• Title/Summary/Keyword: bioflocculant production

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Study on the Bioflocculant by Bacillus megaterium. #2 Characteristic of Production Condition for Bioflocculant by Bacillus megaterium (Bacillus megaterium 이 생산하는 응집제에 관하여 제 2보 Bacillus megaterium에 의한 응집제 생산특성)

  • 김도영
    • The Korean Journal of Food And Nutrition
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    • v.12 no.3
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    • pp.240-245
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    • 1999
  • The purpose of this study was to develop the new microbial bioflocculant available in a food and fer-mentation industal. This study was reported the results of the composition for optimum culture medium and elemental characteristic of crude purification bioflocculant following the previous report(I). The maximum production of the flocculant from Bacillus megaterium was observated in the culture medium containing 2% sucrose 0.3% NaNO3 0.01% tryptone 0.01% beef extract 0.05% MgSO4 ·7 H2O 0.005% CaCO3 Addition of the sucrose as carbon sources and inorganic salt such as MgSO4, CaCO3 significantly increased the production of flocculant more than nitrogen sources. In the result of color reaction of the crude purified bioflocculant it was investgated that anthrone was positive and benedict burette and nin-hydrin was negative. These result were indicated that the flocculant produced from Bacillus megaterium was a kind of exopolysaccharide.

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Production Characteristics of Bioflocculant by Achromobacter sp. JY-66 (Achromobacter sp. YJ-66에 의한 생물응집제의 생산 특성)

  • 우정숙;정준영;정만재;도대홍
    • Microbiology and Biotechnology Letters
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    • v.27 no.6
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    • pp.433-439
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    • 1999
  • Among microorganisms isolated from soil, YJ-66 strain was the best producer of flocculant and was examined for flocculating ability in the active carbon and CaCl2. YJ-66 strain was the best producer of flocculant and was examined for flocculating ability in the active carbon and CaCl2. YJ-66 strain was identified to be a species belonging to the genus Achromobacter. The optimum culture condition for production of bioflocculant with the isolated strain was for 72hrs at 3$0^{\circ}C$ and pH7.5. The favorable carbon, nitrogen sources and inorganic salts for production of the flocculant were sucrose, peptone, MgSO4 and KH2PO4, whose optimal concentrations were 2%. 0.067%, 0.1% and 0.1%, respectively. Addition of the carbon and inorganic salts significantly increased the production of flocculant. Compositions of optimized culture medium for bioflocculant production by Achromobacter sp. YJ-66 were 2% sucrose, 0.067% peptone, 0.1% MgSO4 and 0.1% KH2PO4 in initial pH 7.5 during at 3$0^{\circ}C$ for 72hrs.

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Production and Rheological Properties of Bioflocculant Produced by Bacillus sp. DP-152

  • SUH, HYUN-HYO;SEONG-HOON MOON;HEE-SIK KIM;HYOUNG-KAB KIM;GEE-ILL JUN;HYUN-GEOUN PARK;DAE-OOK KANG;HEE-MOCK OH;BYUNG-DAE YOON
    • Journal of Microbiology and Biotechnology
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    • v.8 no.6
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    • pp.618-624
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    • 1998
  • The culture conditions for Bacillus sp. DP-152 in the flask were investigated for the production of polysaccharide locculant, DP-152. The optimum pH and temperature for the locculant production were 8.0 and $30^{\circ}C$, respectively. The avorable substrates for flocculant production were soluble tarch and ammonium nitrate. The medium composition was optimized as follows: 30 g soluble starch, 0.75 g $NH_4NO_3,\; 2.0g\; K_2\;HPO_4,\; 0.1\; g KH_2PO_4,\; 0.2g\; MgSO_4.\; 7H_2O,\; and\; 0.2g\; MnSO_4~5H_2O$ in 11 of distilled water. Under this optimized condition, flocculating activity has been improved 4-fold compared with that of the basal medium. In the culture flask, the highest flocculating activity was obtained after 70 h of cultivation and the amount of bioflocculant DP-152 yielded was 12.4 g/$\ell$. The solution of bioflocculant DP-152 showed non-Newtonian characteristics. Bioflocculant DP-152 exhibited apparently higher viscosity at all concentrations compared to that of zooglan (from Zoogloea ramigera), and it was stable over a wide range of temperatures and pHs.

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Some Cultural Characteristics of Bacillus megaterium YWO-5 Producing Bioflocculant for Wastewater Treatment (폐수처리용 생물응집제를 생산하는 Bacillus megaterium YWO-5의 배양특성)

  • Seo, Ho-Chan;Yeo, Sung-Jee;Cho, Hong-Yeon;Yang, Han-Chul
    • Microbiology and Biotechnology Letters
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    • v.27 no.1
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    • pp.80-85
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    • 1999
  • To develop bioflocculant for wastewater treatment, about 60 type culture strains and 450 strains isolated from natural sources were examined for screening their ability to flocculate the swine wastewater. Among them, YWO-5 showed the highest activity for NTU removal efficiency and was identified as Bacillus megaterium according to the cultural, morphological and physiological properties. The maximum production of the flocculant was achieved in culture medium containing 2% glucose, 0.05% soytone, 0.01% $CaCl_2$, 0.05% $KH_2PO_4$, and 0.05% yeast extract with initial pH 6.5 when cultured with rotary shaker controlled at 20$^{\circ}C$ and 150 rpm. With jar fermentor, the maximum production was reached to NTU removal efficiency of 93% after 3 days under the optimal conditions. The bioflocculant produced by Bacillus megaterium YWO-5 was effective on various suspended solids and organic wastewaters.

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Lactobacillus jensenii YW-33이 생산하는 다당류성 생물응집제 및 생산조건

  • Seo, Ho-Chan;Choi, Yang-Mun;Cho, Hong-Yon;Yang, Han-Chul
    • Microbiology and Biotechnology Letters
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    • v.25 no.3
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    • pp.328-334
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    • 1997
  • A bioflocculant producing bacterium for wastewater treatment was isolated and identified as Lactobacillus jensenii. The bioflocculant was supposed as a polysaccharide. Lactobacillus jensenii YW-33 produced the flocculant with highest activity in the medium composed of 2% sucrose, 0.05% tryptone, 0.5% yeast extract, 0.01% K$_{2}$HPO$_{4}$, 0.01% KH$_{2}$PO$_{4}$, 0.01% NaCl, 0.005% MnSO$_{4}$, 5H$_{2}$O and 0.2% Tween 80. The optimal culture pH and temperature were 7.0 and 25$\circ$C, respectively. In the time course of production with jar fermentor, the productivity of the flocculant was increased in proportion to the cell growth and the cultivation time for maximum production was 24 hrs, showing flocculating activity of 1,130 units per ml.

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Bioflocculant production from Bacillus sp. A56 (Bacillus sp. A56을 이용한 응집제 생산)

  • 서현효;이문호;김희식;박찬선;윤병대
    • Microbiology and Biotechnology Letters
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    • v.21 no.5
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    • pp.486-493
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    • 1993
  • A gram(+) bacteria that produced microbial flocculant was isolated from soil and classified as a Bacillus species and named as Bacillus sp. A56. The culture conditions of the strain for fluocculant production were studied in a shake flask. Optimum temperature and initial pH for flcculant production were 30C and 6.5, respectively. The optimized medium has gollowing composition: glucose 20g/l, NH4NO3 0.5g/l, K2HPO4 1.0g/l, KH2PO4 0.8g/l, MgSO4.7H2O 0.2g/l, MnSO4.4-6H2O 0.3g/l, CaCO3 0.5g/l, yeast extract 0.3g/l, tryptone 0.3g/l in tap water.

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Isolation of Bioflocculant-Producing Microorganism and Its Culture Characteristics (응집제 생산균주의 분리 및 배양특성)

  • 이태호;이순호;권기석;이재동;이문호;오희목;윤병대
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.5
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    • pp.790-795
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    • 1995
  • Flocculant-producing microorganisms were isolated from soil samples using kaoline as the flocculating test material. One strain that had high flocculating activity among them was selected and identified as Arcuadendron sp. TS-49. The favorable medium for production of the flocculant was 3% glucose, 0.2% yeast extract, 0.1% $NH_4Cl$, 0.01% $MgSO_4$, and 0.05% $MnSO_4$ in 150ml of T.W. with initial pH 7.0.The optimum culture temperature and pH were $30^{\circ}C$ and pH 7.0, respectively. The flocculant activity was observed most highly after 4 to 5 days of cultivation at the optimum condition and decreased significantly with the lapse of cultivation time. The flocculant was produced constituently and seemed to be degraded for ressimilation during cultivation. The productivity achieved by this system was about ten-fold higher than that of scrrening mediuim. This bioflocculant flocculated all tested solids, including various microorganisms and organic/inorganic compounds. Several qualitative analyses of the bioflocculant showed that it was a kind of glycoprotein containing sugars and protein.

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Application of extracellular polymeric substances (EPSs)-bioflocculant for recovery of microalgae (미세조류 분리/회수를 위한 세포외 고분자물질 생물 응집제 활용)

  • Choi, Ohkyung;Dong, Dandan;Kim, Jongrack;Maeng, Sung Kyu;Kim, Keugtae;Lee, Jae Woo
    • Journal of Korean Society of Water and Wastewater
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    • v.35 no.1
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    • pp.63-69
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    • 2021
  • Microalgae are primary producers of aquatic ecosystems, securing biodiversity and health of the ecosystem and contributing to reducing the impact of climate change through carbon dioxide fixation. Also, they are useful biomass that can be used as biological resources for producing valuable industrial products. However, harvesting process, which is the separation of microalgal biomass from mixed liquor, is an important bottleneck in use of valorization of microalgae as a bioresource accounting for 20 to 30% of the total production cost. This study investigates the applicability of sewage sludge-derived extracellular polymeric substance (EPS) as bioflucculant for harvesting microalgae. We compared the flocculation characteristics of microalgae using EPSs extracted from sewage sludge by three methods. The flocculation efficiency of microalgae is closely related to the carbohydrate and protein concentrations of EPS. Heat-extracted EPS contains the highest carbohydrate and protein concentrations and can be a best-suited bioflocculant for microalgae recovery with 87.2% flocculation efficiency. Injection of bioflocculant improved the flocculation efficiency of all three different algal strains, Chlorella Vulgaris, Chlamydomonas Asymmetrica, Scenedesmus sp., however the improvement was more significant when it was used for flocculation of Chlamydomonas Asymmetrica with flagella.

Optimization of Bioflocculant Production Conditions for Organic Wastewater Treatment with Aeromonas hydrophila KH-54 (Aeromonas hydrophila KH-54가 분비하는 유기폐수처리용 생물응집제 생산조건의 최적화)

  • Seo, Ho-Chan;Lee, Jung-Suk;Yun, Zu-Whan;Yi, Yun-Seok;Cho, Hong-Yon
    • Applied Biological Chemistry
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    • v.41 no.6
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    • pp.465-470
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    • 1998
  • For the need of bio-degradable flocculant in stage of wastewater treatment, some cultural conditions of bioflocculant production were optimized with Aeromonas hydrophila KH-54. About 260 strains of type culture and bacteria isolated from marsh, pond, activated sludge, etc were examined for their ability to flocculate kaolin particles and swine wastewater. Among them, KH-54 showed the highest flocculating activity and was identified as Aeromonas hydrophila according to the cultural, morphological and physiological properties. The maximum production of the flocculant secreted by Aeromonas hydrophila KH-54 was observed in culture medium containing 2.0% mannitol, 0.05% ammonium chloride, 0.02% potassium phosphate dibasic, 0.01% $MgSO_4{\cdot}7H_2O$ and 0.05% yeast extract at initial pH 7.0 when cultured on rotary shaker controlled at $25^{\circ}C$ and 150 rpm. Under the optimized condition, the flocculating ability reached to 770 units/ml of kaolin flocculating activity and 81% of NTU removal efficiency against swine wastewater after 4 days cultivation. The bioflocculant was also effective on various organic wastewaters other than swine wastewater, showing NTU removal rate ranging from 92% to 34%.

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Production of Bioflocculant by Agrobacterium sp. KF-67 (Agrobacterium sp. KF-67에 의한 미생물 응집제 생산)

  • 정준영;김교창;도대홍
    • The Korean Journal of Food And Nutrition
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    • v.10 no.3
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    • pp.295-301
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    • 1997
  • Among 120 microorganisms isolated from soil, KF-67 was the best producer of flocculant and was examined for flocculating ability in the kaolin clay and CaCl2 suspension. KF-67 was identified to be a species belong to the genus Agrobacterium sp. The influence of components of the culture medium for flocculant production by Agrobacterium sp. KF-67 was studied. The favorable carbon and inorganic nitrogen source for production of the flocculant were glucose and NH4NO3 and their addition concentrations were 2% and 0.1%, respectively. Addition of the organic nitrogen such as yeast extract, peptone and inorganic salt such as CaCO3 significantly increased the production of flocculant. These result indicated that the production of flocculant by Agrobacterium sp. was significantly affected by both organic nitrogen and inorganic salt. The components of the optimum culture medium were 2% glucose, 0.1% NH4NO3, 0.01% yeast extract, 0.01% peptone, 0.04% CaCO3, 0.03% NaCl in initial pH 7.5 when cultured with rotary shaker controlled at 3$0^{\circ}C$ and 120 rpm. Under the optimum culture medium, flocculant production was highly improved about 76% than that isolation medium.

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