• Title/Summary/Keyword: Airlift 생물반응기

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Design of Photobioreactor for Mass Production of Microalgae (미세조류 대량 생산용 광생물반응기 설계)

  • Ahn, Dong-Gyu;Cho, Chang-Gyu;Jeong, Sang-Hwa;Lee, Dong-Gi
    • Journal of the Korean Society for Precision Engineering
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    • v.28 no.2
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    • pp.140-153
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    • 2011
  • The objective of this paper is to investigate into the design of photbioreactor for mass production of microalgae. Characteristics of previously developed photobioreactors were examined to obtain design factors, including light transfer, fluid dynamics and metabolic reactions, of the photobioreactor. Design technology of components related to the design factors, such as light sources, photobioreactor cases, spargers, mixer, etc., was discussed to improve the viability and the growth rate of microalgal and productivity of the photobioreactor. Finally a principle direction of the design for an airlift flat plane photobiorectors was investigated.

Production of Itaconic Acid at Various Bioreactors (다양한 생물반응기에서 이타콘산의 생산)

  • 박승원;김승옥;이진석
    • Microbiology and Biotechnology Letters
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    • v.22 no.3
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    • pp.304-308
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    • 1994
  • A suitable culture method and bioreactor type for itaconic acid production were chosen by comparing the maximal concentration of itaconic acid produced in various systems. In batch culture, the maximal concentration of itaconic acid produced in a bubble column reactor was about 5% greater than that produced in stirred-tank or external-loop airlift reactor. These results were thought to be due to lower shear force and higher mass transfer efficiency in a bubble column reactor in comparison with other reactors. Moreover, the fed-batch mode in a bubble column was found to be a suitable one, producing about 25% higher concentration of itaconic acid compared to batch mode.

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Advanced Wastewater Treatment of Low Concentration Ammonia Using the Immobilized Nitrifier Consortium (고정화 질화세균을 이용한 저농도 암모니아 폐수의 고도처리)

  • Lee, Jung-Hoon;Kim, Byong-Jin;Kim, Yong-Ha;Yi, Gyeong-Beom;Lim, Jun-Heok;Cheon, Jae-Kee;Suh, Kuen-Hack
    • Korean Chemical Engineering Research
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    • v.40 no.6
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    • pp.763-768
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    • 2002
  • This study was performed in the airlift bioreactor using the nitrifier consortium entrapped in polyvinyl alcohol(PVA) for removing low concentration total ammonia nitrogen(TAN). At the superficial air velocity of 0.83 cm/sec, TAN removal rate and removal efficiency was $316.6{\pm}7.2g/m^3{\cdot}day$ and $92.8{\pm}2.2%$ respectively. Removal rate was continuously increased with decreasing hydraulic residence time(HRT) from 0.5 hr to 0.05 hr, whereas removal efficiency decreased with decreasing HRT. The optimum temperature for nitrification was $30^{\circ}C$ at which removal efficiency was $95.5{\pm}1.5%$. Nitrification was effectively performed at low temperature, $10^{\circ}C$. In the pH range from 7 to 9 in the bioreactor, removal rate and removal efficiency was $310{\pm}10g/m^3{\cdot}day$ and $94{\pm}3%$ respectively.

Enhancement of Iron Oxidation Rate by Immobilized Cells in Chemo-biological Process for $H_2S$ Removal (화학.생물학적 황화수소 제거 공정에 있어서 고정화 세포를 이용한 철산화 속도 증진)

  • Kim, Tae-Wan;Kim, Chang-Jun;Jang, Yong-Geun
    • KSBB Journal
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    • v.14 no.5
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    • pp.585-592
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    • 1999
  • This study was aimed to enhance the Fe(II) oxidation rate using immobilized cells of Thiobacillus ferroxidans. For this purpose, a medium for the minimization of jarosite formation was developed first. Secondly, cell immobilization in celite beads was carried out. And then, repeated-batch and continuous operatons of Fe(II) oxidation by using immobilization cells were performed. In a series of flask cultures, three types of media were tested: media with a much lower salt concentration than that of the 9K medium; media which contained different nitrogen sources from that of the 9K medium, that is $(NH_4)_2HPO_4$, $NH_4Cl and HNO$_3$; media which contained $(NH_4)_2HPO_4$ as nitrogen and phosphate source, but without $K_2HPO_4$ as nitrogen and phosphate source in the 9K medium. As a result, the M16 medium which contained 3 g/L of $(NH_4)_2HPO_4$ as nitrogen and phosphate source was found to be the optimal one. It sustained good cell growth allowing no jarosite formation. In the repeated-batch operations, the rate of Fe(II) oxidation gradually increased to reach a maximum value as the batch was repeated. As a result of repeated-batch operations. a maximum Fe(II) oxidation rate was 2.33 g/L . h. In the continuous operations, the iron oxidation rate could be increased to 2.14 g/L .h at a dilution rate of 0.25 $h^{-1}$ which is greater than the maximum specific growth rate (0.12 $h^{-1}$) of the bacteria.

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In Vitro Propagation of Lilium Asiatic Hybrid 'Hae Hwa' via the Formation of Shoot Clusters (신초 Cluster 형성에 의한 Lilium Asiatic Hybrid 'Hae Hwa'의 기내번식)

  • Han, Bong-Hee;Yu, Hee-Ju;Yae, Byeoung-Woo;Goo, Dae-Hoe
    • Journal of Plant Biotechnology
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    • v.29 no.1
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    • pp.19-23
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    • 2002
  • This experiment was conducted to micropropagate bulblets via shoot cluster formation and massproduce normal bulblets from the sections of proliferated shoot clusters in Lilium asiatic hybrid 'Hae Hwa'. The induction of shoot clusters from the culture of bulblet sections was more effective than that of bulb scales on MS medium with 1.0 mg/L BA and 0.5 mg/L IAA. Proliferation of shoot clusters from the formed shoot cluster sections was the most favorable on medium containing 5.0 mg/L BA and 0.5 mg/L IAA. The formation and the growth of bulblets from shoot cluster sections were achieved effectively on medium with 60∼90 g/L sucrose. The leaves derived from shoot clusters grew vigorously but the bulblets from shoot clusters grew very poor in 5L air-lift bioreactor culture. By the addition of 30 mL fresh liquid medium containing doulble strength MS salts, 250 g/L sucrose and 5 g/L activated charcoal after 8 weeks in the shoot cluster culture on MS medium with 5.0 mg/L BA and 0.5 mg/L IAA, the number of bulblets was increased in light condition, but the growth of bulblets was not affected by light. Bulblet production was possible with the bulblet product at 53 to 68 mg in fresh weight by liquid medium addition after the proliferation of shoot cluster.