• Title/Summary/Keyword: 미생물(微生物)

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Mathematical Simulation for the Prediction of the Shelf Life of Tofu Packaged in a Polyethylene Container (폴리에틸렌 필름으로 포장된 두부의 보관수명 예측을 위한 수치모사)

  • Kim, Jai Neung;Rim, Byung-O;Shon, Tae-Won;Chung, Gui-Yung
    • Applied Chemistry for Engineering
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    • v.9 no.6
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    • pp.889-893
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    • 1998
  • In this research, mathematical models for predicting the shelf life of packaged tofu in a polyethylene container were developed. Transfer of oxygen in air through the package and then diffusion of oxygen into the filled water and the tofu with the simultaneous oxygen consumption by micoorganisms were studied. The results of simulation showed that the increase of microorganisms in the filled water was more than that in tofu. As a result, it turns out that the shelf life of packaged tofu was not determined by the number of microorganisms in the tofu, but by that in the filled water. Additionally, the effects of physical properties of packaging material and packaged materials, such as the oxygen permeability of packaging material, oxygen diffusion coefficient and the initial oxygen concentration in filled water, and the depth of the filled water, on the shelf life of packaged tofu, were observed.

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The dyeability of the heat resistant and biodegradable polyester with the variation of dyeing temperature (염색온도에 따른 고내열 생분해성 폴리에스테르계 섬유의 염색성)

  • Kim, Moon-Joung;Kim, Jong-Hoon;Park, Sung-Yoon
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2011.03a
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    • pp.85-85
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    • 2011
  • 화학적 혹은 생물학적인 방법으로 합성된 생분해성 고분자(biodegradable polymers)는 환경 문제와 인간의 생명 유지와 같은 인간 생활과 밀접한 관계가 있는 적용 분야로 인해 많은 관심을 받고 있으며, 국내 플라스틱의 폐기량만 해도 2003년을 기준으로 연간 4,000톤을 쉽게 넘고 있고 재활용되는 양은 전체의 1/3 수준이며, 나머지 2/3는 소각되거나 매립되고 있다. 폴리에스테르계 생분해성 섬유는 "미생물이 분비하는 효소로, 분해 가능한 화학합성 섬유"로서, 미생물이 분비하는 가수분해 효소에 의해 고분자 쇄가 절단, 저분자량 화합물이 돼 미생물의 체내로 흡수되며, 이것이 미생물의 체내에서 효소작용에 의해 산화탄소와 물로 분해되는 섬유로 정의된다. 생분해성 고분자 중 화학합성 고분자인 지방족 폴리에스테르계 생분해성 고분자는 특히 환경 산업으로부터 많은 관심을 받고 있으며, 이러한 결정성 폴리에스테르계 고분자의 물성은 고분자의 결정화도 뿐만 아니라, 압력, 온도 등에 의해서 변할 수 있는 결정 구조에 의해 크게 영향을 받는다. 생분해성 섬유는 실용화가 이미 시작됐고, 다용도화와 수요 확대를 위해 많은 연구소와 대학, 기업들이 연구개발을 진행하고 있으며, 향후 석유자원이 고갈된다는 것은 명백한 사실이므로 이에 따라 화석자원의 절약과 유효 이용을 위해서라도 바이오 베이스 폴리머를 주원료로 한생분해성 섬유의 개발은 매우 중요한 의미를 갖는다. 본 연구에서는 합성섬유 중에서 75%의 비중을 차지하는 폴리에스테르를 대체 가능한 고내열생분해성 폴리에스테르계 직물을 제조하여 범용 폴리에스테르와 염색온도에 대한 염색성을 고찰하였다. 염색온도($100^{\circ}C$, $110^{\circ}C$, $120^{\circ}C$, $130^{\circ}C$)별, 3종의 분산염료의 농도(0.25,0.5,1.0,2.0%o.w.f)별 Build-up성 및 균염성을 비교하였으며, 염색 시료의 견뢰도를 평가하였다.

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Antibacterial Activity by Lactobacillus bulgaricus SP5 against Pathogenic Bacteria (병원성 미생물에 대한 Lactobacillus bulgaricus SP5의 항균활성)

  • Kim, Woan-Sub;Yang, A-Reum
    • Korean Journal of Organic Agriculture
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    • v.24 no.3
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    • pp.497-510
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    • 2016
  • This study was carried out to get basic resources for the industrial use of Lactobacillus bulgaricus SP5. The antibacterial activity of the supernatant obtained from Lactobacillus bulgaricus SP5 was tested against the pathogenic bacteria such as Escherichia coli KCCM 11234, Salmonella enteritidis KCCM 3313, Salmonella enteritidis KCCM 12021, and Salmonella typhimurium KCCM 40253. The supernatant of L. bulgaricus SP5 showed antibacterial activity against tested pathogenic bacteria. The antibacterial activity was examined after adjusting pH and heat treatment of supernatant. Heat treatment of supernatant had antibacterial activity against pathogenic bacteria at all temperature. However, pH changes showed no antibacterial activity. Antibacterial activity of the supernatant was confirmed to be due to organic acids (lactic, acetic, phosphoric, succinic, pyroglutamic, citric, malic, and formic acid).

Effects of Culture Condition on Solubilization of Coal by Microorganisms (배양 조건의 변화가 미생물에 의한 석탄의 액화에 미치는 영향)

  • 이현호;신현재양지원
    • KSBB Journal
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    • v.11 no.4
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    • pp.462-469
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    • 1996
  • Biosolubilization of an Australian lignite was investigated by using Streptomyces viridosporus and Poria cocos. In order to solubilize coals effectively they were pretreated by nitric acid both in surface and liquid cultures. The optimum growth pH was 7.5 for S. viridosporus and 4.5 for P. cocos. The effects of various carbon, nitrogen and metal sources on overall solubilization were also studied. Solubility increased with the addition of urea for S. viridosporus, and peptone and tryptone for P. cocos. However carbon and metal sources had little or negative effects on solubilization. Maximum amount of coal solubilized was 85%(w/w) in a batch fermentation culture. Extracellular materials produced by micro-organism were found to be responsible for the coal solubilization. Approximately 70 to 80% of coal solubilization was determined to be the result of non-enzymatic reactions, and the rest to be the result of enzymatic reactions. Characteristics of the solubilized coal were compared with those of original coal and pretreated coal by the approximate and ultimate composition analysis, and IR-spectrum analysis. The spectroscopic results showed that the mechanism of coal solubilization was caused by continuous oxidation.

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Composting Characteristics of Food Waste - Poultry Manure Mixture Inoculated with Effective Microorganisms (유용미생물처리 음식물쓰레기와 계분 혼합물 퇴비화 특성)

  • Hong, Ji-Hyung;Park, Keum-Joo
    • Journal of Animal Environmental Science
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    • v.15 no.1
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    • pp.59-68
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    • 2009
  • This study investigated the evaluation of maturity, stability, nutrient and heavy metal from rotating drum composter of food waste amended with poultry manure composting inoculated with effective microorganisms(EM). Composting were performed for the first, drying reactor($15m^3$) 3 hours and the second, composting reactor($30m^3$) 24 hours, and parameters monitored this period included moisture content, NaCl, pH, electrical conductivity(EC), C/N ratio, organic matter(OM), nutrient content and heavy metal. Changes in compost temperature during composting were maintained constantly in the range of $60{\sim}80^{\circ}C$ using firewood boiler(450 MJ/h). We examined physicochemical parameters and heavy metals in order to assess their effectiveness as stability and maturity, nutrient and harmful indicators such as seed germination rate<60%, potassium 1>%, dm and NaCl>1%, dm at the end of the final compost. The finished compost obtained after decomposition phase at the end of the 2nd composter could not be utilized for land improvement or reclamation.

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Microbiological and Chemical Analyses of Paldang Lake Water (팔당호 수질의 미생물학 및 화학적 분석)

  • 김상진
    • Korean Journal of Microbiology
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    • v.31 no.1
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    • pp.85-92
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    • 1993
  • To investigate the eutrophication process and pollution characteristics in Paldang Lake, Korea, water and sediment samples were analysed during July 1986~June 1987. The transparency, chlorophyll-a concentration, dissolved oxygen concentration and biochemical oxygen demand in Paldang Lake ranged 0.5~3 m, 3-17 ${\mu}gI^{-1}$, 7.2~12.3 ppm and 0.5~2.3 ppm, respectively. Heterotrophic bacterial number fluctuated seasonally between $3.0{\times}10^{3}/ml and 5.0{\times}10^{5}/ml$ in the water column and between $2{\times}10^{6} and 1{\times}10^{8}$ in the I g dry sediment. Water turbulence and water quality of up-stream seem to play important roles for determining the water quality in Paldang Lake particularly where the hydraulic retention time is so short as about 5 days. The present water quality in Paldang Lake according to the criteria of lake water quality was shown to be between mesotrophic and eutrophic state by secchi depth(O.5 ~ 3 m) and chlorophyll-a concentration (3~17 ${\mu}gI^{-1}$). The distribution of coliform bacteria showed that the pollution was mainly due to the human activities in this area and it is needed to establish countmeasurements for the problems.

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Characterization of Uranium Removal and Mineralization by Bacteria in Deep Underground, Korea Atomic Energy Research Institute (KAERI) (한국원자력연구원 지하심부 미생물에 의한 용존우라늄 제거 및 광물화 특성)

  • Oh, Jong-Min;Lee, Seung-Yeop;Baik, Min-Hoon;Roh, Yul
    • Journal of the Mineralogical Society of Korea
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    • v.23 no.2
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    • pp.107-115
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    • 2010
  • Removal and mineralization of dissolved uranium by bacteria in KURT (KAERI Underground Research Tunnel), Korea Atomic Energy Research Institute (KAERI) was investigated. Two different bacteria, IRB (iron-reducing bacteria) and SRB (sulfate-reducing bacteria) was used, and minerals formed by these bacteria were characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Compared to uranyl ions, ferric ions were preferentially reduced by IRB, showing that there is no significant reduction and removal of uranium. However, uranium concentration considerably decreased by addition of Mn(II). Results show that a sulfide mineral such as mackinawite (FeS) is formed by SRB respiration through combination of Fe(II) and S without manganese sulfide formation. In the presence of Mn(II), however, uranium is removed effectively, suggesting that the sorption and incorporation of uranium could be affected by Mn(II) onto the sulide minerals.

A Study on the Mechanism of Soil Improvement Using Environment-friendly Organic Acid Material (친환경 유기산 재료를 활용한 지반개량 메커니즘에 관한 연구)

  • Lee, Jong-Hwi;Jung, Jae-Won;Han, Yun-Su;Chun, Byung-Sik
    • Journal of the Korean Geotechnical Society
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    • v.29 no.2
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    • pp.23-34
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    • 2013
  • An organic acid material, which can be manufactured by plants extraction, encourages microbe proliferation over time. Microbial activity, which is affected by organic acid, encourages accelerating consolidation with biochemical penetration; soil particles are compacted by microbes and pore water is dissipated quickly. Additionally, $CaCO_3$ for cementation was made by proliferating microbes. Accordingly, tests were conducted to investigate the unconfined compressive strength and permeability of soil samples aged with and without an organic acid. In the 96 days of aging, the strength was generally 1.5~2.5 times greater than those without an organic acid material and permeability was definitely decreased to 74.2~93.1%. SEM analysis showed the change of pore structure and the change of the total bacteria counts revealed the activity of microbes reflecting the engineering characteristics and this material would be an environment-friendly for soil improvement.

Phytoremediation Study of Disel Contaminated Soil by Indigenous Poplar Tree (국내 자생 포플러나무에 의한 디젤오염토양 정화특성 연구)

  • Chaog Soon-Woong
    • Journal of Soil and Groundwater Environment
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    • v.11 no.5
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    • pp.51-58
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    • 2006
  • In this study, uptake and toxicity of disel (TPH) by poplar specie, $P.\;nigra{\times}P.\;maximowiczii$ were assessed in laboratory soil column experiments. Poplar cuttings were grown for 2 months and exposed to various concentration (0, 200, 500, 1000, 2000 mg/kg) of disel for a period of 60 days. For disel removal experiments, disel was effectively removed in the range of lower concentration. but, the removal rate of disel was rapidly decreased as increasing initial disel concentrations. For the this reason, toxicity effetcs were evaluated by measuring in poplar cutting mass variation and monitoring transpiration. Exposure on higher disel concentration resulted in decrease of biomass and transpiration accompanied by chlorosis and abscission, indicating toxic effect of disel on the poplar tree. And also, we have observed that both removal efficiency of disel and the microbial activity were higher at the bottom of the soil column. It was suggested that the plant formed the root zone at contaminated soil, stimulated microbial activity by plant root exudates, and played an important role in enhanced biodegradation of disel.

Plant Growth-promoting Bacteria for Remediation of Heavy Metal Contaminated Soil: Characteristics, Application and Prospects (중금속 오염 토양 정화를 위한 식물생장촉진세균: 특성, 활용 및 전망)

  • Cho, Kyung-Suk
    • Microbiology and Biotechnology Letters
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    • v.48 no.4
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    • pp.399-422
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    • 2020
  • Remediating soils contaminated with heavy metals due to urbanization and industrialization is very important not only for human health but also for ecosystem sustainability. Of the available remediation technologies for heavy metal-contaminated soils, phytoremediation is a relatively low-cost environment-friendly technology which preserves biodiversity and soil fertility. The application of plant growth-promoting bacteria (PGPB) during the phytoremediation of heavy metal-contaminated soils can enhance plant growth against heavy metal toxicity and increase heavy metal removal efficiency. In this study, the sources of heavy metals that have adverse effects on microorganisms, plants, and humans, and the plant growth-promoting traits of PGPB are addressed and the research trends of PGPB-assisted phytoremediation over the last 10 years are summarized. In addition, the effects of environmental factors and PGPB inoculation methods on the performance of PGPB-assisted phytoremediation are discussed. For the innovation of PGPB-assisted phytoremediation, it is necessary to understand the behavior of PGPB and the interactions among plant, PGPB, and indigenous microorganisms in the field.