• 제목/요약/키워드: Hydrogen utilization

검색결과 238건 처리시간 0.026초

수소 정책 동향과 밸류체인별 수소 기술 개발 현황 (Hydrogen Policy Trends and Current Status of Hydrogen Technology Development by Value Chain)

  • 신재은
    • 한국수소및신에너지학회논문집
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    • 제34권6호
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    • pp.562-574
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    • 2023
  • Carbon neutrality has been suggested to overcome the global climate crisis caused by global climate change. Hydrogen energy is a major way to achieve carbon neutrality, and the developments and policies of hydrogen technology have been proposed to achieve this goal. To commercialize hydrogen energy resources, it is necessary to understand the overall value chain composed of hydrogen production, storage, and utilization and to present the direction of technological developments. In this paper the hydrogen strategies of major countries, including Europe, the United States, Japan, China, and South Korea will be analyzed, and hydrogen technologies by value chain will also be explain. This paper will contribute to understanding the overall hydrogen policy and technology, as both policy and technology are summarized.

FAHP-HAZOP을 적용한 수소충전소의 위험성평가 방법 연구 (Study on Risk Assessment Method of Hydrogen Station using FAHP-HAZOP)

  • 조영광;한신호
    • 한국가스학회지
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    • 제27권4호
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    • pp.92-101
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    • 2023
  • 기후변화 문제를 해결하기 위해 탄소중립은 이제 선택이 아닌 필수가 되었다. 수소는 재생에너지의 간헐적 생산을 보완할 수 있는 저장 매체일 뿐만 아니라 반응 후 이산화탄소 배출이 없어 활용 분야에서도 좋은 대안으로 여겨지고 있다. 수소 활용 분야 중 하나인 수소자동차의 활성화를 위해서는 수소충전소 인프라 구축이 선행되어야 한다. 수소충전소의 효율적인 운영과 위험성평가를 위해서는 위험요인에 대한 우선순위 선정이 필요하지만, 국내 수소충전소 운영 기간이 짧아 사고에 따른 빈도 데이터가 부족하고 그 신뢰도가 낮다. 본 연구에서는 HAZOP을 통하여 수소충전소에서 발생 가능한 이탈의 원인과 결과를 도출하고 Fuzzy-AHP를 활용하여 분석하려고 한다. 이를 통하여 수소충전소에서 발생 가능한 이탈 원인의 의사결정값을 도출하고 수소 사고사례와 위험성평가에 적용하여 데이터의 신뢰성과 효용성을 확인하고자 한다.

국내외 수소저장기술 특허 분석을 통한 기술개발 동향 (Technology Trend of Hydrogen Storage by the Patent Analysis)

  • 김정운;김태욱;류재웅;장기석
    • 한국수소및신에너지학회논문집
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    • 제23권2호
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    • pp.191-197
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    • 2012
  • The hydrogen storage is one of the key technologies to achieve the successful hydrogen economy and a chain to connect hydrogen production to its utilization. In this paper, characteristics and strong candidates of hydrogen storage technologies were analyzed from the objective information of patents. Also, the hydrogen storage technology trends and gaps were assessed using statistical or qualitative analysis. In this study the patents applied in Korea, Japan, US and EU from 10 or 20 years ago to 2011 were analyzed. The result of patent analysis could be used for developing or searching for promising technology of the hydrogen storage.

- Invited Review - Hydrogen production and hydrogen utilization in the rumen: key to mitigating enteric methane production

  • Roderick I. Mackie;Hyewon Kim;Na Kyung Kim;Isaac Cann
    • Animal Bioscience
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    • 제37권2_spc호
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    • pp.323-336
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    • 2024
  • Molecular hydrogen (H2) and formate (HCOO-) are metabolic end products of many primary fermenters in the rumen ecosystem. Both play a vital role in fermentation where they are electron sinks for individual microbes in an anaerobic environment that lacks external electron acceptors. If H2 and/or formate accumulate within the rumen, the ability of primary fermenters to regenerate electron carriers may be inhibited and microbial metabolism and growth disrupted. Consequently, H2- and/or formate-consuming microbes such as methanogens and possibly homoacetogens play a key role in maintaining the metabolic efficiency of primary fermenters. There is increasing interest in identifying approaches to manipulate the rumen ecosystem for the benefit of the host and the environment. As H2 and formate are important mediators of interspecies interactions, an understanding of their production and utilization could be a significant starting point for the development of successful interventions aimed at redirecting electron flow and reducing methane emissions. We conclude by discussing in brief ruminant methane mitigation approaches as a model to help understand the fate of H2 and formate in the rumen ecosystem.

석탄을 원료로 한 수소 제조 공정 (Hydrogen Production Technologies from Coal)

  • 김종원;심규성
    • 한국수소및신에너지학회논문집
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    • 제7권2호
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    • pp.193-206
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    • 1996
  • The simplest and lightest element-hydrogen is an alternative fuel which provides a clean and renewable energy source. Hydrogen can be used to power gas-type appliance and modified automobiles with water vapor as the only byproduct of combustion. Historically, production of hydrogen from coal was one of the mass production technology of hydrogen. In this paper, the status of hydrogen production process from coal was investigated to review the current situation of hydrogen production and utilization.

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직접내부개질형 용융탄산염 연료전지(DIR-MCFC)의 운전 조건에 따른 성능 분석 (Performance Analysis in Direct Internal Reforming Type of Molten Carbonate Fuel Cell (DIR-MCFC) according to Operating Conditions)

  • 정규석;이창환
    • 한국수소및신에너지학회논문집
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    • 제33권4호
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    • pp.363-371
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    • 2022
  • In this study, the operation characteristics of the internal reforming type molten carbonate fuel cell (MCFC) were studied using computational fluid dynamics (CFD) analysis according to the steam to carbon ratio (S/C ratio), operating temperature, and gas utilization. From the simulation results, the distribution of gas composition due to the electrochemical reaction and the reforming reaction was predicted. The internal reforming type showed a lower temperature difference than the external reforming type MCFC. As the operating temperature decreased, less hydrogen was produced and the performance of the fuel cell also decreased. As the gas utilization rate decreased, more gas was injected into the same reaction area, and thus the performance of the fuel cell increased.

NECESSITY OF READY ELECTRON DISPOSAL AND INTERSPECIES HYDROGEN TRANSFER FOR THE UTILIZATION OF ETHANOL BY RUMEN BACTERIA

  • Hino, T.;Mukunoki, H.;Imanishi, K.;Miyazaki, K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제5권3호
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    • pp.511-517
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    • 1992
  • Ethanol was utilized by mixed rumen microbes, but addition of pentachlorophenol (25 mg/l), a methanogen inhibitor, suppressed the utilization of ethanol. Carbon monoxide (50% of the gas phase), a hydrogenase inhibitor, more strongly suppressed the utilization of ethanol, propanol, and butanol. These results suggest that the major ethanol utilizers are $H_2$ producers. Ethanol utilization was depressed at low pH (below 6.0). Since methanogens were shown to be relatively resistant to low pH, it appears that ethanol utilizers are particularly sensitive to low pH. Ruminococcus albus and R. flavefaciens in mono-culture produced ethanol from carbohydrate (glucose and cellobiose), even when a high level (170 mM) of ethanol was present. Ethanol was not utilized even in the absence of carbohydrate, but the co-culture of these bacteria with methanogens resulted in the utilization of ethanol, i.e., when $H_2$ was rapidly converted to $CH_4$, R. albus and R. flavefaciens utilized ethanol. These results suggest that ethanol is utilized when the electrons liberated by the oxidation of ethanol are rapidly removed, and ready electron disposal in ethanol-utilizing, $H_2$-producing bacteria is accomplished by the interspecies transfer of $H_2$.

국내 부생수소 현황과 수소 유통 인프라 (Status of Domestic Byproduct Hydrogen and Infrastructure)

  • 심규성;김종원;김정덕;황갑진;김흥선
    • 한국수소및신에너지학회논문집
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    • 제13권4호
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    • pp.330-338
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    • 2002
  • A long-term energy system in the future is expected to be based on the ideal circulation system between water and hydrogen in the sense that the hydrogen prepared from water eventually returns to water again after its use. Currently, with respect to the hydrogen energy system, it is predicted that the turning-point at which the production cost of hydrogen will become to be lower than that of fossil fuels would be after 2010. However, fuel cell technology would be able to be practically used for the applications to the transportation vehicles and small-scale power sources from 2004, and therefore, an efficient construction of the infrastructure covering hydrogen production and supply systems would be required with short-/mid-term technologies for the $CO_2$ reduction associated with fossil fuel utilization. In this paper, the hydrogen quantity available in domestic market has been estimated focusing on the hydrogen by-produced from domestic industries, and also the infrastructure for hydrogen-driven vehicles like fuel cell cars has been reviewed.

고순도 수소가스내에 존재하는 불순물의 분석 연구: 대기압 이온화 질량분석기의 이용 (An impurity analysis study in ultra high purity Hydrogen stream: The utilization of Atmosperic Pressure Ionization Mass Spectrometer)

  • 이효석;이택홍
    • 한국수소및신에너지학회논문집
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    • 제16권3호
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    • pp.290-295
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    • 2005
  • For the application of fuel cell, the content and concentration of impurities in hydrogen stream must be classified. The purpose of this study is to provide analysis tool for the determination of impurities in hydrogen with ultra high purity. To produce UHT hydrogen, we purified hydrogen gas by both getter-based catridge and liquid-nitrogen soaked catridge. We compare two methods and propose new method to know about what is in hydrogen stream.

운동량에 의해 제어되는 수소 부양 제트 및 화염의 거동에 관한 이론적 해석 (Theoretical Study on the Behavior of Momentum-controlled Buoyant Jet and Flame of Hydrogen)

  • 양원;원상희;김민구;정석호;김종수
    • 한국연소학회지
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    • 제10권3호
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    • pp.34-41
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    • 2005
  • Hydrogen safety is one of the key technical issue with growing attention on utilization of hydrogen energy. This study is aimed to predict behavior of momentum-controlling buoyant jet and flame caused by hydrogen leakage from a high pressured tank. Approximate solutions were derived for the case of turbulent buoyant jet and diffusion flame in still air. In case of hydrogen jet with low Froude number (100-4000), computed jet trajectories were compared with experimental data and showed good agreement with them. Jet and flame trajectories and flame length of hydrogen are predicted and compared with the buoyant flame of propane. The results well show that buoyancy is dominant in the range of low Froude number, while initial momentum is dominant in the range of high Froude number. That effect is more distinct for hydrogen flame than the case of propane.

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