• 제목/요약/키워드: microalgal culture

검색결과 69건 처리시간 0.023초

미세조류 탈지세포잔류물의 미생물 배양 및 바이오에너지 생산으로의 재활용 (Recycling of Lipid-extracted Algae Cell Residue for Microorganisms Cultivation and Bioenergy Production)

  • 당낫민;이기세
    • 공업화학
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    • 제32권5호
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    • pp.487-496
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    • 2021
  • Microalgae is one of the promising biodiesel feedstock with high growth rates compared to those of terrestrial oil crops. Despite its numerous advantages, biodiesel production from microalgae needs to reduce energy demand and material costs further to go to commercialization. During solvent extraction of microalgal lipids, lipid-extracted algae (LEA) cell residue is generated as an organic solid waste, about 80-85% of original algal biomass, and requires an appropriate recycling or economic disposal. The resulting LEA still contains significant amount of carbohydrates, proteins, N, P, and other micronutrients. This review will focus on recent advancement in the utilization of LEA as: (i) utilization as nutrients or carbon sources for microalgae and other organisms, (ii) anaerobic digestion to produce biogas or co-fermentation to produce CH4 and H2, and (iii) conversion to other forms of biofuel through thermochemical degradation processes. Possible mutual benefits in the integration of microalgae cultivation-biodiesel production-resulting LEA with anaerobic digestion and thermochemical conversion are also discussed.

An Alternative Approach to the Traditional Mixotrophic Cultures of Haematococcus pluvialis Flotow (Chlorophyceae)

  • Goksan, Tolga;Ak, lknur;Gokpinar, Sevket
    • Journal of Microbiology and Biotechnology
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    • 제20권9호
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    • pp.1276-1282
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    • 2010
  • In traditional mixotrophic cultures of microalgae, all the inorganic nutrients and organic carbon sources are supplied in the medium before inoculation. In this study, however, an alternative approach was adopted in Haematococcus pluvialis Flotow, a microalga capable of growing mixotrophically on sodium acetate (Na-Ac). First, the cells were grown under 75 ${\mu}Mol$ photons $m^{-2}s^{-1}$ phototrophically without Na-Ac until the stationary phase and then exposed to five different light regimes by the addition of Na-Ac (e.g., dark, 20, 40, 75, and 150 ${\mu}Mol$ photons $m^{-2}s^{-1}$). Dry weight (DW), pigments, and especially cell number in alternative mixotrophy (AM) were higher than traditional mixotrophy (TM). Cell number in AM almost doubled up from 21.7 to $42.9{\times}10^4$ cells/ml during 5-day exposure to Na-Ac, whereas the increase was only 1.2-fold in TM. Maximum cell density was reached in 75 ${\mu}Mol$ photons $m^{-2}s^{-1}$ among the light intensities tested. We propose that Na-Ac in TM of H. pluvialis can not be utilized as efficiently as in AM. With this respect, AM has several advantages against TM such as a much higher cell density in a batch culture period and minimized risk of contamination owing to the shorter exposure of cells to organic carbon sources. In consequence, this method may be used for other strains of the species, and even for the other microalgal species able to grow mixotrophically.

미세액적 광생물반응기를 활용한 광독립영양배양에서 Chlamydomonas reinhardtii의 성장성 분석 (Growth Analysis of Chlamydomonas reinhardtii in Photoautotrophic Culture with Microdroplet Photobioreactor System)

  • 성영준;곽호석;최홍일;김영환;심상준
    • Korean Chemical Engineering Research
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    • 제55권1호
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    • pp.80-85
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    • 2017
  • 최근 고부가가치 산물의 생산이 가능한 미세조류는 이산화탄소의 생물학적 전환 측면에서 많은 주목을 받고 있다. 그렇지만 미세조류 종 자체가 지닌 낮은 광합성 효율 및 생산성의 한계는 미세조류를 활용한 공정의 상업화를 막는 장애요인이다. 따라서 본 연구에서는 대표 미세조류 Chlamydomonas reinhardtii의 광독립영양 성장성 분석을 위한 미세액적 광생물반응기를 개발하였다. PDMS 기반의 미세유체 칩 내에 미세기둥을 배열하고 미세챔버의 높이를 조절하여 미세액적 내 이산화탄소의 전달속도를 증가시켰으며, 이는 세포 성장성과 형광 세기 변화를 통해 확인하였다. 마지막으로 미세액적 광생물반응기를 활용하여 다양한 이산화탄소 농도 및 광량 조건에서 C. reinhardtii의 광독립영양배양에서 성장성을 96 시간동안 관찰하고 분석하였다. 본 연구 결과를 통해 미세액적 광생물반응기는 성장성 및 유용물질 생산성이 우수한 미세조류 종을 빠르게 분석하고 쉽게 분리할 수 있는 효율적인 플랫폼임을 입증하였다.

배양 조건에 따른 Spirulina piatensis의 성장 및 phycocyanin 함량 변화 (Content of Phycocyanins and Growth of Spirulina platensis with Culture Conditions)

  • 주동식;정충국;이창호;조순영
    • 한국수산과학회지
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    • 제33권5호
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    • pp.475-481
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    • 2000
  • 미세조류 S. platensis의 성장 및 색소 축적에 대한 배양 조건의 영향을 실험한 결과, 배양 온도 및 빛 강도는 각각 $35^{\circ}C,\;3500 lux$가 가장 적절한 배양 조건이었으며, 온도가 다소 낮은 $30^{\circ}C$ 조건에서는 빛 강도가 3500 lux보다 다소 높은 조건도 고려해볼만 하였다. 빛 강도 및 온도 조건에서의 phycocyanin 색소 함량은 조류의 성장 정도와 직접적인 상관을 나타내었으며, chlorophyll-a 함량과는 특별한 상관성을 가지지 않았다. 배지 중의 $NaHCO_3$ 첨가 농도는 $1.0{\%}$가 조류의 성장 및 색소 축적에 가장 좋은 조건임을 알 수 있었고, 그 이상의 농도에서는 오히려 phycocyanin 색소 생산능이 저하됨을 알 수 있었다. 탄소원인 $Na_2CO_3$$0.2{\~}0.3{\%}$ 농도 수준에서 가장 높은 조류의 성장과 phycocyanin을 축적하는 것으로 나타났으며, 첨가 농도가 높아져도 phycocyanin 색소 생산능은 증가되지 않았다. 한편, 질소원으로 첨가되는 $NaCO_3$농도도 $0.2{\~}0.3{\%}$ 범위에서 첨가하는 것이 균체의 성장이나 색소 생산에 바람직한 조건으로 확인되었으며, 과도한 첨가는 성장과 phycocyanin 색소 생산능이 낮아지는 것을 확인할 수 있었다. 전체적으로 chlorophyll-a는 phycocyanin 색소 함량이 증가하면 증가하는 상관을 가졌으나 그 함량은 미미하였다.

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Morphological, Molecular, and Biochemical Characterization of Astaxanthin-Producing Green Microalga Haematococcus sp. KORDI03 (Haematococcaceae, Chlorophyta) Isolated from Korea

  • Kim, Ji Hyung;Affan, Abu;Jang, Jiyi;Kang, Mee-Hye;Ko, Ah-Ra;Jeon, Seon-Mi;Oh, Chulhong;Heo, Soo-Jin;Lee, Youn-Ho;Ju, Se-Jong;Kang, Do-Hyung
    • Journal of Microbiology and Biotechnology
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    • 제25권2호
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    • pp.238-246
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    • 2015
  • A unicellular red microalga was isolated from environmental freshwater in Korea, and its morphological, molecular, and biochemical properties were characterized. Morphological analysis revealed that the isolate was a unicellular biflagellated green microalga that formed a non-motile, thick-walled palmelloid or red aplanospore. To determine the taxonomical position of the isolate, its 18S rRNA and rbcL genes were sequenced and phylogenetic analysis was performed. We found that the isolate was clustered together with other related Haematococcus strains showing differences in the rbcL gene. Therefore, the isolated microalga was classified into the genus Haematococcus, and finally designated Haematococcus sp. KORDI03. The microalga could be cultivated in various culture media under a broad range of pH and temperature conditions. Compositions of the microalgal cellular components were analyzed, and its protein, carbohydrate, and lipid compositions were estimated to be 21.1 ± 0.2%, 48.8 ± 1.8%, and 22.2 ± 0.9%, respectively. In addition, D-glucose and D-mannose were the dominant monosaccharides in the isolate, and its amino acids were composed mainly of aspartic acid, glutamic acid, alanine, and leucine. Moreover, several polyunsaturated fatty acids accounted for about 80% of the total fatty acids in Haematococcus sp. KORDI03, and the astaxanthin content in the red aplanospores was estimated to be 1.8% of the dry cell weight. To the best of our knowledge, this is the first report of an Haematococcus sp. isolated from Korea, which may be used for bioresource production in the microalgal industry.

신규 분리된 Mychonastes sp.의 생장, 지방산 및 색소 생산에 생장배지가 미치는 영향 (Effect of Culture Media on Production of Biomass, Fatty Acid, and Carotenoid in a Newly Isolated Mychonastes sp.)

  • 임경준;장현진;박예지;남승원;황병수;정지영;이창수;김지훈
    • 한국해양바이오학회지
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    • 제14권1호
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    • pp.1-8
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    • 2022
  • This study examined the growth, fatty acid (FA) content, and carotenoids of a newly isolated freshwater microalga, Mychonastes sp. 246, in various culture media. The appropriate temperature and light intensity for culturing Mychonastes sp. 246 were determined as 18℃-22℃ and 200-250 µmol/m2/s using a high throughput photobioreactor. The microalgal cells were cultivated in 0.5 L bubble column photobioreactors using BG11, Bold's Basal media, and f/2 media. According to the growth results of the microalgae, BG11, among the tested media, showed the highest biomass concentrations (3.5 ± 0.1 g/L in 10 d). To enhance the biomass growth of the microalgae, the N:P ratio in BG11 was manipulated from 45:1 to 7:1 based on the stoichiometric cell composition. The biomass concentrations of Mychonastes sp. 246 grown on the manipulated BG11 (MBG) increased to 38% (4.6 ± 0.3 g/L in d) compared with the original BG11 (3.3 g/L). The FA content of the microalgae grown on the MBG was lower (8.4%) than that of the original BG11 (10.1%) while the FA compositions did not exhibit any significant differences. Furthermore, three kinds of carotenoids were identified in Mychonastes sp. 246, zeaxanthin, lutein, and β-carotene. These results suggest an effective strategy for increasing biomass concentrations, FA content, and carotenoids of microalgae by performing a simple N:P adjustment in the culture media.

Chlamydomonas reinhardtii dZL 균주의 광도가 세포 생장과 카로티노이드 생산량에 미치는 영향 연구 (Effect of Light Intensity on Cell Growth and Carotenoids Production in Chlamydomonas reinhardtii dZL)

  • 홍성주;김현우;민지호;박한울;김지훈;이창수;진언선;이철균
    • 한국해양바이오학회지
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    • 제15권2호
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    • pp.82-89
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    • 2023
  • Microalgae, as photosynthetic organisms, possess the ability to produce a diverse array of bioactive compounds. This study focused on the transformant Chlamydomonas reinhardtii dZL and subjected it to cultivation under varying light intensities (60, 120, 180, and 240 µmol/m2/s). Our aim was to assess the impact of light intensity on both microalgal biomass and carotenoid production. The cultivation took place in 80 mL bubble column photobioreactors, specifically the Multi-cultivator. Notably, the culture exposed to 240 µmol/m2/s exhibited the most rapid cell growth, surpassing even the cell concentration achieved at 180 µmol/m2/s by day 8. A detailed analysis of the specific irradiance rate over time unequivocally revealed a sharp decline in growth rates when the rate fell below 2 × 10-10 µmol/cell/s. Although the culture with 60 µmol/m2/s yielded the highest carotenoid content (1.2% of dry weight), the culture exposed to 240 µmol/m2/s recorded the highest carotenoid concentration at 8.9 mg/L owing to its higher biomass. Our findings reveal the critical importance of maintaining a specific irradiance rate above 2 × 10-10 µmol/cell/s to enhance biomass and carotenoid productivity. This study lays the groundwork for defining optimal light intensity conditions applicable to mass culture systems, with the objective of augmenting C. reinhardtii biomass and optimizing carotenoid productivity.

고온기 배양에 적합한 Isochrysis와 Pavlova 종의 선정 (Selection of Isochrysis and Pavlova Species for Mass Culture in High Temperature Season)

  • 양성진;허성범
    • 한국수산과학회지
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    • 제45권4호
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    • pp.343-350
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    • 2012
  • Even though the microalgal species of Isochrysis and Pavlova are widely used as live food in bivalve hatcheries, they are difficult to culture in mass during the summer season. Therefore, the present study was conducted to determine the optimum species or strains of Isochrysis and Pavlova to produce good growth and high contents of fatty acids at temperatures over $30^{\circ}C$. Four species of Isochrysis (I. galbana KMMCC12, I. galbana KMMCC214, I. aff. galbana, and Isochrysis sp.) and four of Pavlova (P. lutheri, P. gyrans, P. viridis, and Pavlova sp.) were cultured at $25^{\circ}C$, $29^{\circ}C$, and $33^{\circ}C$, and then analyzed for specific growth rate and fatty acid composition. Microalgae were cultured in f/2 medium at 23 psu and continuous light of $80{\mu}mol$ photons $m^{-2}s^{-1}$. For the I. galbana, growth rates were highest at $29^{\circ}C$ and decreased at $33^{\circ}C$ to the level observed at $25^{\circ}C$. I. galbana (KMMCC12) and Isochrysis sp. cultured at $29^{\circ}C$ and $33^{\circ}C$, respectively, exhibited the highest growth rates of all Isochrysis species. In terms of fatty acids, I. galbana (KMMCC12) contained higher contents of PUFA and n-3 HUFA at $33^{\circ}C$ than did Isochrysis sp. For species of Pavlova, growth rates of P. gyrans and P. viridis at $29^{\circ}C$ and $33^{\circ}C$, respectively, were higher than those of the other Pavlova species. In particular, P. viridis grew as well at $33^{\circ}C$ as it did at $29^{\circ}C$. However, P. lutheri and Pavlova sp. did not grow at $33^{\circ}C$. In terms of fatty acids, P. viridis cultured at $33^{\circ}C$ also exhibited higher contents of PUFA and n-3 HUFA, as compared to P. gyrans. Based on these results, we suggest that I. galbana (KMMCC12) and P. viridis are suitable species for mass culture during the high temperature season.

미세조류 동결보존 기술 개발의 최근 연구 동향 (Recent Research Trends of Cryopreservation Technology Based on Microalgae Chlorophyta)

  • 임준호;서용배;김선민;전용재
    • 생명과학회지
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    • 제31권10호
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    • pp.960-968
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    • 2021
  • 미세조류 연구는 18세기 후반부터 시작된 이후 생물산업에서 가장 중요한 생물자원으로 인식되어 왔다. 특히 미세조류의 산업 활용에 초점을 맞춘 식품/사료 및 생리 활성 화합물에 대한 초기 주요 연구 분야는 현재 대체 에너지 자원, 탄소 배출 저감 및 폐수 처리를 포함한 환경 연구 분야로 더욱 확대되고 있다. 하지만 그 산업적 활용의 중요성에도 불구하고 미세조류 배양의 장기 보존과 관련된 기초 연구 분야는 많은 주목을 받지 못하고 있다. 그러나 생물학적으로 활성을 띄는 안정적인 미세조류 배양체 보존은 이러한 미세조류의 산업적 활용을 더욱 부각시킬 수 있는 핵심적인 성공요소이다. 따라서 본 총설은 조류(algae)의 분류체계에서 가장 큰 분류군을 차지하는 녹조류(Chlorophyceae)를 포함하여 현재까지 개발된 다양한 최첨단 미세조류 냉동보존기술을 조사하였다. 또한, 국내 생물자원은행 및 국제 미세조류 자원은행에 기탁된 생물학적으로 활성을 띄는 미세조류 배양체를 보존·유지하기 수행하고 있는 보존 기술과 함께 동결보존 시 온도조절 효과, 보존제 효과 등 미세조류의 성공적인 동결보존 기술과 관련된 주요 요인들을 조사하였다. 본 연구를 통해 확인된 결과를 살펴보면, 미세조류의 형태 및 생리학적 다양성으로 인해 현재로서는 범용적으로 사용할 수 있는 표준 미세조류 장기 보존 방법이 없다는 것을 확인하였다. 따라서, 이러한 문제를 극복하기 위해서는 미세조류의 분류학적 체계를 명확하기 위한 종 특이적 바이오마커의 개발과 종 특이적 동결보존 방법에 기반한 체계적인 접근을 위한 기초 연구 분야에 대해 훨씬 더 많은 노력이 필요함을 확인하였다.

Flocculation Effect of Alkaline Electrolyzed Water (AEW) on Harvesting of Marine Microalga Tetraselmis sp.

  • Lee, Su-Jin;Choi, Woo-Seok;Park, Gun-Hoo;Kim, Tae-Ho;Oh, Chulhong;Heo, Soo-Jin;Kang, Do-Hyung
    • Journal of Microbiology and Biotechnology
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    • 제28권3호
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    • pp.432-438
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    • 2018
  • Microalgae hold promise as a renewable energy source for the production of biofuel, as they can convert light energy into chemical energy through photosynthesis. However, cost-efficient harvest of microalgae remains a major challenge to commercial-scale algal biofuel production. We first investigated the potential of electrolytic water as a flocculant for harvesting Tetraselmis sp. Alkaline electrolyzed water (AEW) is produced at the cathode through water electrolysis. It contains mineral ions such as $Na^+$, $K^+$, $Ca^{2+}$, and $Mg^{2+}$ that can act as flocculants. The flocculation activity with AEW was evaluated via culture density, AEW concentration, medium pH, settling time, and ionic strength analyses. The flocculation efficiency was 88.7% at 20% AEW (pH 8, 10 min) with a biomass concentration of 2 g/l. The initial biomass concentration and medium pH had significant influences on the flocculation activity of AEW. A viability test of flocculated microalgal cells was conducted using Evans blue stain, and the cells appeared intact. Furthermore, the growth rate of Tetraselmis sp. in recycled flocculation medium was similar to the growth rate in fresh F/2 medium. Our results suggested that AEW flocculation could be a very useful and affordable methodology for fresh biomass harvesting with environmentally friendly easy operation in part of the algal biofuel production process.