• Title/Summary/Keyword: hydrate$SF_6$(sulfur hexafluoride)

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Morphological study of $SF_6$ clathrate hydrate crystal ($SF_6$ 하이드레이트 결정 성장의 특성)

  • Lee, Yoon-Seok;Lee, Hyun-Ju;Lee, Eun-Kyung;Kim, Soo-Min;Lee, Ju-Dong;Kim, Yang-Do
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.711-711
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    • 2009
  • Global warming has been widely recognized as a serious problem threatening the future of human beings. It is caused by the buildup in the atmosphere of greenhouse gases, such as carbon dioxide, methane, hydrofluorocarbons (HFCs), and sulfur hexafluoride (SF6). Particularly, SF6 has extremely high global warming potential compare to those of other global warming gases. One option for mitigating this greenhouse gas is the development of an effective process for capturing and separating these gases from anthropogenic sources. In general, gas hydrates can be formed under high pressure and low temperature. However, SF6 gas is known to form hydrate under relatively milder conditions. Therefore, technological and economical effects could be expected for the separation of SF6 gas from waste gas mixtures. In this study, we carried out morphological study for the SF6 hydrate crystals to understand its formation and growth mechanisms. The observations were made in high-pressure optical cell charged with liquid water and SF6 gas at constant pressure and temperature. Initially SF6 hydrate formed at the surface between gas and liquid regions, and then subsequent dendrite crystals grew at the wall above the gas/water interface. The visual observations of crystal nucleation, migration, growth and interference were reported. The detailed growth characteristics of SF6 hydrate crystals were discussed in this study.

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Study on Hydrate formation characteristics observation by change of $SF_6$ & $N_2$ Mixture ($SF_6$ & $N_2$ 혼합가스의 조성변화에 따른 Hydrate 형성 특성 관찰에 관한 연구)

  • Moon, D.H.;Lee, J.J.;Shin, H.J.;Lee, J.D.;Seo, Y.W.;Lee, G.W.
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.10a
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    • pp.220-222
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    • 2008
  • 가스하이드레이트는 물분자들의 수소결합에 의하여 입체 그물구조를 만들게 되면 그 그물구조의 공동(Cavity) 내에 크기가 작은 가스 분자들이 포획되면서 형성되는 결정체이다. 이러한 원리로 포획되어질 수 있는 가스는 130여종에 이른다. 포획가능한 가스 분자들 중 $SF_6$의 경우 보다 쉬운 조건에서 하이드레이트 형성이 되는 점을 이용하여 $SF_6$의 분리 회수에 하이드레이트의 형성 원리를 적용하고자 하였다. 이를 위하여 본 연구에서는 압력조건과 조성변화를 달리하여 $SF_6$ 하이드레이트 형성 특성을 관찰하였다. 본 연구에서 하이드레이트 결정 형성 특성 및 형성 속도에 대한 실험과 분석을 통한 결과를 확보함으로써 향후 $SF_6$ 하이드레이트의 생산, 저장, 회수, 분리 등의 설계의 기본자료로 사용될 수 있을 것으로 사료된다.

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A Study of $SF_6$ Treatment using Principles of Gas Hydrate Formation (가스 하이드레이트 형성 원리를 이용한 $SF_6$ 처리 기술에 관한 연구)

  • Lee, Bo-Ram;Lee, Hyun-Ju;Kim, Yang-Do;Ryu, Young-Bok;Lee, Man-Sik;Kim, Young-Seok;Lee, Ju-Dong
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.06a
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    • pp.485-488
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    • 2007
  • $SF_6$(sulfur hexafluoride)는 뛰어난 단열 및 아크방지능력(arc-extinguishingproperty)으로 인해, 전력용 변압기의 절연가스와 반도체${\cdot}$액정용 플라즈마 CVD로의 cleaning gas, 주물공장 covering gas 등으로 사용되고 있다. 하지만, $SF_6$의 지구온난화지수(global warming potential)는 $CO_2$대비 23,900배가 높아 기후변화에 미치는 영향이 $CO_2$보다 훨씬 크고, 대기 중 분해되지 않고 잔존하는 기간이 $CH_4$ 10년, $CO_2$ 및 CFCs는 100년으로 추정되는데 반해, $SF_6$는 3,200년으로 연간방출양이 작더라도 오랜 기간 누적되면 그 파장이 클 것으로 사료된다. 대부분의 가스 하이드레이트(고상결정상태)는 고압, 저온에서 형성가능 하지만, 불화가스에 대해서는 쉽게 결정화가 일어난다. $SF_6$는 3$^{\circ}C$, 2기압에서 고밀도 고상화가 되기 때문에 여러 기체와 흔합되어 있는 경우 $SF_6$만을 압축된 고상 결정상태를 형성, $SF_6$를 회수, 정제할 수 있으므로 불화가스 분리${\cdot}$회수에 기술적, 경제적 효과를 기대할 수 있다. 본 연구에서는 하이드레이트 촉진제로서 계면활성제(promoter) 첨가에 따른 $SF_6$ 하이드레이트 형성 및 해리과정 실험을 통해 효율적인 $SF_6$ 저감에 관한 적용기술을 연구해 보았다.

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Characteristics of sulfur hexafluoride hydrate film growth at the vapor/liquid interface (기상/액상 계면에서의 SF6 하이드레이트 필름 성장거동 연구)

  • Kim, Soo-Min;Lee, Hyun-Ju;Lee, Bo-Ram;Lee, Yoon-Seok;Lee, Eun-Kyung;Lee, Ju-Dong;Kim, Yang-Do
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.20 no.2
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    • pp.85-92
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    • 2010
  • $SF_6$ gas has been widely used in many industrial fields as insulating, cleaning and covering gases due to its outstanding arc-extinguishing and insulating properties. However, global warming potential of $SF_6$ gas is 23,900 times more than that of $CO_2$ and it remains in the air during 3,200 years. For these reason, technological and economical effects could be expected for the separation of $SF_6$ from gas mixtures by hydrate forming process. In this study, we carried out morphological studies for the $SF_6$ hydrate crystal to understand its formation and growth mechanisms. $SF_6$ hydrate film was initially formed at the interfacial boundary between gas and liquid regions, and then subsequent dendrite crystals growth was observed. The dendrite crystals grew to the direction of gas region probably due to the guest gas concentration gradient. The detailed growth characteristics of $SF_6$ hydrate crystals such as nucleation, migration, growth and interference were discussed in this study.

Molecular Behavior of $SF_6+H_2$ Structure II Hydrates (sII $SF_6+H_2$ 하이드레이트의 분자 거동)

  • Park, Da-Hye;Lee, Bo Ram;Sa, Jeong-Hoon;Sum, Amadeu K.;Lee, Kun-Hong
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.122.2-122.2
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    • 2011
  • Sulfur hexafluoride ($SF_6$), one of the most potent greenhouse gases, is known as a hydrate former and has been studied at the high pressure up to 1.3 GPa with gas mixtures and with aqueous surfactant. Since we regard $SF_6$ as a potential promoter molecule that can stabilize hydrate structure more effectively compare to the other promoters, further investigation is required to verify the stabilizing ability of $SF_6$ in the hydrate structure. However, the insoluble nature of $SF_6$ in water or gases hinders fine scale analyses. This work discusses the data obtained by using molecular dynamics simulations of structure II (sII) clathrate hydrates containing $SF_6$ and $H_2$. The simulations were performed using the TIP4P/Ice model for water molecule and a previously reported $SF_6$ molecular model (optimized at the pure $SF_6$ single phase system (Olivet and Vega, 2007)), and a $H_2$ molecular model (adapted from the THF+$H_2$ hydrate system (Alavi et al., 2006)). The simulations are performed to observe the stability of $SF_6$ and $H_2$ in the sII clathrate hydrate system with varying temperature and pressure conditions and occupancies of $SF_6$ and $H_2$, which cannot be easily tuned experimentally. We observe that stability of H2 enclathrated in the hydrate structure more affected by the occupancy of $SF_6$ molecules and temperature than pressure, which ranges from 1 to 100 bar.

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Effects of Surfactant on SF6 Gas Hydrate Formation Rate (가스 하이드레이트 형성 원리를 이용한 SF6 처리 기술에 관한 연구)

  • Lee, Bo-Ram;Lee, Hyun-Ju;Kim, Shin-Ho;Lee, Ju-Dong;Kim, Yang-Do
    • Korean Journal of Materials Research
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    • v.18 no.2
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    • pp.73-76
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    • 2008
  • [ $SF_6$ ] gas has been widely used as an insulating, cleaning and covering gas due to its outstanding insulating feature and because of its inert properties. However, the global warming potential of $SF_6$ gas is extremely high relative to typical global warming gases such as $CO_2$, CFCs, and $CH_4$. For these reasons, it is necessary to separate and collect waste $SF_6$ gas. In this study, the effects of a surfactant (Tween) on the formation rate of $SF_6$ gas hydrates were investigated. The $SF_6$ gas hydrate formation rate increased with the addition of Tween and showed a nearly 6.5 times faster hydrate formation rate with an addition of 0.2 wt.% Tween compared to an addition of pure water. This is believed to be due to the increased solubility of $SF_6$ gas with the addition of the surfactant. It was also found that $SF_6$ gas hydrate in the surfactant solution showed two-stage hydrate formation rates with a formation rate that increased rapidly in the 2nd stage.

Crystal growth studies of $SF_6$ clathrate hydrate ($SF_6$ 하이드레이트 결정의 성장 특성에 대한 연구)

  • Lee, Yoon-Seok;Lee, Ju-Dong;Lee, Bo-Ram;Lee, Hyun-Ju;Lee, Eun-Kyung;Kim, Soo-Min;Kim, Young-Seok;Yoon, Seog-Young;Kim, Yang-Do
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.19 no.5
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    • pp.228-236
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    • 2009
  • In this study, we investigated morphological characteristics of $SF_6$ clathrate hydrate crystals to understand its formation and growth mechanism. $SF_6$ clathrate hydrate crystals were formed in high-pressure reaction cell charged with pure water and $SF_6$ gas at constant pressure and temperature. Two-phase ($SF_6$ gas/aqueous solution) and three-phase ($SF_6$ gas/aqueous solution/$SF_6$ liquid) conditions were investigated, In both conditions, dendritic shape hydrate crystals were grown as like fibriform crystals along upward growth direction at the gas/aqueous solution interface. In the case of the reaction process of three-phase condition, when the $SF_6$ gas bubbles which were generated in $SF_6$ liquid phase due to the reduction of reaction cell pressure stuck to the gas/aqueous interfaces, the hydrate phase were appeared at the surface of the bubbles. This paper presents the detail growth characteristics of $SF_6$ hydrate crystals including crystal nucleation, migration, growth and interference.

A Study on Spectroscopic Analysis by using Raman Spectrometer of Multi-Guest Mixed Hydrates Containing $SF_6$ (Raman Spectroscopy를 이용한 $SF_6$ 혼합 하이드레이트의 분광학적 해석에 관한 연구)

  • Shin, H.J.;Moon, D.H.;Kim, M.C.;Kim, Y.S.;Seo, Y.W.;Lee, G.W.
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.10a
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    • pp.223-225
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    • 2008
  • 하이드레이트는 저온.고압에서 저분자량의 게스트(guest)가 호스트(host)인 물분자 속에 포획되어 만들어지는데 일련의 과정은 물리적 반응을 통해 생성된다.본 연구에서는$CO_2$보다 지구온난화지수(Global Warming Potential)가 23,900배 높은 $SF_6$의 회수 및 정제기술로써 하이드레이트화를 이용하는 신기술 개발의 일환으로 분광학적 접근을 통해 $SF_6$ 혼합 하이드레이트의 정성 및 정량분석을 수행하였다. Raman Shift 분석 결과 $SF_6$$770cm^{-1}$에서 $v_1$ 진동주파수를 확인함으로써 하이드레이트 내 $SF_6$가 안정적으로 포집됨을 확인하였고 혼합가스 내 $SF_6$ 농도별로 만들어진 샘플의 Raman Shift를 통해서 $SF_6$의 하이드레이트 전환율을 가늠할 수 있었다.

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