• 제목/요약/키워드: Hydrogen storage materials

검색결과 260건 처리시간 0.022초

ECR-MOCVD를 이용하여 연료 전지 분리판에 코팅된 FTO막의 특성 연구 (Characteristics of Fluorine-Doped Tin Oxide Film Coated on SUS 316 Bipolar Plates for PEMFCs)

  • 박지훈;;전법주;변동진;이중기
    • 한국수소및신에너지학회논문집
    • /
    • 제22권3호
    • /
    • pp.283-291
    • /
    • 2011
  • Polymer electrolyte membrane fuel cells (PEMFCs) use the bipolar plate of various materials between electrolyte and contact electrode for the stable hydrogen ion exchange activation. The bipolar plate of various materials has representatively graphite and stainless steel. Specially, stainless steels have advantage for low cost and high product rate. In this study, SUS 316 was effectively coated with 600 nm thick F-doped tin oxide (SnOx:F) by electron cyclotron resonance-metal organic chemical vapor deposition and investigated in simulated fuel cell bipolar plates. The results showed that an F-doped tin oxide (SnOx:F) coating enhanced the corrosion resistance of the alloys in fuel cell bipolar plates, though the substrate steel has a significant influence on the behavior of the coating. Coating SUS 316 for fuel cell bipolar plates steel further improved the already excellent corrosion resistance of this material. After coating, the increased ICR values of the coated steels compared to those of the fresh steels. The SnOx:F coating seems to add an additional resistance to the native air-formed film on these stainless steels.

Hydrogen Desorption and Absorption Properties of MgH2, LiBH4, and MgH2 + LiBH4 Composite

  • Park, Hye Ryoung;Song, Myoung Youp
    • 대한금속재료학회지
    • /
    • 제50권12호
    • /
    • pp.955-959
    • /
    • 2012
  • To increase the hydrogen storage capacity of Mg-based materials, a sample with a composition of 69.7 wt% $MgH_2$ + 30.3 wt% $LiBH_4$ was prepared by planetary ball milling under hydrogen. The absorption and desorption properties of unmilled $MgH_2$, unmilled $LiBH_4$, and 69.7 wt% $MgH_2$ + 30.3 wt% $LiBH_4$ were examined. At 648 K the unmilled $MgH_2$ desorbed 5.70 wt% for 60 min. The unmilled $LiBH_4$ desorbed 6.40 wt% H for 780 min at 673 K. The 69.7 wt% $MgH_2$ + 30.3 wt% $LiBH_4$ sample desorbed 3.10 wt% H for 50 min, and 3.32 wt% H for 300 min at 623 K at the second cycle.

Mg과 Ni의 기계적인 합금화에 의한 수소 저장 합금의 개발 (Development of Hydrogen-Storage Alloy by Mechanical Alloying of Mg and Ni)

  • 송명엽
    • 한국수소및신에너지학회논문집
    • /
    • 제7권2호
    • /
    • pp.181-191
    • /
    • 1996
  • 기계적인 합금화는 planetary mill을 사용하여 이루어졌으며, 시료의 조성은 Mg-10wt.%Ni과 Mg-25wt.%Ni이었다. 수소화물 형성 분해 cycling에 의해 혼합물 내에 $Mg_2Ni$상이 형성되었다. Mg-10wt.%Ni, Mg-25wt.%Ni은 583K, $0{\sim}8barH_2$에서 각각 n=7, n=6정도 후 활성화가 완료되었으며, 583K, $8barH_2$에서 10분 동안에 Mg-10wt.%Ni과 Mg-25wt.%Ni 시료에 의해 흡수된 수소의 중량 퍼센트 Ha(10min)은 각각 4.99, 4.52이었다. Mg-10wt.%Ni과 Mg-25wt.%Ni 혼합물은, 다른 Mg의 합금이나 혼합물에 비해 수소화물 형성 속도는 훨씬 높고, 수소화물 분해 속도와 수소 저장 용량은 비교적 높은 우수한 수소 저장 특성을 가진 수소 저장 재료라 판단된다. 기계적인 합금 처리와 수소 화합물 형성 분해 cycling의 효과는 핵 생성 site를 만들어 주고 입자의 크기를 줄이는 것으로 생각된다.

  • PDF

$CaNi_5$ 수소저장합금의 전기화학 특성에 미치는 MG 처리 효과 (The Effect of Mechanical Grinding or Electrochemical Properties of $CaNi_5$ Hydrogen Storage Alloy)

  • 이창래;강성균
    • 전기화학회지
    • /
    • 제2권2호
    • /
    • pp.106-111
    • /
    • 1999
  • [ $CaNi_5$ ] 수소저장합금의 전기화학적 충$\cdot$방전 특성에 미치는 MG(mechanical grinding) 영향이 Ar및 $H_2$ 가스분위기에서 조사되었다 MG공정중 $CaNi_5$ 합금은 표면 산화층의 파괴와 재생성 및 산화층 근방의 불균질화로 인하여 MG 15시간 이후부터 CaO와 Ni로 뚜렷한 상분리가 일어났다. $MG-CaNi_5$는 MG시간이 길어질수록 초기의 전기화학적 방전용량은 현저히 감소하였지만 충$\cdot$방전 싸이클의 증가에 따른 용량저하 속도는 $CaNi_5$합금에 비하여 낮았다. MG처리된 $CaNi_5$합금의 퇴화는 MG공정중의 상분리 및 불규칙화에 의한 수소의 가역반응 site의 감소 및 분극저항의 증가, KOH 전해질 내에서 합금 표면의 산화반응에 의한 부동태 피막형성에 기인하는 것으로 판단되었다.

Type III 고압수소저장용기의 설계 안전성 연구 (A Study on the Design Safety of Type III High-Pressure Hydrogen Storage Vessel)

  • 박우림;전상구;김송미;권오헌
    • 한국안전학회지
    • /
    • 제34권5호
    • /
    • pp.7-14
    • /
    • 2019
  • The type III vessel, which is used to store high-pressure hydrogen gas, is made by wrapping the vessel's liner with carbon fiber composite materials for strength performance and lightening. The liner seals the internal gas and the composite resists the internal pressure. The properties of the fiber composite material depends on the angle and thickness of the fiber. Thus, engineers should consider these various design variables. However, it significantly increases the design cost due to the trial and error under designing based on experience or experiments. And, for aluminum liners, fatigue loads due to using and charging could give a huge impact on the performance of the structure. However, fatigue failure does not necessarily occur in the position under the highest load in use. Therefore, for hydrogen storage vessel, fatigue evaluation according to design patterns is essential because stress distribution varies depend on composite layer patterns. This study performed an optimization analysis and evaluated a high-pressure hydrogen storage vessel to minimize these trial and error and improve the reliability of the structure, while simultaneously conducting fatigue assessment of all patterns derived from the optimization analysis process. The results of this study are thought to be useful in the strength improvement and life design of composite reinforced high-pressure storage vessels.

부피법을 이용한 저온 등량 수소 흡착열 측정법 개선 (Improvement of Accuracy for Determination of Isosteric Heat of Hydrogen Adsorption)

  • 오현철
    • 한국재료학회지
    • /
    • 제27권3호
    • /
    • pp.127-131
    • /
    • 2017
  • Isosteric heat of hydrogen adsorption is one of the most important parameters required to describe solid-state hydrogen storage systems. Typically, it is calculated from adsorption isotherms measured at 77K (liquid N2) and 87K (liquid Ar). This simple calculation, however, results in a high degree of uncertainty due to the small temperature range. Therefore, the original Sievert type setup is upgraded using a heating and cooling device to regulate the wide sample temperature. This upgraded setup allows a wide temperature range for isotherms (77K ~ 117K) providing a minimized uncertainty (error) of measurement for adsorption enthalpy calculation and yielding reliable results. To this end, we measure the isosteric heats of hydrogen adsorption of two prototypical samples: activated carbon and metal-organic frameworks (e.g. MIL-53), and compared the small temperature range (77~87K) to the wide one (77K ~ 117K).

Effects of Nickel and Iron Oxide Addition by Milling under Hydrogen on the Hydrogen-Storage Characteristics of Mg-Based Alloys

  • Song, Myoung Youp;Baek, Sung Hwan;Park, Hye Ryoung;Mumm, Daniel R.
    • 대한금속재료학회지
    • /
    • 제50권1호
    • /
    • pp.64-70
    • /
    • 2012
  • Samples of pure Mg, 76.5 wt%Mg-23.5 wt%Ni, and 71.5 wt%Mg-23.5 wt%Ni-5 wt%$Fe_2O_3$ were prepared by reactive mechanical grinding and their hydriding and dehydriding properties were then investigated. The reactive mechanical grinding of Mg with Ni is considered to facilitate nucleation and to shorten diffusion distances of hydrogen atoms. After hydriding-dehydriding cycling, the 76.5 wt%Mg-23.5 wt%Ni and 71.5 wt%Mg-23.5 wt%Ni-5 wt%$Fe_2O_3$ samples contained $Mg_2Ni$ phase. In addition to the effects of the creation of defects and the decrease in particle size, the addition of Ni increases the hydriding and dehydriding rates by the formation of $Mg_2Ni$. Expansion and contraction of the hydride-forming materials (Mg and $Mg_2Ni$) with the hydriding and dehydriding reactions are also considered to increase the hydriding and dehydriding rates of the mixture by forming defects and cracks leading to the fragmentation of particles. The reactive mechanical grinding of Mg-Ni alloy with $Fe_2O_3$ is considered to decrease the particle size.

In-situ Observation of Hydride Stability of Vanadium Alloys in Electron Microscope

  • Ohnuki, S.;Takase, K.;Yashiki, K.;Hamada, K.;Suda, T.;Watanabe, S.
    • Applied Microscopy
    • /
    • 제36권spc1호
    • /
    • pp.57-61
    • /
    • 2006
  • High-resolution microscopy was applied for surveying hydride stability in Vanadium alloys, which are candidate for hydrogen storage materials of advanced hydrogen energy systems. $V_2H$ hydride in V alloys was stable at room temperature under the vacuum condition, but it was decomposed during heating up to $100^{\circ}C$. It was confirmed from HRTEM image and FFT that $V_2H$ has a BCT structure, where hydrogen atoms locate at octahedral sites. Crystal orientation was <110> beta// <110> mat., and lattice strain is about 10%. After the decomposition of the hydride, relatively large lattice expansion was observed in the matrix, which suggests that hydrogen atoms should be trapped by lattice defects and included in the matrix. Intensive electron beam also enhanced the decomposition.

Hydriding Chemical Vapor Deposition 방법으로 제조된 MgH2의 수소저장 특성 (Hydrogen Storage Property of MgH2 Synthesized by Hydriding Chemical Vapor Deposition)

  • 박경덕;한정섭;김진호;김병관
    • 한국수소및신에너지학회논문집
    • /
    • 제22권3호
    • /
    • pp.380-385
    • /
    • 2011
  • $MgH_2$ was synthesized by hydriding chemical vapor deposition (HCVD). In this study, we examined the hydrogen storage property of $MgH_2$ synthesized by HCVD. The results of pressure-composition-temperature (PCT) measurement showed that the HCVDed $MgH_2$ reversibly absorbed hydrogen as much as 6 wt%. Each hydrogenation rate was very greater than the conventional alloy methods. The reason was that the particle size made by HCVD was small as approximately 1 ${\mu}m$. The PCT of $MgH_2$ made by HCVD methode was similar to a commercial $MgH_2$. The ${\Delta}H$ and ${\Delta}S$ value are respectively -76.8 $kJ/mol{\cdot}H_2$ and -137.4 $kJ/mol{\cdot}H_2$. Mg made by HCVD methode was activated easily than commercial Mg. Also the initial reaction rate was faster than that of commercial $MgH_2$. 70% of the total storage were stored during 400s.

Hydrogen Storage Properties of Mg Alloy Prepared by Incorporating Polyvinylidene Fluoride via Reactive Milling

  • Song, Myoung Youp;Kwak, Young Jun
    • 대한금속재료학회지
    • /
    • 제56권12호
    • /
    • pp.878-884
    • /
    • 2018
  • In the present work, we selected a polymer, polyvinylidene fluoride (PVDF), as an additive to improve the hydrogenation and dehydrogenation properties of Mg. 95 wt% Mg + 5 wt% PVDF (designated Mg-5PVDF) samples were prepared via milling in hydrogen atmosphere (reactive milling), and the hydrogenation and dehydrogenation characteristics of the prepared samples were compared with those of Mg milled in hydrogen atmosphere. The dehydrogenation of magnesium hydride formed in the as-prepared Mg-5PVDF during reactive milling began at 681 K. In the fourth cycle (n=4), the initial hydrogenation rate was 0.75 wt% H/min and the quantity of hydrogen absorbed for 60 min, $H_a$ (60 min), was 3.57 wt% H at 573 K and in 12 bar $H_2$. It is believed that after reactive milling the PVDF became amorphous. The milling of Mg with the PVDF in hydrogen atmosphere is believed to have produced defects and cracks. The fabrication of defects is thought to ease nucleation. The fabrication of cracks is thought to expose fresh surfaces, resulting in an increase in the reactivity of the particles with hydrogen and a decrease in the diffusion distances of hydrogen atoms. As far as we know, this investigation is the first in which a polymer PVDF was added to Mg by reactive milling to improve the hydrogenation and dehydrogenation characteristics of Mg.