• Title/Summary/Keyword: 미세 조류

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Toxic effects of Aroclor 1016 and bisphenol A on marine green algae Tetraselmis suecica, diatom Ditylum brightwellii and dinoflagellate Prorocentrum minimum (해양 녹조류 Tetraselmis suecica, 규조류 Ditylum brightwellii, 와편모조류 Prorocentrum minimum에 대한 Aroclor 1016과 비스페놀 A의 독성 효과)

  • Ebenezer, Vinitha;Ki, Jang-Seu
    • Korean Journal of Microbiology
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    • v.52 no.3
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    • pp.306-312
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    • 2016
  • Microalgae are the potential bioindicators of environmental changes, for the environmental risk assessment as well as to set limits for toxic chemical release in the aquatic environment. Here, we evaluated the effects of two endocrine disrupting chemicals (EDCs), namely bisphenol A (BPA) and Aroclor 1016, on the green algae Tetraselmis suecica, diatom Ditylum brightwellii, and dinoflagellate Prorocentrum minimum. Each species showed wide different sensitivity ranges when exposed to these two EDCs; the 72 h effective concentration ($EC_{50}$) for these test species showed that Aroclor 1016 was more toxic than BPA. $EC_{50}$ values for the diatom D. birghtwellii were calculated at 0.037 mg/L for BPA and 0.002 mg/L for Aroclor 1016, representing it was the most sensitive when compared to the other species. In addition, these results suggest that these EDC discharge beyond these concentrations into the aquatic environments may cause harmful effect to these marine species.

Study on the Growth and Survival Rate of Capsulated Microalgae and Macroalgae Zoospores (미세조류 및 해조류 유주자의 피막화를 통한 생장 및 생존율 연구)

  • Jung, Sang-Mok;Lee, Han-Seong;Kang, Seul-Gi;Son, Ji-Su;Jeon, Jae-Hyuk;Lee, Han-Joo;Shin, Hyun-Woung
    • Korean Journal of Environment and Ecology
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    • v.30 no.1
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    • pp.92-97
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    • 2016
  • The purpose of this study was to improve growth and survival rate of marine microalgae and macroalga zoospores using with eco-friendly capsulation materials. The capsulation materials were chosen an alginic acid which extracted from marine brown algae combining with starch and calcium chloride. The capsulated microalgae, Nannochloropsis salina and macroalga zoospores, Ulva australis were evaluated with growth and survival rate. When the mixed ratio of alginic acid was less than 50%, capsule formation was not performed. When the ratio of 50% alginic acid and 50% starch, the microalgae was shown the highest growth and survival rate increasing up to $8.74{\times}10^5cells\;mL^{-1}$ while 100% of alginic acid was the lowest rate up to $4.92{\times}10^5cells\;mL^{-1}$. The increasing starch ratio improved to their growth and survival rate, however decreasing alginic acid make physical capsule formation weaken. By applying on a surface of artificial reef, capsulated algal zoospores were germinated 99 individuals $cm^{-2}$. This attempt will be provided to basic core technology for marine afforestation in coastal area.

Development of Axenic Culture and Astaxanthin Production in Microalgae (미세조류를 이용한 무균분리법 개발 및 astaxanthin 생산)

  • Son, Min Chang;Lee, Dong-Jun;Park, Sejin;Kim, Min Sung;Lee, Chul Won;An, Won Gun
    • Journal of Life Science
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    • v.25 no.7
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    • pp.733-739
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    • 2015
  • Microalgae are a renewable natural resource that requires only sunlight, carbon dioxide, phosphorus, and nitrogen for rapid growth. They produce a broad variety of basic chemical substances―such as vitamins, fatty acids and carotenoids―that have high added value potential for the pharmaceutical and food industries. The aim of this study was to develop axenic culture and to establish a cell growth assay for microalgae. A further experiment was carried out to determine the yield of astaxanthin derived from microalgae. The axenic culture was developed using a mixture of antibiotics [ampicillin (100 ${\mu}g/ml$), streptomycin (10 ${\mu}g/ml$), chloramphenicol (10 ${\mu}g/ml$), penicillin (10 ${\mu}g/ml$), neomycin (50 ${\mu}g/ml$), gentamycin (50 ${\mu}g/ml$), kanamycin (10 ${\mu}g/ml$), and nystatin (1.5 ${\mu}g/ml$)] and then used to extract a variety of useful components from the microalgae. The optimal concentration for the antibiotic mixture was 1-3 percent. A spectrophotometric cell growth assay was also established. Astaxanthin was extracted from Haematococus lacustris with a yield of $1.9{\times}10^{-3}{\mu}g/l$ per 1 ml of culture medium. In conclusion, the axenic culture method developed here allows extraction of high-quality astaxanthin and other useful components from microalgae.

Selection of Microalgae for Advanced Treatment of Swine Wastewater and Optimization of Treatment Condition. (축산폐수의 3차 처리를 위한 미세조류의 선별 및 처리조건의 최적화)

  • 김성빈;이석준;김치경;권기석;윤병대;오희목
    • Microbiology and Biotechnology Letters
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    • v.26 no.1
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    • pp.76-82
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    • 1998
  • The feasibility of algae as means of removing nitrogen and phosphorus from secondary treated swine wastewater was studied. Among the tested 7 species of Chlorella vulgaris (UTEX 265), Chlorella sp. GE 21, Botryococcus braunii (UTEX 572), Botryococcus sp. GE 24, Scenedesmus quadricauda, Phormidium sp. GE 2, and Spirulina maxima (UTEX 2342), C. vulgaris was selected for its fast growth and abilities to remove nitrogen and phosphorus and to produce algal biomass from swine wastewater. C. vulgaris grew well at 35$^{\circ}C$, and the optimum initial pH for growth was 8.0. In the effect of light intensity, the growth of C. vulgaris was limited under a light intensity of less than 40 ${\mu}$E/$m^2$/s. The secondary treated swine wastewater contained 58.7 mg/l of total nitrogen and 14.7 mg/l of total phosphorus, and was diluted to 75, 50, and 25% with groundwater to be treated. Nitrogen and phosphorus were removed by C. vulgaris in all diluted swine wastewaters among which the most effective removal was in 75% swine wastewater (swine wastewater:groundwater=3:1). There was a tendency of linear increase in nitrogen and phosphorus removal time with increasing concentration of swine wastewater. Under the optimized culture condition, total nitrogen and total phosphorus were effectively removed to 95.3% and 96.0%, respectively, in 25% swine wastewater after 4-day incubation.

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Screening of cryoprotectants (CPAs) for cryopreservation in the Nitzschia sp. of marine microalgae (해양 규조류 Nitzschia sp.의 초저온동결보존을 위한 보존제의 영향 분석)

  • Lee, In Hye;Jeon, Ji Young;Kim, Kyeung Mi;Kang, Myung suk
    • Journal of Plant Biotechnology
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    • v.45 no.4
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    • pp.400-408
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    • 2018
  • Biodiversity has continued to degrade in the $21^{st}$ century due to global warming occasioned by destruction of the environment around the world.. The Nagoya protocol places Korea in a unique position to effectively develop and protect its domestic genetic resources. Microalgae under study in this research contains large amount of antioxidant substances such as beta carotene and astaxanthin, that can be used as biological resource owing to the large amounts of biomass that can be secured through photosynthesis. However, it is difficult to preserve it since cryopreservation method used for long-term preservation is yet to be developed. A basic study for long term cryopreservation was carried out on Nizschia frustulum and Nitzschia amabilis which belong to marine diatoms. As cryoprotectants (CPAs), glycerol, DMSO, and methanol which penetrate into cells were prepared at 5%, 10%, and 15% concentrations each, in case of methanol, it was tested at concentrations of 5%, 10% and 12% by its nature. Two kinds of microalgae, N. frustulum and N. amabilis, were diluted with $10^2$, $10^3$ and $10^4cells\;ml^{-1}$, respectively. The highest survival rate was shown at12% concentration of methanol, and the figures were $6.94{\pm}0.31%$ in N. frustulum and $8.85{\pm}0.16%$ in N. amabilis. As a result of 3 weeks cultivation of thawed microalgae after freezing, the result is shows that N. frustulum increased about 10 times faster and N. amabilis increased about 12 times the original concentration.

The Microalgal Attachment and its Growth on the Artificial Surfaces Immersed in Seawater: I. Attachment and Micro-succession (해수에 잠긴 인공기질 표면에서 미세조류의 부착과 성장: I. 부착 및 천이)

  • Shim, Jae-Hyung;Kang, Jung-Hoon;Cho, Byung-Cheol;Kim, Woong-Seo
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.3 no.4
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    • pp.249-260
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    • 1998
  • To understand the attachment of micro algae and their subsequent growths on artificial surfaces immersed in seawater, the relationship between attachment of diatoms on the immersed artificial substrates and species pool in the surrounding water was investigated. We used acryl slides for the study of diatom attachment and examined the surrounding water samples collected in Incheon Harbour from July 1995 to February 1997. Variations of species composition and abundances by exposure time in seawater were investigated during the early phase of biofilm formation on various substrates, e.g. glass, acryl, titanium, copper and antifouling paint-treated slides. Immigration rates of diatoms to acryl slides during spring and winter were significantly correlated with the abundance of benthic diatoms in surrounding water ($r^2$=0.78, p<0.01, n=42), suggesting that immigration rates were affected by variations of benthic diatom abundances in surrounding water. Immigration coefficient of monoraphid diatoms was 5 times higher than that of biraphid diatoms, but relative abundance of monoraphid diatoms was 3 times lower than that of biraphid diatoms on acryl slides in spring. In winter, immigration coefficient and relative abundance of centric diatoms were higher compared to other raphe forms. These results suggest that the attachment of diatoms seems to be caused by the abundance and immigration coefficients of benthic diatoms in surrounding water. Pennate diatoms predominantly attached to all artificial surfaces throughout all experimental periods. Interestingly, centric diatoms predominantly attached to all artificial surfaces in winter. Hantzschia virgata, Licmophora abbreviata and Melosira nummuloides appeared dominantly on antifouling paint-treated slides, probably being tolerant of the antifouling paint. During incubations, the abundance of attached diatoms increased exponentially on glass, titanium and acryl slides with exposure time. The maximum abundance was highest on glass slide, followed by acryl, titanium, copper and antifouling paint-treated slides. The growth rates of attached diatom community on all artificial surfaces were higher at temperature of $24-25^{\circ}C$ than that of $2-3^{\circ}C$. The growth rate of attached diatoms on glass slide was generally higher compared to other slides during the study period. Dominant morphotypes of observed species with exposure time in seawater were prostrate form Amphora coffeaeformis, fan shape Synedra tabulata, stalk type Licmophora paradoxa and chain type M. nummuloides. A micro-succession in the attached microalgal community was observed. The composition of dominant species seems to be the result of species-specific response to gradually limited space with development of microalgal film.

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Study on the Productivity of Microalgae Nannochloropsis sp. Using the Highly Efficient Vertical Photobioractor (수직형 고효율 광배양기를 통한 미세조류 Nannochloropsis sp.의 생장성 연구)

  • Kim, Young-Nam;Chung, Myung-Hee;Kim, Eun-Joo;Karnadi, Vita;Kim, Young-Jun
    • Journal of the Korea Organic Resources Recycling Association
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    • v.23 no.1
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    • pp.38-44
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    • 2015
  • We have investigated the productivity of microalgae, Nannochloropsis sp., using highly efficient vertical photobioreactor which has been developed by the company IMBiz. This experiment was performed in the field for one month with 2 sets of 2 tons of media under autotrophic cultural mode. In the culture with 0.1% of $CO_2$, the average daily productivity was shown to be up to 0.953g per liter, and 0.574g per liter in the culture with only ambient air. The temperature ranged from $20^{\circ}C$ to $31^{\circ}C$, and it didn't make any differences on the productivity. The light intensity ranged from 5,000 Lux to 40,000 Lux. The light has been appeared to have a very close relationship with the productivity of microalgae. Meanwhile, the harvesting method of pressurefloating attempted in this photobioreactor was found to be very effective.

Thermodynamic cheracteristics of micro algae for energy conversion (조류 부산물의 에너지 전환을 위한 열역학 특성 고찰)

  • Lee, See-Hoon;Seo, Myung-Won;Kim, Sang-Don
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.447-450
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    • 2009
  • 2세대 바이오연료 생산에 적용되는 미세 조류의 열화학적 전환 특성을 열천칭 반응기를 이용하여 고찰하였다. 반응 온도 (500 - $800^{\circ}C$)와 수분 함량 (0-60wt.%)을 변수로 하였으며 미세조류로서 가장 널리 이용되는 클로렐라를 이용하였다. 대표적인 열화학적 전환 반응인 열분해, 부분 산화 (5%), 연소 반응을 고찰하였으며 실험 영역에서 반응온도 및 산소의 분압이 증가함에 따라 탄소 전환율이 증가하였으며 Shrinking-core model을 사용하여 반응 차수를 구하였다. 가스화 영역인 부분 산화 (5%) 조건에서의 activation energy와 frequency factor 값은 각각 19.60 kJ/mol, $2.47{\times}10-1\;s^{-1}$ 이었으며 산소 분압에 의한 반응 차수는 0.209 임을 확인하였다. 수분 함량에 따른 클로렐라의 반응 특성을 살펴보면, 수분 함량이 증가함에 따라 탄소 전환율과 반응성이 감소하는 경향이 발견되었다. 열분해의 경우, 건조 시료에 비하여 수분 함량이 늘어남에 따라 탄소 전환율과 반응성이 급격하게 감소하는 경향을 보였다. 반면, 부분 산화(5%) 및 연소의 경우에는 건조 시료, 수분 함량 20, 40% 시료의 탄소 전환율과 반응성은 거의 일정하였다. 그러나 수분 함량이 60%가 되면서 탄소 전환율 및 반응성이 급격히 떨어졌다.

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Growth Characteristics of Microalgae Scenedesmus obliquus by LED Light Source (LED 광원에 따른 미세조류 Scenedesmus obliquus의 성장 특성)

  • Yoo, Yong Jin;Kim, Song Yi;Lee, Geon Woo;Lee, Young Bok;Kim, Jin Woo;Kim, Ho Seob
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.11
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    • pp.70-77
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    • 2020
  • Microalgae are independent organisms that perform photosynthesis and can alter the culture environment to increase accumulation of useful substances derived from microalgae. In this study, cell growth was measured by incubation for 39 days using MBBM, Neo medium, and seven light sources, which is the main factor affecting cell growth of microalgae S. obliquus. In the case of S. oliquus, which grew in MBBM and Neo medium, cell growth was highest under fluorescent light sources and Red2 LED (R660) light sources, and cell growth was lowest under Infra Red LED (R741) light sources. The average cell growth rate was 17.7% for MBBM and 15.4% for Neo. Comparing the effects of dry cell weight of Neo medium containing nutrients on the production of aquatic plants, MBBM and dry cell weight of Neo resulted in higher cell growth than Neo medium under all LED light sources except for Blue LED (B450). This proves that MBBM is more suitable for increasing the cell growth of microalgae than Neo medium and confirms that light source selection is important in the production of useful materials through mass cultivation of microalgae in the future.

Simultaneous Effect of Salinity and Temperature on the Neutral Lipid and Starch Accumulation by Oceanic Microalgae Nannochloropsis granulata and Chlorella vulgaris (염분과 온도의 동시 영향에 따른 해양 미세조류 Nannochloropsis granulata와 Chlorella vulgaris의 중성지질 및 녹말 축적에 관한 연구)

  • Ko, Kyungjun;Lee, Chi-Heon;Moon, Hye-Na;Lee, Yeon-Ji;Yang, Jinju;Cho, Kichul;Kim, Daekyung;Yeo, In-Kyu
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.19 no.3
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    • pp.236-245
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    • 2016
  • Because microalgae represent high growth rate than terrestrial plants, and it can accumulate significant lipid and carbohydrate content, and other bioactive compounds such as carotenoid and polyphenol in their body, it has been considered as one of the promising resources in bio-energy, and other industries. Although many studies has been performed about the microalgae-derived biochemical accumulation under various abiotic conditions such as different temperatures, salinities and light intensities, the studies about simultaneous effect of those parameters has rarely been performed. Therefore, this study focused on evaluation of simultaneous effect of different salinity (10, 30, 50 psu) and temperatures (20, 25, $30^{\circ}C$) on the changes of biomass, lipid, starch and photosynthetic pigment accumulation. As results, the highest growth rate was achieved at $30^{\circ}C$ and 30 psu in the both algal cultures, and the photosynthetic pigment, chlorophyll a and total carotenoid content, were increased in a temperature-dependent manner. The accumulation of lipid and starch contents exhibited different aspects under different combinations of temperature and salinity. From the results, it is suggested that the changes of microalgal lipid and starch accumulation under different salinities may be affected by the different temperatures.