• 제목/요약/키워드: Methane Yield

검색결과 223건 처리시간 0.023초

이중관형 연속 반응기에서 수증기-메탄 개질반응의 실험 및 CFD 시뮬레이션 (A Comparison with CFD Simulation and Experiment for Steam-methane Reforming Reaction in Double pipe Continuous Reactor)

  • 신동우;김래현
    • 에너지공학
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    • 제22권2호
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    • pp.226-236
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    • 2013
  • 고온개질기를 이용한 수증기 메탄 개질반응에 대해 실험 및 전산해석 기법을 이용하여 실제 개질기의 효율 및 개질기의 형상의 변화에 따른 열 분포 및 내부 유동에 대해서 연구하였다. 수증기 개질에 대한 반응모델은 Xu & Froment에 의해 개발된 수증기 반응 모델을 사용하였고, 그 결과로 고온개질기내에서 일어나는 화학반응은 Steam Reforming(SR), Water Gas Shift(WGS), Direct Steam Reforming(DSR) 반응이 다른 반응을 지배한다고 가정하였다. 고온개질기를 이용한 수증기 메탄 개질 반응 실험 결과로는 Steam Carbon Ratio(SCR)이 증가함에 따라 수소 수득율 또한 증가하고 일산화탄소와 메탄은 감소하는것을 알 수 있었다. 또한 입구가 한 개인 디자인과 두 개인 디자인을 비교, 분석하였을 때 입구가 두 개인 개질기보다 입구가 한 개인 개질기에서 열 분포 및 내부유동, 수소 수득율이 우수하다는 결과를 얻게 되었다.

Effect of Mn-addition on Catalytic Activity of $Mn/In_2O_3$ in Methane Activation

  • Park, Jong Sik;Jun Jong Ho;Kim Yong Rok;Lee Sung Han
    • Bulletin of the Korean Chemical Society
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    • 제15권12호
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    • pp.1058-1064
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    • 1994
  • Mn/In$_2O_3$ systems with a variety of Mn mol${\%}$ were prepared to investigate the effect of Mn-addition on the catalytic activity of Mn/In$_2O_3$ in the oxidative coupling of methane. The oxidative coupling of methane was examined on pure In$_2O_3$ and Mn/In$_2O_3$ catalysts by cofeeding gaseous methane and oxygen under atmospheric pressure between 650 and 830 $^{\circ}C$. Although pure In$_2O_3$ showed no C$_2$ selectivity, both the C$_2$ yield and the C$_2$ selectivity were increased by Mn-doping. The 5.1 mol${\%}$ Mn-doped In$_2O_3$ catalyst showed the best C$_2$ yield of 2.6${\%}$ with a selectivity of 19.1${\%}$. The electrical conductivities of pure and Mn-doped In$_2O_3$ systems were measured in the temperature range of 25 to 100 $^{\circ}C$ at PO$_2$'S of 1 ${\times}$ 10$^{-7}$ to 1 ${\times}$ 10 $^{-1}$ atm. The electrical conductivities were decreased with increasing Mn mol${\%}$ and PO$_2$, indicating the specimens to be n-type semiconductors. Electrons serve as the carriers and manganese can act as an electron acceptor in the specimens. Manganese ions doped in In$_2O_3$ inhibit the ionization of neutral interstitial indium or the transfer of lattice indium to interstitial sites and increase the formation of oxygen vacancy, giving rise to the increase of the concentration of active oxygen ion on the surface. It is suggested that the active oxygen species adsorbed on oxygen vacancies are responsible for the activation of methane.

혐기성 유동층 생물 반응기와 새로운 모델의 AFPBBR에서 유기성폐수 처리시 Biogas 생성과 반응상수에 관한 연구 (A Study on the Kinetics and the Biogas Formation for Organic Wastewater Treatment in Anaerobic Fluidized-Bed Bioreactor and New Model AFPBBR)

  • 김재우;장인용
    • 한국환경보건학회지
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    • 제19권2호
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    • pp.23-33
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    • 1993
  • The anaerobic digestion of organic synthetic wastewater in anaerobic fluidized bed bioreactor (AFBBR) and anaerobic fluidized packed bed bioreactor (AFPBBR) was studied. This study was conducted to evaluate efficiency and reliability of two reactor. Experiment was performed to find the effect of upflow rate with AFBBR and the height of packed bed with AFPBBR. As a result, this program obtained several conclusion. These are given as follows: As applied the upflow rate increased in AFBBR the produced volume of biogas increased, while the gas production and COD removal decreased at above 0.3 m$^3$/h. When a upflow rate is 0.4 m$^3$/h in AFBBR the volatile suspended solid (VSS) became significantly increased. At an organic loading rate from 0.1 to 0.4 of upflow rate in AFBBR, the methane yield was 1.5584 m$^3$CH$_4$/kgCOD removed, and the observed cell yield coefficient was 0.0933 gVSS/gCOD. In case of AFPBBR, the results showed also that 20 cm of height of packed bed was superior to other in the aspect ot biogas production, the content of methane and COD removal. At 20 cm of height, the profile of microorganisms was stable, while at 30 cm the VSS of effluent became higher than AFBBR. Though COD removal of AFPBBR increased with packed bed, COD removal deteriorate with over packing because the loss of pressure became higher in the reactor. At an organic loading rate from 20 to 40 cm of packed bed in-AFPBBR, the methane yield was 2.5649 m$^3$CH$_4$/kgCOD removed, and the observed cell yield coefficient was 0.0506 gVSS/gCOD. Based upon the results obtained, it is suggested that AFBBR and AFPBBR is the most effective conditions at 0.3 m3/h of upflow rate, the 20cm of packed bed, respectively. The rate constant are summarized as follow:

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3상 교류 부채꼴 방전을 이용한 메탄으로부터 수소 생산 (Production of Hydrogen from Methane Using a 3 Phase AC Glidarc Discharge)

  • 김성천;전영남
    • 한국수소및신에너지학회논문집
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    • 제18권2호
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    • pp.132-139
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    • 2007
  • Popular techniques for producing synthesis gas 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 for 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. Glidarc plasma reformer was consisted of 3 electrodes and an AC power source. And air was added for 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%, 36.2% and 35.2% respectively.

바이오 수소를 이용한 이산화탄소의 메탄 전환 연구 (CO$_2$ Conversion to Methane using Bio-hydrogen)

  • 이준철;김재형;최광근;박대원
    • 대한환경공학회지
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    • 제30권9호
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    • pp.933-938
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    • 2008
  • 유기성 폐기물을 이용하여 생산된 수소를 환원제로 활용하여 이산화탄소를 유용한 에너지원인 메탄으로 전환시키고자 하였다. 3 개월 동안 혐기성 미생물을 이산화탄소와 수소만을 이용하여 배양하였으며, 그 결과 acetogenotrophs의 영향에 의한 메탄의 생성은 없었고, 이산화탄소를 8 mL/min으로 주입하였을 때 이산화탄소와 수소의 주입비가 1:5에서 메탄의 생성량이 2.2 m$^3$/m$^3$ day로 가장 많았으며, 이때의 이산환탄소 저감률 또한 92%로 가장 우수하였다. 회분형태로 수소 생산과 메탄발효조와의 연계실험을 통하여, 연속적으로 수소를 생산하면서 이산화탄소를 같이 메탄발효조에 주입하여, 이산화탄소의 메탄으로의 전환을 확인하였다.

음식물쓰레기의 혐기성 생분해도 특성 (The characteristics of anaerobic biodegradability by food waste)

  • 박남배;길대수;이헌모
    • 환경위생공학
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    • 제16권2호
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    • pp.24-31
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    • 2001
  • This study was aimed to evaluate biodegradability for various food waste using anaerobic batch digestion. In the anaerobic biodegradability study of each food waste according to occurrence source, the cumulative methane productions of water melon and melon were 375, and 354ml and that of cucumber, fresh cabbage, radish, sprouted bean were 366, 364, 374, 384, 355ml and that of noodle, boiled rice and fish were 432, 409 and 477ml $CH_{4/g}$ VS add, respectively. And methane yield rate was about 84.1~97.2%. The reaction rate coefficiency(k) was $0.00495~0.2022day^{-1}$.

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꽃게(Blue Crab) 가공 식품 제조 공정상 발생된 폐수 및 폐기물의 혐기성 생분해 가능성(II) -공정상 발생된 폐기물의 혐기성 생분해 가능성 증대를 위한 효소적 전처리- (Anaerobic Bioconversion Potential of Blue Crab Processing Waste and Wastewater(II) -Enzymatic Pretreatment for Improving the Anaerobic Bioconversion Potential of Blue Crab Processing Wastes-)

  • 이형집
    • 상하수도학회지
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    • 제12권2호
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    • pp.115-126
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    • 1998
  • In use of anaerobic bioconversion shellfish wastes present special problems, since the chitinous structures in the shell faction degrade very slowly in an anaerobic environment. Enzymatic pretreatment method was evaluated for improving the anaerobic bioconversion potential of blue crab processing wastes. An enzymatic pretreatment using chitinase enhanced the ultimate methane yield and biodergradation rate constant for total crab solid wastes by 15% and 19% respectively, above those of the untreated wastes. When the enzymatic pretreatment applied to the shell fraction alone, it resulted in increase of 34% in the ultimate methane yield and 38% in the reaction rate. The results indicate that anaerobic bioconversion of these wastes is technically feasible and enzymatic pretreatment will improve the efficiency of the process.

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촉매화학기상증착법에 의한 단일벽 탄소나노튜브의 합성과 미세구조 (Synthesis and Microstructure of Single-Walled Carbon Nanotubes by Catalytic Chemical Vapor Deposition Method)

  • 김종식;김관하;김창일
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제55권7호
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    • pp.359-363
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    • 2006
  • Single-walled carbon nanotubes (SWCNTs) with few defects and very small amount of amorphous carbon coating have been synthesized by catalytic decomposition of methane in $H_2$ over well-dispersed metal particles supported on MgO. The yield of SWCNTs was estimated to be 88.5% and the purities of SWCNTs thus obtained were more than 90%. Peak of the radial breathing mode in the Raman spectrum demonstrated that the diameters of synthesized CNTs are in the range 0.4-2.0 nm. Our results also indicated that MgO support materials are useful to a large-scale synthesis of high-quality SWCNTs. Increasing temperature could remarkably increase the yield and also improve the quality of SWCNTs from catalytic decomposition of methane. The morphologies and microstructures of the synthesized carbon materials were characterized by scanning electron microscopy (SEM), Thermogravimetric analysis (TGA), Raman spectroscopy, and X-ray diffraction (XRD).

종간직접전자전달 전도체로서 Magnetite(Fe3O4)가 음폐수의 메탄생산에 미치는 영향 (Effects of Magnetite(Fe3O4) as Electrical Conductor of Direct Interspecies Electron Transfer on Methane Yield of Food Wastewater)

  • 이준형;김태봉;김창현;윤영만
    • 유기물자원화
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    • 제31권1호
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    • pp.15-26
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    • 2023
  • 혐기소화에 의한 메탄생산은 유기물이 가수분해, 산생성 단계를 거쳐 아세트산생성균과 메탄생성균 간의 영양공생 (syntrophy)에 의해 일어난다. 본 연구에서는 종간 영양공생 기작인 종간직접전자전달 (DIET, Direct Interspecies Electron Transfer) 과정을 촉진시키기 위하여 전도체인 마그네타이트 (Fe3O4) 첨가가 음폐수의 메탄생산에 미치는 영향을 파악하고자 하였다. 이를 위해, 본 연구에서는 회분식 혐기반응기를 이용하여 마그네타이트 투입량에 따른 음폐수의 메탄퍼텐셜 (Bu)과 최대메탄생산속도 [Rm(t0)]를 분석하였다. 마그네타이트 무처리구의 메탄퍼텐셜은 0.496 Nm3/kg-VSadded이었으며, 21.06일에 38.24 mL/day의 최대메탄생산속도를 보였다. 마그네타이트 5, 10, 15, 20, 25, 30, 40, 70, 100mM 처리구의 메탄퍼텐셜은 각각 0.502, 0.498, 0.512, 0.510, 0.518, 0.523, 0.524, 0.540, 0.549 Nm3/kg-VSadded이었으며, 마그네타이트 투입량 증가에 따라 유의성 있는 메탄퍼텐셜의 증가 경향을 보였다. 최대메탄생산속도는 무처리구와 비교하여 마그네타이트 처리구에서 증가하였으며 15mM 처리구에서 36.95%까지 증가하였다. 또한, 마그네타이트 투입농도가 증가함에 따라 최대메탄생산속도에 도달하는 기간(t0)은 무처리 21.06일에서 마그네타이트 100mM 처리 14.67일로 크게 단축되었다. 따라서, 마그네타이트 투입에 따른 음폐수의 메탄퍼텐셜과 최대메탄생산속도가 크게 향상되었다.

열처리한 하수슬러지 메탄발효의 동력학적 해석 (Kinetic Evaluation of Methane Fermentation of Thermally Disintegrated Wastewater Sludge)

  • 박기영;이재우;정태학
    • 한국물환경학회지
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    • 제23권6호
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    • pp.927-933
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    • 2007
  • Waste activated sludge (WAS) was thermally pretreated to enhance hydrolysis and ultimately methane yield. Batch and semi-continuous anaerobic digestion were conducted to evaluate the performance of methane fermentation of the hydrolyzed sludge and to investigate the kinetics of sludge fermentation. Thermal pretreatment remarkably enhanced digestion performances particularly the methane fermentation with three times more methane production than before the pretreatment. Gas production and kinetic parameters in the semi-continuous anaerobic digestion were estimated using Chen Hashimoto model. The model simulation fitted well the experimental results and the model was shown to be suitable for evaluating the effects of disintegration of WAS in anaerobic digestion. Three parameters ($B_o$, K, and ${\mu}_m$) determined by model simulation were $0.0807L-CH_4/g-VS$, 0.453 and $0.154d^{-1}$ for control sludge, and $0.253L-CH_4/g-VS$, 0.835 and $0.218d^{-1}$ for thermally pretreated sludge, respectively.