• Title/Summary/Keyword: 미세 조류

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Optimization of Hot-water Extraction Conditions of Polyphenolic Compounds from Lipid Extracted Microalgae (탈지미세조류로부터 폴리페놀 생산 증대를 위한 열수추출 조건 최적화)

  • Choi, Kanghoon;Lee, Jihyun;Jo, Jaemin;Shin, Seulgi;Kim, JinWoo
    • Korean Chemical Engineering Research
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    • v.54 no.3
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    • pp.310-314
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    • 2016
  • The search for natural antioxidants as alternatives to synthetic products is growing. Microalgae have emerged as a source of natural antioxidants with significant and diverse health-promoting properties. In this study, the effects of hot-water extraction conditions on total polyphenol compounds (TPC) production were investigated for lipid extracted microalgae (LEA). In order to enhance the polyphenol productivity, the extraction variables including solvents, temperature, time and ethanol concentration were optimized. The results showed hot-water extraction provided a higher extraction efficiency than the organic solvents and extraction at high temperatures showed a better extraction efficiency. While hot-water extract showed a higher extraction efficiency compared to 98% ethanol extraction, the mixture of water and ethanol (40:60 v/v) showed the highest production of polyphenols. The maximum polyphenols of 3.35 mg GAE (gallic acid equivalent)/g DM were obtained at the optimized extraction time of 10 min, $100^{\circ}C$ and 40% ethanol, respectively. Although Tetraselmis KCTC 12236BP was preprocessed by hexane to remove lipid for bio-diesel production, the results showed LEA contains relatively high level of polyphenols compared to untreated microalgae which can be used in the production of value-added materials. The predictions obtained from the developed Peleg's model were compared with the experimental data under the same operating conditions. The predicted and experimental data were consistent, indicating the reliability of the model.

Effect of Attachment Substrate Size on the Growth of a Benthic Microalgae Nitzschia sp. in Culture Condition (실내 배양시 부착기질 크기에 따른 저서성 미세조류 Nitzschia sp.의 성장 특성)

  • Oh, Seok-Jin;Yoon, Yang-Ho;Yamamoto, Tamiji;Yang, Han-Soeb
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.12 no.2
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    • pp.91-95
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    • 2009
  • To understand the effect of attachment substrate on the growth of benthic microalgae, we experimentally investigated the growth of benthic microalgae Nitzschia sp. (Jinhae Bay strain) with additions of glass beads in different sizes. The glass beads used in this study are 0.09-0.15 mm (G1), 0.25-0.50 mm (G2), 0.75-1.00 mm (G3) and 1.25-1.65 mm (G4). No addition of glass beads used as controls. Highest specific growth rate (0.37/day) and maximum cell density ($9,232{\pm}840$ cells/mL) of Nitzschia sp. showed at the smallest glass beads (G1), and the specific growth rate and maximum cell density were decreasing with increasing size of glass beads (specific growth rate and maximum cell density of G4 was 0.24/day and $6,397{\pm}524$ cells/mL, respectively). Moreover, specific growth rate of the control experiment (0.23/day) was significantly lower than their of G1 to G3 experiment. The results indicated that the attachment substrate for benthic microalgae as Nitzschia sp. is important factor which affecting the growth rate as well as cell density. Therefore, the physiological experiment of benthic microalgae seems to be necessary to preliminary experiment, which is addition or not of the attachment suitable substrate and the grain size for the target species of benthic microalgae.

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ICT Convergenced Cascade-type Incubator for mass production of microalgae (미세조류 대량생산을 위한 ICT 융합 계단식 연속 배양 장치)

  • Lee, Geon Woo;Lee, Yong Bok;Yoo, Yong Jin;Baek, Dong Hyun;Kim, Jin Woo;Kim, Ho Seob
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.22 no.5
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    • pp.379-386
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    • 2021
  • This study was undertaken to develop a cascade-type continuous culture system (CCCS) that combines both ICT and biotechnology (BT), for the mass production of microalgae. This system is capable of maintaining the essential culture conditions of pH, temperature, carbon dioxide, and illuminance control, which are key parameters for the growth of microalgae, and is economical for producing microalgae regardless of the season or location. It has the added advantage of providing stable and high productivity. In the current study, this system was applied to culture microalgae for 71 days, with subsequent analysis of the experimental data. The initial O.D. of the culture measured from incubator 1 was 0.006. On the 71st day of culture, the O.D.s obtained were 0.399 (incubator 1), 0.961 (incubator 2), 0.795 (incubator 3), and 0.438 (incubator 4), thereby confirming the establishment of continuous culture. Thus, we present a smart-farm based on ISMC (in-situ monitoring and control) for a mass culture method. We believe that this developed technology is suitable for commercialization, and has the potential to be applied to hydroponics-based cultivation of microalgae and cultivation of high-value-added medicinal plants as well as other plants used in functional foods, cosmetics, and medical materials.

Manufacturing Process of Glucose from Agricultural Byproducts for Feeding a Biodiesel-producing Algae (농업부산물로부터 바이오 디젤 생산용 미세조류 배양액에 첨가할 당의 생산 공정 연구)

  • Kim, Seung-Ri;Han, In-Seob
    • Journal of Appropriate Technology
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    • v.5 no.2
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    • pp.91-96
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    • 2019
  • Microalgae do not require much land and make a higher efficient oil production. However, it costs still much higher than other biodiesel resources, such as crops. Sugars charge 80% of culture media when microalgae are massively cultured in the fermenter. This study aims to develop a cost-efficient process for sugar production from Chinese cabbage byproducts. Pre-treatment with 0.25% H2SO4 was most effective when chopped cabbage was incubated 50℃/130 rpm for 24 hours. To hydrolyze cabbage cellulose, we used cellulases secreted from Trichoderma. harzianum. T. harzianum was cultured at 28℃/pH 7/130 rpm for five days. Optimal enzymatic activity of cellulase was obtained by incubating at 0.24 FPU/ml/45℃/pH 5/130 rpm for three days. In comparison to other agricultural waste, such as rice straw, green tea leaves, and palm residue, Chinese cabbage produced the highest sugar yield. We found the optimal conditions to produce sugar from Chinese cabbage byproducts as a carbon source to culture biodiesel-producing microalgae. The efficient process developed in this study helps microalgae as a sustainable alternative energy source by cost-down.

Changes of Productivity, Intestinal Immune Cells and Gut Microbiota in Laying Hens by Microalgae (Mychonastes pushpae) Supplementation (산란계 사료 내 미세조류(Mychonastes pushpae) 첨가에 따른 생산성, 장내 면역세포 및 장내 미생물의 변화)

  • Yeeun Kim;Goeun Han;Sang Seok Joo;Yoo Bhin Kim;Ji Young Jung;Myunghoo Kim;Kyung-Woo Lee
    • Korean Journal of Poultry Science
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    • v.51 no.3
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    • pp.127-143
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    • 2024
  • In this study, we investigated the effects of dietary microalgae (Mychonastes pushpae, MP) supplementation on the changes of egg production and quality, intestinal immunity, composition of the gut microbiota in laying hens. Mychonastes pushpae (MP) supplementation increased egg weight and egg mass in laying hens. It was observed that by MP supplementation changed the population of CD8-TCR γδ+ T cells, one of the subsets of CD3+ T cells, and MHC II+ antigen presenting cells in the small intestine of the laying hens. Besides, composition of beneficial gut microbe like Lactobacillus and Faecalibacterium increased by MP supplementation. Gene enrichment analysis on gut microbiota revealed that genes associated with biosynthesis of unsaturated fatty acids increased, while bacterial chemotaxis and biofilm formation of E. coli was reduced by MP treatment. This study proposed the possibility that the supplementation of MP for laying hens affect the egg productivity, the gut immune cell population and the microbiota. Thus, this can be used as a dietary supplement to improve productivity and gut health in laying hens.

Searching of Antimicrobial Active compounds from Microalgae (해양 미세조류로부터 항균성 물질의 탐색)

  • 주동식;이응호
    • Journal of Life Science
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    • v.8 no.2
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    • pp.173-180
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    • 1998
  • As a part of the investigation on useful compounds from microalgae, and its recently that marine planktonic algae have been recognized as potial sources of antibacterial and antifungal substances, we searched for antimicrobial active compounds from the extracts of six microalgae-Lyngbya sp., Tetraselmis sp., Microcystis sp., Chlorella sp., Navicula sp. and Rhalassiosira sp.-treated with several solvents. There were two active species-Lyngbya ap., Teraselmis sp.- in the antimicrobial activity test to bacteria, yeast and molds, especially the activity existed in the extracts by ethyl acetate of supernatants to the microalgae incubatio. and there won’t any activity in two diatoms to the test microorganism.

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Effect of MLSS and Micro-algae on Nitrification based Photosynthetic Oxygen (MLSS와 미세조류가 광합성 산소기반 질산화에 미치는 영향)

  • Lee, Jiwon;Gil, Kyungik
    • Journal of Wetlands Research
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    • v.19 no.4
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    • pp.508-514
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    • 2017
  • Water-bloom and red tide due to eutrophication have been overgrown and have caused various environmental problems. Recently, however, research on bid-diesel that can utilize algae as an energy source has been actively carried out. In particular, many studies variously have been conducted to utilize algal photosynthesis oxygen as a supply method for reducing the energy by an air blower in MWTP. In this study, a lab scale algae-nitrification reactor was operated to replace the oxygen required for nitrogen removal and the operation period was largely divided into three sections. In the first section, ammonia nitrogen removal efficiency was 24 ~ 38% according to the MLSS (Mixed Liquer Suspended Solid) concentration. In the second section, ammonia nitrogen removal efficiency was 38 ~ 50% according to the micro-algae concentration and in the last section ammonia nitrogen removal efficiency was 61 ~ 80% according to HRT (Hydraulic Retention Time). As a result, as the MLSS decreased and algae biomass increased, the ammonia nitrogen removal efficiency tended to increase, but the effect of Algae biomass was greater than that of MLSS.

Microalgae Removal and Energy Production by Combined Electro-flotation and Anaerobic Hydrogen Fermentation Processes (전기부상과 혐기성 수소 발효 공정의 결합을 통한 미세조류 제거 및 에너지 생산)

  • Lee, Chae-Young;Na, Dong-Chae;Choi, Jae-Min;Kang, Doo-Sun
    • Journal of the Korea Organic Resources Recycling Association
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    • v.20 no.3
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    • pp.83-88
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    • 2012
  • The algal bloom, resulting from eutrophication, has caused serious water quality problems in river and lake. Therefore, it has to be removed by any means including physicochemical or biological treatment for preserving water quality. This study was conducted to investigate the microalgae removal and energy production using combined electro-flotation and anaerobic hydrogen fermentation processes. The result showed that algae removal efficiency based on chlorophyll a removal increased with the current. At a current of 0.6A, the maximum microalgae removal efficiency of 95.9% was achieved. The treatability of anaerobic hydrogen fermentation was investigated to recover energy from microalgae removed by electro-flotation. The ultimate hydrogen yields of algae before and after ultrasonic pretreatment were 17.3 and 61.1 ml $H_2/g$ dcw(dry cell weight), respectively. The ultrasonic pretreatment of algae led to 3.4-fold higher $H_2$ production due to the increase of hydrolysis rate.

해수산 Chlorella 대량 배양을 위한 연구

  • 조경진;김성구
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2000.10a
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    • pp.215-216
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    • 2000
  • 해양미세조류는 해양생태계의 1차 생산자로서 매우 중요한 역할을 차지한다. 그러므로 해양미세조류의 배양은 천해양식 어류의 종묘생산시 먹이생물로서 중요한 위치를 차지하고 있다. 현재 국내에서는 대부분 기존의 재래식 방법인 개방식 배양조가 Chorella 생산에 널리 이용되고 있으며 이는 빛의 투과가 균일하지 못하여 배양능력을 높이기 위해서는 배양 표면적을 증가시켜야 하기 때문에 대단히 넓은 면적이 필요하므로, 이 방법은 극히 비경제적이라 할 수 있다. (중략)

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Growth Promotion of Pavlova viridis by Bacteria Isolated from the Microalga (파블로바 비리디스로부터 분리한 세균에 의한 미세조류의 생장 촉진)

  • Ahamed, Sarker Anowarul Kabir;Kim, Jin-Joo;Choi, Tae-O;Choi, Tae-Jin
    • Journal of Life Science
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    • v.25 no.5
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    • pp.568-576
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    • 2015
  • The marine microalga Pavlova viridis can grow fast and has the ability to accumulate essential nutrients for culturing marine animals, such as EPA and DHA, and it has been used as food for raring larval fish and prawn. The symbiotic relationship between the flagellate microalga Pavlova viridis and its associated bacteria was investigated. An axenic culture of P. viridis was obtained by repeated treatment of the microalga with an antibiotic cocktail. The axenic status was confirmed after sub-culturing three times in a sterile f/2 medium without an antibiotic. The axenic alga was then co-inoculated with five bacteria, arbitrarily designated as I1–I5, isolated from the alga to test the growth promotion of the algae. All bacterial strains promoted the growth of P. viridis, and bacterial isolate I3 was the most effective among the five bacteria tested. The cell number of P. viridis in the co-culture with I3 was significantly higher than that of the control culture. A sequence analysis of the 16S rRNA gene isolated from I3 revealed a 97% nucleotide sequence similarity to that of Citrobacter sp. The growth of strain I3 was also significantly enhanced by co-culturing with P. viridis, indicating a symbiotic relationship between the microalga and its associated bacterium. The association between the microalga and bacterium was confirmed by scanning electron microscopy.