• 제목/요약/키워드: regeneration energy

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마우스 동계골수이식 후 면역체계의 재생: II. B림프구의 재생 및 항체산생 (Regeneration of Immune System after Syngeneic Bone Marrow Transplantation in Irradiated Mice: II. B Lymphocyte Regeneration and Antibody Production)

  • 김성호;오헌;이송은;김순태;조성기;현병화;류시윤
    • 한국수의병리학회지
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    • 제1권1호
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    • pp.7-12
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    • 1997
  • Lethally irradited C3H/HeN mice were transplanted with syngeneic bone marrow. The B cell regeneration levels of spontaneous serum Ig, fecal igA and specific ig to diphtheria toxoid were determined at various time points. The number of B220+ cells reached normal range at 4 weeks after bone marrow transplantation(BMT) in spleen and lymph node. The B cell number of spleen returned to normal relatively soon than in the lymph node. Within 5 to 7 weeks after BMT, the transplanted mice contained nearly normal levels of spontaneous serum IgA, IgG2b and fecal IgA, but 2 fold lower levels of serum IgG2a, IgM and IgG3. Especially IgG3 levels were within low-normal range throughout the study. One to two weeks after immunization the predominant anti-diphtheria toxoid subtype was IgM. The levels of specific serum Ig were very low and after booster immunization at week 6, the short-lasting increase of Ig production was notd.

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연소 후 $CO_{2}$ 포집공정이 적용된 500MWe 석탄화력발전소의 성능 및 경제성평가 (Performance and Economic Analysis of 500 MWe Coal-Fired Power Plant with Post-Combustion $CO_{2}$ Capture Process)

  • 이지현;김준한;이인영;장경룡;심재구
    • Korean Chemical Engineering Research
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    • 제49권2호
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    • pp.244-249
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    • 2011
  • 연소 후 $CO_{2}$ 포집기술이 적용된 500 MWe 석탄화력발전소의 경제성평가를 수행하고 $CO_{2}$ 저감비용(Cost of $CO_{2}$ avoided)을 산출하였다. 본 연구에서 고려된 $CO_{2}$ 포집기술은 이미 상업적으로 적용이 가능하고, 기존의 화력발전에 적용이 용이한 화학 흡수법을 기초로 하였으며 투자비용 산출을 위해 IEA Greenhouse Gas R&D Programme에서 제시하는 데이터를 활용하였다. 또한 $CO_{2}$ 포집공정 중 가장 많은 발전효율 저하를 가져오는 재열기(리보일러)에 투입되는 열에너지(재생에너지)를 대상으로 민감도분석을 수행하고 각각의 경우에서의 $CO_{2}$ 저감비용을 산출하였다. 분석결과 $CO_{2}$ 포집공정에 적용될 흡수제로 MEA(모노에탄올아민)가 사용되고 재생탑에서 필요한 재생에너지가 3.31 GJ/ton$CO_{2}$ 인 경우 발전효율은 $CO_{2}$ 포집설비 설치 전의 41.0에서 31.6%로 9.4% 감소하고 이때의 $CO_{2}$ 저감비용은 43.3 $/ton$CO_{2}$ 로 산출되었다. 그러나, 흡수제 재생에너지를 변수로 한 민감도분석에서 재생에너지가 2.0 GJ/ton$CO_{2}$로 낮아질 경우 $CO_{2}$ 저감비용은 36.7 $/ton$CO_{2}$까지 낮아질 것으로 분석되었다.

무가선 저상트램 추진배터리 시스템의 SOC관리 전략 (The SOC Management Strategy of Battery System for Propulsion in Wireless Low Floor System)

  • 오용국;곽재호;이호용
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 정기총회 및 추계학술대회 논문집
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    • pp.2329-2335
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    • 2011
  • The Wireless low floor tram uses the energy more effectively than other systems with onboard battery system. But for this the SOC(state of charge) management of the battery system is required. This paper is focused on the SOC management strategy of battery system for propulsion in wireless low floor tram. For minimizing consumption energy, the SOC management strategy that maximizes the regeneration energy is studied. The SOC operating region is divided to overcome the limited life cycle pointed out as a disadvantage of battery system. And the effective energy management strategy of tram is suggested through the charge/discharge of the battery system according to tram status in catenary/catenary-free section.

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슈퍼커패시터를 이용한 전동차량 화생 에너지 저장 시스템의 제어기법 (A Control Method of Electric Railway Vehicle Recycle Energy Storage System Using Supercapacitor)

  • 노세진;이진목;손경민;최재호
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2008년도 하계학술대회 논문집
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    • pp.97-99
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    • 2008
  • It is possible to suppress voltage drops, power loading fluctuations and regeneration power lapses for DC railway systems by applying an energy storage system. Recently the electric double layer capacitor (EDLC) of the rapid charge/discharge type has been developed and used in wide ranges. The on board energy storage system with supercapacitor for railway vehicles presented in this paper seems to be a reliable technical solution with an enormous energy saving potential. In this paper, an efficient charge and discharge control method of a bidirectional DC-DC converter using the supercapacitor is proposed.

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전기자동차용 제동 시스템 해석 및 최적화에 관한 연구 (The Analysis and Optimization far the Braking System in Electric Vehicle)

  • 오재응;이준일;이충휘;조용구;이유엽;이정윤
    • 한국자동차공학회논문집
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    • 제11권1호
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    • pp.172-178
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    • 2003
  • Driving range is one of the main problems in development of Electric Vehicles(EV). The Regenerative. braking system is required to overcome the problem, which converts kinetic energy of the vehicle during braking into electrical energy. This paper discusses the braking system of EV and Robust design especially developed to maximize energy recovery and to optimize braking performance. This is promised to be applied to the design of elements for EV braking system.

Continuous Cell-Free Protein Synthesis Using Glycolytic Intermediates as Energy Sources

  • Kim, Ho-Cheol;Kim, Tae-Wan;Park, Chang-Gil;Oh, In-Seok;Park, Kyung-Moon;Kim, Dong-Myung
    • Journal of Microbiology and Biotechnology
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    • 제18권5호
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    • pp.885-888
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    • 2008
  • In this work, we demonstrate that glycolytic intermediates can serve as efficient energy sources to regenerate ATP during continuous-exchange cell-free (CECF) protein synthesis reactions. Through the use of an optimal energy source, approximately 10 mg/ml of protein was generated from a CECF protein synthesis reaction at greatly reduced reagent costs. Compared with the conventional reactions utilizing phosphoenol pyruvate as an energy source, the described method yields 10-fold higher productivity per unit reagent cost, making the techniques of CECF protein synthesis a more realistic alternative for rapid protein production.

고도 정수처리장에서의 과불화합물 거동 (Behavior of perfluorinated compounds in advanced water treatment plant)

  • 임채승;김형준;한개희;김호;황윤빈;김극태
    • 상하수도학회지
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    • 제34권5호
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    • pp.323-334
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    • 2020
  • Adsorption by granule activated carbon(GAC) is recognized as an efficient method for the removal of perfluorinated compounds(PFCs) in water, while the poor regeneration and exchange cycles of granule active carbon make it difficult to sustain adsorption capacity for PFCs. In this study, the behavior of PFCs in the effluent of wastewater treatment plant (S), the raw water and the effluents of drinking water treatment plants (M1 and M2) located in Nakdong river waegwan watershed was monitored. Optimal regeneration and exchange cycles was also investigated in drinking water treatment plants and lab-scale adsorption tower for stable PFCs removal. The mean effluent concentration of PFCs was 0.044 0.04 PFHxS g/L, 0.000 0.00 PFOS g/L, 0.037 0.011 PFOA g/L, for S wastewater treatment plant, 0.023 0.073 PFHxS g/L, 0.000 0.00 PFOS g/L, 0.013 0.008 PFOA g/L for M1 drinking water treatment plant and 0.023 0.073 PFHxS g/L, 0.000 0.01 PFOS g/L, 0.011 0.009 PFOA g/L for M2 drinking water treatment plant. The adsorption breakthrough behaviors of PFCs in GAC of drinking water treatment plant and lab-scale adsorption tower indicated that reactivating carbon 3 times per year suggested to achieve and maintain good removal of PFASs. Considering the results of mass balance, the adsorption amount of PFCs was improved by using GAC with high-specific surface area (2,500㎡/g), so that the regeneration cycle might be increased from 4 months to 10 months even if powdered activated carbon(PAC) could be alternatives. This study provides useful insights into the removal of PFCs in drinking water treatment plant.

질소산화물 제거용 상용 $V_2O_5-WO_3/TiO_2$ SCR 폐 촉매의 재생 효과 고찰 (A Study on the Regeneration Effects of Commercial $V_2O_5-WO_3/TiO_2$ SCR Catalyst for the Reduction of NOx)

  • 박해경
    • 대한환경공학회지
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    • 제27권8호
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    • pp.859-869
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    • 2005
  • 소각장 off gas에 장기간 노출이 되어 활성이 저하된 상용 $V_2O_5-WO_3/TiO_2$ aged 촉매를 물리화학적 방법으로 재생 처리를 수행한 후, 재생 처리에 따른 촉매의 물성 변화를 확인하고 이에 따른 촉매 활성변화를 고찰하였다. 촉매의 특성분석은 XRD(x-ray diffractometer), BET, POROSIMETER, EDX(energy dispersive x-ray spectrometer), ICP(inductively coupled plasma), TGA(thermogravimetric Analyze,), SEM(scanning electron microscopy)등을 이용하여 수행하였고 NOx 전환반응실험은 소각장 off gas를 모사하여 $NH_3$에 의한 SCR 반응을 통해 수행하였다. 본 연구에서 수행된 재생처리 방법 중, 열처리 방법으로 재생처리를 수행 할 경우 fresh 촉매환성의 95% 이상을 회복하였으며, 화학적 재생 처리 방법으로는 산성용액의 경우는 pH가 5인 용액으로 재생 처리된 촉매가, 염기성 용액의 경우는 pH가 12인 용액으로 재생 처리된 촉매가 fresh 촉매활성의 90% 이상의 촉매 활성을 회복 하였다. 촉매 특성 분석 결과, 상기와 같은 방법으로 재생 처리된 촉매의 경우 비표면적은 fresh 촉매의 $85{\sim}95%$ 수준으로 회복 되었으며, aged 촉매 표면에 축적되어 있던 촉매 비활성 물질로 잘 알려진 황(S)이나 칼슘(Ca)등은 최대 99%이상 제거 되었다. Aged 촉매 표면상의 인(P), 크롬(Cr), 아연(Zn) 등과 같은 중금속의 경우는 최대 95% 이상 제거 되었으나 납(Pb)의 경우는 제거율이 $10{\sim}30%$ 수준으로 매우 미흡한 것으로 나타났다.

저온 열원과 LNG 냉열을 이용하는 암모니아-물 동력 사이클의 열역학적 성능 해석 (Thermodynamic Performance Analysis of Ammonia-Water Power Generation System Using Low-temperature Heat Source and Liquefied Natural Gas Cold Energy)

  • 김경훈;김경천
    • 대한기계학회논문집B
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    • 제38권6호
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    • pp.483-491
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    • 2014
  • 본 연구에서는 현열 형태의 저온 열원과 LNG의 냉열을 이용하는 복합 동력 생산시스템에 대한 열역학적 성능 해석을 수행하였다. 시스템의 작동유체로서 암모니아-물의 비공비 혼합물을 고려하였으며 재생기가 없는 기본 사이클과 있는 재생 사이클의 경우를 비교 해석하였다. 작동유체의 암모니아 농도나 응축 온도에 따라 시스템의 순생산일, 엑서지 파괴, 열효율이나 엑서지 효율 등에 미치는 다양한 영향에 대해 분석하고 논의하였다. 해석 결과는 시스템의 성능 특성이 작동유체의 암모니아 농도나 응축 온도에 따라 민감하게 변화하며, 열원유체 단위질량당 순생산일은 기본 사이클이 유리하나 열효율이나 엑서지 효율은 재생 사이클이 유리하다는 사실을 보여준다.

Performance Analysis of Upgrading Process with Amine-Based CO2 Capture Pilot Plant

  • Kwak, No-Sang;Lee, Junghyun;Lee, Dong Woog;Lee, Ji Hyun;Shim, Jae-Goo
    • KEPCO Journal on Electric Power and Energy
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    • 제4권1호
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    • pp.33-38
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    • 2018
  • This study applied upgrades to the processes of a 10 MW wet amine $CO_2$ capture pilot plant and conducted performance evaluation. The 10 MW $CO_2$ Capture Pilot Plant is a facility that applies 1/50 of the combustion flue gas produced from a 500 MW coal-fired power plant, and is capable of capturing up to 200 tons of $CO_2$. This study aimed to quantitatively measure efficiency improvements of post-combustion $CO_2$ capture facilities resulting from process upgrades to propose reliable data for the first time in Korea. The key components of the process upgrades involve absorber intercooling, lean/rich amine exchanger efficiency improvements, reboiler steam TVR (Thermal Vapor Recompression), and lean amine MVR (Mechanical Vapor Recompression). The components were sequentially applied to test the energy reduction effect of each component. In addition, the performance evaluation was conducted with the absorber $CO_2$ removal efficiency maintained at the performance evaluation standard value proposed by the IEA-GHG ($CO_2$ removal rate: 90%). The absorbent used in the study was the highly efficient KoSol-5 that was developed by KEPCO (Korea Electric Power Corporation). From the performance evaluation results, it was found that the steam consumption (regeneration energy) for the regeneration of the absorbent decreased by $0.38GJ/tonCO_2$ after applying the process upgrades: from $2.93GJ/ton\;CO_2$ to $2.55GJ/tonCO_2$. This study confirmed the excellent performance of the post-combustion wet $CO_2$ capture process developed by KEPCO Research Institute (KEPRI) within KEPCO, and the process upgrades validated in this study are expected to substantially reduce $CO_2$ capture costs when applied in demonstration $CO_2$ capture plants.