• 제목/요약/키워드: Bio-Energy

검색결과 1,398건 처리시간 0.03초

미세조류 바이오정유 공정의 에너지 수지 분석 (Net Energy Analysis of the Microalgae Biorefinery)

  • 이시훈;국진우;나정걸;오유관
    • 공업화학
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    • 제24권3호
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    • pp.285-290
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    • 2013
  • 최근 비식용 바이오매스 자원인 미세조류를 이용하여 배가스 내의 이산화탄소를 저감함과 동시에 바이오연료를 생산하는 공정이 개발되고 있다. 미세조류 바이오연료 전환 공정은 미세조류 경작, 수확, 추출, 전환 등의 다양한 공정들이 연속적으로 이용된다. 이에 따라 실제 에너지 생산 효과에 대한 우려가 여전히 존재한다. 본 연구는 석탄 발전소에서 배출되는 배가스를 이용하여 파일럿 광생물 반응기에서 생산되는 미세조류를 대상으로 바이오연료 전환에 따른 실에너지 효율을 계산하였다. 에너지 전환 공정은 전이에스터화, 열분해 공정을 선정하였으며 미세조류의 지질 함량에 따른 영향을 검토하였다. 미세조류 바이오연료 전환 공정들은 경작, 수확, 추출, 전환 등에 소요되는 에너지보다 많은 양의 에너지를 가지는 바이오연료를 생산할 수 있으며 지질 함량이 높은 미세조류는 열분해보다 전이 에스터화 반응이 효과적이었다.

무선 센서 망에서 생체 시스템 기반 에너지 효율적인 노드 스케쥴링 기법 (Bio-Inspired Energy Efficient Node Scheduling Algorithm in Wireless Sensor Networks)

  • 손재현;손수국;변희정
    • 한국통신학회논문지
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    • 제38A권6호
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    • pp.528-534
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    • 2013
  • 센서 네트워크에서 기본적으로 고려되어야 하는 것은 센서 노드의 에너지 소모 문제이다. 이를 해결하기 위해 많은 연구들이 진행되어 왔지만 에너지 소모 문제와 더불어 트레이드오프 관계를 갖는 지연 문제도 간과할 수 없는 부분이다. 본 논문은 생체시스템을 모방하여 무선 센서망에서 에너지의 소모와 지연시간을 줄이기 위한 BISA(Bio-inspired Scheduling Algorithm)를 제안한다. BISA는 에너지 효율성이 높은 라우팅 경로를 탐색하고 다중채널을 이용하여 데이터 전송의 경로를 다중화하여 데이터 전송을 위한 에너지 소모와 지연시간을 최소화한다. 모의실험을 통해 제안한 방식이 효율적으로 에너지를 소모함과 동시에 요구지연시간을 보장함을 확인한다.

해조류를 이용한 바이오 에너지화 산업의 지속가능 중간지표 개발 (Sustainable middle indices development for Algae Bio-energize industry)

  • 구자공;김소현
    • 유기물자원화
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    • 제22권2호
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    • pp.11-16
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    • 2014
  • 육상식물 재배면적과 바이오매스 자원이 부족한 우리나라는 바이오 에너지 원료의 다변화가 시급하며, 3면이 바다로 싸여 자원이 풍부한 해양환경을 이용한 바이오 에너지 생산기술 및 이를 통한 $CO_2$ 저감 방안은 매우 효과적인 대안이 될 것이다. SSaM-GG를 통해 $CO_2$ 흡수율이 높고 해바라기의 30배 많은 양의 기름 추출이 가능한 해조류의 바이오 에너지화에 대한 지속가능한 발전을 기대한다.

A Complete, Reductive Depolymerization of Concentrated Sulfuric Acid Hydrolysis Lignin into a High Calorific Bio-oil using Supercritical Ethanol

  • Riaz, Asim;Kim, Jaehoon
    • KEPCO Journal on Electric Power and Energy
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    • 제2권3호
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    • pp.447-452
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    • 2016
  • It is imperative to develop an effective pathway to depolymerize lignin into liquid fuel that can be used as a bioheavy oil. Lignin can be converted into liquid products either by a solvent-free thermal cracking in the absence air, or thermo-chemical degradation in the presence of suitable solvents and chemicals. Here we show that the solvent-assisted liquefaction has produced promising results in the presence of metal-based catalysts. The supercritical ethanol is an efficient liquefaction solvent, which not only provides better solubility to lignin, but also scavenges the intermediate species. The concentrated sulfuric acid hydrolysis lignin (CSAHL) was completely liquefied in the presence of solid catalysts (Ni, Pd and Ru) with no char formation. The effective deoxy-liquefaction nature associated with scEtOH with aid hydrodeoxygenation catalysts, resulted in significant reduction in oxygen-to-carbon (O/C) molar ratio up to 61%. The decrease in oxygen content and increase in carbon and hydrogen contents increased the calorific value bio-oil, with higher heating value (HHV) of $34.6MJ{\cdot}Kg^{-1}$. The overall process is energetically efficient with 129.8% energy recovery (ER) and 70.8% energy efficiency (EE). The GC-TOF/MS analysis of bio-oil shows that the bio-oil mainly consists of monomeric species such as phenols, esters, furans, alcohols, and traces of aliphatic hydrocarbons. The bio-oil produced has better flow properties, low molecular weight, and high aromaticity.

5MW급 바이오 가스터빈용 전처리시스템 설계연구 (Design Study of Fuel Supply System for 5MW-class Bio Gasturbine by Using Food Waste Water)

  • 허광범;박정극;윤은영;이정빈
    • 신재생에너지
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    • 제7권2호
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    • pp.10-17
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    • 2011
  • Korea is the 11th largest energy consumption country and 96% of its total energy consumption depends on imports from overseas. Therefore it is a very important task to secure renewable energy sources which can reduce both the carbon-dioxide emission and dependency on overseas energy imports. Among the various renewable energy sources, organic wastes are important sources. In Korea, 113 million toe of methane is generated from organic wastes annually, but only 3.7% is effectively used for energy conversion. Thus, it is very important to make better use of organic wastes, especially for power generation. The goals of this project are to develope the fuel supplying system of Bio Gasturbine (GT) for 5MW-class co-generation system. The fuel supplying system mainly consists of $H_2S$ removal system, Bio Gas compression system, Siloxane removal system and moisture separating systems. The fuel requirement of 5MW-class GT is at around 60% of $CH_4$, $H_2S$ (<30 ppm), Siloxane(<10 mg/$nm^3$) and supply pressure (> 25 bar) from biogas compressor. Main mechnical charateristics of Bio Gasturbine system have the specific performance; 1) high speed turbine speed (12,840 rpm) 2) very clean emmission NOx (<50 ppm) 3) high efficiency of energy conversion rate. This paper focuses on the development of design technology for food waste biogas pretreatment system for 5MW-class biogas turbine. The study also has the plan to replace the fuel of gas turbine and other distributed power systems. As the increase of bioenergy, this system help to contribute to spread more New & Renewable Energy and the establishment of Renewable Portfolio Standards (RPS) for Korea.

미강유적용 소형 디젤기관의 타당성 검증 및 성능실험에 관한 연구 (A Study on the Feasibility Test & the Performance Experiment of Small Type Diesel Engine using the an Rice-bran oil)

  • 유병구;차경옥;나우정;정진도
    • 한국분무공학회지
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    • 제2권3호
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    • pp.44-50
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    • 1997
  • Bio-diesel oil is a great possibility to solve the pollution problem caused by the exhaust gas from diesel engine vehicles. Recently the use of bio-oils in disel engines has received considerable attention to the forseeable depletion of world oil supplies. So, Bio-diesel oil has been attracted with attentions as an alternative and clean energy source. The objective of this paper is to experimentally investigate the characteristic of performance using light oil, rice-bran oil, heated rice-bran oil, rice-bran oil treated with ultrasonic energy. We included rice-bran oil and applied ultrasonic energy to highly viscous bio-oils. These methods seems to have never been tried yet. The final data may be able to be applicated for the design of the diesel engine using an alternative fuel.

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열수가압탄화 공정에 의한 음식물폐기물로부터의 Bio Solid Reuse Fuel (Bio-SRF) 연료제조에 관한 실증연구 (A Study on the Manufacture of Bio-SRF from the Food Waste by Hydrothermal Carbonization (HTC) Process)

  • 한단비;염규인;박성규;조욱상;백영순
    • 한국수소및신에너지학회논문집
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    • 제28권4호
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    • pp.426-432
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    • 2017
  • Hydrothermal carbonization (HTC) is an effective and environment friendly technique; it possesses extensive potential towards producing high-energy density solid fuels. it is a carbonization method of thermochemical process at a relatively low temperature ($180-250^{\circ}C$). It is reacted by water containing raw material. However, the production and quality of solid fuels from HTC depends upon several parameters; temperature, residence time, and pressure. This study investigates the influence of operating parameters on solid fuel production during HTC. Especially, when food waste was reacted for 2 hours, 4 hours, and 8 hours at $200^{\circ}C$ and 2.0-2.5 MPa, Data including heating value, proximate analysis and water content was consequently collected and analyzed. It was found that reaction temperature, residence time are the primary factors that influence the HTC process.

Conformational Dependent Energy Migration on Cyclic Porphyrin Arrays

  • Song, Suwhan;Han, Minwoo;Sim, Eunji
    • EDISON SW 활용 경진대회 논문집
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    • 제4회(2015년)
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    • pp.163-166
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    • 2015
  • Intramolecular energy migration in a cyclic porphyrin array is spontaneous transfer of energy from one excited site to another. Since the efficiency of energy migration is inversely proportional to distance, the energy migration is occurred on their adjacent sites more often than distant ones. Therefore, the energy migration in the cyclic porphyrin array is largely dependent on their conformational characters. However, evaluation of conformational information by means of experimental tools is ambiguous since their limited resolution. In this work, we calculate the internal angle and distance distributions of cyclic porphyrin arrays using molecular dynamics simulations to obtain conformational information. To evaluate the angle and distance distributions respect to molecular size, we constructed molecules with n porphyrin dimers (n=1,3,7) in implicit solvent environment. Performing molecular dynamics simulations, we modulated alkyl groups to investigate additional conformational effects of the system.

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해양바이오에너지 개발사업의 온실가스 저감편익 추정 (Measurement of the Greenhouse Gas Emission Benefits from the Marine Bio-Energy Development Project)

  • 김태영;표희동;김혜민;박세헌
    • 한국해양환경ㆍ에너지학회지
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    • 제16권3호
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    • pp.217-225
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    • 2013
  • 환경문제가 심각해지고, 에너지안보에 대한 관심이 높아지면서 화석연료를 대체할 신재생에너지개발은 더욱 절실해지고 있다. 정부는 2030년까지 바이오에너지부분의 50%를 해양바이오에너지에서 생산한다는 계획을 발표하였다. 본 연구는 해양바이오에너지 개발사업으로 인하여 저감되는 온실가스의 저감편익을 조건부가치측정법을 이용하여 추정하고자 한다. 단일경계 양분선택형 모형에 스파이크 모형을 적용하였으며, 그 결과 해양바이오에너지 개발사업의 온실가스 저감편익은 단일경계 양분선택형에서는 가구당 평균 지불의사액이 4,190원으로 추정되었다. 이를 설문을 진행한 지역으로 확장하면 연간 501억원에 달한다. 이와 같은 연구결과는 해양바이오에너지 개발사업의 시행여부를 결정하는 비용편익분석이나 해양바이오에너지 개발사업정책에 있어서 편익의 유용한 정보로 활용할 수 있다.

딥코팅에 의한 실크 피브로인막으로 제조한 바이오 압전발전기 (Bio-Piezoelectric Generator with Silk Fibroin Films Prepared by Dip-Coating Method)

  • 김민수;박상식
    • 한국전기전자재료학회논문지
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    • 제34권6호
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    • pp.487-494
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    • 2021
  • Piezoelectric generators use direct piezoelectric effects that convert mechanical energy into electrical energy. Many studies were attempted to fabricate piezoelectric generators using piezoelectrics such as ZnO, PZT, PVDF. However, these various inorganic/organic piezoelectric materials are not suitable for bio-implantable devices due to problems such as brittleness, toxicity, bio-incompatibility, bio-degradation. Thus, in this paper, piezoelectric generators were prepared using a silk fibroin film which is bio-compatible by dip-coating method. The silk fibroin films are a mixed state of silk I and silk II having stable β-sheet type structures and shows the d33 value of 8~10 pC/N. There was a difference in output voltages according to the thickness. The silk fibroin generators, coated 10 times and 20 times, revealed the power density of 16.07 μW/cm2 and 35.31 μW/cm2 using pushing tester, respectively. The silk fibroin generators are sensitive to various pressure levels, which may arise from body motions such as finger tapping, foot pressing, wrist shaking, etc. The silk fibroin piezoelectric generators with bio-compatibility shows the applicability as a low-power implantable piezoelectric generator, healthcare monitoring service, and biotherapy devices.