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营养条件对产烃葡萄藻生长的影响 被引量:20

Effect of Nutrient Conditions on the Growth of Botryococcus braunii
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摘要 在摇瓶培养中考察了无机碳源、氮源、磷源和NaF等营养成份对产烃葡萄藻(Botryococcus braunii)生长的影响. 结果表明:与仅利用空气中的CO2作为碳源相比,以NaHCO3或CO2加富空气补碳,比生长速率从0.0535 d-1分别增大至0.0589和0.0949 d-1,代时从5.6 d分别缩短至5.1和3.2 d,最大放氧速率分别提高了2.3和5倍;在一定范围内增大KNO3起始浓度能提高葡萄藻的生长速率,延长对数生长期;磷源对葡萄藻生长的影响十分显著,在0~160 mg/L范围内,增大K2HPO4浓度,葡萄藻生长明显加快;适量NaF能促进葡萄藻的光合作用和呼吸作用,从而加快葡萄藻的生长,其最适浓度为0.84 mg/L. The effect of nutrient conditions, including incarbon sources, nitrate and phosphate, on the growth of hydrocarbon-rich microalga Botryococcus braunii was investigated in shake flask culture. The complement of NaHCO3 and CO2 made growth rate of Botryococcus braunii increase from 0.0535 d-1 to 0.0589 d-1, 0.0949 d-1 respectively, generation time reduced from 5.6 d to 5.1 d, 3.2 d respectively, maximum oxygen evolution rate improved 2.3 and 5 times respectively by comparison with control cultures. The growth rate of Botryococcus braunii went up and the exponential phase lengthened with the increase of the initial concentration of KNO3 within some scope. K2HPO4 in the range of 0~160 mg/L could improve the growth rate of Botryococcus braunii significantly. In addition, the role of NaF was examined. NaF promoted the photosynthesis and respiration activity. Its suitable concentration was 0.84 mg/L.
出处 《过程工程学报》 CAS CSCD 北大核心 2003年第2期141-145,共5页 The Chinese Journal of Process Engineering
关键词 葡萄藻 生长 无机碳源 氮源 磷源 NAF 生物能源 Botryococcus braunii growth incarbon sources nitrate phosphate NaF
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  • 1华汝成.单细胞藻类的培养与利用[M].北京:农业出版社,1983.135-137.
  • 2许常虹,俞敏娟.成油藻——布朗葡萄藻的研究[J].水生生物学报,1988,12(1):90-93. 被引量:10
  • 3王修垣,谢树华.几种因子对丛粒藻株A的效应[J].微生物学通报,1996,23(5):275-277. 被引量:14
  • 4Sawayama Shigeku, Minowa Tomoaki, Dote Yutaka. Growth of the Hydrocarbon Rich Microalga Botryococcus braunii in Secondarily Treated Sewage[J]. Appl. Microb. Biotech., 1992, 38(2): 135-138.
  • 5Chu S P. The Influence of the Mineral Composition of the Medium on the Growth of Planktonic Algae[J]. J. Ecol., 1942, 30(2):284-325.
  • 6Borowitzka M A. Microalgal Bioteclmology[M]. Cambridge: Cambridge University Press, 1988. 257-278.
  • 7Wake L V, Hillen L W. Study of a "Bloom" of the Oil-rich Alga Botryococcus braunii in the Darwin PAver Reservoir[J].Biotechnol. Bioeng., 1980, 22(8): 1637-1656.
  • 8Largeau C, Casadevall E, Berkaliff C. Sites of Accumulation and Composition of Hydrocarbons in Botryococcus braunii[J].Phytochemistry, 1980, 19(6): 1043-1051.
  • 9Brown C, Knights B A. Hydrocarbon Content and Its Relationship to Physiological State in the Green Alga Botryococcus braunii[J]. Phytochemistry, 1969, 8(3): 543-547.
  • 10Casadevall E, Dif D, Largeau C. Studies on Batch and Continuous Cultures of Botryococcus braunii[J]. Biotechnol. Bioeng.,1985, 27(3): 286-295.

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