바이오디젤용 지질 생산을 위한 미세조류 배양에서 환경 스트레스 조건의 활용 전략

논문상세정보
' 바이오디젤용 지질 생산을 위한 미세조류 배양에서 환경 스트레스 조건의 활용 전략' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • biodiesel
  • environmentalstress
  • lipid
  • micro algae
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
217 0

0.0%

' 바이오디젤용 지질 생산을 위한 미세조류 배양에서 환경 스트레스 조건의 활용 전략' 의 참고문헌

  • 미세조류 바이오정유 공정의 에너지 수지 분석
    이시훈 공업화학 24 (3) : 285 ~ 290 [2013]
  • Variables affecting the in situ transrsterification of microalgae lipids
    E. A. Ehimen Fuel 89 : 677 ~ 684 [2010]
  • The metabolome of Chlamydomonas reinhardtii following induction of anaerobic H2 production by sulfur depletion
    T. Matthew J. Biol. Chem 284 : 23415 ~ 23425 [2009]
  • The influence of ferrous-complexed EDTA as a solubilization agent and its auto-regeneration on the removal of nitric oxide gas through the culture of green alga Scenedesmus sp.
    D. E. O. Santiago Process Biochem 45 : 1949 ~ 1953 [2010]
  • The effects of iron, CO2 and light/dark in growth, lipid and carbohydrate accumulation in Dunaliella tertiolecta
    M. Rizwan The 50th Korean Society of Industrial and Engineering Chemistry Meeting [2014]
  • The effect of phosphate starvation on the lipid and fatty acid composition of the fresh water eustigmatophyte Monodus subterraneus
    I. Khozin-Goldberg Phytochemistry 67 : 696 ~ 701 [2006]
  • System and Economic Analysis of Microalgae Ponds for Conversion of CO2 to Biomass
  • Study of increasing lipid production from fresh water microalgae Chlorella vulgaris
    A. Widjaja J. Taiwan Inst. Chem. Eng 40 : 13 ~ 20 [2009]
  • Simultaneous enhancement of biomass and lipid production in marine microalga Tetraselmis sp. through the supplementation of nitrate and glycerol
    G. Kim The 10th Korean Society of Marine Biotechnology [2014]
  • Scenedesmus obliquus CNW-N as a potential candidate for CO2 mitigation and biodiesel production
    S. H. Ho Bioresour. Technol 101 : 8725 ~ 8730 [2010]
  • Salt-induced alterations in lipid composition of diatom Nitzschia laevis (bacillariophyceae) under heterotrophic culture condition
    G. -Q. Chen J. Phycol 44 : 1309 ~ 1314 [2008]
  • Recovery of microalgal biomass and metabolite:Process options and economics
    E. M. Grima Biotechnol. Adv 20 : 491 ~ 515 [2003]
  • Microalgal triacylglycerols as feedstocks for biofuel production: Perspectives and advances
    Q. Hu Plant J 54 : 621 ~ 639 [2008]
  • Microalgae for oil: Strain selection, induction of lipid synthesis and outdoor mass cultivation in a low-cost photobioreactor
    L. Rodolfi Biotechnol. Bioeng 102 : 100 ~ 112 [2009]
  • Lipids and membrane function in green algae
    G. A. Thompson Biochim. Biophys. Acta 1302 : 17 ~ 45 [1996]
  • Lipids and lipid metabolism in eukaryotic algae
    I. A. Guschina Prog. Lipid Res 45 : 160 ~ 186 [2006]
  • Lipid productivity as a key characteristic for choosing algal species for biodiesel production
    M. J. Griffiths J. Appl. Phycol 21 : 493 ~ 507 [2009]
  • Lipid production in microalga Tetraselmis sp. through salinity variation
    G. Kim The 49th Korean Society of Industrial and Engineering Chemistry Meeting [2014]
  • Lipid production by Chlorella vulgaris after a shift from nutrient-rich to nitrogen starvation conditions
    G. Mujtaba BIORESOURCE TECHNOLOGY 123 : 279 ~ 283 [2012]
  • Life cycle analyses of CO2, energy, and cost for four different routes of microalgal bioenergy conversion
    J. -R S. Ventura Bioresour. Technol 137 : 302 ~ 310 [2013]
  • Influence of nitrogen metabolism on lipid accumulation by Rhodosporidium toruloides CBS 14
    C. T. Evans J. Gen. Microbiol 130 : 1705 ~ 1710 [1984]
  • Influence of nitrate feeding on carbon dioxide fixation by microalgae
    H. F. Jin JOURNAL OF ENVIRONMENTAL SCIENCE AND HEALTH PART A-TOXIC/HAZARDOUS SUBSTANCES & ENVIRONMENTAL ENGINEERING 41 : 2813 ~ 2824 [2006]
  • Increased lipid production of the marine oleaginous microalgae Isochrysis zhangjiangensis (Chrysophyta) by nitrogen supplement
    D. Feng Bioresour. Technol 102 : 6710 ~ 6716 [2011]
  • Increase in Chlorella strains calorific values when grown in low nitrogen medium
    A. M. Illman Enzyme Microb. Technol 27 : 631 ~ 635 [2000]
  • Heterotrophic cultures of microalgae: Metabolism and potential products
    O. Perez-Garcia Water Res 45 : 11 ~ 36 [2011]
  • Euglena gracilis as a model for the study of Cu2+ and Zn2+ toxicity and accumulation in eukaryotic cells
    M. Einicker-Lamas Environ. Pollut 120 : 779 ~ 786 [2002]
  • Enhancement of lipid accumulation in Scenedesmus obliquus by optimizing CO2 and Fe3+ levels for biodiesel production
    H. H. A. E. Baky Bioresour. Technol 119 : 429 ~ 432 [2012]
  • Enhanced lipid production of Chlorella vulgaris by adjustment of cultivation conditions
    J. -M. Lv Bioresour. Technol 101 : 6797 ~ 6804 [2010]
  • Effects of various organic carbon sources on the growth and biochemical composition of Chlorella pyrenoidosa
    W. Zhang Bioresour. Technol 174 : 52 ~ 58 [2014]
  • Effects of nitrogen concentration and media replacement on cell growth and lipid production of oleaginous marine microalga Nannochloropsis ocenica DUT01
    C. Wan Biochem. Eng. J 78 : 32 ~ 38 [2013]
  • Effects of different nitrogen and phosphorus concentrations on the growth, nutrient uptake, and lipid accumulation of a freshwater microalga Scenedesmus sp.
    L. Xin Bioresour. Technol 101 : 5494 ~ 5500 [2010]
  • Effect of salt concentration on intracellular accumulation of lipids and triacylglyceride in marine microalgae Dunaliella cells
    M. Takagi J. Biosci. Bioeng 101 : 223 ~ 226 [2006]
  • Effect of nutrient limitation on fatty acid and lipid content of marine microalgae
    K. I. Reitan J. Phycol 30 : 972 ~ 979 [1994]
  • Effect of iron on growth and lipid accumulation in Chlorella vulgaris, Bioresour
    Z. -Y. Liu Bioresour. Technol 99 : 4717 ~ 4722 [2008]
  • Current Status and Potential for Algal Biofuels Production, IEA Bioenergy Task 39
    A. Darzins [2010]
  • Changes of lipid content and fatty acid composition of Schizochytrium limacinum in response to different temperatures and salinities
    L. Y. Zhu Process Biochem 42 : 210 ~ 214 [2007]
  • Biofuels: Biotechnology, Chemistry and Sustainable Development
    D. M. Mousdale CRC Press [2008]
  • Biofuels from microalgae: A review of technologies for production, processing, and extractions of biofuels and co-products
    L. Brennan Renew. Sustain. Energy Rev 14 : 557 ~ 577 [2010]
  • Biodiesel production from heterotrophic microalgal oil
    X. Miao Bioresour. Technol 97 : 841 ~ 846 [2006]
  • Autotrophic cultivation of Botryococcus braunii for the production of hydrocarbons and exopolysaccharides in various media
    C. Dayananda Biomass Bioenergy 31 : 87 ~ 93 [2007]