• Title/Summary/Keyword: 전해질 분석

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The effects of Bo-joong-ik-gi-tang administration on Metabolic Responses ; changes in the energy and electrolyte metabolism among long distance runners (보중익기탕(補中益氣湯) 투여가 장거리 달리기 선수의 에너지 및 전해질 대사에 미치는 영향)

  • Song, Sun-Gi;Keum, Dong-Ho;Oh, Jae-Geun;Lee, Myeong-Jong
    • The Journal of Dong Guk Oriental Medicine
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    • v.7 no.1
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    • pp.99-117
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    • 1998
  • Objective This experimental study was designed to investigate effects of Bo-joong-ik-gi-tang administration among long distance runners on changes of the energy and electrolyte metabolism. Materials and Methods All subjects were divided randomly with two groups, Bo-joong-ik-gi-tang Group (N=4) and control group (N=4) and performed to run the 400m track with 70% of HR max about 1 hour. The blood samples were collected from antecubital vein by 5ml syringes at before exercise, immediately after exercise, recovering-10 min. recovering-30 min, recovering-1 hour. These samples were used to analyze for the factors of the change on metabolic responses. First, the primary factors on the changes of the energy metabolism were checked ; Glucose, Free fatty acid, Lactate, LDH. Second, the primary factors on the changes of the electrolyte metabolism were checked ; Na+, CI-. K+. Results 1. The change of the energy metabolism 1) Glucose response was not shown significant difference between two groups. 2) Free fatty acid response in Bo-joong-ik-gi -tang group was significantly increased at recover-10 min. 3) Lactate response in Bo-joong-ik-gi-tang group was significantly decreased at immediately after exercise, recover-10 min, recover-30 min. 4) LDH response was not shown significant difference between two groups. 2. The change of the electrolyte metabolism 1) Na+ response in Bo-joong-ik-gi-tang group was shown significant difference between two groups at before exercise. 2) Cl- response in Bo-joong-ik-gi-tang group was significantly increased at before exercise, immediately after exercise. 3) K+ response in Bo-joong-ik-gi-tang group was significantly increased at recover-10 min. Conclusion According to the above results, it was shown that Bo-joong-ik-gi-tang had the positive effects on changes of the energy and electrolyte metabolism for the long distance runners.

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Study on Electrochemical Performances of PEO-based Composite Electrolyte by Contents of Oxide Solid Electrolyte (산화물계 고체전해질 함량에 따른 PEO 기반 복합전해질 전기화학 성능 연구)

  • Lee, Myeong Ju;Kim, Ju Young;Oh, Jimin;Kim, Ju Mi;Kim, Kwang Man;Lee, Young-Gi;Shin, Dong Ok
    • Journal of the Korean Electrochemical Society
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    • v.21 no.4
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    • pp.80-87
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    • 2018
  • Safety issues in Li-ion battery system have been prime concerns, as demands for power supply device applicable to wearable device, electrical vehicles and energy storage system have increased. To solve safety problems, promising strategy is to replace organic liquid electrolyte with non-flammable solid electrolyte, leading to the development of all-solid-state battery. However, relative low conductivity and high resistance from rigid solid-solid interface hinder a wide application of solid electrolyte. Composite electrolytes composed of organic and inorganic parts could be alternative solution, which in turn bring about the increase of conductivity and conformal contact at physically rough interfaces. In our study, composite electrolytes were prepared by combining poly(ethylene oxide)(PEO) and $Li_7La_3Zr_2O_{12}$ (LLZO). The crystallinity, morphology and electrochemical performances were investigated with the control of LLZO contents from 0 wt% to 50 wt%. From the results, it is concluded that optimum content and uniform dispersion of LLZO in polymer matrix are significant to improve overall conductivity of composite electrolyte.

The Effects of Different Membranes on the Performance of Aqueous Organic Redox Flow Battery Using Anthraquinone and TEMPO Redox Couple (안트라퀴논과 템포 활물질 기반 수계 유기 레독스 흐름 전지에서의 멤브레인 효과)

  • Lee, Wonmi;Kwon, Yongchai
    • Korean Chemical Engineering Research
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    • v.57 no.5
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    • pp.695-700
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    • 2019
  • n this study, the evaluation of performance of AORFB using anthraquinone derivative and TEMPO derivative as active materials in neutral supporting electrolyte with various membrane types was performed. Both anthraquinone derivative and TEMPO derivative showed high electron transfer rate (the difference between anodic and cathodic peak potential was 0.068 V) and the cell voltage is 1.17 V. The single cell test of the AORFB using 0.1 M active materials in 1 M KCl solution with using Nafion 212 membrane, which is commercial cation exchange membrane was performed, and the charge efficiency (CE) was 97% and voltage efficiency (VE) was 59%. In addition, the discharge capacity was $0.93Ah{\cdot}L^{-1}$ which is 35% of theoretical capacity ($2.68Ah{\cdot}L^{-1}$) at $4^{th}$ cycle and the capacity loss rate was $0.018Ah{\cdot}L^{-1}/cycle$ during 10 cycles. The single cell tests were performed with using Nafion 117 membrane and SELEMION CSO membrane. However, the results were more not good because of increased resistance because of thicker thickness of membrane and increased cross-over of active materials, respectively.

Research Trends of Polybenzimidazole-based Polymer Electrolyte Membranes for High-temperature Polymer Electrolyte Membrane Fuel Cells (고온 구동형 고분자 전해질 막 연료전지용 폴리벤즈이미다졸계 고분자 전해질 막의 개발 동향)

  • HyeonGyeong, Lee;Gabin, Lee;Kihyun, Kim
    • Membrane Journal
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    • v.32 no.6
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    • pp.442-455
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    • 2022
  • High-temperature polymer electrolyte membrane fuel cell (HT-PEMFC) has been studied as an alternative to low-temperature PEMFC due to its fast activation of electrodes and high resistance to electrode poisoning by carbon monoxide. It is highly required to develop stable PEMs operating at high temperatures even doped by ion-conducting materials for the development of high-performance and durable HT-PEMFC systems. A number of studies have been conducted to develop polybenzimidazole (PBI)-based PEMs for applications in HT-PEMFC due to their high interaction with doped ion-conducting materials and outstanding thermomechanical stability under high-temperature operation. This review focused on the development of PBI-based PEMs showing high performance and durability. Firstly, the characteristic behavior of PBI-based PEMs doped with various ion-conducting materials including phosphoric acid was systematically investigated. And then, a comparison of the physicochemical properties of the PEMs according to the different membrane manufacturing processes was conducted. Secondly, the incorporation of porous polytetrafluoroethylene substrate and/or inorganic composites to PBI matrix to improve the membrane performances was studied. Finally, the construction of cross-linked structures into PBI-based PEM systems by polymer blending method was introduced to improve the PEM properties.

Preparation of Dual-functionalized Polymeric Membrane Electrolyte and Ni, Co-based Nanowire/MOF Array on Carbon Cloth for High-performance Supercapacitor (이중 기능 고분자 전해질 막의 제조 및 탄소 섬유에 니켈, 코발트 기반의 나노와이어/MOF 배열을 통한 고성능 슈퍼커패시터 연구)

  • Hye Jeong Son;Bong Seok Kim;Ji Min Kwon;Yu Bin Kang;Chang Soo Lee
    • Membrane Journal
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    • v.33 no.4
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    • pp.211-221
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    • 2023
  • This study presents a comprehensive study on the synthesis and characterization of PVI-PGMA/LiTFSI polymeric membrane electrolytes and CxNy-C flexible electrodes for energy storage applications. The dual-functional PVI-PGMA copolymer exhibited excellent ionic conductivity, with the PVI-PGMA73/LiTFSI200 membrane electrolyte achieving the highest conductivity of 1.0 × 10-3 S cm-1. The electrochemical performance of the CxNy-C electrodes was systematically investigated, with C3N2-C demonstrating superior performance, achieving the highest specific capacitance of 958 F g-1 and lowest charge transfer resistance (Rct) due to its highly interconnected hybrid structure comprising nanowires and polyhedrons, along with binary Co/Ni oxides, which provided abundant redox-active sites and facilitated ion diffusion. The presence of a graphitic carbon shell further contributed to the enhanced electrochemical stability during charge-discharge cycles. These results highlight the potential of PVI-PGMA/LiTFSI polymeric membrane electrolytes and CxNy-C electrodes for advanced energy storage devices, such as supercapacitors and lithium-ion batteries, paving the way for further advancements in sustainable and high-performance energy storage technologies.

Market and Technology Trends in Supercapacitor (슈퍼커패시터의 시장 및 기술개발 동향)

  • Chun, H.W.;You, I.K.
    • Electronics and Telecommunications Trends
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    • v.29 no.5
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    • pp.186-194
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    • 2014
  • 슈퍼커패시터(Supercapacitor)는 축전용량이 대단히 큰 커패시터로 화학반응을 이용하는 배터리와 달리 전극과 전해질 계면으로의 단순한 이온 이동이나 표면화학반응에 의한 충전현상을 이용한다. 급속 방충전이 가능하고 높은 충방전 효율 및 반영구적인 사이클 수명 특성으로 보조배터리나 배터리 대체용으로 사용된다. 부하응답 특성이 느린 신재생에너지 발전시스템에 슈퍼커패시터를 사용하면 발전된 전력과 부하전력 사이의 차이를 흡수 또는 방출함으로써 전력품질을 확보하는데 기여한다.

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The corrosion and electrical property of AISI 316L by plasma nitriding (플라즈마 질화처리를 이용한 AISI 316L의 부식특성과 전기적 특성 분석)

  • Hong, Won-Hyeok;Han, Dong-Hun;Choe, Hyo-Seok;Lee, Jeong-Jung
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2009.05a
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    • pp.147-148
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    • 2009
  • 스테인리스강인 AISI 316L의 질화처리를 통하여 고분자 전해질 연료전지에 분리판에 적용가능한 특성을 측정하였다. 질화처리를 통하여 면간접촉저항을 $20m{\Omega}cm^2$ 정도로 낮게 만들었으며 부식특성도 원래의 스테인리스강과 비슷한 값을 나타내었다.

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Market and Technology Analysis for Organic Electrolyte Additive of Lithium Battery (이차전지 유기 전해질 첨가제 시장 및 기술 분석)

  • Lee, Jongtaik
    • Proceedings of the Korea Contents Association Conference
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    • 2014.11a
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    • pp.407-408
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    • 2014
  • 유기 전해액 성능에 따라 고에너지 밀도, 장수명, 안전성의 특징에 영향을 미치므로 전해액 첨가제에 대한 연구가 활발하게 진행되고 있다. 국내외적으로 각각 7.7%, 6.2%의 연평균 성장률을 가질 것으로 예상되고 있다. 전해액을 포함한 관련 소재는 일본을 중심으로 성장해 왔으나, 최근 국내 이차전지 산업 발전에 따라 원천 기술 확보를 통한 주요 소재 국산화 대체가 시급하다. 이에 따라, 파낙스이텍, 솔브레인, 천보 등을 중심으로 국내 기업의 전해칠 첨가제 개발이 활발히 진행 중이다.

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Anodic surface treatment for the fabrication of catalyst-doped TiO2 nanotubes (전기화학적 표면처리를 이용한 촉매가 도핑된 TiO2 나노튜브의 제조)

  • Yu, Hyeon-Seok;Seong, Mi-Jeong;Choe, Jin-Seop
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2014.11a
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    • pp.266-267
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    • 2014
  • $TiO_2$ 기반의 DSA 전극에 촉매제를 동시에 도핑할 수 있는 양극산화 단일 공정을 연구하였다. 에틸렌 글리콜 용매하에 $KRuO_4$$NH_4F$를 전해질로 사용하여 타이타늄을 양극산화 할 때 도핑과 나노구조 제어를 동시에 수행할 수 있었다. TEM과 XPS 분석 결과, 균일한 Ru 산화물이 $TiO_2$ 구조 내에 분포함을 확인할 수 있었다.

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