• 제목/요약/키워드: Total oxidation of methane

검색결과 26건 처리시간 0.023초

경상남도 가좌산의 소나무, 참나무, 밤나무 우점 산림토양 별 메탄 산화능 평가 (Evaluation of Methane Oxidation Potentials of Alpine Soils Having Different Forestation Structure in Gajwa mountain)

  • 박용권;김상윤;권효숙;김필주
    • 한국환경농학회지
    • /
    • 제33권4호
    • /
    • pp.306-313
    • /
    • 2014
  • BACKGROUND: Forest soils contain microbes capable of consuming atmospheric methane ($CH_4$), an amount matching the annual increase in $CH_4$ concentration in the atmosphere. However, the effect of plant residue production by different forest structure on $CH_4$ oxidation is not studied in Korea. The objective of this study was to evaluate the effect of Korean alpine soils having different forestation structure on $CH_4$ uptake rates. METHODS AND RESULTS: the $CH_4$ flux was measured at three sites dominated with pine, chestnut and oak trees in southern Korea. The $CH_4$ uptake potentials were evaluated by a closed chamber method for a year. The $CH_4$ uptake rate was the highest in the pine tree soil ($1.05mg/m^2/day$) and then followed by oak ($0.930mg/m^2/day$) and chestnut trees ($0.497mg/m^2/day$). The $CH_4$ uptake rates were highly correlated to soil organic matter and moisture contents, and total microbial and methanotrophs activities. Different with the general concent, there was no any correlation between $CH_4$ oxidation rates, and soil temperature and labile carbon concentrations, irrespective with tree species. CONCLUSION: Conclusively, the methane oxidation rate was correlated in positive manner with organic matter, abundance of methanotrophs. Methane oxidation was different among tree species. This results could be used to estimate methane oxidation rate in forest of Korea after complementing information about statistical data and methane oxidation of other site.

Partial Oxidation of Methane over CeO2 Catalyst

  • Rho, Hyun-Seog;Jun, Ki-Won;Baek, Seung-Chan;Park, Sang-Eon
    • Bulletin of the Korean Chemical Society
    • /
    • 제23권6호
    • /
    • pp.799-803
    • /
    • 2002
  • Partial oxidation of methane has been conducted over $CeO_2$and it has been found that $CeO_2$has an extraordinary catalytic activity in the reaction. Its activity was strongly dependent on the $CH_4/CO_2$ ratio. Total combustion was dominant with stoichiometric feed ratio$(CH_4/O_2=$ 2.0) but partial oxidation was achieved between the $CH_4/O_2$ ration of 3.8 4.3 and the period depended upon the feed composition. The proposed raaction mechanism it that oxygen vacancies in raduced deria are supplied with oxygen molecules from the reactant, and then activate adsorbed oxygen, followed by releasing activated axygen species reacting with methane to produce $H_2$ and CO.

메탄산화세균의 활성에 미치는 tobermolite, perlite 및 Polyurethane 담체의 영향 (Effect of Tobermolite, Perlite and Polyurethane Packing Materials on Methanotrophic Activity)

  • 정소연;윤희영;김태관;조경숙
    • 한국미생물·생명공학회지
    • /
    • 제41권2호
    • /
    • pp.215-220
    • /
    • 2013
  • Tobermolite, perlite 및 polyurethane을 충전재로 이용한 바이오필터에 의한 메탄제거 기술이 개발되고 있다. 본 연구에서는 이들 충전재가 메탄산화능에 미치는 영향을 알아보았다. 습지토양과 매립지토양에서 분리한 혼합 메탄산화세균(consortium A, B, C and D)를 접종원으로 하고, 메탄산화속도와 메탄산화세균 수에 미치는 담체(perlite, tobermolite,polyurethane)의 영향을 조사하였다. Perlite를 첨가한 경우 메탄산화속도는 대조군 (담체 미첨가)보다 두 배 이상 증가하였고, 메탄산화세균 수도 10배 이상 증가하였다. Tobermolite를 첨가한 경우에는 일반세균 수 대비 메탄산화세균의 비율이 대조군과 다른 담체에 비해 높았다. 이는 tobermolite가 메탄산화세균이 우점할 수 있는 특이적 담체로 작용함을 시사한다. 이상의 결과로 부터 perlite와 tobermolite는 메탄산화세균의 활성을 증가시키는 서식지를 제공하며 메탄산화 공정시스템에 적용 시 좋은 담체의 역할을 할 수 있을 것으로 기대된다.

산소부화 압축착화기관을 이용한 메탄으로부터 수소 생산 (Hydrogen Gas Production from Methane Reforming Using Oxygen Enriched Compression Ignition Engine)

  • 임문섭;홍성인;홍명석;전영남
    • 한국대기환경학회지
    • /
    • 제23권5호
    • /
    • pp.557-562
    • /
    • 2007
  • The purpose of this paper is to investigate the reforming characteristics and maximum operating condition for the hydrogen production by methane reforming using the compression ignition engine induced partial oxidation. An dedicated compression engine used for methane reforming was decided operating range. The partial oxidation reforming was investigated with oxygen enrichment which can improve hydrogen production, compared to general reforming. Parametric screening studies were achieved as $O_2/CH_4$ ratio, total flow rate, and intake temperature. When the variations of $O_2/CH_4$ ratio, total flow rate, and intake temperature were 1.24, 208.4 L/min, and $400^{\circ}C$, respectively, the maximum operating conditions were produced hydrogen and carbon monoxide. Under the condition mentioned above, synthetic gas were $H_2\;22.77{\sim}29.22%,\;CO\;21.11{\sim}23.59%$.

매립장 주요 배출경로별 매립가스 표면발산량 및 산화율 분석 (Analysis of surface emission and oxidation rate of landfill gas by major discharge path of landfill)

  • 천승규;박종근;김명관
    • 한국응용과학기술학회지
    • /
    • 제40권3호
    • /
    • pp.425-434
    • /
    • 2023
  • 수도권에 위치한 S매립장 내 3개의 매립장을 대상으로 매립가스 배출 및 주요 경로별 표면발산과 관련된 분석을 하였다. 전체 매립가스 발생비율 10.9%인 LS1이 총 표면발산 비중은 49.4%를 차지하고 있었다. 3개 매립장에서의 메탄의 총 표면발산은 13.6 Nm3/min로서, LS1 8.4 Nm3/min (61.7%), LS2 4.0 Nm3/min(29.4%), LS3 1.2 Nm3/min(8.9%)이고, 발산경로별로는 상부 7.3 Nm3/min (53.2%), 사면 6.4 Nm3/min(46.7%), 다이크 0.02 Nm3/min(0.1%)이었다. 3개 매립장의 주요 배출경로별 산화율은 다이크가 87.5%로 가장 크고, 상부 72.3%, 사면 71.8% 순이었다. 메탄을 기준으로 표면발산 기여율은 매립장 별로 LS1이 전체의 61.7%로 가장 컸다. 주요 배출경로별로는 LS1의 사면이 전체의 41.7%, LS2의 상부 24.4%, LS1의 상부 20.0%로서 S매립장의 전체 메탄 표면발산량의 86.1%를 차지함에 따라 향후 집중적인 관리가 필요할 것으로 판단되었다.

Greenhouse gases emission from aerobic methanotrophic denitrification (AeOM-D) in sequencing batch reactor

  • Lee, Kwanhyoung;Choi, Oh Kyung;Lee, Jae Woo
    • Membrane and Water Treatment
    • /
    • 제8권2호
    • /
    • pp.171-184
    • /
    • 2017
  • This study presents the effect of hydraulic retention time (HRT) on the characteristics of emission of three major greenhouse gases (GHGs) including $CH_4$, $CO_2$ and $N_2O$ during operation of a sequencing batch reactor for aerobic oxidation of methane with denitrification (AeOM-D SBR). Dissolved $N_2O$ concentration increased, leveled-off and slightly decreased as the HRT increased from 0.25 to 1d. Concentration of the dissolved $N_2O$ was higher at the shorter HRT, which was highly associated with the lowered C/N ratio. A longer HRT resulted in a higher C/N ratio with a sufficient carbon source produced by methanotrophs via methane oxidation, which provided a favorable condition for reducing $N_2O$ formation. With a less formation of the dissolved $N_2O$, $N_2O$ emission rate was lower at a longer HRT condition due to the lower C/N ratio. Opposite to the $N_2O$ emission, emission rates of $CH_4$ and $CO_2$ were higher at a longer HRT. Longer HRT resulted in the greater total GHGs emission as $CO_2$ equivalent which was doubled when the HRT increased from 0.5d to 1.0 d. Contribution of $CH_4$ onto the total GHGs emission was most dominant accounting for 98 - 99% compared to that of $N_2O$ (< 2%).

Pd 코팅 된 중공사형 La0.1Sr0.9Co0.2Fe0.8O3-δ 촉매의 제조 및 미량 산소 제거 특성 연구 (Preparation of Pd Coated Hollow Fiber-Type La0.1Sr0.9Co0.2Fe0.8O3-δ Catalyst and Study on Removal Characteristics of Minute Oxygen)

  • 정병준;이홍주;김민광;이승환;박정훈
    • Korean Chemical Engineering Research
    • /
    • 제57권6호
    • /
    • pp.774-780
    • /
    • 2019
  • 본 연구에서는 저온에서 매립지 가스(LFG)하에서 메탄의 완전 산화 특성 분석을 위한 고성능 Pd 코팅 $La_{0.1}Sr_{0.9}Co_{0.2}Fe_{0.8}O_{3-{\delta}}$ (LSCF-1928)촉매를 개발하였다. LSCF-1928 촉매를 분말형과 중공사형으로 성형한 후 중공사형의 표면을 무전해도금법으로 Pd를 코팅하였다. 성형된 촉매는 TPR을 통해 촉매에 흡착 된 산소종과 그 흡착 량을 분석하였고, SEM을 통해 중공사형 기공구조를 확인하였으며, XRD를 통해 촉매의 안정성을 확인하였다. 메탄 산화 실험 결과 LSCF-1928 촉매의 메탄 완전산화 온도는 $475^{\circ}C$ 이었으나, Pd코팅 된 LSCF-1928 촉매는 이보다 낮았으며, $O_2$ 전화 율 또한 일반 LSCF-1928 촉매보다 Pd 코팅 LSCF-1928 촉매가 높았음을 확인하였다.

메탄 기체의 점화 현상에 관한 충격관 실험 및 모델 연구 (Shock Tube and Modeling Study of Ignition in Methane)

  • 지성배;김원경;신권수
    • 대한화학회지
    • /
    • 제43권2호
    • /
    • pp.156-160
    • /
    • 1999
  • 메탄-산소를 아르곤으로 희석한 혼합기체의 점화 과정을 1516-1937K 온도 범위에서 반사 충격파를 이용하여 고찰하였다. 메탄 기체의 점화 지연 시간은 충격관 끝에서 5.0 cm 떨어진 곳에서의 압력 변화 및 광 방출을 측정하여 구하였으며, 각 혼합기체의 농도 의존도 및 온도 의존도에 관한 실험식을 구할 수 있었다. 메탄 산화 과정에 관한 실험 결과를 설명하기 위해 GRI 1.2 메카니즘을 이용한 컴퓨터 모의 실험을 수행하였다.

  • PDF

Inoculation Effect of Methanotrophs on Rhizoremediation Performance and Methane Emission in Diesel-Contaminated Soil

  • Ji Ho Lee;Hyoju Yang;Kyung-Suk Cho
    • Journal of Microbiology and Biotechnology
    • /
    • 제33권7호
    • /
    • pp.886-894
    • /
    • 2023
  • During the rhizoremediation of diesel-contaminated soil, methane (CH4), a representative greenhouse gas, is emitted as a result of anaerobic metabolism of diesel. The application of methantrophs is one of solutions for the mitigation CH4 emissions during the rhizoremediation of diesel-contaminated soil. In this study, CH4-oxidizing rhizobacteria, Methylocystis sp. JHTF4 and Methyloversatilis sp. JHM8, were isolated from rhizosphere soils of tall fescue and maize, respectively. The maximum CH4 oxidation rates for the strains JHTF4 and JHM8 were 65.8 and 33.8 mmol·g-DCW-1·h-1, respectively. The isolates JHTF4 and JHM8 couldn't degrade diesel. The inoculation of the isolate JHTF4 or JHM8 significantly enhanced diesel removal during rhizoremediation of diesel-contaminated soil planted with maize for 63 days. Diesel removal in the tall fescue-planting soil was enhanced by inoculating the isolates until 50 days, while there was no significant difference in removal efficiency regardless of inoculation at day 63. In both the maize and tall fescue planting soils, the CH4 oxidation potentials of the inoculated soils were significantly higher than the potentials of the non-inoculated soils. In addition, the gene copy numbers of pmoA, responsible for CH4 oxidation, in the inoculated soils were significantly higher than those in the non-inoculated soils. The gene copy numbers ratio of pmoA to 16S rDNA (the ratio of methanotrophs to total bacteria) in soil increased during rhizoremediation. These results indicate that the inoculation of Methylocystis sp. JHTF4 and Methyloversatilis sp. JHM8, is a promising strategy to minimize CH4 emissions during the rhizoremediation of diesel-contaminated soil using maize or tall fescue.