• 제목/요약/키워드: oil-degradation

검색결과 405건 처리시간 0.028초

Klebsiella gr. 47을 이용한 생물학적 폐수처리에서 BTX 분해 특성 (Degradation of BTX by Klebsiella gr. 47 in the Biological Wastewater Treatment)

  • 염승호;최석순
    • 한국환경과학회지
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    • 제7권3호
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    • pp.393-400
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    • 1998
  • A microorganism, Klebsiella gr. 47, capable of degrading BTX(benzene, toluene and xylene) was isolated from oil-contaminated soil and its characteristics of BTX degradation were investigated. When benzene and toluene were fed to Klebstella gr. 47 simulataneously, they showed competitive ingibition. The degradation rate of xylene was enhanced as much as 3 times when xylene was fed with benzene or toluene. Degradation rate of benzene and toluene was also enhanced by cocultured with Alcaligenes xylosoxidans. When benzene-adapted microorganism was used, each BTX compound was degraded efficiently within 5 hours.

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Bioremediation of Crude Oil by White Rot Fungi Polyporus sp. S133

  • Kristanti, Risky Ayu;Hadibarata, Tony;Toyama, Tadashi;Tanaka, Yasuhiro;Mori, Kazuhiro
    • Journal of Microbiology and Biotechnology
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    • 제21권9호
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    • pp.995-1000
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    • 2011
  • The bioremediation potential of crude oil by Polyporus sp. S133 pre-grown in wood meal was investigated in two separate experiment trials; liquid medium and soil. The effect of three nutrients (glucose, polypeptone, and wood meal), oxygen flow, and some absorbent on the efficiency of the process was also evaluated. Degradation of crude oil in soil was significantly increased with an addition of oxygen flow and some absorbent (kapok and pulp). The highest degradation rate of crude oil was 93% in the soil with an addition of 10% kapok. The present study clearly demonstrates that, if suitably developed, Polyporus sp. S133 could be used to remediate soil contaminated with crude oil.

생물정화용 제품의 유류분해능 비교 (Effects of Bioremediation Products on the Oil Degradability)

  • 김상진;신수경
    • 미생물학회지
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    • 제33권2호
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    • pp.157-162
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    • 1997
  • 최근 유류에 오염된 환경을 회복시키기 위하여 생물정화 방법이 널리 이용되고 있다. 따라서 유류오염 환경을 처리하기 위한 생물정화용 생물제제가 보편화되면서 외국으로부터 많은 제품이 국내로 유입되고 있다. 그러나 국내에는 이와 같은 제품의 규격기준이나 표준 실험방법이 체계화되어 있지 않고 또한 효용성에 대한 실제 실험결과가 없는 상태이다. 그러므로 본 실험에서는 일부 유류처리용 생물제제 5종을 대상으로 유류분해율에 대한 실험을 수행하였다. 실험결과 대부분의 제품들은 함유된 화학유분산제에 의해 유류분산능을 나타내었고 유류분해율은 매우 낮은 것으로 나타났다. 일부제품(D)의 경우에는 해수에 분포되어 있는 토착 유류분해세균의 유류분해도를 오히려 저해하는 결과를 나타내었다. 이와 같은 실험의 결과로 미루어 향후 생물정화용 제제의 규격기준 및 표준 실험방법을 국내에도 확립할 필요가 있고, 그러므로서 효율적인 생물정화 기술방법 사용이 활성화될 수 있을 것이다.

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MTBE를 포함한 기타 가솔린 첨가제의 생 분해 적용 가능성 평가(I) : 호기성 조건 (An Assessment of the Feasibility of (I) : Condition of Aerobic)

  • 정우진;장순웅
    • 한국환경과학회지
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    • 제25권6호
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    • pp.757-766
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    • 2016
  • MTBE and other gasoline additives contained in gasoline are known to be a refractory substance resistant to biodegradation. As a method of removing these substances, a research of method using native microbes of polluted soil was progressed and among these, bio-degradation possibility under aerobic condition was evaluated. All of the experiments were progressed based on batch experiment of lab scale and analyzed by GC-FID using HS-SPME technique. The result of bio-degradation experiment based on MTBE and other additives(ETBE, TAME) was observed below 1 mg/L, which initial concentration were 100 mg/L for each method. And through production of by-product and CO2, partial mineralization was confirmed. Degradation velocity of each additive was promptly represented in the order of TBA>ETBE>MTBE>TAME. Through this study, bio-degradation possibility of native microbes of oil polluted soil, MTBE and other gasoline additives was confirmed and it was considered that the result could be used for basic experiment data in removing oil pollutants of soil.

온도에 따른 원유분해미생물의 생물학적 정화효율 평가 (Evaluation of Bioremediation Efficiency of Crude Oil Degrading Microorganisms Depending on Temperature)

  • 김종성;이인;정태양;오승택;김국진
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제21권1호
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    • pp.72-79
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    • 2016
  • Bioremediation is one of the most effective ways to remediate TPH-contaminated sites. However, under actual field conditions that are not at the optimum temperature, degradation of microorganisms is generally reduced, which is why the efficiency of biodegradation is known to be significantly affected by the soil temperature. Therefore, in this study, the labscale experiment was conducted using indigenous crude oil degrading microorganisms isolated from crude oil contaminated site to evaluate the remediation efficiency. Crude oil degrading microorganisms were isolated from crude oil contaminated soil and temperature, which is a significant factor affecting the remediation efficiency of land farming, was adjusted to evaluate the microbial crude oil degrading ability, degradation time, and remediation efficiency. In order to assess the field applicability, the remediation efficiency was evaluated using crude oil contaminated soil (average TPH concentration of 10,000 mg/kg or more) from the OO premises. Followed by the application of microorganisms at 30℃, the bioremediation process reduced its initial TPH concentration of 10,812 mg/kg down to 1,890 mg/kg in 56 days, which was about an 83% remediation efficiency. By analyzing the correlation among the total number of cells, the number of effective cells, and TPH concentration, it was found that the number of effective microorganisms drastically increased during the period from 10 to 20 days while there was a sharp decrease in TPH concentration. Therefore, we confirmed the applicability of land farming with isolated microorganisms consortium to crude oil contaminated site, which is also expected to be applicable to bioremediation of other recalcitrant materials.

EFFECTS OF BLOOD-MIXED AND HEAT TREATMENT OF PROTEIN FEEDS ON NITROGEN DIGESTION IN THE RUMEN AND HINDGUT OF SHEEP

  • Yoon, C.S.;Lee, N.H.;Jung, K.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제3권1호
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    • pp.39-46
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    • 1990
  • This experiment was conducted to study the effects of blood-mixed and heat-treated protein feeds on protein degradation in the rumen, flow of protein to the abomasums and availability of undegraded protein in the intestine of sheep in a $4{\times}4$ Latin square design. Soybean oil meal, rapeseed meal, and whole soybean were mixed with fresh swine blood and dried at $140^{\circ}C$ for 2 h. Proportionate disappearance of apparently digested OM in the postrumen for the blood and heat treated protein group was ranged from 43.2 to 50.5% as compared with 28.0% for the unheated soybean oil meal diet. The treated protein supplements were resulted in greater total N and NAN flow passing at the abomasums than untreated soybean oil meal diet was fed. The quantities of undegraded feed N passing at the abomasums for the treated protein diets was approximately twice as high as that of the untreated soybean oil meal diet and the estimated amount of undegraded N of the protein supplement itself was 79.1 to 84.2% as compared with 15% of soybean oil meal.

유침 절연에서 전기적 및 열적 열화에 따른 유중가스분포특성 (Characterisrics of Dissolved Gas Distribution in Oil with Thermal and Electrical Degradation in Oil Imersed Paper Insulation)

  • 선종호;이상화;김광화
    • 조명전기설비학회논문지
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    • 제18권6호
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    • pp.136-144
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    • 2004
  • 본 논문에서는 유침절연에 대한 열열화와 전기적열화 실험을 실시하여 유중가스분석법을 이용한 유침절연의 고장원인 진단에 대한 신뢰성을 향상시키는 방안에 대하여 연구하였다. 유침절연의 고장원인에 대하여 주도가스법과 탄화수소가스의 구성률, CO/$CO_2$비와 같은 진단요소를 단독으로 사용하는 것보다는 진단요소들의 상호관계를 이용하는 것이 유침절연의 고장원인을 신뢰성 있게 진단하는 것으로 나타났다.

Phytoremediation potential of indigenous Ghanaian grass and grass-like species grown on used motor oil contaminated soils

  • Akutam, Abednego;Pappoe, Alexander Nii Moi;Armah, Frederick Ato;Enu-Kwesi, Lewis
    • Journal of Ecology and Environment
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    • 제37권2호
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    • pp.41-51
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    • 2014
  • This study investigated the ability of Bothriochloa bladhii (Retz.) S.T. Blake (Poaceae), Cyperus ligularis L. (Cyperaceae), Commelina erecta L. (Commelinaceae), Mariscus umbellatus (Rottb.) Vahl (Cyperaceae), Fimbistylis miliacea L. (Cyperaceae) and Torulinium odoratum L. (Cyperaceae) to clean up various levels of used motor oil (UMO) contaminated soils. The plants were grown in 2 kg garden soils treated to 0%, 1%, 5% and 10% levels of UMO contamination. The plant growth parameters, chlorophyll contents and dry weight of test plants were measured. The phytoremediation ability of these test plants were assessed by measuring the uptake of hydrocarbons in terms of total hydrocarbon content (THC) as well as their percentage degradation values. There was significant (P < 0.05) reduction in leaf chlorophyll contents and dry weights of the test plant species planted in UMO contaminated soils. THC as well as the percentage uptake (or degradation) of hydrocarbons were both lowest in C. ligularis but highest in T. odoratum in all cases. The phytoremediation potential of test plants was highest in soils contaminated with 5% UMO. Based on the results of this study, all test plants with the exception of C. ligularis were potentially capable of undertaking phytoremediation. However, B. bladhii and T. odoratum proved most effective in the uptake and degradation of UMO.

유류 오염지역으로부터 분리된 균주를 이용만 디젤유의 분해 (Biodegradation of Diesel Oil by Microorganisms Isolated from Petroleum Contaminated Site)

  • 박천보;허병기;윤현식
    • KSBB Journal
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    • 제16권6호
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    • pp.632-637
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    • 2001
  • 본 실험에서 사용된 균주는 유류에 오염된 지역의 토양시료로부터 직접 분리하였는데 본 실험에서는 백색 콜로니를 형성하는 W균주와 황색 콜로니를 형성하는 Y균주 그리고 두 균주의 복합균주인 WY 균주를 사용하였다. 단일 균주보다는 복합균주를 사용하였을 때 디젤유의 분해가 더 효과적이었으며 질소원의 첨가가 분해에 제한인자로 작용하였다. 비록 토양시스템의 분해효율은 액체상에서의 분해능에 비해 다소 떨어지지만, 통기의 조건 및 질소원의 첨가등으로 그 능력을 어느 정도 향상시킬 수 있었다. 한편 디젤유의 분해에는 생물학적인 측면 뿐 아니라 증발이나 휘발에 의해서도 상당량 감소하였는데 교반에 의해 또 오염토양의 제조공정중에 상당량이 휘발하는 것으로 보이며, 디젤의 용해도가 낮기 때문에 침출되는 양도 적을 것이라고 보여지고 이는 다른 논문에서도 보고된 바 있다(21, 22) 앞서 언급한 것처럼 본 실험에서는 통기와 질소원의 첨가를 통해 미생물에 의한 디젤유의 분해능을 향상시켰는데, 이 뿐만 아니라 더욱 효과적인 디젤유의 분해를 위해서는 복잡한 토양시스템에 관계된 여러 요소들을 최적화하여 분해능을 향상시키기 위한 실험이 수행되어야한다.

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오일필터 일체형 엔진오일 퇴화감지센서용 센싱시스템 개발 (Development of Sensing System for an Engine Oil Deterioration Detection Sensor Integrated with an Oil Filter)

  • 전상명
    • 센서학회지
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    • 제20권4호
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    • pp.243-248
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    • 2011
  • The purpose of this study is to develop a sensing system to measure the capacitance of a pre-developed engine oil deterioration detection sensor integrated with an oil filter. To measure the capacitance of engine oil in the sensor, it is used the way measuring the electric charging time in a capacitor by impressing DC volt. This method has merits on cost and signal stability. The measured capacitance is compensated by comparison with the one measured by an impedance analyzer. Also, using the dielectric constant gained by an impedance analyzer, the calculating equation of the dielectric constant of engine oil related with the currently developed sensor is decided. Finally, the degradation degree of engine oil is estimated according to the change rate of dielectric constant between green oil and used oil. The newly developed personal controller is to control a series of the processes.