• 제목/요약/키워드: 미생물 연료전지

검색결과 84건 처리시간 0.031초

안정적 유출수질의 연속 하수처리를 위한 혐기성 멤브레인 필터와 통합된 미생물연료전지의 성능 평가 (Performance of Microbial Fuel Cell Integrated with Anaerobic Membrane Filter for Continuous Sewage Treatment with Stable Effluent Quality)

  • 이윤희;어성욱
    • 한국물환경학회지
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    • 제29권6호
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    • pp.808-812
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    • 2013
  • A new type of microbial fuel cell (MFC) with anaerobic membrane filter was designed to produce bioelectricity and to treat domestic sewage at relatively high organic loading rate (OLR) of $6.25kgCOD/m^3/day$ and short hydraulic retention time (HRT) of 1.9 h. A following aeration system was applied to ensure effluent water quality in continuous operation. Glucose was supplemented to increase the influent concentration of domestic sewage. Influent substrate of 95% was removed via the MFC and following aeration system and the corresponding maximum power density was $25.6mW/m^3$. External resistor of $200{\Omega}$ and air-cathode system contributed better MFC performance comparing to $2000{\Omega}$ and dissolved oxygen as a catholyte.

Sediment에서의 전기활성 박테리아 분포 특성 (Distribution of Electrochemically Active Bacteria in the Sediment)

  • 손형식;손희종;김미아;이상준
    • 대한환경공학회지
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    • 제32권12호
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    • pp.1094-1101
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    • 2010
  • 낙동강, 회동 및 기장에서 채집한 sediment의 미생물 군집을 FISH 분석을 통하여 조사한 결과, ${\alpha}$ 그룹, Acidobacter 그룹 및 Cyanobacter 그룹의 분포비율이 가장 높았으며 전체적으로 서로 유사한 분포 특성을 나타내었다. 각각의 sediment를 접종한 MFC 농화배양 이후의 coulombic yield는 낙동강, 회동 및 기장의 경우 각각 0.64 C, 0.50 C, 0.61 C로 나타났으며, 농화배양 완료 후의 미생물 군집분포는 ${\beta}$-Proteobacteria, ${\gamma}$-Proteobacteria, Acidobacter 그룹 및 Firmicutes 그룹이 농화배양 전보다 각각 45~90%, 50~90%, 40~80% 및 45~125% 정도 생체량이 증가한 것으로 나타났다. 농화배양이 끝난 후 16S rDNA를 이용한 미생물 동정결과에서, 낙동강 sediment를 주입한 MFC의 경우는 ${\alpha}$-Proteobacteria의 속하는 Roseomonas sp., Azospillum sp.와 ${\gamma}$-Proteobacteria의 Frateuria sp., Dyella sp., Enterobacter sp.와 Deinococci 그룹의 Deinococcus sp.가 동정되었고, 기장 sediment는 ${\alpha}$-Proteobacteria의 Azospillum sp.와 ${\beta}$-Proteobacteria의 Delftia sp., Ralstonia sp.와 ${\gamma}$-Proteobacteria의 Klebsiella sp. 와 Deinococci 그룹의 Deinococcus sp.가 동정되었으며, 회동 sediment는 ${\gamma}$-Proteobacteria의 Pseudomonas sp., Klebsiella sp.와 Deinococci 그룹의 Deinococci sp.와 Actinobacteria 그룹의 Leifsonia sp.와 Bacilli 그룹의 Bacillus sp.가 동정되었다.

환원전극 DO 농도에 따른 단일 및 직렬연결 미생물연료전지 전기발생량 평가 (Evaluation of Single and Stacked MFC Performances under Different Dissolved Oxygen Concentrations in Cathode Chamber)

  • 유재철;이태호
    • 대한환경공학회지
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    • 제31권4호
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    • pp.249-255
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    • 2009
  • 미생물연료전지(Microbial fuel cell, MFC)의 효율은 산화전극부내의 유기물 산화율, 전기활성박테리아에 의한 전자 전달, 수소이온 전달, 환원전극내의 전자수용체의 농도 및 환원율, 내부저항 등 다양한 요소에 영향을 받는다. 특히 산소를 전자수용체로 이용하는 MFC의 경우, 환원전극내 산소농도는 MFC의 제한요소로 작용한다고 알려져 있다. 한편 MFC의 전기발생량을 높이기 위하여 여러 개의 MFC를 직렬 또는 병렬로 연결하여 전기발생량을 높이는 다양한 방법들이 연구되고 있다. 본 연구에서는 acetate를 산화전극부의 기질로 이용하고 산소를 환원전극의 전자수용체로 이용하는 단일 MFC와 직렬연결 MFC에서 환원전극의 용존산소 농도의 변화가 MFC 효율에 미치는 영향을 평가하였다. 단일 MFC의 전력밀도값(W/$m^3$)은 DO 5 > 3 > 7 > 9 mg/L으로 나타났으며, 최대전력밀도값은 42 W/$m^3$으로 나타났다. 직렬연결 MFC의 전력밀도값은 DO 5 > 7 > 9 > 3 mg/L으로 나타났으며, 최 대전력밀도값은 20 W/$m^3$이었다. 이러한 결과로부터 환원전극의 DO 농도는 MFC 설계 및 운전시에 중요한 제어인자로 고려해야 될 것으로 판단되었다. 또한 본 연구에서는 직렬연결 MFC의 운전 시, 일부 MFC에서 염의 축적으로 인한 전위역전 현상이 발생하여 전체 전기발생량이 감소하는 것을 확인할 수 있었다. 따라서 전기생산량을 높이기 위하여 MFC를 직렬로 연결하는 것보다 병렬로 연결하는 것이 보다 타당한 것으로 사료되었다.

침지 및 직립 평판형 MFC 스택에서 전극연결 방식에 따른 전기발생량 비교 (Electricity Generations in Submerged-flat and Stand-flat MFC Stacks according to Electrode Connection)

  • 유재철;박영현;이태호
    • KEPCO Journal on Electric Power and Energy
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    • 제2권4호
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    • pp.589-593
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    • 2016
  • 미생물연료전지(Microbial Fuel Cell; MFC)는 전기화학활성미생물로 불리는 미생물을 촉매로 이용하여, 유/무기물의 산화환원 반응을 통해서 전기에너지를 생산할 수 있는 장치이다. 단일 MFC에서 발생하는 낮은 전기생산량을 극복하기 위해, 다수의 형태의 MFC를 직렬 또는 병렬로 연결하는 방법이 연구되고 있다. 본 연구에서는 6개의 단위 막전극접합체(Separator Electrode Assembly; SEA)로 구성된 침지평판형과 직립평판형 MFC 스택을 운전하였다. 단위 MFC와 MFC 스택의 전기발생량을 비교하였으며, 이를 통해서 MFC의 최적 스택기술을 확보하기 위한 기초자료로 활용하고자 하였다. 모든 SEA가 산화전극부를 공유하고 있는 침지평판형 MFC의 경우, 직렬과 병렬을 함께 사용할 경우, 단일 연결 방식을 사용하는 것보다 전압의 손실이 더 크게 나타났으며, 단일 연결방법 중 병렬연결 하는 것이 손실을 최소화 할 수 있는 것으로 나타났다. 직립평판형 MFC의 경우, 산화전극부를 공유하고 있는 SEA만 직렬 연결할 경우에는 전압의 손실이 크게 나타났으며, 산화전극부를 공유하고 있는 SEA간에 병렬 연결 후, 병렬 연결된 SEA를 직렬연결하는 방식이 전압의 손실을 최소화 할 수 있을 것으로 나타났다.

미생물연료전지와 에너지 하베스팅에 기반한 에너지 자립형 무선 센서 시스템 (An Energy Self-Sustainable Wireless Sensor System Based on a Microbial Fuel Cell (MFC) and Energy Harvester (EH))

  • 여정진;박소진;임종훈;양윤석
    • 대한의용생체공학회:의공학회지
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    • 제39권5호
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    • pp.208-212
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    • 2018
  • Microbial fuel cell (MFC) technology has been attractive since it can not only treat organic waste in an eco-friendly way by digesting it but also generate electricity by the unique metabolic process of microbes. However, it hasn't been employed in practical use until now because it is hard to integrate a small electricity up to an adequate amount of electric power and difficult to keep its bio-electric activity consistent. In this study, we combined an energy harvester with MFC (MFC-EH) to make the power-integration convenient and developed an energy self-sustainable wireless sensor system driven by a stable electric power produced by MFC-EH. Additionally, we build the low power application measuring data to be cast by the web in real-time so that it can be quickly and easily accessed through the internet. The proposed system could contribute to improvement of waste treatment and up-cycling technologies in near future.

최대전력점추적방법과 외부저항 제어 알고리즘을 이용한 미생물연료 전지의 전력생산 최대화 (Improvement of Power Generation of Microbial Fuel Cells using Maximum Power Point Tracking (MPPT) and Automatic Load Control Algorithm)

  • 송영은;김중래
    • KSBB Journal
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    • 제29권4호
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    • pp.225-231
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    • 2014
  • A microbial fuel cell (MFC) and bioelectrochemical systems are novel bioprocesses which employ exoelectrogenic biofilm on electrode as a biocatalyst for electricity generation and various useful chemical production. Previous reports show that electrogenic biofilms of MFCs are time varying systems and dynamically interactive with the electrically conductive media (carbon paper as terminal electron acceptor). It has been reported that maximum power point tracking (MPPT) method can automatically control load by algorithm so that increase power generation and columbic efficiency. In this study, we developed logic based control strategy for external load resistance by using $LabVIEW^{TM}$ which increases the power production with using flat-plate MFCs and MPPT circuit board. The flat-plate MFCs inoculated with anaerobic digester sludge were stabilized with fixed external resistance from $1000{\Omega}$ to $100{\Omega}$. Automatic load control with MPPT started load from $52{\Omega}$ during 120 hours of operation. MPPT control strategy increased approximately 2.7 times of power production and power density (1.95 mW and $13.02mW/m^3$) compared to the initial values before application of MPPT (0.72 mW and $4.79mW/m^3$).

미생물연료전지에서 공급기질에 따른 전기발생량 및 미생물 군집구조 비교 (Comparison of Electricity Generation and Microbial Community Structure in MFCs Fed with Different Substrates)

  • 유재철;조해인;조순자;이태호
    • 한국물환경학회지
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    • 제26권4호
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    • pp.608-613
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    • 2010
  • Electricity generation of microbial fuel cells (MFC) is greatly affected by the kind of feed substrates because substrates would change microbial community of electrochemically active bacteria (EAB) able to transfer electrons to electrode. The effect of different substrates on electricity generation and microbial community of MFC was investigated. Two-chamber MFCs fed with acetate (A-MFC), butyrate (B-MFC), propionate (P-MFC), glucose (G-MFC) and a mixture (M-MFC) of the 4 substrates (acetate : butyrate : propionate : glucose = 1 : 1 : 1 : 1 as $COD_{Cr}$ base) were operated under continuous mode. The maximum power density was found from the M-MFC ($190W/m^3$) which showed the lowest internal resistance ($89{\Omega}$). The maximum power densities of the pure substrates feed MFCs were in order of A-MFC ($25W/m^3$), P-MFC ($21W/m^3$), B-MFC ($20W/m^3$) and G-MFC ($9W/m^3$). In DGGE analysis, the microbial community structure in suspension was quite different from each others depending on feed substrates, while the community structure in the biofilm was relatively similar regardless of the substrates. This result suggests that the feed substrates would affect the microbial community of suspended growth bacteria than attached growth bacteria resulting in difference of electricity generation in MFCs.

미생물 연료 전지의 반응조 형상에 따른 전기 생산효율 비교 (Comparison of Electricity Generation Efficiencies depending on the Reactor Configurations in Microbial Fuel Cells)

  • 이윤희;어성욱
    • 한국물환경학회지
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    • 제26권4호
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    • pp.681-686
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    • 2010
  • Two different MFC designs were evaluated in batch mode: single compartment combined membrane-electrodes (SCME) design and twin-compartment brush-type anode electrodes (TBE) design (single chamber with two air cathodes and brush anodes at each side of the reactor). In SCME MFC, carbon anode and cathode electrodes were assembled with a proton exchange membrane (PEM). TBE MFC was consisted of brush-type anode and carbon cloth cathode electrodes without the PEM. A brush-type anode was fabricated with carbon fibers and was placed close to the cathode electrode to reduce the internal resistance. Substrates used in this study were glucose, leachate from cattle manure, or sucrose at different concentrations with phosphate buffer solution (PBS) of 200 mM to increase the conductivity thereby reduce the internal resistance. Hydrogen generating bacteria (HGB) were only inoculated in TBE MFC. The peak power densities ($P_{peak}$) produced from the SCME systems fed with glucose and leachate were 18.8 and $28.7mW/m^2$ at external loads of 1000 ohms, respectively. And the $P_{peak}$ produced from TBE MFC were 40.1 and $18.3mW/m^2$ at sucrose concentration of 5 g/L and external loads of 470 ohms, with a mediator (2-hydroxy-1, 4-naphthoquinone) and without the mediator, respectively. The maximum power density ($P_{max}$) produced from mediator present TBE MFC was $115.3mW/m^2$ at 47 ohms of an external resistor.

암모니아성 질소가 미생물연료전지에서 전류 발생에 미치는 영향 (Effect of ammonium on the current generation in the microbial fuel cell)

  • 장재경;최정은;유영선;이성현;김종구;강연구;김영화;이형모
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 춘계학술대회 초록집
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    • pp.219.1-219.1
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    • 2011
  • These studies carried out to know the effect of ammonium on the current generation in the microbial fuel cells (MFCs). MFCs used in the study were enriched with anaerobic digestion sludge and operated for 3 years using artificial wastewater (AWW). When the current was stably generated, ammonium ion with $27.0{\pm}0.0$, $51.5{\pm}0.0$, $103.5{\pm}0.0mg/L$ with acetate fed into the anode compartment. The current values under condition included ammonium were changed from its initial $6.30{\pm}0.06$ to $6.28{\pm}0.36$, $5.95{\pm}0.61$, $5.64{\pm}0.38mA$, respectively. The current value was slightly decreased to $5.64{\pm}0.38mA$ compared to $6.30{\pm}0.06mA$ generated from MFC without ammonium ion in the AWW. But After 3days operating under ammonium concentration with $103.5{\pm}0.0mg/L$, the current was unstably generated when artificial wastewater without ammonium was fed again. MFC enriched with AWW without ammonium ion was inhibited by high concentration of ammonium. At this time, the ammonium was removed 5.27~16.41 mg per day under all conditions.

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남조류 Synechocystis PCC 6803을 이용한 생물전기화학적 물분해 전기 생산 (Electricity Generation Using Cyanobacteria Synechocystis PCC 6803 in Photosynthetic Bio-Electrochemical Fuel Cell)

  • 김민진;오유관;김미선
    • 한국수소및신에너지학회논문집
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    • 제19권6호
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    • pp.529-536
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    • 2008
  • Cyanobacteria Synechocystis PCC 6803 or the extracted thylakoid membrane from this strain was appled to photosynthetic bio-electrochemical fuel cell(PBEFC) for the production of hydrogen under the illumination of 48Klux using halogen lamp. PBEFC was composed of anode, cathode and membrane between them. Electrode material was carbon paper while electron mediator and receptor were added phenazine methosulfate(PMS) and potassium ferricyanide respectively. When water and 50 mM tricine buffer and $300{\mu}M$ PMS were added to the anode under the light condition, PBEFC produced the current density $4.4{\times}10^{-5}\;mA/cm^2$, $1.4{\times}10^{-4}\;mA/cm^2$ and $2.4{\times}10^{-4}\;mA/cm^2$, respectively. And the addition of the thylakoid membrane to the system increased current density to $1.3{\times}10^{-3}\;mA/cm^2$. Two times increase of the thylakoid membrane into the anode doubled the current density to $2.6{\times}10^{-3}\;mA/cm^2$. But the current density was not increased proportionally to the amount of thylakoid membrane increased. The system was unstable to measure the electricity output due to the foam production in the anode. Addition of triton X-100 and tween 80 stabilized the system to measure the electricity output but the current density was not increased higher than $8.4{\times}10^{-4}\;mA/cm^2$ and $2.3{\times}10^{-3}\;mA/cm^2$. When the thylakoid membrane was substituted to Synechocystis PCC 6803 cells of four-day culture which has chlorophyll contents $20.5{\mu}g/m{\ell}$, maximum current density was $1.3{\times}10^{-3}\;mA/cm^2$ with $1\;k{\Omega}$ resistance.