• 제목/요약/키워드: energy storage properties

검색결과 576건 처리시간 0.03초

Fundamental magnetic and elastic properties of Fe-Si alloys: A first-principles study

  • Yun, Won-Seok;Lee, Jee-Yong;Kim, In-Gee;Hong, Soon-Cheol;Lee, Jae-Il
    • 한국자기학회:학술대회 개요집
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    • 한국자기학회 2011년도 자성 및 자성재료 국제학술대회
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    • pp.39-40
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    • 2011
  • In this study, the magnetism and the elastic properties of Fe-Si alloys have been investigated using the all-electron FLAPW method based on the GGA. The local magnetic moment of Fe atoms decreases gradually. From the Pugh's relation and $C_P$, in the ordered $D0_3$ $Fe_3Si$, we predict that it presents intrinsic ductility.

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Recent Advances in Preparation and Supercapacitor Applications of Lignin-Derived Porous Carbon: A Review

  • Hae Woong Park;Hyo-Jun Ahn;Kwang Chul Roh
    • Journal of Electrochemical Science and Technology
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    • 제15권1호
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    • pp.111-131
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    • 2024
  • Lignin-derived porous carbon has been identified as a versatile electrode material for supercapacitors (SCs) in energy storage systems (ESSs) owing to their intrinsic advantages including good electrical conductivity, low cost, high thermal and chemical stability, and high porosity, which stem from high surface, appropriate pore distribution, tailored morphologies, heterostructures, and diverse derivates. In this review, to provide a fundamental understanding of the properties of lignin, we first summarize the origin, historical development, and basic physicochemical properties. Next, we describe essential strategies for the preparation of lignin-derived porous carbon electrode materials and then highlight the latest advances in the utilization of lignin-derived porous carbon materials as advanced electrode materials. Finally, we provide some of our own insights into the major challenges and prospective research directions of lignin-derived porous carbon materials for supercapacitors. We believe that this review will provide general guidance for the design of next-generation electrode materials for supercapacitors.

신발 밑창용 고무 블렌드물의 점탄성적 특성에 대한 연구 (A Study on the Viscoelastic Properties of Rubber Blends for Shoes Outsole)

  • 박차철;표경덕
    • Elastomers and Composites
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    • 제45권4호
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    • pp.309-315
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    • 2010
  • 신발 밑창용 CIIR에 KBR, SSBR 및 XNBR을 다양한 조성으로 혼합하여 블렌드의 인장탄성률, 반발탄성, 저장탄성률, tan${\delta}$, 크리프 특성 변화 등을 검토하였다. 인장 탄성률 측정실험에서 XNBR이 가장 높은 값을 나타내었으며, CIIR이 가장 낮은 탄성률을 나타내었다. 반발탄성은 CIIR < XNBR < SSBR < KBR 순서로 반발탄성이 높아지는 경향을 나타내었으며, SSBR, XNBR, KBR이 CIIR에 혼합됨에 따라 블렌드의 반발탄성은 산술평균적으로 증가하는 경향을 나타내었다. 크리프 실험에서 CIIR이 가장 높은 점성변형을 나타내었으며, SSBR과 KBR은 상대적으로 낮은 점성 변형을 나타내었다. CIIR의 경우는 $-30^{\circ}C$ 부근에서 tan${\delta}$ 최대 피크를 나타내었으나, XNBR과 SSBR의 경우 CIIR 보다 높은 온도인 $5^{\circ}C$$0^{\circ}C$ 부근에서 각각 뚜렷한 피크를 나타내었다.

천일염과 감마선이 막걸리의 미생물 생장 억제에 미치는 효과 (Growth-inhibitory Effect of the Sun-dried Salts and Gamma rays on Microorganisms Isolated from Korean Traditional Raw Rice Wine)

  • 남지영;김재훈;이주운;김진규
    • 환경생물
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    • 제28권4호
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    • pp.218-222
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    • 2010
  • This study was carried out to investigate the changes in the storage characteristics of the Korean traditional raw rice wine (RRW) treated with Korean sun-dried salts and gamma rays. Nowadays, RRWs have received attention because they are a nutritious food with health-stimulating properties. But the rapid deterioration of the fermented RRW is one of the serious problems for brewing and marketing in the world. Actually, the expiry date of the RRW is around a week and this has been a biggest disadvantage of the RRW. The goal of this study was to make it of high quality and extend the period of circulation of the RRW. A lactic acid bacterium was isolated from the RRW. The 16S rRNA sequences of isolates showed 98% homology with the Lactobacillus fermentum. These results suggested that could be manageable improve the shelf life with addition of the sun-dried salts and irradiation with gamma rays.

Sodium Acetate Trihydrate를 이용한 구형의 PCM 입자의 제조 (Preparation of spherical shape of PCM by using sodium acetate trihydrate)

  • 김종국;정경택;설용건;김동형;이태규
    • 태양에너지
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    • 제17권2호
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    • pp.67-74
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    • 1997
  • 잠열 저장물질로서 비조화 축열재인 sodium acetate trihydrate를 사용하여 구형의 PCM 입자를 제조하였다. 비조화 축열재의 단점인 상분리 현상 및 과냉각 현상을 방지하기 위하여 점증제로서 gelatin, 조핵제로서 sodium pyrophosphate decahydrate를 사용하였다. 혼합조성의 용융 PCM을 이용하여 연속적으로 지름이 3-3.5 mm 인 구형 PCM 입자가 제조되었다. 용융 PCM 방출속도가 1.3-1.8 ml/min 인 범위 내에서는 PCM 입자크기가 방출속도에 영향을 받지 않았다. 제조된 PCM 입자의 물성을 측정하기 위하여 DSC, SEM과 XRD를 이용하였다.

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음식물쓰레기로 부터 제조한 분체연료 연소특성 (A Study on Combustion Characteristics of Pulverized Fuel Made from Food Waste)

  • 손현석;박영성;김상국
    • 신재생에너지
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    • 제4권4호
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    • pp.37-43
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    • 2008
  • Three properties of food waste are water 80%, ash 3%, volatile matter 17%. When food waste goes through treatment process such as removal of foreign substances, removal of water as well as sodium, dryness, and pulverization, it transforms into 4,000 Kcal/kg purverized fuel if moisture content is below 13%. Fuel ratio (fixed carbon/volatile matter) of purverized fuel is low compared with bituminuous coal. Ignition temperature measured by thermogravimetry analyzer is about $460^{\circ}C$. Combustion test of purverized fuel have been performed using energy recovery facility which include storage tank of dewatered cake, dryer, hammer mill, combuster including burner, boiler, flue gas treatment equipment. When 160-180 kg/hr of fuel is steadily supplied to burner for 3 hours, combustor temperature reaches about $1000^{\circ}C$ and CO is 77-103 ppm at 1.55 excess air ratio and SOx and Cl are under 2 ppm and 1ppm, respectively. This experiment demonstrate that purverized fuel made from food waste could be an alternative clean energy at the age of high oil price.

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독립형 반고체 복합 전해질을 적용한 고온 수퍼커패시터 (High Temperature Supercapacitor with Free Standing Quasi-solid Composite Electrolytes)

  • 김동원;정현영
    • 한국재료학회지
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    • 제29권2호
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    • pp.121-128
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    • 2019
  • Supercapacitors are attracting much attention in sensor, military and space applications due to their excellent thermal stability and non-explosion. The ionic liquid is more thermally stable than other electrolytes and can be used as a high temperature electrolyte, but it is not easy to realize a high temperature energy device because the separator shrinks at high temperature. Here, we report a study on electrochemical supercapacitors using a composite electrolyte film that does not require a separator. The composite electrolyte is composed of thermoplastic polyurethane, ionic liquid and fumed silica nanoparticles, and it acts as a separator as well as an electrolyte. The silica nanoparticles at the optimum mass concentration of 4wt% increase the ionic conductivity of the composite electrolyte and shows a low interfacial resistance. The 5 wt% polyurethane in the composite electrolyte exhibits excellent electrochemical properties. At $175^{\circ}C$, the capacitance of the supercapacitor using our free standing composite electrolyte is 220 F/g, which is 25 times higher than that at room temperature. This study has many potential applications in the electrolyte of next generation energy storage devices.

Tribological Improvement of Lubricants Using Silicone Rubber Powders in Hydrogen Compressors

  • Sung-Jun Lee;Chang-Lae Kim
    • Tribology and Lubricants
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    • 제40권3호
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    • pp.78-83
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    • 2024
  • The development of eco-friendly alternative energy sources has become a global priority owing to the depletion of fossil fuels and an increase in environmental concerns. Hydrogen energy has emerged as a promising clean energy source, and hydrogen compressors play a crucial role in the storage and distribution of compressed hydrogen. However, harsh operating conditions lead to the rapid deterioration of conventional lubricants in hydrogen compressors, thereby necessitating the development of advanced lubrication technologies. This study introduces micrometer-sized silicone rubber powders as lubricant additives to enhance the lubrication performance of hydraulic oils in hydrogen compressors. We prepare silicone rubber powders by varying the ratio of the silicone rubber base to the curing agent and investigate their effects on interfacial properties, friction behavior, and wear characteristics. The findings reveal that the incorporation of silicone rubber powders positively influences the surface affinity, wettability, friction reduction, and wear resistance of the lubricants on the 304SS substrate. Moreover, we identify the optimal lubricant formulations, with a 15:1 ratio demonstrating the most effective friction reduction and a 5:1 ratio exhibiting the highest wear resistance. The controlled surface modification by the silicone rubber powder and the enhanced interfacial characteristics of the powder-containing lubricants synergistically contribute to the improved lubrication performance. These results indicate the potential of silicone rubber powder additives for the development of long-life lubrication solutions for hydrogen compressors and related applications, ultimately contributing to the advancement of sustainable energy technologies.

PCM 기술의 콘크리트 적용 II : 계면중합법에 의한 1-도데카놀 마이크로 캡슐에 있어서 계면활성제로 사용된 SSMA의 표면활성도가 마이크로 캡슐의 특성에 미치는 영향 (Application of PCM Technology to Concrete II : Effects of SSMA(Sulfonated Styrene-Maleic Anhydride) on the Properties of the 1-Dodecanol Micro-Capsule)

  • 신세순;정재윤;임명관;최동욱;김영호
    • 한국건설순환자원학회논문집
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    • 제1권1호
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    • pp.17-25
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    • 2013
  • 축열재 이용 기술은 실내 냉난방을 위하여 사용된 에너지를 장시간 일정온도로 유지할 수 있도록 하여 에너지 사용 효율을 높이는 장점이 있다. 이 중 상변화 물질을 이용한 잠열 축열재는 물질의 잠열성질을 이용하는 것으로서 심물질로서 일정온도에서 녹는점을 갖는 물질을 캡슐화 하여 이를 건축자재에 적용하여 실내 및 외기의 온도에 따라서 심물질이 녹거나 어는 과정에서 축열과 방열로 인한 에너지 절감 및 차단 효과를 갖는다. 상변화 물질을 이용해 축열재를 만드는 방법은 마이크로 캡슐화의 방법이 있다. 이 방법은 크게 분류하면 화학적 방법, 물리 화학적 방법 및 물리적 기계적 방법의 3가지로 나눌 수 있다. 물리 화학적 방법으로 습식공정에 의한 마이크로 캡슐화 공정을 이용했으며 이 공정은 심물질을 용매에서 에멀젼화한 다음 고분자모노머를 심물질인 에멀젼의 벽면에 코팅하여 경화 시키는 공정이다. 이 경우에 심물질의 에멀젼이나 벽재 모노머의 코팅 성능을 좋게 하기 위하여 계면활성제가 사용된다. 또한 계면활성제의 특성에 따라서 마이크로 캡슐화의 성능이 좌우되고 특히 벽재물질의 코팅 두께 및 코팅의 균일성에 크게 좌우된다. 본 연구에서는 상변화를 이용한 축열재로서 심물질인 1-도데카놀을 멜라민수지로 계면중합법에 의하여 마이크로 캡슐화 하는데 있어서 계면활성제인 SSMA(sulfonated styrene-maleic anhydride)의 화학적 특성에 따른 마이크로 캡슐의 성능과 이에 따른 축열 성능을 비교하였다.

Shape- and size-controlled synthesis of noble metal nanoparticles

  • Choi, Kyeong Woo;Kim, Do Youb;Ye, Seong Ji;Park, O Ok
    • Advances in materials Research
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    • 제3권4호
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    • pp.199-216
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    • 2014
  • Noble metal nanoparticles (mainly Au, Ag, Pt and Pd) have received enormous attention owing to their unique and fascinating properties. In the past decades, many researchers have reported methods to control the shape and the size of these noble metal nanoparticles. They have consequently demonstrated outstanding and tunable properties and thus enabled a variety of applications such as surface plasmonics, photonics, diagnostics, sensing, energy storage and catalysis. This paper focuses on the recent advances in the solution-phase synthesis of shape- and size-controlled noble metal nanoparticles. The strategies and protocols for the synthesis of the noble metal nanoparticles are introduced with discussion of growth mechanisms and important parameters, to present the general criteria needed for producing desirable shapes and sizes. This paper reviews their remarkable properties as well as their shape- and size- dependence providing insights on the manipulation of shape and size of metal nanoparticles, necessary for appropriate applications. Finally, several applications using the shape- and size-controlled noble metal nanoparticles are highlighted.