• Title/Summary/Keyword: Renewable Energy Utilization

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A risk assessment of $CO_2$ geological storage for domestic application (이산화탄소 지중저장의 국내적용을 위한 위해성 평가 방안)

  • Lee, Kang-Ryel;Lee, Dae-Soo
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.05a
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    • pp.220.1-220.1
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    • 2011
  • In recent years, the importance of Carbon Capture and Storage (hereafter CCS) is growing bigger and bigger. The development and commercialization of CCS technology are concerned for reducing carbon dioxide($CO_2$) emissions. For the most studies, the technology of $CO_2$ storage is known as the geological storage, ocean sequestration, mineral carbonation, industrial utilization, and so on. The geological storage is adjudged the most reasonable technology from economic and environmental aspects. Generally, the $CO_2$ geological storage is comprised of compression - transportation - drilling/injection - storage/management process. The critical problem is a leakage of $CO_2$ in all process. For resolving a leakage problem, it is necessary to predict and build a monitoring system. Those systems are proved safety of a leakage and received positive social perceptions of $CO_2$ geological storage. For those reasons, a risk assessment of $CO_2$ geological storage is required. A risk assessment is an estimated process of the possible effects when spilling $CO_2$. Although numerous studies of risk assessment have studied, it is incomplete to evaluate a risk and disaster quantitatively. The risk assessment will be developed for domestic application and safe $CO_2$ geological storage considering characteristics of Korea.

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A Study on Tar Removal in Syngas Produced from Woodchip Gasification Using Oxidation Catalyst and Utilization of Syngas by Co-combustion (산화촉매를 이용한 우드칩 가스화 합성가스 내 타르 제거 및 합성가스 혼합연소 이용기술 연구)

  • Yoon, SangJun;Kim, YongKu;Lee, JaeGoo
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.05a
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    • pp.175.1-175.1
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    • 2011
  • 우드칩을 포함하는 화석연료대비 발열량이 낮은 바이오매스를 가스화를 통하여 활용하는 경우 타르 및 수트를 포함하는 저열량의 합성가스가 생성된다. 이러한 합성가스를 엔진을 통한 발전, 스팀, 수소 및 화학제품 생산으로 활용하기 위해서는 고효율의 타르 정제 및 제거가 필수적이다. 특히 착화가 어렵고 연소온도 및 연소율이 낮으며, 화염구간이 좁은 저열량의 합성가스를 이용하여 스팀을 생산하기 위해서는 많은 문제점으로 인하여 기술 개발이 필요하다. 본 연구에서는 하향류식 가스화기를 이용하여 우드칩을 연료로 합성가스를 제조하였으며, 합성가스에 포함되어 있는 타르 및 수트와 같은 미반응 물질을 제거할 수 있는 집진, 세정장치를 설계 및 제작하였다. 특히 고효율 타르의 제거를 위하여 두 종류의 산화촉매를 이용한 합성가스 내 타르의 제거 연구를 수행하였다. Ru 촉매를 이용하는 경우 합성가스 내 타르의 농도를 100ppb 정도까지 저감이 가능하였다. 정제된 합성가스는 유류 혼소 버너를 통하여 보일러 연소실에서 혼합연소되어 30만kcal/h의 열을 공급함으로써 스팀을 생산 하였으며, 생성된 스팀은 블록 건조 시설에서 이용하였다.

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Regional Economic Impact of Potential Utilization of Ligneous Biomass (목질계 바이오매스에너지의 지역별 잠재적 파급효과 추정)

  • Bae, Jeong-Hwan
    • 한국신재생에너지학회:학술대회논문집
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    • 2006.11a
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    • pp.217-220
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    • 2006
  • 목질계 바이오매스는 신재생에너지원에 비해 국내 잠재량이 가장 풍부한 에너지원 가운데 하나이다. 그러나 주요 공급원인 간벌목 부산물의 10%, 폐목재의 1/3 정도만 활용되고 있다. 따라서 향후 관련법제도 개선 및 지원을 통해 바이오매스의 에너지 활용도를 높일 필요가 있다. 목질계 바이오매스를 이용하여 에너지를 생산할 경우 잠재적 기여도는 2005년 신재생에너지 공급량의 29.4%에 달하며, 신재생에너지의 일차에너지 소비대비 2.13%에서 2.76%로 증가시킬 수 있는 잠재력을 갖고 있다. 본 연구는 전국 16개 시도별로 잠재되어 있는 목질계 바이오매스 생산 가능량을 추정하고 이를 바이오열병합발전소의 주연료로 이용할 경우 지역별 경제적 파급효과를 분석해 보았다. 그 결과 경기, 서울, 전남, 경북, 강원, 충남 등에서 파급효과가 크게 나타났다. 지역별 파급효과를 합할 경우 부가가치 파급효과가 15,736억원, 고용효과가 2,630명으로 나타났다.

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Electrocatalytic activity of Carbon-supported near-surface alloys (NSAs) for Formic acid oxidation (개미산 산화 반응을 위한 카본 담지 표면 합금의 전기촉매 활성)

  • Park, In-Su;Choi, Jong-Ho;Lee, Kug-Seung;Jeon, Tae-Yeol;Sung, Yung-Eun
    • 한국신재생에너지학회:학술대회논문집
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    • 2006.11a
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    • pp.459-462
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    • 2006
  • Formic acid recently attracted attention as an alternative fuel for direct liquid fuel cells(DLFCs) due to its high theoretical open circuit voltage(1.45V). In this paper, a novel chemical strategy is described for the preparation and characterization of carbon-supported and surface-alloys, which were prepared by using a successive reduction process. After preparing Au colloid nanoparticles, the deposition of Au colloid nanoparticles occurred spontaneously in the carbon black-dispersed aqueous solution. Then nano-scaled Pt layer were formed on the surface of carbon-supported Au nanoparticles. The Au-Pt[x] showed the higher electrocatalytic activity than those of the particle-alloys and commercial one (Johnson-Matthey) for the reaction of formic acid oxidation when the mass-specific currents were compared. The increased electrocatalytic activity might be attributed to the effective surface structure of surface-alloys, which have a high utilization of active materials for the surface reaction of electrode.

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Electrocatalytic activity of Carbon-supported near-surface alloys (NSAs) for Electode reaction of Fuel cell (연료전지 전극 반응을 위한 카본 담지 표면 합금의 전기촉매 활성)

  • Park, In-Su;Lee, Kug-Seung;Choi, Baeck-Beom;Sung, Yung-Eun
    • 한국신재생에너지학회:학술대회논문집
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    • 2006.11a
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    • pp.316-319
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    • 2006
  • There is a worldwide interest in the development and commercialization of Polymer Electrolyte Membrane Fuel Cells (PEMFCs) for vehicular and stationary applications. One of the major objectives is the reduction of loaded electrode materials, which is comprise of the Pt-based noble metals. In this paper, a novel chemical strategy is described for the preparation and characterization of carbon-supported and surface-alloys, which were prepared by using a successive reduction process. After preparing Au colloid nanoparticles, the deposition of Au colloid nanoparticles occurred spontaneously in the carbon black-dispersed aqueous solution. Then nano-scaled active materials were formed on the surface of carbon-supported Au nanoparticles. The structural and electrochemical analyses indicate that the active materials were deposited on the surface of Au nanoparticles selectively and that an at toying process occurred during the successive reducing process The carbon-supported & surface-alloys showed the higher electrocatalytic activity than those of the particle-alloys and commercial one (Johnson-Matthey) for the reaction of methanol and formic acid oxidation. The increased electrocatalytic activity might be attributed to the effective surface structure of surface-alloys, which have a high utilization of active materials for the surface reaction of electrode.

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Major Control Techniques for Chemical and Gas Process Industries (화학 및 가스 공정산업에서 주요 공정제어 기술)

  • Yoo, Sung-Jin;Lee, Chang-Jun;Lee, Jong-Min
    • Journal of the Korean Institute of Gas
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    • v.15 no.1
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    • pp.1-8
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    • 2011
  • There has been much research interest in developing processes for production and utilization of gas and novel renewable energy resources. For these process to be economically viable, implementation of a suitable process control technique is required. This paper reviews some of the major process control techniques that have been developed over the last 50 years. In addition, some control applications in gas process industries are also presented with future directions.

Dilute Acid Pretreatment for Conversion the Agricultural Residue into Bioenergy (농산부산물의 바이오에너지 전환을 위한 묽은산 전처리)

  • Won, Kyung-Yoen;Jeong, Tae-Su;Choi, Won-Il;Oh, Kyeong-Keun
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.11a
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    • pp.511-511
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    • 2009
  • Lignocellulosic biomass is the most abundant organic material on earth and also promising raw material for bioenergy production. Agricultural residues in the process of bio-oil extraction, is an abundant and low-cost lignocellulosic material. The technology for conversion of lignocellulosic biomass resources to fuels and chemicals, such as ethanol, has been under development for decades. One of the well-studied technologies that are currently being commercialized is to use a dilute acid-catalyzed pretreatment followed by enzymatic hydrolysis and fermentation to produce ethanol. In this work, the dilute-acid hydrolysis of agricultural residues was optimized through the utilization of statistical experimental design. Evaluation criteria for optimization of the pretreatment conditions were based on high xylose recovery and low inhibitor contents in the hydrolyzates. The purpose of this study was to gain a more accurate understanding of the quantities of acid required for effective hydrolysis and the reactivity trade-offs with reaction time and temperature that will enable overall process optimization.

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An Experimental Study on the Reaction Characteristics of Anode offgas Catalytic Combustor for 25kW MCFC Systems (25 kW급 MCFC 배가스 촉매연소기의 실험적 연소특성)

  • Lee, Sang Min;Woo, Hyuntack;Ahn, Kook Young
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.92.1-92.1
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    • 2011
  • Anode off-gas of high temperature fuel cells such as MCFC contains a significant amount of combustible components like hydrogen, carbon monoxide and methane according to fuel utilization ratio of the fuel cell stack. Thus, it is important to fully burn anode off-gas and utilize the generated heat in order to increase system efficiency and reduce emissions as well. In the present study, 25 kW catalytic combustor has been developed for the application to a load-following 300kW MCFC system. Mixing and combustion characteristics have been experimentally investigated with the catalytic combustor. Since the performance of catalytic combustor directly depends on the combustion catalyst, this study has been focused on the experimental investigation on the combustion characteristics of multiple catalysts having different structures and compositions. Results show that the exhaust emissions are highly dependent on the catalyst loading and the ratio of catalytic components. Test results at load-following conditions are also shown in the present study.

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Thermochemical hydrogen production utilization of M-ferrite (M=Co,Ni,Mn) (M-ferrite를 이용한 열화학적 수소제조(M=Co,Ni,Mn))

  • Cho, Mi-Sun;Kim, Woo-Jin;Woo, Sung-Woong;Park, Chu-Sik;Kang, Kyoung-Soo;Choi, Sang-Il
    • 한국신재생에너지학회:학술대회논문집
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    • 2006.06a
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    • pp.43-46
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    • 2006
  • 본 연구는 페라이트의 Fe 양이온 일부를 Ni, Mn, Co등으로 치환하여 M-ferrites를 제조하여 열화학적 2단계 물 분해 반응의 특성을 비교 평가하였고, XRD, SEM, GC등의 분석으로 각 금속산화물의 특성을 확인하였다. M-ferrites는 고상법으로 제조하였다. 각각의 M-ferrites에 대한 열적환원은 1573K에서 진행하였고 물 분해 반응은 1273K에서 실시하였다. 이 반응에서 생성된 가스는 전량 포집하여 GC를 통해 분석하였다. 반응 전후의 시료에 대하여 SEM, XRD를 분석하여 GC결과와 함께 금속산화물의 산화환원반응 특성을 고찰하였다. 그 결과로서 물 분해 반응 후 M-ferrite (M=Co, Ni, Mn)의 생성을 XRD를 통하여 확인할 수 있었고, 물 분해 반응과의 비교결과 격자상수의 증대가 M-ferrite내의 산소의 환원에 영향을 미치는 것을 알 수 있었다. SEM결과에서는 4cycle의 물 분해 반응 후 Mn-ferrite의 심한 sintering 현상을 확인 할 수 있었다.

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A Study on Establishment of Technical Guideline of the Installation and Operation for the Biogas Utilization of Transportation and City Gas: Results of the Field Investigation (고품질화 바이오가스 이용 기술지침 마련을 위한 연구(I): 도시가스 및 수송용 - 현장조사 결과 중심으로)

  • Moon, HeeSung;Kwon, Junhwa;Park, Hoyeon;Jeon, Taewan;Shin, Sunkyung;Lee, Dongjin
    • Journal of the Korea Organic Resources Recycling Association
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    • v.27 no.1
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    • pp.77-85
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    • 2019
  • Biogasification is a technology that uses organic wastes to reproduce as environmental fuels containing methane gas. Biogasification has attracted worldwide attention because it can produce renewable-energy and stable land treatment with prohibit from landfilling and ocean dumping of organic waste. Biomethane is produced by refining biogas. It is injected into natural gas pipeline or used transportation fuel such as cars and buses. 90 bio-gasification facilities are operating in 2016, and methane gas production is very low due to it is limited to organic wastes such as food waste, animal manure, and sewage sludge. There are seven domestic biomethane manufacturing facilities, and the use of high value-added such as transport fuels and city-gas through upgrading biogas should be expanded. On the other hand, the rapid biogasification of organic wastes in domestic resulted in frequent breakdowns of facilities and low efficiency problems. Therefore, the problem is improving as technical guidance, design and operational technical guidance is developed and field experience is accumulated. However, while improvements in biogas production are being made, there is a problem with low utilization. In this study, the problems of biomethane manufacturing facilities were identified in order to optimize the production and utilization of biogas from organic waste resources. Also, in order to present the design and operation guideline of the gas pretreatment and the upgrading process, we will investigate precision monitoring, energy balance and economic analysis and solutions for on-site problems by facility.