• Title/Summary/Keyword: Mixed Fuel

검색결과 608건 처리시간 0.023초

중유회를 활용한 고형연료 제조 및 특성 (Preparation and characterization of SRF(Solid Refuse Fuel) using heavy oil fly ash)

  • 민홍;조성수;서민혜;이수영;최창식
    • 유기물자원화
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    • 제27권4호
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    • pp.83-90
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    • 2019
  • 본 연구에서는 중유회의 고형연료로써 활용 가능성을 평가하기 위해 첨가제별 성형 특성과 조성을 분석하고, 제조한 SRF(Solid Refuse Fuel)의 발열량을 비교하였다. SRF 성형을 위해 함께 첨가한 첨가제는 귤박, 폐목재, 석탄이었으며, 함수율 30%를 기준으로 각각의 첨가제를 혼합하여 압출방법을 통해 펠렛 형태로 제조하였다. 실험결과, SRF의 성형성은 중유회와 석탄 또는 귤박을 혼합한 조건에서 우수하였으며, 발열량은 석탄을 혼합한 SRF가 4,274 kcal/kg 으로 가장 높았다. 따라서 중유회를 활용한 고형연료의 합성 조건은 20 wt%의 석탄을 혼합하여 함수율 30%로 제어하였을 때, 높은 성형성과 발열량의 향상을 나타내는 것을 확인하였다. 이 결과로부터 J 화력발전소의 중유회를 활용하여 첨가제(귤박, 폐목재, 석탄)를 일정 비율로 주입하였을 때 고형연료의 제조 가능성을 확인할 수 있었다.

고품질·저오염 RDF 생산을 위한 생활폐기물 성분평가 (Quality Assessment by MSW Type for High-quality and Low-pollution RDF)

  • 함광준;오근찬;박영한;김민수;김준현
    • 환경영향평가
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    • 제18권6호
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    • pp.453-460
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    • 2009
  • In order to provide fundamental data for developing high-grade(high-quality and low-pollution) Refuse Derived Fuel(RDF), we analyzed caloric value and HCl content by Municipal Solid Waste(MSW) type. The caloric value was analyzed using calorimeter and HCl content was analyzed using mercury(II) thiocyanate method. In case of paper type the caloric value was 3,060~3,608kcal/kg and the HCl content was 239~6,135ppm. In case of vinyl-plastics the caloric value was 5,946~9,888kcal/kg and the HCl content was 429~455,771ppm. According to the result of quality assessment by MSW type, the calroric value of vinyl-plastics type was showed higher than that of paper type and in case of HCl content the paper type was showed lower than vinyl-plastics type. So, We mixed paper and plastic wastes. The caloric value of mixed MSW(paper and plastics) was 5,046~9,125kcal/kg and the HCl content was 239~6,135ppm. Also, The caloric value of packaging waste(film-plastics) was 5,982~8,045kcal/kg. Therefore It is possible to develop high-grade Refuse Derived Fuel through suitable mixing of paper and plastic in municipal solid waste.

공정플랜트 연료배관의 시스템응력 해석에 의한 구조 건전성 평가 (Structural Integrity Evaluation by System Stress Analysis for Fuel Piping in a Process Plant)

  • 정성용;윤기봉;팜반듀엣;유종민;김지윤
    • 한국안전학회지
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    • 제28권3호
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    • pp.44-50
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    • 2013
  • Process gas piping is one of the most basic components frequently used in the refinery and petrochemical plants. Many kinds of by-product gas have been used as fuel in the process plants. In some plants, natural gas is additionally introduced and mixed with the byproduct gas for upgrading the fuel. In this case, safety or design margin of the changed piping system of the plant should be re-evaluated based on a proper design code such as ASME or API codes since internal pressure, temperature and gas compositions are different from the original plant design conditions. In this study, series of piping stress analysis were conducted for a process piping used for transporting the mixed gas of the by-product gas and the natural gas from a mixing drum to a knock-out drum in a refinery plant. The analysed piping section had been actually installed in a domestic industry and needed safety audit since the design condition was changed. Pipe locations of the maximum system stress and displacement were determined, which can be candidate inspection and safety monitoring points during the upcoming operation period. For studying the effects of outside air temperature to safety the additional stress analysis were conducted for various temperatures in $0{\sim}30^{\circ}C$. Effects of the friction coefficient between the pipe and support were also investigated showing a proper choice if the friction coefficient is important. The maximum system stresses were occurred mainly at elbow, tee and support locations, which shows the thermal load contributes considerably to the system stress rather than the internal pressure or the gravity loads.

가연성 건설폐기물의 자원화 제고를 위한 방안 (A Study on the Promotion of Combustible Construction Waste Recycling)

  • 박지선;이세현
    • 한국건설순환자원학회논문집
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    • 제4권1호
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    • pp.89-95
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    • 2009
  • 현행 "건설폐기물의 재활용 촉진에 관한 법률" 시행령 별표1에서는 다양한 성상으로 배출되는 건설폐기물의 종류를 17가지로 구분하고 이중 제17호의 혼합폐기물은 건설폐토석을 제외한 나머지 15가지 성상의 건설폐기물중 둘 이상의 건설폐기물이 혼합된 것으로 정의하고 있다. 이중 폐콘크리트, 폐아스콘과 같은 건설폐재류는 대부분이 순환골재와 같이 재활용되고 있으며 폐금속과 같은 유가성 자재류는 대부분 분리 판매되어 2차 제품 제조등에 활용되고 있다. 그러나 폐목재, 폐합성수지, 폐섬유 등과 같은 가연성 폐기물의 경우 발열량이 높고 인체에 해로운 중금속 함유량이 적어 RDF나 RPF와 같은 에너지 연료로 활용이 가능하지만 상당량이 혼합폐기물 형태로 배출되어 단순 소각 및 매립되고 있는 실정이다. 그러므로 본 연구에서는 단순하게 외관상의 분류만을 고려하여 설정한 현행 "건폐법"과는 달리 최초 발생단계에서부터 최종처리까지 건설폐기물의 흐름을 보다 효율적으로 제어할 수 있도록 건설폐기물의 분류를 크게 가연성, 불연성, 가연성 불연성 혼합, 기타 등으로 분류하였다. 가연성 폐기물의 경우 기존의 소각 폐기물을 중심으로 폐목재, 폐섬유 등 기존의 소각 폐기물을 중심으로 분류를 하고 불연성은 재활용이 원활한 건설폐재류와 기타로 구분, 혼합건설폐기물은 발생 자체부터 서로 다른 물질이 결합되어 있어 분리 자체가 어려운 폐기물을 대상으로 하였다. 또한 이상에서 폐기물은 지정폐기물을 제외하고 모든 기타 폐기물로 분류하도록 하였으며 기본적으로 건설현장에서 발생하는 폐기물은 1차적으로 가연성, 불연성, 혼합폐기물로 분류하여 배출하는 시스템이 되도록 폐기물의 분류를 실시하였다.

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부생연료유(2호) 혼합에 따른 정제연료유(감압)의 물성 변화 특성 연구 (Study on Characteristics of Change of Physical/Chemical property of Refined Fuel Oil(Reduced-pressure) by Mixing with By-product Fuel Oil(No. 2))

  • 도진우;임태윤;임의순;이정민;강형규
    • 한국응용과학기술학회지
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    • 제35권4호
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    • pp.1349-1358
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    • 2018
  • 화석연료로부터 기인한 환경오염에 대한 대응과 더불어 신재생에너지 공급의무화제도의 시행은 재생연료유 등 신재생에너지의 활용도를 증대시켰다. 부생연료유(2호)와 정제연료유(감압)는 국내 법령으로 엄격히 규제되고 있으며, 부생연료유(2호)를 혼합한 정제연료유(감압)의 물성변화를 시험하였다. 부생연료유(2호)를 1 : 1로 혼합한 정제연료유(감압)의 물성분석 결과, 국내 폐기물관리법에서 규정하고 있는 품질기준을 만족하였다. 다만, 연료와 관련한 추가항목 시험결과에서 높은 방향족 함량을 나타내었다. 연료 내 높은 방향족 함량은 사용기기의 고무류 파손이나 연소 시 그을음, 매연 등이 발생할 가능성이 높을 것으로 보인다.

ZnDTP를 첨가한 혼합윤활유(광유/식물성 오일)의 마모, 산화 및 전단 특성 (Wear, Oxidation and Shear Characteristics of Mixed Lubricating Oil (Mineral/Vegetable oil) with ZnDTP)

  • 임태윤;김양회;나병기
    • Tribology and Lubricants
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    • 제34권4호
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    • pp.160-167
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    • 2018
  • Vegetable oils can contribute to the goal of energy independence and security owing to their naturally renewable resources. One of the representative vegetable oils is biodiesel, which is being used in domestic and European markets as a blended fuel with automotive diesel. Vegetable oils are promising candidates as base fluids to replace petroleum lubricants because of their excellent lubricity and biodegradability. We prepared biodiesel with a purity of 99.9% via the esterification of waste cooking oil. Blended biodiesel and Petro-lube base oil were mixed to produce five types of mixed lubricating oil. We analyzed the various characteristics of the blended biodiesel with Petro-lube base oil for different blending ratios. The lubricity of the vegetable lubricant improves as the content of biodiesel increases. In addition, since zinc dialkyldithiophosphates (ZnDTPs) are widely used as multifunctional additives in petroleum-based lubricants, we optimized the blending ratio for lubricity, oxidation stability, and shear stability by adding ZnDTP as a performance additive to improve the biodiesel properties, such as oxidation stability and hydrolysis. The optimized lubricants improve by approximately 25% in lubricity and by 20 times in oxidation stability and shear stability after the addition of ZnDTP.

미세구조 설계에 따른 이트리아 안정화 지르코니아의 전기적 성질 변화 (Effect of Microstructural Design on the Electrical Properties of Y2O3-Stabilized ZrO2)

  • 김선재;김경호;오석진;강대갑;국일현
    • 한국세라믹학회지
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    • 제30권9호
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    • pp.717-722
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    • 1993
  • Effects of microstructures on the electrical properties of ZrO2 based ceramics were analyzed by modeling layer arrangements and mixed phase structures. Single layers and alternating multilayers were made from 3mol% and 8mol% Y2O3 doped ZrO2 powders, while mixed specimen was made by blending and compacting these raw powders. After sintering at 150$0^{\circ}C$ for 2hr in air, AC impedance characteristics were measured. Contributiion of bulk comonent to total resistivity and its temperature-dependence were larger in 8Y-ZrO2 single layer than in 3Y-ZrO2 single layer. The multilayered specimen connected in serial to electrodes showed partial characteristics of both 3Y-ZrO2 and 8Y-ZrO2 single layers. The multilayered specimen connected in parallel to electrodes and the mixed specimen exhibited characteristics mainly of 8Y-ZrO2 single layer. The multilayered specimen connected in parallel to electrodes revealed the highest electrical conductivity near the operating temperature of solid oxide fuel cell. However, it is expected that the mixed specimen is appropriate for the applications because of its relatively high electrical conductivity with high strength expected.

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직류 전기도금을 이용한 고체산화물 연료전지 금속연결재용 페라이트계 스테인리스 스틸의 코발트 보호막 코팅 효과 (Effects of Cobalt Protective Coating Prepared by DC Electroplating on Ferritic Stainless Steel for SOFC Interconnect)

  • 홍종은;임탁형;송락현;이승복;신동열;유영성;이덕열
    • 한국수소및신에너지학회논문집
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    • 제20권2호
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    • pp.116-124
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    • 2009
  • We investigated the influences of cobalt coating deposited by DC electroplating on the ferritic stainless steel, STS 430, as a protective layer on a metallic interconnect for SOFC applications. Cobalt coated STS 430 revealed a uniform and denser-packing oxide surface and a reduced growth rate of $Cr_2O_3$ scales after oxidation at $800^{\circ}C$in air. Cobalt coating layer was oxidized to $CoCo_2O_4$ and Co containing mixed oxide spinels such as $Co_2CrO_4$, $CoCr_2O_4$, and $CoCrFeO_4$. The area specific resistance value of Co coated sample was $0.020\;{\Omega}cm^2$ lower than that of uncoated at $800^{\circ}C$ in air during 500 h. After 1000 h oxidation, cobalt oxide coating layer suppressed chromium outward diffusion.

125 kW급 용융탄산염 연료전지 시스템의 이젝터 설계 및 시험 (The Ejector Design and Test for 125 kW Class Molten Carbonate Fuel Cell System)

  • 김범주;박수만;송오섭
    • 한국수소및신에너지학회논문집
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    • 제29권2호
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    • pp.139-147
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    • 2018
  • Korea Electric Power Research Institute (KEPCO RI) had developed molten carbonate fuel cell (MCFC) system since 1993. Finally, KEPCO RI developed and operated a 125 kW MCFC system in 2010. To make MCFC system compact, it is indispensable to install an ejector in this system where the anode off gas, the cathode off gas, and fresh air are mixed before flowing to the catalytic burner. KEPCO RI had developed various ejectors for MCFC system since 2006. The 125 kW MCFC system built with the developed ejector was operated successfully in Boryeong Thermal Power Plant in 2010. This 125 kW MCFC ejector was designed on the basis of the experimental results of 5 kW and 75 kW MCFC ejectors. The main goal of ejector design in our MCFC system is to maintain the entrainment ratio and the pressure between fuel cell stack and catalytic burner within the operating range. In this paper, the design results of the ejector are presented based on the 125 kW MCFC system operating conditions. In addition, a designed ejector was manufactured and installed in the MCFC system. As the fuel cell is under load operation, the pressure surrounding the ejector was measured to ensure that the fuel cell system is operating smoothly.

접촉분해경유로부터 산화황화합물의 분리에 관한 추출용매의 영향 (Effect of Extraction Solvent on the Separation of Sulfur Components in Light Cycle Oil)

  • 박수진;정광은;채호정;김철웅;정순용;구기갑
    • Korean Chemical Engineering Research
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    • 제46권5호
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    • pp.965-970
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    • 2008
  • 접촉분해경유의 산화반응후 포함된 산화황화합물을 분리하기위해 다양한 용매를 사용하여 용매추출에 관한 연구를 수행하였다. 용매로는 극성을 가진 물, N-메틸피놀리논, 에틸아세테이트, 디메틸포름아마이드, 이소프로필알코올, 아세토니트릴, 메탄올등을 사용하였다. 실험결과, 접촉분해경유와 용매와의 층분리는 적절한 양의 물을 첨가한 경우에 이루어졌으며, 물과 N-메틸피놀리논을 혼합한 혼합용매가 접촉분해경유로부터 산화황화합물의 선택적인 분리에 가장 적절하였다. 또한 접촉분해경유로부터 황화합물을 99.5% 이상으로 제거하기 위해선, 4단 정도의 평형추출이 필요하였다.