• Title/Summary/Keyword: 부착미생물

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Microbe Adhesion and Organic Removal from Synthetic Wastewater Treatment using Polypropylene Media Modified by Ion-Assisted Reactions (이온 보조 반응에 의하여 활성화된 폴리프로필렌 담체를 이용만 합성폐수 처리시 미생물 부착 및 유기물의 제거)

  • Seon, Yong-Ho;Han, Sung;Koh, Seok-Keun
    • KSBB Journal
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    • v.17 no.3
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    • pp.235-240
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    • 2002
  • The surface of polypropylene was modified by 1 keV $Ar^+$ ion beam in an $O_2$ environment in order to enhance wettability. Contact angle of deionized water on modified polypropylene was reduced from $78^{\circ}$to $22^{\circ}$. The enhanced wettability is originated from newly formed functional groups such as ether, carbonyl, and carbonyl groups. During immersion in deionized water, the enhanced wettability has remained nearly same. After washing in water, the hydrophilic functional groups on the polymer surface have been very stable. The modified polypropylene was adopted as bio-film media to remove organics in synthetic wastewater. Microbe adhesion on the polypropylene surface was improved due to the newly formed hydrophilic groups.

Resistance of Biofilm Bacteria to Chlorination (생물막 세균의 염소소독제에 대한 내성)

  • 조재창;박성주;김상종
    • Korean Journal of Microbiology
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    • v.31 no.3
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    • pp.255-260
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    • 1993
  • The Enterobacter cloacae biofilms developed on slide glasses and galvanized-iron coupons were applied to test the attached bacterial resistance to chlorination. The chlorine resistances of biofilm bacteria grown on the slide glasses and galvanized-iron coupons were 14 and 480 times that of the suspended bacteria, respectively. The chlorine resistance of particleattached bacterial populations was 48 times that of suspended bacterial populations. The biofilm bacterial densities developed on the slide glasses and galvanized-iron coupons which were immersed in the flowing tap water for 75 days were $4.75 {\times} 10^{4}$ and $1.12 {\times} 10^5 cfu/cm^{2}$ It is concluded that main mechanisms of enteric or HPC bacterial resistance to chlorination in tap waters are bacterial attachment or . adsorption to particles or bacterial aggregations and formation of biofilms on the inner wall of distribution systems by escaped bacteria from chlorination in water treatment processes, which results in bacterial regrowth in water distribution systems.

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The Characteristic of Selective Attachment and Bioleaching for Pyrite Using Indigenous Acidophilic Bacteria at $42^{\circ}C$ ($42^{\circ}C$에서 토착호산성박테리아의 황철석 표면에 대한 선택적 부착과 용출 특성)

  • Park, Cheon-Young;Kim, Soon-Oh;Kim, Bong-Ju
    • Economic and Environmental Geology
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    • v.43 no.2
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    • pp.109-121
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    • 2010
  • The bioleaching experiment under $42^{\circ}C$ was effectively carried out to leach the more valuable element ions from the pyrite in the Gangyang mine waste. Bacteria can survive at this temperature, as indigenous acidophilic bacteria were collected in the Hatchobaru acidic hot spring, in Japan. To enhance the bacterial activity, yeast extract was added to the pyrite-leaching medium. The indigenous acidophilic bacteria appeared to be rod-shaped in the growth-medium which contained elemental sulfur and yeast extract. The rod-shaped bacteria ($0.7\times2.6\;{\mu}m$, $0.6\times7\;{\mu}m$, $0.8\times5\;{\mu}m$ and $0.7\times8.4\;{\mu}m$) were attached to the pyrite surface. The colonies of the rod-shaped bacteria were selectively attached to the surroundings of a hexagonal cavity and the inner wall of the hexagonal cavity, which developed on a pyrite surface. Filament-shaped bacteria ranging from $4.92\;{\mu}m$ to $10.0\;{\mu}m$ in length were subsequently attached to the surrounding cracks and inner wall of the cracks on the pyrite surface. In the XRD analysis, the intensity of (111), (311), (222) and (320) plane on the bacteria pyrite sample relatively decreased in plane on the control pyrite sample, whereas the intensity of (200), (210) and (211) increased in these samples. The microbiological leaching content of Fe ions was found to be 3.4 times higher than that of the chemical leaching content. As for the Zn, microbiological leaching content, it was 2 times higher than the chemical leaching content. The results of XRD analysis for the bioleaching of pyrite indicated that the indigenous acidophilic bacteria are selectively attacked on the pyrite specific plane. It is expected that the more valuable element ions can be leached out from the mine waste, if the temperature is increased in future bioleaching experiments.

Properties of Lipases and Palm Oil Assimilating Patterns in Palm Oil Fermentation (팜유발효에 있어서 리파제의 특성과 팜유자화와의 관계)

  • Koh, Jeong-Sam
    • Microbiology and Biotechnology Letters
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    • v.14 no.6
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    • pp.473-478
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    • 1986
  • In order to elucidate the patterns of natural oils and fats assimilation by microorganisms, lipases properties of yeast and bacterium strain, Torulopsis candia Y-128 and Acinetobacter calcoaceticus KB-2, which could assimilate palm oil efficiently, were investigated. T candida Y-128 attached palm oil droplets directly, and assimilated unsaturated fatty acid more easily than saturated acids liberated by the action of its lipase. Lipase of A. calcoaceticus KB-2 was extracellular and appeared quickly from the beginning of log phase of growth, whereas lipase of f candida Y-128 appealed intracellular. The lipases of two strains seem to be only enough to utilize the lipid materials for their own growth, without accumulation of lipases in the culture broth. Lipases of the strains have 1 (3-)-positional specificities on triglycerides. The patterns of palm oil assimilation showed that two strains attached droplets of lipid materials directly and split off fatty acids at 1 (3-)-position of triglycerides first, and assimilated the reaction products via fatty acids metabolic pathway.

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Biological Hydrogen Production from Mixed Waste in a Polyurethane Foam-sequencing Batch Reactor (혼합폐기물 및 폴리우레탄 담체를 충전한 연속회분식공정을 이용한 생물학적 수소생산)

  • Lee, Jung-Yeol;Wee, Daehyun;Cho, Kyung-Suk
    • Microbiology and Biotechnology Letters
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    • v.42 no.3
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    • pp.307-311
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    • 2014
  • This study investigated the effects of polyurethane foam on continuous hydrogen production from mixed wastes. Molasses was co-fermented with non-pretreated sewage sludge in a sequencing batch reactor. The results indicated that the addition of polyurethane foams as a microbial carrier in the reactor mitigated biomass loss at HRT 12 h, while most of the biomass was washed out during the operation period with no carrier. There was a stable hydrogen production rate of $0.4L-H_2/l/d$ in the carrier-sequencing batch reactor. Suspended biomass in the carrier-reactor indicated it possessed the highest specific hydrogen production rate ($241{\pm}4ml-H_2/g\;VSS/d$) when compared to that of biomass on the surface ($133{\pm}10ml-H_2/g\;VSS/d$) or inner carrier ($95{\pm}14ml-H_2/g\;VSS/d$).

The Characteristics of Microbial Population Community Structure by an Addition of External Carbon Source in BNR Process for Low C/N Ratio Sewage Treatment (낮은 C/N비 하수의 외부 탄소원 주입에 따른 생물학적 질소제거에서 미생물 군집 구조특성)

  • Yoon, Cho-Hee
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.8
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    • pp.831-838
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    • 2008
  • This study investigated the characteristics of nitrogen removal and microbial community in a lab-scale A$_2$O activated sludge process filled with the fluidized media at an aerebic basin. The change of microbial community was monitored based on quinone profiles of activated sludge according to feeding sewage with/without external carbon source. Low C/N ratio(COD$_{Cr}$/T-N of 1.24) sewage was fed. The obtained results from this study were as follows; Ubiquinone(UQ) in the influent was in the descending order of UQ-8, UQ-10 and UQ-9. Menaquinone(MK) was simpler and much less than UQ. The ratio of UQ/MK was less than 0.41 and the dissimilarity was below 0.26. Without an external carbon source, MK-8 was the dominant species and there were 3 kinds of quinone species and low DQ and EQ values in an anaerobic basin. The ratio of UQ/MK increased to 2.3 in an anoxic basin. In an oxic basin, UQ-7 and UQ-8 were the dominant species. UQ-7 was dominating in suspended microorganisms, while UQ-8 was in attached microorganisms. With an external carbon source addition, MK-8 decreased but UQ-8 increased in an anaerobic basin. So did quinone species, DQ and EQ values. There was also a change in an anoxic basin with the improvement of denitrification. UQ-8 decreased instead, MK-7 and MK-8 increased. UQ/MK ratio decreased 2.3 to 1.4. It means that the dominant species change from Pseudomonas sp. to Bacillus and Micrococcus species. etc. In an oxic basin, UQ-8 replaced UQ-7 in suspended microorganisms and UQ-10 replaced UQ-8 in attached microbials. This seemed related with the growth of Nitrosomonas and Nitrobactor species.

Effects of Non-ionic Surfactant Tween 80 on the in vitro Gas Production, Dry Matter Digestibility, Enzyme Activity and Microbial Growth Rate by Rumen Mixed Microorganisms (비이온성 계면활성제 Tween 80의 첨가가 반추위 혼합 미생물에 의한 in vitro 가스발생량, 건물소화율, 효소활력 및 미생물 성장율에 미치는 영향)

  • Lee, Shin-Ja;Kim, Wan-Young;Moon, Yea-Hwang;Kim, Hyeon-Shup;Kim, Kyoung-Hoon;Ha, Jong-Kyu;Lee, Sung-Sil
    • Journal of Life Science
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    • v.17 no.12
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    • pp.1660-1668
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    • 2007
  • The non-ionic surfactant (NIS) Tween 80 was evaluated for its ability to influence invitro cumulative gas production, dry matter digestibility, cellulolytic enzyme activities, anaerobic microbial growth rates, and adhesion to substrates by mixed rumen microorganisms on rice straw, alfalfa hay, cellulose filter paper and tall fescue hay. The addition of NIS Tween 80 at a level of 0.05% increased significantly (P<0.05) in vitro DM digestibility, cumulative gas production, microbial growth rate and cellulolytic enzyme activity from all of substrates used in this study. In vitro cumulative gas production from the NIS-treated substrates; rice straw, alfalfa hay, filter paper and tall fescue hay was significantly (P<0.05) improved by 274.8, 235.2, 231.1 and 719.5% compared with the control, when substrates were incubated for 48 hr in vitro. The addition of 0.05% NIS Tween 80 to cultures growing on alfalfa hay resulted in a significant increase in CMCase (38.1%), xylanase (121.4%), Avicelase (not changed) and amylase (38.2%) activities after 36 h incubation. These results indicated that the addition of 0.05% Tween 80 could greatly stimulate the release of some kinds of cellulolytic enzymes without decreasing cell growth rate in contrast to trends reported with aerobic microorganism. Our SEM observation showed that NIS Tween. 80 did not influence the microbial adhesion to substrates used in the study. Present data clearly show that improved gas production, DM digestibility and cellulolytic enzyme activity by Tween 80 is not due to increased bacterial adhesion on the substrates.

A Study on the TCE/PCE Removal Using Biofiltration and the Microbial Communities Variation Using DGGE Method (생물 여과를 이용한 TCE/PCE제거 및 DGGE법을 이용한 관련미생물 군집변화에 관한 연구)

  • Kim, Eung-In;Park, Ok-Hyun;Jung, In-Gyung
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.11
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    • pp.1161-1169
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    • 2008
  • The removals of TCE and PCE vapor with or without a supply of toluene as a primary substrate were compared in a biofiltration process, and the variations of microbial communities associated with the removal were also investigated. As a result of investigations on the removals of TCE/PCE in a biofilter B within which TCE/PCE-acclimated sludge was attached on the surface of media without a supply of primary substrate, and those in another biofilter A where toluene-acclimated sludge was attached with a supply of toluene as a primary substrate, followings were found: (i) parts of microbes responsible to the decomposition of toluene vapor participate in the removal of chlorinated VOCs such as TCE and PCE, and (ii) effective biological removals of TCE and PCE vapor do not necessarily need cometabolism. Sequencing of 16S rDNA obtained from the band profile of DGGE (Denaturating Gradient Gel Electrophoresis), it was confirmed that: (i) uncultured alpha proteobacterium, uncultured Desulfitobacterium, uncultured Rhodobacteraceae bacterium, Cupriavidus necator, and Pseudomonas putida were found to be toluene-decomposing microbes, (ii) alpha proteobacterium HTCC396 is a TCE-removing microbe, (iii) Desulfitobacterium sp. is a PCE-decomposing microbe, and (iv) particularly, uncultured Desulfitobacterium sp. is probably a microbe decomposable not only toluene but also various chlorinated VOC vapor including TCE and PCE.

The adsorption pattern of protein to the soft contact lens and its effect on the visible light transmission and the contact angle (소프트콘택트렌즈의 단백질 부착 양상 및 가시광선투과도와 접촉각에 미치는 영향)

  • Park, Mijung;Kwon, Mi Jeong;Lee, Sun Hee;Kim, Daesoo
    • Journal of Korean Ophthalmic Optics Society
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    • v.9 no.1
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    • pp.53-68
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    • 2004
  • Protein deposit buildup on soft contact lenses(SCLs) is responsible for discomfort, optical defects and is even damaging to the eye. To better understand protein deposit formation on SCL, we investigated the pattern of protein attachment on patient-worn SCLs and the effect of the protein on the contact angle of SCLs and the transmission of visible light. This study used data from a clinical trial where subjects wore either daily-wear SCL(etafilcon A, N=40) for various period up to 14 days, or extended-wear SCL(balafilcon A, N=40) for 8 h day or night. The adsorption of protein in daily-wear SCLs was significantly increased in patient-worn time-dependent manner although the lenses were cleaned everyday by using the multi-purpose SCL solution. After 2 weeks wearing, the protein on the SCL influenced the contact angle of the lenses. Furthermore, the transmission of visible light of the lenses decreased up to almost 7%. Extended-wear SCLs worn during the closed eye condition were found to deposit significantly more protein than SCLs worn during the open eye condition. The amounts of protein adsorbed both after daily SCL wear and after overnight SCL wear were not affected the contact angle and the transmission of visible light of the lenses. The protein deposit buildup on SCL related to the corneal temperature and pH of tear fluid.

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대기압 플라즈마의 바이오필름 제거 효과의 화학적 분석

  • Park, Ju-Yeong;Park, Sang-Hu;Kim, Gi-Jung;Choe, Won-Ho
    • Proceedings of the Korean Vacuum Society Conference
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    • 2016.02a
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    • pp.203.2-203.2
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    • 2016
  • 미생물이 스스로 생성한 고분자 물질에 싸이며 군집체를 형성한 바이오필름은 고체 표면에 부착되며 우리 생활 속에 다양한 형태로 발견할 수 있다. 바이오필름은 미생물에 적합하지 않은 외부 환경으로부터 미생물 스스로 보호하는 기능을 하며, 형성된 바이오필름은 오랜 기간 동안 생존하여 살균제나 항생제로부터 저항성을 가져 살균과정에서 제거되지 않고 2차오염을 야기할 수 있어 식품 가공 기계 및 수도관, 의료기기 등에 형성되었을 경우 식품 오염, 상처 감염 등의 원인이 된다. 이 때문에 위생과 바이오필름의 상관관계를 인지하고 이를 제어하기 위한 연구가 여러 방법으로 진행되고 있다. 대표적인 방법으로는 천연 향균제 개발, 쿼럼 센싱(Quoroum sensing)과 같이 미생물의 신호전달 체계를 차단하는 물질 개발 및 플라즈마 처리 등이 있다. 본 연구에서는 격자형식의 유전장벽방전(DBD) 형식의 플라즈마 소스를 개발하여 바이오필름의 효과적인 제어 가능성을 확인하고, 제어 방식의 관계를 파악하였다. 플라즈마 처리 대상의 화학적 분석을 위하여 유기물질 등을 사용해 플라즈마 처리수 내 화학물질 분석 시스템을 구축하여 이를 기반으로 플라즈마로 생성된 HNO2, NO2-, H2O2 등의 화학종이 가지는 바이오필름 제어 관계를 살펴보았으며, 화학적 방법인 제어효과와 비교하여 플라즈마의 바이오필름 제어 특성에 대해 살펴보았다. 본 발표에서 플라즈마의 바이오필름 제어효과에 대한 분석에 대해 더 자세한 결과가 발표될 예정이다.

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