025-3032
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    • 2012
  • Carbon microcapsules containing silicon nanoparticles (Si NPs)-carbon nanotubes (CNTs) nanocomposite (Si-CNT@C) have been fabricated by a two step polymerization method. Silicon nanoparticles-carbon nanotubes (Si-CNT) nanohybrids were prepared with a wet-type beadsmill method. A polymer, which is easily removable by a thermal treatment (intermediate polymer) was polymerized on the outer surfaces of Si-CNT nanocomposites. Subsequently, another polymer, which can be carbonized by thermal heating (carbon precursor polymer) was incorporated onto the surfaces of pre-existing polymer layer. In this way, polymer precursor spheres containing Si-CNT nanohybrids were produced using a two step polymerization. The intermediate polymer must disappear during carbonization resulting in the formation of an internal free space. The carbon precursor polymer should transform to carbon shell to encapsulate remaining Si-CNT nanocomposites. Therefore, hollow carbon microcapsules containing Si-CNT nanocomposites could be obtained (Si-CNT@C). The successful fabrication was confirmed by scanning electron microscopy (SEM) and X-ray diffraction (XRD). These final materials were employed for anode performance improvement in lithium ion battery. The cyclic performances of these Si-CNT@C microcapsules were measured with a lithium battery half cell tests.