• Title/Summary/Keyword: Mixed microorganism

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Effects of Compost Mixed with Microorganism Compost Fermented on the Seedlings Growth of Tomato and Red Pepper (미생물부숙퇴비의 상토 혼합처리가 토마토, 고추 유묘의 생장에 미치는 영향)

  • 김홍기;서범석;정순주
    • Korean Journal of Organic Agriculture
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    • v.5 no.2
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    • pp.125-140
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    • 1997
  • This experiment was carried out to investigate the effects of compost mixed with microorganism compost fermented for the production of high quality plug seedlings of tomato and red pepper. The results are summarized as follows. As a result of compost analysis, EC value was increased with increment of microorganism compost supplemented but lowered gradually in the late period of seedlings growth, pH value of microorganism compost fermented was 9.3 which is strong alkalinity. In the plot of 30 percent of microorganism compost fermented early growth of tomato seedlings was better in terms of plant height, leaf area and total dry weight. However, early growth of red pepper seedlings was shown in the plot of supplemented with 20 percent of microorganism compost fermented. The higher the mixing rate over 60 percent of micrroganism compost fermented to the soil used retarded the seedlings growth regardless of tomato and red pepper.

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Effective Treatment of Wastewater from the Electroplating Plant of Cold-mill by using Microorganism (냉연공장 도금공정에서 발생되는 폐수의 효율적인 미생물 처리에 관한 연구)

  • Kim, Sang-Sik;Kim, Hyung-Jin
    • Applied Chemistry for Engineering
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    • v.20 no.3
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    • pp.301-306
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    • 2009
  • This research was carried out to establish the effective treatment condition and characteristic of wastewater from the electroplating plant of cold rolling mill by using microorganism. Alkaline wastewater and acidic heavy metal wastewater accounted for 64%, 30%, respectively, of the total wastewater. Highly concentrated thiocyanate was 53890 mg/L as COD and it was 53% of total COD, even though it was 0.03% of wastewater from the electroplating plant. When treating mixed wastewater with microorganism, it was easy to remove when SCN concentrations of mixed wastewater was 200 mg/L or less. While the treatment effect of COD-causing materials was low at the concentration of 400 mg/L or less, it implies that highly concentrated thiocyanate contains a large amount of slowly biodegradable organics. When treating with mixed wastewater, pH was 7.33 at the beginning, but after 8 hours it increased to 7.99. This is caused by ammonia which is generated when SCN of highly concentrated thiocyanate was degraded by microorganism.

Screening on Allogeneic Mixed Lymphocyte Culture Inhibitory Activity for the Extracts of Marine-Derived Microorganisms (해양미생물 추출물의 동종세포반응 (Allogeneic Mixed Lymphocyte Culture) 억제효능 검색)

  • Yun, Keum-Ja;Oh, Keun-Hee;Lee, Dong-Sup;Choi, Hong-Dae;Kang, Jung-Sook;Son, Byeng-Wha
    • Korean Journal of Pharmacognosy
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    • v.42 no.4
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    • pp.354-360
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    • 2011
  • In order to screen new allogeneic mixed lymphocyte culture (allo-MLR) inhibitor which is expected to be immunomodulating drug lead, we have investigated allo-MLR inhibitory activity on the marine-derived symbiotic microorganisms (1,895 strains) from the marine algae. The potent inhibitory activities (over 45% inhibition of proliferation at 10 and 2 ${\mu}g/ml$) without cytotoxicity were observed in the extracts of 46 strains. While, the significant stimulating activities (over 100% proliferation at 10 and 2 ${\mu}g/ml$) without cytotoxicity were observed in the extracts of 5 strains. In the second assay using 46 bioactive strains, 14 strains exhibited again significant allo-MLR inhibitory activity. Finally, 11 strains among the 14 strains inhibited proliferation and IFN-${\gamma}$ production of CD4+ T cells during the stimulation with specific antigen in the third assay. On the basis of above results, the marine algae is nice source for isolation of immunomodulating microorganism, and the marine algae-associated microorganism is also nice target for development of the new immunomodulating drug lead.

Evaluation of Petroleum Oil Degrading Mixed Microorganism Agent for the Bioremediation of Petroleum Oil Spilled in Marine Environments (해양유류오염정화를 위한 유류분해 미생물제제의 평가)

  • Sohn, Jae-Hak
    • Journal of Life Science
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    • v.21 no.11
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    • pp.1599-1606
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    • 2011
  • To evaluate the effects of microorganism agents on oil biodegradation, treatability and microcosm studies were conducted. Petroleum oil degrading bacteria were isolated from enriched cultures of oil-contaminated sediment samples using a mineral salts medium (MSM) containing 0.5% Arabian heavy crude oil as the sole carbon source. After a 5 day-incubation period using MSM, mixed microorganisms of three species (strains BS1, BS2 and BS4) degraded 48.4% of aliphatic hydrocarbons and 30.5% of aromatic hydrocarbons. Treatability and microcosm tests were performed in the three different treatment conditions (AO: Arabian heavy crude oil, AO+IN: Arabian heavy crude oil+inorganic nutrient, AO+IN+MM: Arabian heavy crude oil+inorganic nutrient+mixed microorganism agents). Among these, significantly enhanced biodegradation of aliphatic hydrocarbons were observed in AO+IN and AO+IN+MM conditions, without showing any different biodegradation rates in either condition. However, the degradation rates of aromatic hydrocarbons in an AO+IN+MM condition were increased by 50% in the treatability test and by 13% in the microcosm test compared to those in an AO+IN condition. Taken together, it can be concluded that mixed microorganism agents enhance the biodegradation of aliphatic and aromatic hydrocarbons in laboratory, a treatability test, and a microcosm test. This agent could especially be a useful tool in the application of bioremediation for removal of aromatic hydrocarbons.

Preparation and Characterization of Microorganism Fermentation Celluose as Hydrogel by Radiation Crosslinking (방사선 가교에 의한 미생물 발효 셀룰로오스 하이드로겔의 제조 및 특성)

  • Lim, Youn-Mook;Park, Jong-Seok;Gwon, Hui-Jeong;Nho, Young-Chang;Kim, Sung-Ho;Choi, Young-Hun;Lee, Sun-Yi;Chong, Moo-Sang
    • Journal of Radiation Industry
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    • v.5 no.2
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    • pp.113-118
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    • 2011
  • Hydrogels from a mixture of poly(N-vinylpyrrolidone) (PVP), ${\kappa}$-carrageenan and microorganism fermentation celluose were prepared by $^{60}Co$ gamma-ray irradiation. PVP and ${\kappa}$-carrageenan were mixed with the different ratios. Microorganism fermentation celluose were added to the mixture of PVP and ${\kappa}$-carrageenan to evaluate the effect of microorganism fermentation celluose on the gel strength. The gel strength of the hydrogel was evaluated for application of a wound dressing. The results showed that gelation and gel strength were increased with increasing the content of the microorganism fermentation celluose.

Growth Characteristics of Microorganism on Lapilli-Cement mixed Bioblocks (화산력-시멘트 혼합 바이오 블록의 미생물 생장 특성)

  • Park, Sung-Yong;Park, Duck-Hwan;Kim, Hyun-Sun;Kim, Jung-Myeon;Lim, Hyun-Taek;Bae, Su-Bin;Kim, Yong-Seong
    • Journal of The Korean Society of Agricultural Engineers
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    • v.57 no.1
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    • pp.111-118
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    • 2015
  • This research aims to utilize lapilli from the Mt. Baekdusan as environmently-friendly construction material. First of all, the neutralizing method for fabricating lapilli-cement-mixed bioblock was examined. And then, by use of the neuralized bioblock with microorganism for water purification, the growth inhibition effect against the pathogenic coliform bacillus was evaluated. The result regarding growth inhibition effect on pathogenic coliform bacillus indicates that the pretreatment condition, which is a concurrent procession with aqueous solution of 10% di-ammonium Phosphate after water curing, led to pH degraded below 10 which was the target value. Therefore it was concluded that the method was effective on bio-block neutralization. The microorganisms purifying water and di-ammonium phosphate were detected through the examination for microorganism existence on the bioblock, therefore it was concluded that the bioblock composed of lapilli and cement is able to be utilized in various structures as an environment friendly construction material.

Response of rotational parameter in the stagnation point with motile microorganism: Unsteady nanofluid

  • Mohamed A. Khadimallah;Imene Harbaoui;Sofiene Helaili;Abdelhakim Benslimane ;Humaira Sharif ;Muzamal Hussain;Muhammad Nawaz Naeem;Mohamed R. Ali;Aqib Majeed;Abdelouahed Tounsi
    • Advances in concrete construction
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    • v.15 no.4
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    • pp.241-249
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    • 2023
  • The unsteady mixed convection Casson type MHD nanofluid flow in the stagnation point with motile microorganism around a spinning sphere is investigated. Time dependent flow dynamics is considered. Similarity transformations have been employed to transfer the governing partial differential structure into ordinary differential structure. The impact of distinct parameters is examined via tables and graphs. The impact of rotational parameter (spin) on profiles of velocity profiles, temperature and concentration is revealed for unsteady mixed convection Casson type MHD nanofluid flow. It is observed that it is clear that rotational parameter has a great effect on non-dimensional primary velocity component but rotational parameter has a slight impact on non-dimensional secondary velocity component. The validity of the current investigation is authorized through comparing the existing outcomes with previous published literature.

Storage of Waste-Brown Seaweed and Degradation of Alginate Using Microorganism (미생물을 이용한 미역폐기물의 저장 및 알긴산염 저분자화)

  • An, Sang Jun;Kim, Yeong Suk;Park, Gwon Pil
    • Journal of Environmental Science International
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    • v.13 no.3
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    • pp.313-318
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    • 2004
  • We studied a storage of waste-brown seaweed at room temperature and degradation of alginate in seaweed by microorganism DS-02. The seaweeds, mixed with 5.0 wt% DS-02 and sealed in vinyl package without any other treatment, could be stored longer than 1 year without spoilage at room temperature. During the storage process, the alginate of seaweed was decomposed by enzyme of DS-02 and the molecular weight of alginate decreased to about 1/10 of initial quantity. DS-02 growed as fast as it had maximum weight after 24 hour culture and it's enzyme had a maximum activity of alginate degradation at $40^{\circ}C.$ The seaweed sample became particles in DS-02 culture solution and the M. W of alginate decreased to about 1/10 of initial value after 24 hour decomposition. The effect of alginate degradation with DS-02 was similar to that of degradation with 3.0 M HCI solution for 24 hour.

THE CONTACT LENS RELATED CASE REPORTS IN PEDIATRIC POPULATION I -Congenital Cataract With Divergent Squint (콘택트렌즈에 연관된 소아집단 I 에서 증례 보고 -개산성 사시를 가지는 선천성 백내장)

  • Chen, Ai-Hong;Kim, Douk Hoon
    • Journal of Korean Ophthalmic Optics Society
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    • v.9 no.1
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    • pp.75-79
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    • 2004
  • Some ocular complications were connected to the contamination by the contact lens related. Especially the most cause of ocular complications was a microorganism from several processing of infections. Therefore the patients stopped the contact lens wear immediately by the side effects of ocular pathology. We had analyzed the microorganism from the laboratory. It was identified as mixed growth of the Chryseamonas meningosepticum and Enterobacter sp.

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Treatment of Organic Waste with Microorganisms of Mixed Population

  • Kim, Gi-Eun
    • KSBB Journal
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    • v.22 no.3
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    • pp.129-133
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    • 2007
  • This study represents that a removal efficiency of organic matters in wastewater is activated by a sludge process using new mixed microbial population. In case of mixed microorganisms, removal rates of suspended solid (SS), biochemical oxygen demand (BOD) and chemical oxygen demand (COD) were over 90 percent under experimental condition, and removal efficiency of organic matters, sludge density index (SDI) and capillary suction time (CST) in mixed population were higher than that in not-mixed microorganism, while total kjeldahl nitrogen (TKN) and total phosphorus (T-P) which indicate a degree of eutrophication were removed easily in both case. From these results, we may propose that an application of the mixed microbial population is useful to treat domestic wastewater including a great deal of organic matters.