• Title/Summary/Keyword: 광합성세균

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Studies on Hydrogen Evolution by Photosynthetic Bacteria(Part 1) Isolation and Identification of the Photosynthetic Bacteria (광합성세균에 의한 수소 생산에 관한 연구 (제 1보) 광합성균의 분리 및 동정)

  • Bae, Moo;Yang, Sung-Woo;Ko, Young-Hee
    • Microbiology and Biotechnology Letters
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    • v.10 no.1
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    • pp.27-32
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    • 1982
  • Many microorganisms capable of hydrogen photoproduction were isolated from samples of mud fiats of paddy field collected in Seongnam area near Seoul. Among the 63 isolants, a strain K-13 was selected for the capability of hydrogen evolution. As the results of examinations in physiological, morphological and cultural characteristics, the strain K-13 was identified as Rhodopseudomonas gelatinosa.

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한국 근해에서의 photosynthetic purple, non-sulfur bacteria의 분리

  • 김기한;이오미;이희정;남귀숙;이준훈;노석범;이상준
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2002.05b
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    • pp.450-451
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    • 2002
  • 미래산업의 중요한 자원인 광합성세균(purple non-sulfur photosynthetic bacteria)은 해양에 대한 연구정도가 미비하기 때문에 이 연구를 수행하였다. 현재 총 47개의 mud 시료중에서 15개의 광합성세균으로 추정되는 strain을 분리하였다. 이후의 실험은 RAPD PCR을 이용하여 중복되는 strain의 유무를 확인하고, 165 rDNA의 염기분석을 통하여 분류학적인 위치를 연구할 계획이다.

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Effects of Different Heterotrophic Bacteria on Phototrophic Activity of Chlorella sp. MF1907 (Chlorella sp. MF1907의 광합성 활성에 미치는 다양한 종속영양세균의 영향)

  • Noh, Young Jin;Jeong, So-Yeon;Kim, Tae Gwan
    • Microbiology and Biotechnology Letters
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    • v.49 no.1
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    • pp.101-110
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    • 2021
  • Interactions between microalgae and heterotrophic bacteria are common in natural environments. This study investigated the effect of heterotrophic bacteria on the activity of the photosynthetic eukaryotic alga Chlorella sp. MF1907 when cocultured. A total of 31 heterotrophic bacterial isolates belonging to different genera were cocultured with MF1907. Interactions of the alga with Agromyces, Rhodococcus, Sphingomonas, Hyphomicrobium, Rhizobium, and Pseudomonas were positive, while those with Burkholderia, Paraburkholderia, Micrococcus, Arthrobacter, Mycobacterium, Streptomyces, Pedobacter, Mucilaginibacter, Fictibacillus, Tumebacillus, Sphingopyxis, and Erythrobacter were negative (p < 0.05). A turnover experiment demonstrating a switch from heterotrophic to autotrophic activity of MF1907 was performed using 16 isolates exhibiting apparent effects (positive, negative, or neutral). Compared with the results of the coculture experiment, eight isolates exhibited the same outcomes, while the others did not. Consistently, Pseudomonas and Agromyces showed a remarkable positive effect on MF1907 activity, and Burkholderia, Streptomyces, and Erythrobacter had a marked negative effect. Our results suggest that it may be possible to use the isolates for controlling populations of microalgae in natural and engineered environments.

Isolation of Hydrogen Evolution Photosynthetic Bacteria Rhodobacter sphaeroides KS 56 (수소 생성 광합성 세균 Rhodobacter sphaeroides KS 56 분리)

  • 이은숙;권애란
    • The Korean Journal of Food And Nutrition
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    • v.10 no.4
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    • pp.549-552
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    • 1997
  • A purple non-sulfur photosynthetic bacteria which evolved molecular hydrogen efficiently from glucose in the presence of low concentration of NH4+ under light illuminated anaerobic condition was isolated from mud samples in Korea. This bacteria was identified on Rhodobacter sphaeroides KS 56 based on the morphological, cultural and physiological characteristics.

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질소순환에서 미생물의 역할

  • 유익동
    • The Microorganisms and Industry
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    • v.14 no.3
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    • pp.23-26
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    • 1988
  • 자연계에 있어서 질소는 대기중의 분자상질소를 비롯하여 초산, 암모니아와 같은 무기태질소, 단백질, 핵산 등의 유기태질소 등 다양한 형태로 존재하며 생물권내에서 흡수, 고정, 대사, 분해되는 등 다양한 순환을 거듭하고 있다. 대기중의 분자상질소는 Rhizobium, Azotobacter, Klebsielle, Clostridium, Blue-green algae 및 광합성세균 등에 의해 고장되어 암모니아의 형태로 환원된다. 한편 대부분의 식물들은 초산이나 암모니아 형태의 질소를 흡수 동화하여 핵산, 단백질을 만들고 이들 구성물은 사후 암모니아로 재분해 된다. 또한 동식물의 유체내지는 배설물들도 각기 분해되어 암모니아의 형태로 변화되는데 이와같은 일련의 질소순환(nitrogen cycle)은 초화세균, 탈질세균 내지는 질소고정균등 대부분의 미생물에 의해 크게 지배를 받고 있다.

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A study of Swine Wastewater Treatment using Photosynthetic Bacteria (광합성 세균을 이용한 돈분 폐수 처리에 관한 연구)

  • Choi, Kyung-Min;Park, Eung-Roh;Ju, Hong-Shin;Yang, Jae-Kyung;Lee, Ki-Young;Lee, Sung-Taik;Lee, Mu-Choon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.4 no.2
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    • pp.11-17
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    • 1996
  • Photosynthetic bacteria, strains KN 1-1, KN 2-1 and KN 2-3 were isolated from nature, and were studied for swine wastewater treatment. Growth of those photosynthetic bacteria were increased to 2~3 fold in organic-acid added medium(sodium acetate 1g, sodium propionate 1g and sodium butyrate 1g in Lascelles basal medium $1{\ell}$) than cultivation in Lascelles basal medium, and amount of bacteriochlorophyll a were increased to 1.5~2 fold. Chemical Oxygen Demand(COD) in swine wastewater using photosynthetic bacteria, strains KN 1-1, KN 2-1 and KN 2-3 were reduced 80%, 89% and 75%, respectively.

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Optimization for Small-scale Process of Swine Wastewater Treatment Using Rhodopseudomonas palustris KK14 (Rhodopseudomonas palustris KK14를 이용한 소규모 돈분폐수처리공정의 최적화)

  • Kim, Han-Soo;Oh, Chun-Hyun;Kim, Hyuk-Il;Cho, Hong-Yon;Yang, Han-Chul
    • Applied Biological Chemistry
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    • v.37 no.4
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    • pp.303-309
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    • 1994
  • To develop the treatment process of swine wastewater using Rhodopseudomonas palustris KK14 with high utilizable ability of organic acids, some operating conditions were investigated and optimized in flask-scale and laboratory-scale reactors. The optimal operating conditions in photosynthetic bacteria (PSB) reactor of semi-continuous type were obtained at HRT 6 day, 5% (v/v/day) seeding rate of PSB sludge and 10% (v/v/day) returning rate of PSB return sludge. Under the above operating condition, COD level of the wastewater (initial COD: 10 g/l) was reduced to about 1.7 g/l after 4 days treatment and MLSS was held constant at $4{\sim}5\;g$ per liter. In laboratory-scale process consisted of 5.2 l anaearobic digestion reactor and 15 l PSB reactor, the total removal rates of COD and BOD were increased to 95% and 96% by the continuous operation for 5.36 days, respectively, showing $3kg\;COD/m^3/day$ COD loading rate and 1.1 Kg COD/Kg MLSS/day sludge loading rate in PSB reactor. The offensive odor was considerably removed through the treatment process of swine wastewater.

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광합성미생물이용에 의한 폐수처리

  • 소림달치
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1979.10a
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    • pp.236-238
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    • 1979
  • 자연계에 배출되는 유기물함유폐수는 Figl 에 나타난 바와 같이 미생물의 생태적변동에 의해 정화된다. (표 1참조)이 자연현상을 인공장치에 의해 효율좋게 정화시키는 연구를 20수년전부터 개시하여 Test plant 및 Pilot plant을 작제하여, 검토하여 현재는 Fig. 2.에 나타난 바와 같은 실용화 plant가 다수, 가동하게 되었다. Fig. 2의 flow pheet를 개약설명한다. 먼저 폐수원액은 vibrating filter를 통과시키므로서 고형물은 제거된다. 이 용액을 구기조(Aeration tank)에 투입하여, 맹렬히 통기하면서, 호기분해를 행한다. 1 일간, 포기후, 호기성균체를 포함한 용액을 다음의 광합성세균배양조에 이행시켜, 4 일간 체류시키므로서 광합성세균등을 증식시킨다. 그후 응집침전제를 첨가하여, 광합성세균등의 Bacterial mass는 회수된다. 그 상맥부는 최종적으로 포기되고, (동기, 한랭에 있어서는 산포여상 Contact oxidation tower를 통과시킨다.) 소량의 침전제을 분리한 후 방류한다, 광합성세균이용에 의한 수처리기술의 특징은 1) 농후유기폐수를 희석하지 않고 정화처리할 수 있다. 2) 표3에 나타난 바와같이 적용할 수 있는 폐수의 종류는 많다. 3) 부산물로서 회수한 균체는 축산사료나 수산사료로서 이용할 수 있다. 표4 및 표5는 산난계 및 부화직후의 치어의 첨가사료 로서 이용한 일예이다.

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