• 제목/요약/키워드: Hydrogen-producing

검색결과 248건 처리시간 0.029초

통성혐기성 수소생산균주 Rhodopseudomonas sp. MeL 6-2를 이용한 수소생산효율에 미치는 포도당 및 자당 농도의 영향 (Effect on the Concentration of Glucose and Sucrose on the Hydrogen Production using by the Facultative Anaerobic Hydrogen Producing Bacterium Rhodopseudomonas sp. MeL 6-2)

  • 이은영
    • 한국미생물·생명공학회지
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    • 제37권2호
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    • pp.176-182
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    • 2009
  • 안양천 공단 주변 슬러지를 미생물 접종원으로 무기염배지에 10 g/L의 자당을 첨가하여 수소 생산 균주 MeL 6-2을 분리하였다. 분리 균주 MeL 6-2은 호기성조건과 혐기성 조건에서 모두 생장하는 통성 혐기성 균주 Rhodopseudomonas sp.였다. 유기성 폐기물 내에 다량 함유되어있는 포도당과 자당의 농도변화가 수소 생산 속도 및 수소 생성효율에 미치는 영향에 대하여 알아보았다. 포도당을 1~12 g/L의 범위로 첨가할 경우 lag phase 없이 생장하였으며, 첨가량이 증가할수록 단위시간 및 단위부피당 수소 생산성 이 증가하여, 10 g/L에서 최대값인 $4.2\;mmol-H_2{\cdot}L^{-1}{\cdot}h^{-1}$을 보이고 그 이후 다소 감소하는 경향을 보였다. 균체량에 대한 수소생산수율은 $0.76{\sim}2.46\;L-H_2{\cdot}g-DCW^{-1}$의 값을 보였으며, 첨가된 기질인 포도당에 의한 수소생산수율은 $2.6{\sim}3.1\;mol-H_2{\cdot}mol-glucose^{-1}$의 범위였다. 자당을 1~12 g/L의 범위에서 첨가할 경우 약 10시간의 지체기 후 원할한 생장을 보였다. 단위시간 및 단위 세포무게 당 비수소 생산속도는 및 수소 생산수율은 자당의 첨가량이 증가할수록 증가하여 각각 $163\;mmol-H_2{\cdot}mg-DCW^{-1}{\cdot}h^{-1}$$4.5\;mol-H_2{\cdot}mol-glucose^{-1}$의 최대값을 보였다.

혐기성 수소 생산 공정의 연속운전 (Continuous Anaerobic H2 Production with a Mixed Culture)

  • 김상현;한선기;윤종호;신항식
    • 유기물자원화
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    • 제11권1호
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    • pp.70-76
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    • 2003
  • 소화슬러지를 열처리한 혼합 배양 미생물을 식종균으로, 자당을 기질로 사용하는 혐기성 수소 생산 공정을 운전하면서 pH 조절, 반복 열처리, 기질 농도 변화 등을 통해 지속적인 수소 생산 방법을 고찰하였다. 유입 기질의 농도가 5g COD/L인 경우 운전 초기에는 $0.5mole\;H_2/mole\;hexose$ 이상의 수소가 발생하지만 9일 이상 지속되지 못하였다. 이러한 현상의 원인은 수소 생성균이 공정 내에서 고농도로 존재하지 못하기 때문인 것으로 판단되며 pH를 5.3으로 유지하는 것만으로는 극복될 수 없었다. 반복 열처리를 적용할 경우 별도의 식종균 재주입 없이 효율이 감소된 수소 생성 공정을 원상태로 복구할 수 있음을 확인할 수 있었으나, 수소 생성 효율이 시간에 따라 감소하므로 열처리를 자주 해야 하는 문제가 발생했다. 유입 기질의 농도가 30g COD/L인 경우에는 24일간 지속적인 수소 생성이 가능하였으며, CSTR의 경우 $1.0-1.4mole\;H_2/mole\;hexose$, ASBR의 경우에는 $0.2-0.3mole\;H_2/mole\;hexose$의 생성 효율을 보였다. 수소 생성 시 유출수 내 용존성 유기물의 90% 이상은 유기산이었으며 그 중 n-butyrate가 가장 많은 양을 차지하였다.

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용액 공정 CIGS 박막 태양 전지를 이용한 물 분해 수소 생산 (Electrolytic Hydrogen Production Using Solution Processed CIGS thin Film Solar Cells)

  • 전효상;박세진;민병권
    • 한국수소및신에너지학회논문집
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    • 제24권4호
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    • pp.282-287
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    • 2013
  • Hydrogen production from water using solar energy is attractive way to obtain clean energy resource. Among the various solar-to-hydrogen production techniques, a combination of a photovoltaic and an electrolytic cell is one of the most promising techniques in term of stability and efficiency. In this study, we show successful fabrication of precursor solution processed CIGS thin film solar cells which can generate high voltage. In addition, CIGS thin film solar cell modules producing over 2V of open circuit voltage were fabricated by connecting three single cells in series, which are applicable to water electrolysis. The operating current and voltage during water electrolysis was measured to be 4.23mA and 1.59V, respectively, and solar to hydrogen efficiency was estimated to be 3.9%.

GlidArc 플라즈마를 이용한 메탄의 개질 특성 및 수소 생산에 관한 연구 (Study on Characteristic of Methane Reforming and Production of Hydrogen using GlidArc Plasma)

  • 김성천;전영남
    • 대한기계학회논문집B
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    • 제31권11호
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    • pp.942-948
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    • 2007
  • Popular techniques for producing hydrogen by converting methane include steam reforming and catalyst reforming. However, these are high temperature and high pressure processes limited by equipment, cost and difficulty of operation. Low temperature plasma is projected to be a technique that can be used to produce high concentration hydrogen from methane. It is suitable for miniaturization and fur application in other technologies. In this research, the effect of changing each of the following variables was studied using an AC GlidArc system that was conceived by the research team: the gas components ratio, the gas flow rate, the catalyst reactor temperature and voltage. Results were obtained for methane and hydrogen yields and intermediate products. The system used in this research consisted of 3 electrodes and an AC power source. In this study, air was added fur the partial oxidation reaction of methane. The result showed that as the gas flow rate, the catalyst reactor temperature and the electric power increased, the methane conversion rate and the hydrogen concentration also increased. With $O_2/C$ ratio of 0.45, input flow rate of 4.9 l/min and power supply of 1 kW as the reference condition, the methane conversion rate, the high hydrogen selectivity and the reformer energy density were 69.2%, 32.6% and 35.2% respectively.

음식물류 폐기물의 혐기성 수소 발효 시 열처리에 따른 성능 및 미생물 특성 평가 (Performance and Microbial Characteristics of Bio-hydrogen Production from Food Waste with Thermal Pre-treatment)

  • 이채영;최재민
    • 한국수소및신에너지학회논문집
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    • 제25권1호
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    • pp.11-18
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    • 2014
  • This study was conducted to investigate the effect of thermal pre-treatment on bio-hydrogen from food waste. Two continuous reactors operated and VFAs(volatile fatty acids) production and microbial communities were analyzed. The average hydrogen yield was 0.50 and 0.33mol $H_2/mol$ $hexose_{added}$ in thermally treated food added reactor(R1) and control(R2), respectively. Butyrate concentration was similarly 7,500mg/L in both reactors, but two times higher lactate concentration was observed in R2(3,800mg/L). The results of FISH(fluorescence in situ hybridization) showed that the relative microorganism to hydrogen producing bacteria was 78 and 27% in R1 and R2, respectively.

천연가스 조성에 따른 수소 생산 시에 발생하는 이산화탄소 배출량 산출에 대한 연구 (A Study on the Estimation of Carbon Dioxide Generation During High Purity Hydrogen Production According to Natural Gas Composition)

  • 조정호;노재현;김동선
    • 한국수소및신에너지학회논문집
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    • 제30권6호
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    • pp.485-489
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    • 2019
  • Hydrogen is known to be a clean fuel which does not generate a green house gas during the combustion. However, about 8 kg of carbon dioxide is generated during the course of producing 1 kg of hydrogen through reforming, water gas shift reaction and pressure swing adsorption in order to obtain a high purity hydrogen over 99.999% by volume. In this work, carbon dioxide generation is estimated according to four kinds of natural gas compositions supplied by Korea Gas Corporation and regarding natural gas as pure methane. For the simulation of the modeling, PRO/II with PROVISION V10.2 at AVEVA was utilized and Peng-Robinson equation of state with Twu's alpha function was selected.

광합성을 이용한 바이오수소 생산 (Biohydrogen production using photosynthesis)

  • 심상준;김준표
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 춘계학술대회
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    • pp.478-481
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    • 2006
  • Energy is vital to global prosperity, yet dependence on fossil fuels as our primary energy source contributes to global climate change environmental degradation, and health problems. Hydrogen $(H_2)$ offers tremendous potential as a clean renewable energy currency. Hydrogen has the highest gravimetric energy density of any known fuel and is compatible with electrochemical and combustion processes for energy conversion without producing carbon-based emission that contribute to environmental pollution and climate change. Numerous methodologies have been developed for effective hydrogen production. Among them, the biological hydrogen production has gained attention, because hydrogen can be produced by cellular metabolismunder the presence of water and sunlight. The green alga Chlamydomonas reinhardtii is capable of sustained $H_2$ photoproduction when grown under sulfur deprived condition. Under sulfur deprived conditions, PSII and photosynthetic $O_2$ evolution are inactivated, resulting in shift from aerobic to anaerobic condition in the culture. After anaerobiosis, sulfur deprived algal cells induce a reversible hydrogenase and start to evolve $H_2$ gas in the light. According to above principle, we investigated the effect of induction parameters such as cell age, cell density. light intensity, and sulfate concentration under sulfur deprived condition We also developed continuous hydrogen production system by sulfate re-addition under sulfur deprived condition.

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Excursion, Roaming and Migration of Hydrogen Atom during Dissociation of Formaldehyde

  • Kim, Hyung-Rae
    • Bulletin of the Korean Chemical Society
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    • 제35권5호
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    • pp.1285-1293
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    • 2014
  • Several interesting features in trajectory were observed in the direct dynamics study of formaldehyde dissociation above radical dissociation limit. The hydrogen atom deliberately placed on the radical dissociation path can turn around at some distance from C without completion of dissociation and return to HCO moiety, colliding with it just as in a radical-radical recombination and producing a highly energized molecule. Excursion of a hydrogen atom to a distance of 6-8 bohrs and migration of a hydrogen atom back and forth between C and O are two of the most interesting features exhibited by the energized molecule. A series of excursions is seen to lead to a different kind of dissociation resembling roaming-like dissociation characterized by high vibrational excitation of $H_2$ fragment. It is suggested that excursion occurs due to involvement of two different force field systems that exhibit discontinuity in 6-8 bohrs from HCO moiety. We argue that roaming is a non-zero impact parameter version of the excursion.

Time progress of dark fermentation for biological hydrogen production using Chlamydomonas reinhardtii

  • 김지성;공경택;박대원;심상준;박태현;조경숙;정윤철
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2003년도 생물공학의 동향(XII)
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    • pp.162-163
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    • 2003
  • 수소를 생산하는 암반응에서는 pH와 dry cell weight, 세포내의 starch 함유량이 시간에 따라 줄어들었다. 유기물은 시간에 따라 증가하였지만, 수소는 3일째에 생산이 최대치에 도달하였다.

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수소용 다이어프램 압축기의 작동유 특성에 따른 수치해석 (Numerical Analysis on a Dependence of Hydrogen Diaphragm Compressor Performance on Oil Characteristics)

  • 박현우;신영일;이영준;송주헌;장영준;전충환
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2009년도 춘계학술대회 논문집
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    • pp.787-790
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    • 2009
  • There are several types of compressors which are appropriate for hydrogen gas station. Metal diaphragm type of hydrogen compressor is the one of them, a use in which satisfies the requirements of maintaining gas purity and producing high pressure over 700 bar. The objective of this study is to investigate an characteristics of compression as bulk modulus of oil varies. Three cases of bulk modulus ranging from $2{\times}10^9$, $4.52{\times}10^9$ and $7{\times}10^9$ were studied through FSI (Fluid Structure Interaction) analysis. Gas pressure, oil pressure and deflection degree of diaphragm were analysed during a certain period of compression process. Highest pressure and deflection were found in the condition of high bulk modulus of $7{\times}10^9$.

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