• 제목/요약/키워드: $CO_2$ foam

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더블 레이어 흡수기를 이용한 고온 태양열 메탄-이산화탄소 개질반응 (Solar CO2-Reforming of Methane Using a Double-Layer Absorber)

  • 김동연;이진규;이주한;서태범
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2012년도 춘계학술발표대회 논문집
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    • pp.267-273
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    • 2012
  • Solar reforming of methane with CO2 was successfully tested with a direct irradiated absorber on a parabolic dish capable of 5kWth solar power. And the new type of double-layer absorber-the front layer, porous metal foam which absorbs the radiation and transfers the heat from material to gas, and the back layer, catalytically-activated metal foam-was prepared, and its activity was tested by using electric furnace. Ni was applied as the active metal on the gamma-Al2O3 coated Ni metal foam for the preparation of the catalytically-activated metal foam layer. Compared to conventional direct irradiation of the catalytically activated metal foam absorber, this new type of double layer absorber is found to exhibit a superior reaction and thermal storage performance at the fluctuating incident solar radiation. In addition, unlike direct irradiation of the foam absorber, double layer absorber has better thermal resistance, which prevents the emergence of cracks caused by mechanical or thermal shock. The total solar power absorbed reached up to 3.25kW and the maximum CH4 conversion was almost 59%.

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더블 레이어 흡수기를 이용한 고온 태양열 메탄-이산화탄소 개질반응 (Solar CO2-Reforming of Methane Using a Double-Layer Absorber)

  • 김동연;신일융;이주한;서태범
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2011년도 추계학술발표대회 논문집
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    • pp.80-86
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    • 2011
  • Solar reforming of methane with CO2 was successfully tested with a direct irradiated absorber on a parabolic dish capable of 5kWth solar power. And the new type of double-layer absorber - the front layer, porous metal foam which absorbs the radiation and transfers the heat from material to gas, and the back layer, catalytically-activated metal foam - was prepared, and its activity was tested by using electric furnace. Ni was applied as the active metal on the gamma-Al2O3 coated Ni metal foam for the preparation of the catalytically-activated metal foam layer. Compared to conventional direct irradiation of the catalytically activated metal foam absorber, this new type of double layer absorber is found to exhibit a superior reaction and thermal storage performance at the fluctuating incident solar radiation. In addition, unlike direct irradiation of the foam absorber, double layer absorber has better thermal resistance, which prevents the emergence of cracks caused by mechanical or thermal shock. The total solar power absorbed reached up to 3.25kW and the maximum CH4 conversion was almost 59%.

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$TiH_2$$CaCO_3$를 이용한 마그네슘 합금의 제조 (Fabrication of Magnesium Alloy Foam Through $TiH_2$ and $CaCO_3$)

  • 서창환;성환구;양동휘;박수한;허보영
    • 한국주조공학회지
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    • 제26권6호
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    • pp.267-271
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    • 2006
  • Metal foam is a class of attractive materials, which exhibits unique combinations of physical, mechanical, thermal, electrical and acoustic properties. In particular, it is light and good at absorbing energy, which makes it attractive in automotive and aerospace applications weight is critical. In this paper, the Mg alloy foam was prepared by melt foaming method by addition of calcium as thickening agent, and $TiH_2$ or $CaCO_3$ powder as blowing agent. The macrostructural observation of foamed Mg showed that the pore structures of Mg alloy foam made by $CaCO_3$ as blowing agent were much better than that of foams made by $TiH_2$ as blowing agent. In addition, this paper showed the possible reason of fabrication magnesium alloy foam in proportion to blowing agent and the porosity range was about 40 to 76% as results value.

Ni Foam-Supported Ni Nanoclusters for Enhanced Electrocatalytic Oxygen Evolution Reaction

  • Hoeun Seong;Jinhee Kim;Kiyoung Chang;Hyun-woo Kim;Woojun Choi;Dongil Lee
    • Journal of Electrochemical Science and Technology
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    • 제14권3호
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    • pp.243-251
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    • 2023
  • Developing oxygen evolution reaction (OER) electrocatalysts is essential to accomplish viable CO2 and water electrolysis. Herein, we report the fabrication and OER performance of Ni-foam (NF)-immobilized Ni6 nanoclusters (NCs) (Ni6/NF) prepared by a dip-coating process. The Ni6/NF electrode exhibited a high current density of 500 mA/cm2 for the OER at an overpotential as low as 0.39 V. Ni6/NF exhibited high durability in an alkaline solution without corrosion. Electrokinetic studies revealed that OER can be easily initiated on Ni6 NC with fast electron-transfer rates. Finally, we demonstrated stable CO2-to-CO electroreduction using an NC-based zero-gap CO2 electrolyzer operated at a current density of 100 mA/cm2 and a full-cell potential of 2.0 V for 12 h.

스테인리스 스틸 AOD 슬래그를 이용한 폼 콘크리트의 탄소포집 성능 (Carbon-capture Performance of foam Concrete Using Stainless Steel Slag)

  • 김병준;유성원;최영철
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권4호
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    • pp.18-25
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    • 2020
  • 본 연구에서는 스테인리스 스틸 AOD 슬래그를 이용한 폼 콘크리트의 역학적 및 탄소포집 성능을 조사하였다. AOD 슬래그 바인더로 사용하며 기포율이 69 ± 0.5%이고, 슬러리 밀도는 573.2 ~ 578.6 kg/㎥인 폼 콘크리트를 제작하였다. 탄산화에 의한 영향을 살펴보기 위해 배합을 마친 폼 콘크리트는 일반 양생 및 탄산화 양생 두 가지로 하였다. 압축강도 측정결과 Plain 시편에 비해 AOD 슬래그를 30% 치환한 ST30 시편은 탄산화 양생에 따라 강도가 증가하였다. 폼 콘크리트의 이미지 분석결과에서도 ST30시편이 Plain시편 보다 공극률이 낮으며 평균 공극 크기도 작아 압축강도가 높음을 확인할 수 있었다. 또한 SEM 분석을 통하여 AOD 슬래그의 탄산화에 의한 탄산칼슘의 생성을 확인하였다. TGA분석을 통해 AOD 슬래그의 혼입으로 CO2 uptake의 증가를 확인하였다. 폼 콘크리트는 일반 콘크리트에 비해 공극률이 높으므로 AOD 슬래그를 이용하면 탄산화 속도가 빨라 탄소 포집 성능 향상을 기대할 수 있을 것으로 판단된다.

코발트망간 산화물/탄소나노섬유 복합전극의 수퍼케폐시터 특성 (CoMn Oxide/Carbon-nanofiber Composite Electrodes for Supercapacitors)

  • 김용일;윤여일;고장면
    • 한국세라믹학회지
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    • 제45권8호
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    • pp.493-496
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    • 2008
  • Composite electrodes consisting of $CoMnO_2$ and carbon nanofibers(vapor grown carbon nanofiber, VGCF) with high electrical conducivity($CoMnO_2$/VGCF) were prepared on a porous nickel foam substrate as a current collector and their supercapacitive properties were investigated using cyclic voltammetry in 1 M KOH aqueous solution. The $CoMnO_2$/VGCF electrode exhibited high specific capacitance value of 630 F/g at 5 mV/s and excellent capacitance retention of 95% after $10^4$ cycles, indicating that the used VGCF played the important roles in reducing the interfacial resistance in the composite electrode to improve supercapacitive performance.

고성능 에너지 저장 소자를 위한 니켈 구조체에 담지된 니켈 코발트 수산화물의 나노 형상 제어 (Nano-Morphology Design of Nickel Cobalt Hydroxide on Nickel Foam for High-Performance Energy Storage Devices)

  • 신동요;윤종천;하철우
    • 한국재료학회지
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    • 제31권12호
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    • pp.710-718
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    • 2021
  • Recently, due to high theoretical capacitance and excellent ion diffusion rate caused by the 2D layered crystal structure, transition metal hydroxides (TMHs) have generated considerable attention as active materials in supercapacitors (or electrochemical capacitors). However, TMHs should be designed using morphological or structural modification if they are to be used as active materials in supercapacitors, because they have insulation properties that induce low charge transfer rate. This study aims to modify the morphological structure for high cycling stability and fast charge storage kinetics of TMHs through the use of nickel cobalt hydroxide [NiCo(OH)2] decorated on nickel foam. Among the samples used, needle-like NiCo(OH)2 decorated on nickel foam offers a high specific capacitance (1110.9 F/g at current density of 0.5 A/g) with good rate capability (1110.9 - 746.7 F/g at current densities of 0.5 - 10.0 A/g). Moreover, at a high current density (10.0 A/g), a remarkable capacitance (713.8 F/g) and capacitance retention of 95.6% after 5000 cycles are noted. These results are attributed to high charge storage sites of needle-like NiCo(OH)2 and uniformly grown NiCo(OH)2 on nickel foam surface.

망상형 탄소폼의 열처리 온도가 기계적 물성에 미치는 영향 (Effects of Heat-treatment Temperature on Mechanical Properties of Reticulated Carbon Foams)

  • 한윤수;이성민;김형태
    • 한국세라믹학회지
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    • 제49권3호
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    • pp.236-240
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    • 2012
  • The reticulated carbon foam have been used for their excellent properties in terms of thermal management which is getting important in industrial field currently. In this study, we measure the mechanical properties of the reticulated carbon foam which is heat-treated at various temperature from the prepared low-density phenol foam. Simultaneously, we observe microstructures with high resolution transmission microscope and measure the residual oxygen content of carbon foams to figure out the relationship between the apparent change of properties such as weight loss and linear shrinkage during heat treatment. In conclusion, the carbon foam heat-treated at $1400^{\circ}C$ shows the highest strength, and the mechanical behavior is believed to be strongly related to the creation of nano-size graphite crystals from the amorphous carbon during heat treatment. On the other hand, it is turned out that the weight loss occurred at the temperature under $1400^{\circ}C$ comes from the elimination of oxygen in the form of $CO_2$ or CO, but no evidence is found on weight loss mechanism at the temperature above $1400^{\circ}C$.

3D-foam 구조의 구리-주석 합금 도금층을 음극재로 사용한 리튬이온배터리의 전기화학적 특성 평가 (Electrochemical Properties of 3D Cu-Sn Foam as Anode for Rechargeable Lithium-Ion Battery)

  • 정민경;이기백;최진섭
    • 한국표면공학회지
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    • 제51권1호
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    • pp.47-53
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    • 2018
  • Sn-based lithium-ion batteries have low cost and high theoretical specific capacity. However, one of major problem is the capacity fading caused by volume expansion during lithiation/delithiation. In this study, 3-dimensional foam structure of Cu-Sn alloy is prepared by co-electrodeposition including large free space to accommodate the volume expansion of Sn. The Cu-Sn foam structure exhibits highly porous and numerous small grains. The result of EDX mapping and XPS spectrum analysis confirm that Cu-Sn foam consists of $SnO_2$ with a small quantity of CuO. The Cu-Sn foam structure electrode shows high reversible redox peaks in cyclic voltammograms. The galvanostatic cell cycling performances show that Cu-Sn foam electrode has high specific capacity of 687 mAh/g at a current rate of 50 mA/g. Through SEM observation after the charge/discharge processes, the morphology of Cu-Sn foam structure is mostly maintained despite large volume expansion during the repeated lithiation/delithiation reactions.

해수 포말분리공정의 해석 및 모델 (Modeling of Foam Separator for Sea Water Treatment)

  • 허현철;서재관;박은주;김성구
    • 한국수산과학회지
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    • 제32권2호
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    • pp.165-169
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    • 1999
  • 포말분리 장치를 이용한 해수 중의 단백질 제거 특성을 조사한 결과, 단백질 농도가 높을 수록 또한 폭기량이 높을수록 단백질의 제거속도는 증가하는 것으로 나타났다. 이러한 각각의 제거특성을 통계학적으로 비선형 회귀분석하여 각각의 인자의 변화에 따른 단백질 농도의 변화를 다음의 식으로 나타낼 수 있었다. $$f\;(Co,\;u)=1.5712\times10^{-7}\timesCo^{3.061}\timesu^{1.258}$$ 위 식을 이용하여 유한차분법으로 시뮬레이션을 수행한 결과 실제 포말분리 운전에서 나타난 결과와 상관성이 아주 높은 결과를 얻을 수 있었다.

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