• 제목/요약/키워드: Microbial inoculum

검색결과 70건 처리시간 0.021초

생물학적 복구법(Bioremediation)의 원리와 응용 (The Principle and Application of Bioremediation)

  • 정재춘;박창희;이성택
    • 한국토양환경학회지
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    • 제1권2호
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    • pp.3-13
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    • 1996
  • 생물학적 복구법의 효율은 미생물 균수의 계수, 호흡율, 분해율 등으로 측정할 수 있으며 부작용 시험은 Daphnia,굴의 유충, 무지개 송어 를 사용하여 측정된다. On-Site처리에 있어서는 산소 전달이 문제가 되는데 이에는 과산화 수소가 사용될수 있으며(벤젠계통의 용매), 유류오염 방제시에는 친유화적 질소 및 인을 첨가할 수 있다. 접종균주는 혼합균주 또는 순수 균주가 사용되는데 후자에는 Pseudomonas와 Phaneochate 등이 있다. 때로는 효울을 높이기 위해 효소를 첨가 하거나 광분해법과 병용되기도 한다. 토양의 유류오염물질, 예컨대 폐윤활유, 기계유, 오일 슬러지들을 처리할때는 토양상부 15∼20cm를 갈고 유류오염물질을 5%의 농도로 주입한다. 이 때 적정 pH는 7∼8, 탄화수소 질소 = 100 : 1, 탄화수소 : 인 = 800 : 1이며 적절한 배수가 필요하다. 지하 유류오염물질의 처리에 있어서는 특히 다량의 산소가 필요하며 해양유류오염물질의 처리에 있어서는 친유화성 비료를 첨가하면 효과가 있다 생물학적 복구법에 의해 대기오염물질 특히, 악취 물질을 처리할 수 있는데 반응기로는 생물여과법과 생물세정기가 쓰인다.

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유류 오염 토양에서 분리된 Rhodococcus fascians를 이용한 해수에서의 디젤유의 분해 (Biodegradation of Diesel in Sea Water by Rhodococcus fascians Isolated from a Petroleum-contaminated Site)

  • 구자룡;문준형;윤현식
    • KSBB Journal
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    • 제24권5호
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    • pp.453-457
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    • 2009
  • 본 실험에 사용된 균주는 유류로 오염된 지역의 토양시료로부터 직접 분리한 Rhodococcus fascians로 이전 연구에서 항공유의 분해에 효과가 있는 것으로 밝혀진 균주이다. 디젤유가 항공유보다 R. fascians의 생장에 영향을 주는 것으로 나타났다. 해수중의 디젤 분해를 위해서는 2%이상의 접종량이 효과적이며 접종량이 증가할 경우 잔류량이 더 감소하였으나 큰 차이는 없었다. 해수중의 디젤이 5%이상에서는 디젤유의 독성에 의해 R. fascians의 생장이 저해를 받아 디젤 잔류량이 높게 나타났다. R. fascians는 pH 8에서 가장 높은 디젤 분해속도를 보였으며 비교적 넓은 pH 범위에서 디젤 분해도가 유지되는 것으로 나타났다. R. fascians의 최적 성장온도 보다 높은 $32^{\circ}C$에서는 디젤의 분해에 온도증가에 따른 자연분해의 영향이 큰 것으로 나타났다. R. fascians의 해수중 디젤유 분해의 최적온도는 $27^{\circ}C$로 최적 생장온도에서 분해가 활발히 이루어지는 것을 알 수 있었다.

Cold-Adapted and Rhizosphere-Competent Strain of Rahnella sp. with Broad-Spectrum Plant Growth-Promotion Potential

  • Vyas, Pratibha;Joshi, Robin;Sharma, K.C.;Rahi, Praveen;Gulati, Ashu;Gulati, Arvind
    • Journal of Microbiology and Biotechnology
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    • 제20권12호
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    • pp.1724-1734
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    • 2010
  • A phosphate-solubilizing bacterial strain isolated from Hippophae rhamnoides rhizosphere was identified as Rahnella sp. based on its phenotypic features and 16S rRNA gene sequence. The bacterial strain showed the growth characteristics of a cold-adapted psychrotroph, with the multiple plant growth-promoting traits of inorganic and organic phosphate solubilization, 1-aminocyclopropane-1-carboxylate-deaminase activity, ammonia generation, and siderophore production. The strain also produced indole-3-acetic acid, indole-3-acetaldehyde, indole-3-acetamide, indole-3-acetonitrile, indole-3-lactic acid, and indole-3-pyruvic acid in tryptophan-supplemented nutrient broth. Gluconic, citric and isocitric acids were the major organic acids detected during tricalcium phosphate solubilization. A rifampicin-resistant mutant of the strain exhibited high rhizosphere competence without disturbance to the resident microbial populations in pea rhizosphere. Seed bacterization with a charcoal-based inoculum significantly increased growth in barley, chickpea, pea, and maize under the controlled environment. Microplot testing of the inoculum at two different locations in pea also showed significant increase in growth and yield. The attributes of cold-tolerance, high rhizosphere competence, and broad-spectrum plant growth-promoting activity exhibited the potential of Rahnella sp. BIHB 783 for increasing agriculture productivity.

종균 첨가에 의한 음식물 찌꺼기의 발효 사료화 (Production of Fermented Feed from Food Wastes by Using Inoculation)

  • 서은희;송은승;한억;이성택;양재경;이기영
    • 유기물자원화
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    • 제5권1호
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    • pp.1-13
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    • 1997
  • 본 연구는 음식물 찌꺼기의 사료화를 목적으로 종균제(YM, 영진환경)와 아프리카산 고온성 효모인 Kl. marxianus를 이용하여 음식물 찌꺼기를 발효시켜 보존성을 연장하기 위해 실시하였다. 6일 동안 발효시, 편성 호기적 또는 혐기적 조건보다는 2일간 호기적 조건으로 발효시킨 뒤 계속하여 4일간 혐기적으로 발효시켰을 때 유기산 생성량이 높았고 생균수도 가장 높았다. 종균제(YM)의 첨가는 무첨가 시료보다 발효 후 잔여 총 생균수를 100배 이상으로 크게 증가시켰으며 여기에 Kl. marxianus 배양액을 추가로 첨가할 경우 총생균수는 더욱 증가시켰으나 효모수를 더 증가시키지는 않았다.

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Monascus anka를 이용한 홍국의 제조 및 특성 (Hongkuk Production and the Characteristics of Hongkuk Made from Monascus anka)

  • 방병호;이문수;김관필;이기원;이동희
    • 한국식품영양학회지
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    • 제25권4호
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    • pp.1055-1060
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    • 2012
  • In order to produce Hongkuk-ju, the production and characterization of Hongkuk (Monascus red koji) by Monascus anka KCTC 6121 were investigated. The optimum cultural conditions for the production of enzyme (${\alpha}$-amylase and glucoamylase) and pigment (yellow and red) from this strain on solid culture (steamed rice) were examined. The results showed that the production of ${\alpha}$-amylase and glucoamylase reached the highest for 9 days and 8 days, respectively. Since then, the productions decreased slightly. The production of yellow and red pigments reached the highest for 8 days, decreasing slightly soon after. The optimal content of the initial moisture equally presented 30% in the enzyme and pigment production. After that, the enzyme production decreased slowly, whereas pigment production decreased sharply. The optimal temperature of the culture also showed $30^{\circ}C$ in the production of enzyme and pigment. It was found that the initial inoculum size in enzyme and pigment production was 10% and 20%, respectively. Under these optimal conditions, the production of monacolin K and citrinin was 74.35 mg/kg and 5 mg/kg for 12 days, respectively.

한국산 야생효모에 관한 연구 4 (Studies on the Wild Yeasts in Korea(IV))

  • 박명삼
    • 미생물학회지
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    • 제11권4호
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    • pp.157-166
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    • 1973
  • Fermented feed using rice, barley, wheat, and defatted rice brans as the raw materials were prepared by 3 species of wild yeasts which were selected among 35 strains of yeasts isolated, and their analytical values were examined. The results were as follows : 1. The three yeasts were identified as H.amomala var. anomala (No.225), Candida utilis (No.400), and Irpex-cellulase(consors) (no.403-A). 2. The optimum pH, and sugar concentration of these yeasts in liquid culture were pH 5.0 and Bllg. 10.deg. each. The optimum temperature was 30.deg.C for No.225 and No.403-A, 25.deg.C for No.400. The No.225 and No.403-A grow at higher temperature than 37.deg.C and 40.deg.C each. 3. The No.225 yeast had a large vegetative cell and strong sugar fermentability. The No.225 and 403-A could assimilate cellobiose, xylose, $KNO_2$ and $KNO_3$. These properties were fit for bran fermentation. 4. The No.403-A microorganism was a yeast-like microbe and showed cellulase activity which might help the propagation of other yeasts on the brans. 5. The analytical data of fermented feed indicated the following order of usable value ; rice-wheat-barley bran 4:4:2, rice-wheat bran 5:5, rice-barley bran 5:5, rice-defatted rice bran 5:5. 6. the fermented feed were prepared by mixing brans, 0.3% ammonium sulfate and 5%(w/w) inoculum of yeast suspension in 4% glucose solution. Water content 70-80%, fermentation temperature 25-30.deg.C, and fermentation time 2-3 days were given. 7. The rice-wheat bran 5:5 and rice-barley bran 5:5 fermented feed showed 11, 17-11.45% protein increase, and the rice-barley-wheat bran 4:4:2 and rice-defatted bran 5:5 showed 3.75-6.03% protein increase. 8. The fermented feed prepared in this experiment by the author might work as a nutritive feed using microbial cell body, enzymes produced by microbes and other microbial cell constituents.

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황 산화를 통해 퍼클로레이트를 분해하는 미생물 군집 분석 (Analysis of a Sulfur-oxidizing Perchlorate-degrading Microbial Community)

  • 김영화;한경림;황희재;권혁준;김예림;김건우;김희주;손명화;최영익;성낙창;안영희
    • 생명과학회지
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    • 제26권1호
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    • pp.68-74
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    • 2016
  • 퍼클로레이트(ClO4)는 지표수 및 토양/지하수에서 검출되는 신규 오염물이다. 이전 연구에서 저렴한 원소 황(elemental sulfur, S0) 입자와 쉽게 구할 수 있는 활성슬러지를 이용하여 독립영양방식으로 ClO4를 제거할 수 있다는 실험적 증거가 제시되었다. 또한 식종균으로서 농화배양 미생물을 사용했을 때 활성슬러지보다 제거효율과 시간면에서 우수한 결과를 나타내었다. 그래서 본 연구에서는 황을 산화하여 독립영양방식으로 ClO4를 분해하는 농화배양 미생물 군집을 PCR-DGGE로 분석하였다. 이 농화배양 미생물은 초기농도가 약 120 mg ClO4/l 일 때 7일 후 99.71% 이상의 ClO4- 제거 효율을 나타내었다. 농화배양 미생물과 그것의 식종균으로 부터 genomic DNA를 추출하여 16S rRNA 유전자의 PCR-DGGE 분석에 사용하였다. PCR-DGGE 분석결과 농화배양 미생물과 식종균 시료들이 다른 밴드패턴을 나타냄에 따라 이 두 시료의 군집조성이 다름을 확인하였다. 이는 농화배양되는 동안 식종된 미생물이 그 환경에 잘 생장하는 미생물로 군집조성이 변화한 것으로 여겨진다. 농화배양 미생물군집에는 β-Proteobacteria, Bacteroidetes, 그리고 Spirochaetes 강에 속하는 개체군들이 우점하는 것으로 나타났다. 향후 이 우점 개체군들의 순수분리와 더불어 황 산화를 통한 ClO4 분해 환경에서 이들의 대사적 역할을 규명할 필요가 있다.

Pilot 규모 biopile에 의한 유류오염토양의 정화

  • 김태승;박종겸;윤정기;노회정;정일록;김종하
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 총회 및 춘계학술발표회
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    • pp.205-208
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    • 2004
  • Tile pilot scale biopile system was designed and constructed for evaluation of biopile efficiency. For the biopile system construction, two soil samples that were contaminated by mainly diesel were selected. The pilot scale biopile were consisted of the biopile dome, aeration system and monitoring system and two biopiles(pile A and pile B) were operated with nutrients and inoculum for more 100 days. The initial TPH concentrations for pile A and pile B were about 10,000 mg/kg and 2,300 mg/kg, respectively. After 70 days, the microbial densities in the pile A was increased and in the pile B it was no changed. The TPH contents decreased about 70% in the pile A and 30% in the pile B. Also, various kinds of PAHs were detected by analyzing the GC/MSD, and the reducing ratio in the piles A and pile B were similarly declined. The average biodegradation rates were calculated about 66.8mg/kg-day in the pile A and 10.9mg/kg-day in the pile B. During the operation period, pile temperature was the major limiting condition for the efficiency of all biopiles.

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Effect of Cellulose Degrading Bacteria Isolated from Wild and Domestic Ruminants on In vitro Dry Matter Digestibility of Feed and Enzyme Production

  • Sahu, N.P.;Kamra, D.N.;Paul, S.S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제17권2호
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    • pp.199-202
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    • 2004
  • Cellulolytic bacterial strains have been isolated from the faeces of wild (blackbuck, Antilope cervicapra; nilgai, Baselophus tragocamelus chinkara, Gazella gazella spotted deer, Axis axis and hog deer, Cervus porcinus) and rumen liquor of domestic (sheep, Ovis aries) ruminants. Five best cellulose degrading bacterial isolates (Ruminococcus sp.) were used as microbial feed additive along with buffalo rumen liquor as inoculum to study their effect on digestibility of feed and enzyme production in in vitro conditions. The bacterial isolate from chinkara (CHI-2) showed the highest per cent apparent dry matter (DM) digestibility ($35.40{\pm}0.60$), true dry matter digestibility ($40.80{\pm}0.69$) and NDF ($26.38{\pm}0.83$) digestibility (p<0.05) compared to control ($32.73{\pm}0.56$, $36.64{\pm}0.71$ and $21.16{\pm}0.89$, respectively) and other isolates at 24 h of incubation with lignocellulosic feeds (wheat straw and wheat bran, 80:20). The same isolate also exhibited the highest activities of fibre degrading enzymes like carboxymethylcellulase, xylanase, ${\beta}$-glucosidase and acetyl esterase. The bacterial isolate from chinkara (Gazella gazella) appears to have a potential to be used as feed additive in the diet of ruminants for improving utilization of nutrients from lignocellulosic feeds.

Molecular identification of dye degrading bacterial isolates and FT-IR analysis of degraded products

  • Khan, Shellina;Joshi, Navneet
    • Environmental Engineering Research
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    • 제25권4호
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    • pp.561-570
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    • 2020
  • In the present study, dye decolorizing bacteria were isolated from water and soil samples, collected from textile industries in Jodhpur province, India. Two bacterial species namely, Bacillus pumilis and Paenibacillus thiaminolyticus were screened and identified based on biochemical characterization. The degradation efficiency of these two microorganisms was compared through optimization of pH, incubation time, initial dye concentration and inoculum size. B. pumilis and P. thiominolyticus were able to degrade 61% and 67% Red HE3B, 81% and 75% Orange F2R, 49.7% and 44.2% Yellow ME4GL and 61.6% and 59.5% Blue RC CT dyes of 800mg/l concentration respectively. The optimum pH and time were found to be 8 within 24 hours. The FT-IR analysis confirmed that microorganisms were able to degrade toxic azo dyes into a non-toxic product as proved through structural modifications to analyze chemical functions in materials by detecting the vibrations that characterize chemical bonds. It is based on the absorption of infrared radiation by the microbial product. Therefore, Bacillus pumilis and Paenibacillus thiaminolyticus are a promising tool for decolorization of dyes due to its potential to effectively decolorize higher azo dye concentrations (10-800 mg/L) and can be exploited for bioremediation.