• Title/Summary/Keyword: 한국에너지기술연구원

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태양광 발전과 ESS 시스템의 연계운전시 단독운전 방지 사례 연구 (A Case Study on the Islanding Detection Protection of PV System and ESS System)

  • 임종록;황혜미;신우균;주영철;정영석;강기환;고석환
    • 한국태양에너지학회 논문집
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    • 제39권1호
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    • pp.59-66
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    • 2019
  • BIPV or BAPV installation applied to building is increasing through public utility mandates enterprise. Solar PV energy generates only during the day, but if it is operated in convergence with ESS, which stores electrical energy, it can restrain the fossil energy used in buildings throughout the day. A solution is to converge with PV system and ESS. However, PV systems and ESS connected to the power grid in parallel can cause problems of electrical stability. A study was conducted on the case of failure to detect islanding operation under the parallel operation of PV generation and ESS that are connected in parallel to power grid. Experiments conducted various non-islanding detections under the operating conditions. In the experiment results, when one PCS - PV inverter or ESS inverter - was operating under the islanding condition, it stopped working within 0.5 seconds of the Korean grid standard. However, when both of PV inverter and ESS inverter were operating at the same time under the islanding situation, the anti-islanding algorithm did not operate normally and both inverters continuously supplied power to the connected RLC loads. islanding detection Algorithm developed by each inverter manufacturer has caused this phenomenon. Therefore, this paper presented a new test standard for islanding detection.

미이용 산림바이오매스 및 폐목재의 기포 유동층 Air 가스화 특성 연구 (Air Gasification Characteristics of Unused Woody Biomass in a Lab-scale Bubbling Fluidized Bed Gasifier)

  • 한시우;서명원;박성진;손성혜;윤상준;라호원;문태영;문지홍;윤성민;김재호;이은도;정수화;양창원;이영우
    • Korean Chemical Engineering Research
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    • 제57권6호
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    • pp.874-882
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    • 2019
  • 본 연구에서는, Lab-scale 기포 유동층 가스화기(직경 : 0.11 m, 높이 : 0.42 m)에서 미이용 산림 바이오매스 4종과 폐목재 1종의 가스화 특성을 살펴보았다. 실험은 온도와 연료 주입량을 각각 $800^{\circ}C$, 1 kg/h로 고정하고, ER 0.15-0.3, 가스 유속 $2.5-5U_0/U_{mf}$으로 변화시키면서 진행했다. 층 물질로는 silica sand와 olivine을 사용하였다. 생성 가스의 조성은 NDIR 분석기와 GC를 통해 분석하였으며, 분석 결과 평균적으로 $H_2$ 3~4 vol%, CO 15~16 vol%, $CH_4$ 4 vol%, $CO_2$ 18~19 vol.%으로 미이용 산림바이오매스와 폐목재 모두 비슷한 조성을 보였으며, 생성 가스의 평균 저위발열량은 $1193{\sim}1301kcal/Nm^3$을, 고위발열량은 $1262{\sim}1377kcal/Nm^3$을 나타내었다. 또한, 타르 저감 효과를 알아보고자 층 물질로 olivine을 사용 시 silica sand에 비해 생성 가스 내 C2 이상 성분이 대부분 감소하였고, $H_2$ 함량이 증가하여 타르의 cracking 반응이 생겼음을 확인하였다. 비응축성 타르는 72% ($1.24{\rightarrow}0.35g/Nm^3$), 응축성 타르는 27% ($4.4{\rightarrow}3.2g/Nm^3$) 가량 감소하는 효과를 확인하였다.

알칼라인 수전해용 Ni-Zn-Fe 전극의 산소 발생 반응 특성 (Study on Oxygen Evolution Reaction of Ni-Zn-Fe Electrode for Alkaline Water Electrolysis)

  • 이태경;김종원;배기광;박주식;강경수;김영호;정성욱
    • 한국수소및신에너지학회논문집
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    • 제29권6호
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    • pp.549-558
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    • 2018
  • The overall efficiency depend on the overpotential of the oxygen evolution reaction in alkaline water electrolysis. Therefore, it is necessary to research to reduce the oxygen evolution overpotential of electrodes. In this study, Ni-Zn-Fe electrodes were prepared by electroplating and the surface area was increased by Zn leaching process. Electroplating variables were studied to optimize the plating parameters(electroplating current density, pH value of electroplating solution, Ni/Fe content ratio). Ni-Zn-Fe electrode, which is electroplated in a modified Watts bath, showed 0.294 V of overpotential at $0.1A/cm^2$. That result is better than that of Ni and Ni-Zn plated electrodes. As the electroplating current density of the Ni-Zn-Fe electrode increased, the particle size tended to increase and the overpotential of oxygen evolution reaction decreased. As reducing pH of electroplating solution from 4 to 2, Fe content in electrode and activity of oxygen evolution reaction decreased.

가압 기포 유동층 반응기에서의 Ni계 촉매 CO2 메탄화 특성 연구 (CO2 Methanation Characteristics over Ni Catalyst in a Pressurized Bubbling Fluidized Bed Reactor)

  • 손성혜;서명원;황병욱;박성진;김정환;이도연;고강석;전상구;윤성민;김용구;김재호;류호정;이영우
    • Korean Chemical Engineering Research
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    • 제56권6호
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    • pp.871-877
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    • 2018
  • 전 세계적으로 재생에너지의 비율이 증가함에 따라, 재생에너지로부터 생산되는 불연속적이고 간헐적인 에너지 저장 문제가 주목을 받고 있다. 다양한 에너지 저장 시스템(ESS) 중에서 $CO_2$ 메탄화 기술은 타 시스템에 비해 높은 저장 용량과 저장 기간으로 각광 받고 있다. $CO_2$ 메탄화 반응은 발열반응이며, 촉매가 낮은 온도 범위($250-500^{\circ}C$)에서 높은 활성 및 메탄 선택도를 갖는다. 기존의 고정층 방식에 비하여 유동층 반응기는 높은 열전달 특성으로 인해 발열반응에 적합하며, 열전달과 물질 전달이 유리한 장점을 갖고 있다. 본 연구에서는, 촉매 특성 평가를 위해 기포유동층 반응기(Diameter: 0.025 m, Height: 0.35 m)와 $Ni/{\gamma}-Al_2O_3$ (Ni 70% and ${\gamma}-Al_2O_3$ 30%) 촉매를 사용하였다. 반응 조건은 $H_2/CO_2$ mole ratio: 4.0-6.0, 조업온도 $300-420^{\circ}C$, 조업 압력 1-9 bar 및 $U_o/U_{mf}$ 1-5이었다. 생성 가스의 조성은 NDIR를 통해 분석하였으며, $CO_2$ 전환율은 $H_2/CO_2$ ratio, 압력, 온도가 증가함에 따라 높아지는 경향을 보였다. 이에 반해 가스유속이 빨라질수록 $CO_2$ 전환율은 떨어졌다. 최적의 운전 조건은 $H_2/CO_2$ ratio: 5, 조업온도 $400^{\circ}C$, 조업 압력 9 bar 및 $1.4-3U_{mf}$이었으며 이 때 $CO_2$ 전환율은 99.6%로 나타났다. 본 실험 촉매의 경우 장기 운전 시 촉매 성능 저하가 없이 $CO_2$ 전환율이 일정하게 유지하는 것을 확인하였다.

위성영상 기반 일사량을 활용한 대전지역 표준기상년 데이터 생산 (Derivation of Typical Meteorological Year of Daejeon from Satellite-Based Solar Irradiance)

  • 김창기;김신영;김현구;강용혁;윤창열
    • 한국태양에너지학회 논문집
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    • 제38권6호
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    • pp.27-36
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    • 2018
  • Typical Meteorological Year Dataset is necessary for the renewable energy feasibility study. Since National Renewable Energy Laboratory has been built Typical Meteorological Year Dataset in 1978, gridded datasets taken from numerical weather prediction or satellite imagery are employed to produce Typical Meteorological Year Dataset. In general, Typical Meteorological Year Dataset is generated by using long-term in-situ observations. However, solar insolation is not usually measured at synoptic observing stations and therefore it is limited to build the Typical Meteorological Year Dataset with only in-situ observation. This study attempts to build the Typical Meteorological Year Dataset with satellite derived solar insolation as an alternative and then we evaluate the Typical Meteorological Year Dataset made by using satellite derived solar irradiance at Daejeon ground station. The solar irradiance is underestimated when satellite imagery is employed.

주성분분석에 의한 TMY 특성 비교분석 (Comparative Analysis on the Characteristic of Typical Meteorological Year Applying Principal Component Analysis)

  • 김신영;김창기;강용혁;윤창열;장길수;김현구
    • 한국태양에너지학회 논문집
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    • 제39권3호
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    • pp.67-79
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    • 2019
  • The reliable Typical Meteorological Year (TMY) data, sometimes called Test Reference Year (TRY) data, are necessary in the feasibility study of renewable energy installation as well as zero energy building. In Korea, there are available TMY data; TMY from Korea Institute of Energy Research (KIER), TRY from the Korean Solar Energy Society (KSES) and TRY from Passive House Institute Korea (PHIKO). This study aims at examining their characteristics by using Principle Component Analysis (PCA) at six ground observing stations. First step is to investigate the annual averages of meteorological elements from TMY data and their standard deviations. Then, PCA is done to find which principle components are derived from different TMY data. Temperature and solar irradiance are determined as the main principle component of TMY data produced by KIER and KSES at all stations whereas TRY data from PHIKO does not show similar result from those by KIER and KSES.

주택용 연료전지 효율 향상을 위한 다중 스택 연료전지 시스템의 전력 분배 최적화 (Power Distribution Optimization of Multi-stack Fuel Cell Systems for Improving the Efficiency of Residential Fuel Cell)

  • 강태성;함성현;오환영;최윤영;김민진
    • 한국수소및신에너지학회논문집
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    • 제34권4호
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    • pp.358-368
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    • 2023
  • The fuel cell market is expected to grow rapidly. Therefore, it is necessary to scale up fuel cells for buildings, power generation, and ships. A multi-stack system can be an effective way to expand the capacity of a fuel cell. Multi-stack fuel cell systems are better than single-stack systems in terms of efficiency, reliability, durability and maintenance. In this research, we developed a residential fuel cell stack and system model that generates electricity using the fuel cell-photovoltaic hybrid system. The efficiency and hydrogen consumption of the fuel cell system were calculated according to the three proposed power distribution methods (equivalent, Daisy-chain, and optimal method). As a result, the optimal power distribution method increases the efficiency of the fuel cell system and reduces hydrogen consumption. The more frequently the multi-stack fuel cell system is exposed to lower power levels, the greater the effectiveness of the optimal power distribution method.

습식 화학 공정에 의한 태양전지로부터 고순도 실리콘 회수 및 이를 이용한 태양전지 재제조 (Photovoltaic Performance of Crystalline Silicon Recovered from Solar Cell Using Various Chemical Concentrations in a Multi-Stage Process)

  • 노민호;이준규;안영수;여정구;이진석;강기환;조철희
    • 한국재료학회지
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    • 제29권11호
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    • pp.697-702
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    • 2019
  • In this study, using a wet chemical process, we evaluate the effectiveness of different solution concentrations in removing layers from a solar cell, which is necessary for recovery of high-purity silicon. A 4-step wet etching process is applied to a 6-inch back surface field(BSF) solar cell. The metal electrode is removed in the first and second steps of the process, and the anti-reflection coating(ARC) is removed in the third step. In the fourth step, high purity silicon is recovered by simultaneously removing the emitter and the BSF layer from the solar cell. It is confirmed by inductively coupled plasma mass spectroscopy(ICP-MS) and secondary ion mass spectroscopy(SIMS) analyses that the effectiveness of layer removal increases with increasing chemical concentrations. The purity of silicon recovered through the process, using the optimal concentration for each process, is analyzed using inductively coupled plasma atomic emission spectroscopy(ICP-AES). In addition, the silicon wafer is recovered through optimum etching conditions for silicon recovery, and the solar cell is remanufactured using this recovered silicon wafer. The efficiency of the remanufactured solar cell is very similar to that of a commercial wafer-based solar cell, and sufficient for use in the PV industry.