• 제목/요약/키워드: 생물 고분자

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Review on Heavy Metal Removal Using Biopolymer (생물 고분자를 이용한 중금속 제거에 대한 고찰)

  • Jeon, Choong
    • Journal of the Korea Organic Resources Recycling Association
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    • v.16 no.2
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    • pp.38-46
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    • 2008
  • Many researchers have reported that many biopolymers making up cell walls of the microorganisms display an ion-exchange property and play a major role in the sorption of the metal ions. Such polymers derived from microbial biomass are potentially useful as biosorbent materials for recovery various metal ions in industrial applications. although synthetic polymers such as ion-exchange resins and chelating resins have been widely used as commercial sorbents. In this study, valuable and commercial biopolymers for metal removal will be introduced.

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Biopolyrner Production of Zoogloea ramigera in Batch, Fed-Batch and Continuous Culture Processes (Zoogloea ramigera의 회분식, 유가배양, 연속배양에 의한 생물고분자 생산)

  • 안대희;정윤철
    • Microbiology and Biotechnology Letters
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    • v.20 no.2
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    • pp.196-202
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    • 1992
  • Zoogloea ramigera 115 was selected for the production of viscous microbial polysaccharide for bioflocculants usage. Batch, fed-batch, and continuous culture processes were examined with regard to the high biopolymer production. Several carbon sources were tested, including glucose, lactose, molasses, and cheese whey. The C/N ratio of 90 was most effective for biopolymer production from glucose, while the C/N ratios of 30 for lactose and 60 for both molasses and cheese whey substrate gave a maximum production. Fed batch culture proved more effective to increase final biopolymer concentration than batch culture. Continuous fermentation with two stages modifying C/N ratio increased the productivity. The production rates were a maximum at dilution rate of 0.048 $hr^{-1}$ for molasses and at 0.096 $hr^{-1}$for cheese whey.

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Removal/Recovery of Heavy Metals Using Biopolymer (생물고분자를 이용한 중금속 제거/회수에 관한 연구)

  • 안대희;정윤철
    • KSBB Journal
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    • v.8 no.4
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    • pp.336-340
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    • 1993
  • Zoogloea ramigera 115, well known type of bacteria to produce slime in sewage plants, was selected for biopolymer production. The extracted biopolymer showed high uptake capacity of metals such as cadmium and zinc. Especially the fermentor broth itself showed high adsorption of metal and could be used a biosorbent without an additional separation process. Biopolymer was immobilized into beads of calcium alginate and used in a packed bed reactor for the purpose of valued metals recovery. The biopolymer showed high removal efficiencies of 80% or greater for Cu, Cd, Mn and Zn, and high stability in sorption-desorption-resorption experiments. The immobilized biopolymer systems were found to be comparable to other metal removal systems such as ion exchange resins and to be of potential industrial application value.

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Isolation of the Biodegradable Peptide Polymer-Producing Bacterial Strain and Characterization of the Polymer Produced by This Strain (Peptide계 생분해성 고분자 생산균주의 분리 및 생성 고분자의 특성)

  • 이신영;강태수김갑수유주현
    • KSBB Journal
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    • v.8 no.3
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    • pp.209-216
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    • 1993
  • For the production of biodegradable polymers from microorganisms a bacterial strain producing a biopolymer was isolated from soil. The bacteriological characteristics of this strain and physicochemical Properties of the biopolymer produced were investigated. The bacterial strain was identified as an alkalophilic Alcaligenes sp. The Purified biopolymer treated with cetylpridinium chloride and acetone was identified as an acidic biopolymer having carboxyl groups and showed strong UV absorbance (at 210nm). The biopolymer was composed of 100% glutamic acid and glutamic acid existed as $\gamma$-polyglutamic acid($\gamma$-PGA) in the form of the $\gamma$-peptide bond. The equivalent weight of this $\gamma$-PGA was estimated about 350, indicating that one acidic fraction per 2.7 residue of $\gamma$-polyglutamic acid existed. The molecular weight was $6.5{\times}10^5$ Daltons.

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Optimization of Biopolymer Production from Alkali-Tolerant Bacillus sp. (알칼리 내성 Bacillus sp.의 생물고분자 생산조건의 최적화)

  • Lee, Shin-Young;Lee, Beom-Su;Lee, Keun-Eok
    • Korean Journal of Food Science and Technology
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    • v.23 no.2
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    • pp.167-174
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    • 1991
  • Cultural conditions for the biopolymer production by an alkali tolerant Bacillus sp. isolated from soil were investigated and determination of optimal conditions was carried out by response surface method. The maximal production of biopolymer was obtained after cultivation at $30^{\circ}C$ for 36hrs in the mixture of 8% soluble starch, 0.75% yeast extract, 0.1% $NaNO_3$, 0.05% $MgSO_4\;7H_2O$ and 1% $Na_2CO_3$ adjusted to pH 10. Under these conditions, about 44 g/l of biopolymer were produced. From the results of response surface analysis, optimal condition for the production of biopolymer were obtained at stationary point with 15.16 of C/N ratio, $34.62^{\circ}C$ of temperature and 9.50 of pH. On the basis of these conditions, it was estimated that 66.84 g/l of the biopolymer could be produced.

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Changes in Rheological Properties of Culture Broth During the Biopolymer Production by Bacillus sp (Bacillus sp.에 의한 생물 고분자의 발효 중 배양액의 유변학적 특성 변화)

  • 이신영;이주하
    • KSBB Journal
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    • v.11 no.3
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    • pp.340-346
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    • 1996
  • Variations of rheological properties of culture broth during the production of biopolymer by an alkali tolerant Bacillus sp. were investigated. Correlations among the rheological characteristics of culture broth, cell growth and biopolymer production were examined. Rheology of the culture broth changed in the course of fermentation. The culture broth showed a non-Newtonian flow behavior, as the viscosity and pseudoplasticsity increased during the cultivation. The rheological parameters such as flow index, consistency index, yield stress and apparent viscosity during the cultivation were not influenced by the cell growth, but significantly related to the biopolymer synthesis. Changes in the rheological parameters of the broth were affected not only by the biopolymer concentration, but also by the progress of fermentation. Some rheological parameters showed maximum values just before the completion of biopolymer production and substrate consumption. Hence, it was shown that the rheological characteristics of the culture broth could be used as a good indicator for the detection of the progress or completion of fermentation.

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${\cdot}$ 무기 복합 고분자를 이용한 granule의 활성도 실험

  • Jeong, Hyeon-Seong;Kim, Yong-Hwan;Ryu, Jeong-Yong;Song, Bong-Geun;Lee, Sang-Il
    • 한국생물공학회:학술대회논문집
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    • 2003.04a
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    • pp.676-679
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    • 2003
  • Long time over 6 month was required to form granuler sludge, which is critically necessary for UASB reactor. By feeding both high molecular cationic polymer and anionic silica sol to conventional digestion sludge, granular sludge was obtained within 5 minutes. Succession adaptation was performed for granular sludge for 30 days. $80{\sim}90%$ COD removal efficiency was shown with granular sludge, which was comparable with that of typical UASB granular sludge.

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특집 : 극한환경재료기술 - 극저온에서의 고분자 복합재료 기술 현황

  • Eom, Mun-Gwang;Lee, Jin-U;Lee, Won-O
    • 기계와재료
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    • v.21 no.4
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    • pp.48-55
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    • 2010
  • 극저온에서 고분자 복합재료는 열전도도가 낮아 단열 특성이 탁월하고 전기절연성이 뛰어나 에너지 산업, 전기 및 전자산업, 생물공학, 의료분야, 수송산업, 우주 항공 산업 등 응용 범위가 매우 광범위하고, 산업 규모 또한 지속적으로 성장하고 있다. 향후 신재생 에너지의 저장 및 수송용으로 열전도도가 낮은 고분자 복합재에 대한 수요가 크게 증가할 것으로 예상된다. 따라서 본 고에서는 고분자 복합재료의 극저온 응용에 관한 국내외 기술동향과 수지 및 복합재 물성, 극저온에서의 특성 평가 기술 등에 대하여 소개하였다.

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The Production of Biopolymer by Zoogloea ramigera (Zoogloea ramigera에 의한 생물고분자 생산에 관한 연구)

  • 안대희;권해수정윤철
    • KSBB Journal
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    • v.7 no.3
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    • pp.166-171
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    • 1992
  • Zoogloea ramigera 115 was cultured for biopolymer production and its bioflocculant usages. Cultural conditions of the organism were examined with regard to high production of the microbial polysaccharide. The most suitable medium was found to contain glucose as a carbon source, $NaNO_3$ as a nitrogen source, and yeast extract as an organic nutrient. The initial pH of 6.0 proved to optimal. The biopolymer was extracted effectively using ultrasonication and high speed centrifugation, followed by propanol addition. Jar test results indicate that the polysaccharide produced by the organism is an effective flocculant.

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