• Title/Summary/Keyword: 수송용 연료

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Experimental Study of Gasification Characteristics of Low-rank Liquid Fuel and Producer gas Generation in a Fluidized Bed Reactor (유동층 반응기에서 액상의 저급 연료 가스화 특성 실험 및 프로듀서 가스 생산을 위한 연구)

  • Kim, Youngdoo;Jeong, Soohwa;Jung, Jaeyong;Yang, Won;Lee, Uendo
    • 한국연소학회:학술대회논문집
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    • 2014.11a
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    • pp.25-28
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    • 2014
  • In this study, waste cooking oil was gasified in a fluidized bed reactor. The main objective of this study was to produce clean producer gas for power generation engine. As a result, heating value of producer gas is suitable for engine operation and tar content in producer gas was satisfied after use of activated carbon filter. Results from a lab scale experiment and a preliminary results from a pilot scale experiment will be presented.

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21세기를 대비한 초고속 해상수송체계 개발

  • Kim, Hun-Cheol;Chang, Seok;Yang, Seung-Il;Kang, Chang-Gu;Koh, Chang-Du
    • Bulletin of the Society of Naval Architects of Korea
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    • v.32 no.4
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    • pp.37-39
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    • 1995
  • 가스터빈, 워터제트 등 기존의 추진시스템을 이용한 초고속선의 핵심기술 등을 종합하여 중형 화물선은 일본 TSL 수준에 도달시키고 중간목표로 설정한 선박의 실용화를 단계적으로 추진 하며, 선형기술, 선체 구조기술, 추진시스템기술, 원자력 안전기술, 해상 교통관제기술 등 이에 필요한 기술을 개발한다. 이들 기술은 21세기에 걸맞는 최첨단 기술이 될 것이다. 선박개발과 병행하여 초고속 선박의 운항과 조화를 이루는 고속 하역설비를 갖춘 항만시설의 개발도 함께 추진되어야 할 것이다. 초고속 해상 물류체계의 구축을 위해서는 수송 수단인 선박뿐만 아니라 항만, 하역시스템의 고속 현대화가 필요하다. 그러므로 초고속 선박과 접안, 하역이 가능한 전 용항만의 설계와 개발을 위해서는 이에 관련된 국내의 공공연구기관들과 SOC 관련 엔지니어 링사, 조선사 등 민간기업의 참여로 추진해야할 것이다. 또한 원자력 추진선 개발을 위해서는 선박용 원자로 및 연료기술이 필요하므로 원자력영구소와 미국의 참여로 공동개발하며, 상대국 에도 전용 항구가 필요하므로 해당국가간의 협약에 의해 하역장비, 운한 안전기술 등을 개발하고 건설하는 등 국제 컨소시엄의 구성이 바람직하다. 다만 기술개발의 성공과 핵심기술의 확보를 위하여 우리나라가 Initiative를 장악할 필요가 있다고 판단된다.

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Scientometric Analysis for Biodiesel (바이오디젤 학술 정보분석)

  • Noh, Kyung-Ran;Kil, Sang-Cheol;Oh, Mihn-Soo
    • Economic and Environmental Geology
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    • v.46 no.6
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    • pp.593-602
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    • 2013
  • Biodiesel is an important new alternative transportation fuel and it can be produced by chemically reacting a fat or oil with an alcohol, in the presence of a catalyst. The product of the reaction is a mixture of methyl esters, which are known as biodiesel, and glycerol, which is a high value co-product. The process is known as transesterification. Biodiesel can be used neat and when used as a pure fuel it is known as BD100. However, it is often blended with petroleum-based diesel fuel and when this is done the blend is designated BD5 or BD20(BD20 is a blend of 20% biodiesel and 80% petroleum diesel fuel). Adherence to a quality standard is essential for proper performance of the fuel in the engine and will be necessary for widespread use of biodiesel. In this study, we analyzed 4,144 papers of biodiesel by category, country, institution, keyword etc. from 2001 to 2013 years.

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.

Basic Analysis of Heat and Mass Transfer Characteristics of Tubular Membrane Humidifier for Proton Exchange Membrane Fuel Cell (이온교환막 연료전지용 원통형 막 가습기의 열 및 물질전달특성 기초 연구)

  • Bae, Ho-June;Ahn, Kook-Young;Lee, Young-Duk;Kang, Sang-Kyu;Yu, Sang-Seok
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.35 no.5
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    • pp.473-480
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    • 2011
  • The proton exchange membrane (PEM) fuel cell system is critically dependent on the humidity, which should be properly maintained over the entire operating range. A membrane humidifier is used for the water management in the PEMFC because of the membrane humidifier's reliable performance and zero parasitic power loss. In the PEMFC system, the membrane humidifier is required to provide appropriate humidity for the design point of the fuel cell. Although the performance of the fuel cell depends on the performance of the humidifier, few studies have provided a systematic analysis of the humidifier. We carry out an experimental analysis of the membrane humidifier using a vapor condensation bottle. The dry air pressure, water flow temperature, and air flow rate were chosen as the operating parameters. The results show that the time constant for the dynamic response of the membrane humidifier is relatively short, but additional analysis should be carried out.

Determination of fuel marker in petroleum products using GC-MS (GC-MS를 이용한 석유제품 중의 식별제 분석)

  • Youn, Ju Min;Doe, Jin Woo;Yim, Eui Soon;Lee, Jung Min
    • Journal of the Korean Applied Science and Technology
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    • v.35 no.4
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    • pp.1073-1080
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    • 2018
  • There are several types of petroleum products used for the fuel oil, according to their respective quality standards, grades and usage. Depending on the degree of oil tax rate by country, even the same petroleum products will have price gap. The illegal mixing of cheap petroleum products, which are subject to the lower tax rate, with relatively expensive transportation fuel causes problems such as tax evasion, environmental pollution and vehicle breakdown. In order to prevent illicit production and mixing of these different petroleum products, a small amount of markers are legally added to specific petroleum products. In Korea, markers are introduced and used to prevent illegal activity that kerosene used as fuel for house and commercial boiler are mixed with automotive diesel fuels, and marker contents are analyzed to use UV-Vis spectrophotometer and high performance liquid chromatography (HPLC). In this study, we have developed a method to qualitatively and quantitatively determine the marker added to petroleum products by gas chromatography-mass spectrometry (GC-MS) without adding developing reagent or sample pre-treatments.

Development of Electric Propulsion Equipment for Bi-Modal Vehicle (바이모달 굴절차량 추진용 전장품 개발)

  • You, Doo-Young;Park, Geon-Tae;Kim, Seung-Hwan;Bang, Lee-Seok
    • Proceedings of the KIPE Conference
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    • 2012.07a
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    • pp.295-296
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    • 2012
  • 세계적으로 화석연료에 의한 환경 문제로 인하여 연비가 개선된 전기자동차에 대한 관심이 날로 증가하고 있다. 본 논문에서는 친환경이면서 대용량 수송이 가능한 직렬형 CNG-하이브리드 바이모달 굴절차량에 적용되는 추진용 전장품을 개발하였다. 또한 전장품을 차량에 장착하여 운전 모드에 따른 차량의 주행시험을 통해 차량의 구동 성능 및 전장품의 제어성능을 확인하였다.

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Study on Utilization and Prospect of Lignocellulosic Bioethanol in ASEAN Countries (주요 ASEAN 국가의 목질계 바이오에탄올의 활용 및 전망에 관한 연구)

  • Heo, Su Jung;Choi, Joon Weon
    • Journal of the Korean Wood Science and Technology
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    • v.45 no.5
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    • pp.588-598
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    • 2017
  • Currently, bioethanol, a fuel additive for transportation, is produced mainly by using biomass (first generation) such as corn and sugar canes. First generation biomass can cause various problems in terms of increase in agricultural prices and ethical reasons. To address these problems, a nonedible lignocellulosic biomass can be utilized. Agricultural byproducts such as straw, bagasse, and forest byproducts from the wood processing industry. Therefore, production of wood based bioethanol can be an effective utilization route of second generation biomass, and its raw materials are more abundant than first generation resources. Furthermore, it is possible to secure cheap raw materials. One of the biggest advantages of using biofuels is that it contributes to the reduction of greenhouse gases by minimizing the environmental impact, unlike fossil fuels. In this study, we investigated the greenhouse gas reduction effects that can be achieved through the use of Lignocellulosic bioethanol and government policies on renewable energy currently being implemented in ASEAN countries (Indonesia, Malaysia, Thailand and the Philippines). In these four countries, policies and incentives related to biofuels have been developed. It is expected that the reduction ratio of carbon dioxide emission and the mixed biofuel will be gradually increased in the future.

Operation characteristics of partial oxidation reformer for transportation fuels (수송 연료용 부분산화 개질기의 운전특성)

  • Lee, Sangho;Bae, Joongmyeon
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.05a
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    • pp.159.1-159.1
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    • 2011
  • Partial oxidation reformer was fabricated and operated using commercial transportation fuels. Fuel injector and heating coil were used for fuel atomization and startup, respectively. The reformer was designed to produce syngas for $150{\sim}200W_e$ class solid oxide fuel cell. The reformer was operated in the $O_2$/C range between 0.6 and 0.8 while the capacity was fixed at $150W_e$. The temperature range in catalyst bed was between $500^{\circ}C$ and $900^{\circ}C$. Only 83% fuel was converted to $H_2$, CO, $CO_2$ and $CH_4$ at the operating conditions. The lowest temperature increase to $700^{\circ}C$ when the reformer was operated at $200W_e$, Although the temperature profiles was improved, fuel conversion was 88%. On the other hand, fuel was completely converted when micro-reactor operated at the same condition. This difference maybe due to aromatic compounds formation at homogeneous region. In addition, a significant amount of coke deposition was observed at vent line. Homogeneous reaction depends on the degree of mixing. For this purpose, two fluid nozzle and Ultra sonic injector were compared to investigate the effect of atomization. Sauter mean diameter(SMD) of Ultra sonic injector was lower than two-fluid nozzle at test condition. However, conversion efficiency and fuel conversion were not improved by using two-fluid nozzle. these results imply that the temperature of homogeneous reaction region should be controlled to prevent coke formation.

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Biodiesel Production from Soybean Oil in Continuous Reactors (연속흐름반응기에서 바이오디젤 제조 특성 연구)

  • Kim, Deog-Keun;Lee, Jin-Suk;Park, Ji-Yeon;Park, Soon-Chul
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.06a
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    • pp.589-593
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    • 2007
  • 재생 가능한 자원인 동식물성 기름을 원료로 제조되는 수송용 연료 바이오디젤은 낮은 대기오염물질 배출과 $CO_2$ Neutral 특성으로 환경친화적인 연료로 인정을 받으며 전세계적으로 그 생산량이 급격히 증가하고 있다. 대부분의 상용화 공정은 염기촉매를 이용한 전이에스테르화 반응에 근거하고 있으며 높은 생산성을 위해 연속 공정을 채택하고 있다. 원료유 중의 유리지방산(free fatty acid, FFA)은 염기 촉매와 반응하여 지방산염(Soap)과 수분을 생성하며 반응촉매의 투입양을 증가시카고 반응 후에 글리세롤과 지방산 메틸에스테르와의 분리를 어렵게 만든다. 높은 수율과 후속공정의 부하를 줄이기 위해서는 식물성 원료유 중의 FFA는 고체 산촉매 하에서 메탄올과 에스테르화 반응시켜 전환 제거되어야 한다. 본 연구에서는 고체산 촉매인 Amberlyst-15을 충전한 4단 PBR(Packed Bed Reactor, 충전율 60%(v/v))에서 반응시간과 반응온도에 따른 대두원유의 전처리 효율을 조사하였으며 최적 전처리 조건을 도출하였다. 최적 전처리 조건에서 대두원유는 초기 산가 1.6에서 0.4-0.6으로 연속 전처리할 수 있었다. 본 연구에서는 연속 흐름 반응기인 PFR(Plug Flow Reactor)와 4단 CSTR(Continuous Stirred Tank Reactor)에서 균질계 촉매인 KOH 존재하에 대두유와 메탄올과의 전이에스테르화 반응 특성을 조사하였으며 각 연속 반응시스템에서 최적 운전 조건을 도출하였다. PFR 반응기에서 반응온도, 반응시간, 반응물 흐름방향, static mixer(SM) 개수에 따른 반응특성을 조사한 결과, PFR에서의 최적 반응조건은 하향류 흐름 방향과 3개의 SM를 설치한 조건에서 반응시간 5.8분, 반응온도 90$^{\cdot}C$, 메탄올:오일 몰비 9:1, KOH 농도 0.8%로 도출되었다. CSTR 반응기에서는 반응온도와 체류시간에 따른 반응특성을 조사하였으며 최적반응 조건으로 반응온도 80$^{\cdot}C$, 메탄올/오일 몰비 9:1, KOH 농도 0.8%, 체류시간 18.4분, 교반속도 250rpm로 조사되었다.

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