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普通小球藻异养-光自养串联培养的培养基
引用本文:李兴武,李元广,沈国敏,杨东. 普通小球藻异养-光自养串联培养的培养基[J]. 过程工程学报, 2006, 6(2): 277-280
作者姓名:李兴武  李元广  沈国敏  杨东
作者单位:生物反应器工程国家重点实验室,华东理工大学海洋生化工程研究所,上海,200237;上海泽元海洋生物技术有限公司,上海,200237
摘    要:采用单因素实验和均匀实验获得了适合于普通小球藻异养-光自养串联培养的培养基(HA-SK培养基),其关键是C/N比和保证足够的C, N供应. 采用该培养基在摇瓶中异养-光自养串联培养普通小球藻,异养培养结束时细胞密度达13.17 g/L,经过36 h光自养培养后藻体蛋白质和叶绿素含量分别达49.75%和30.17 mg/g. 用5 L生物反应器和1 L平板光生物反应器串联培养,藻细胞密度最高可达15.36 g/L,藻体蛋白质和叶绿素含量分别达54.78%和31.23 mg/g. 表明采用HA-SK培养基进行异养-光自养串联培养可实现普通小球藻的高密度高品质培养.

关 键 词:异养-光自养串联培养  普通小球藻  培养基  蛋白质含量  叶绿素含量
文章编号:1009-606X(2006)02-0277-04
收稿时间:2005-04-18
修稿时间:2005-05-27

Medium for Culturing Chlorella vulgaris with Sequential Heterotrophic-Autotrophic Model
LI Xing-wu,LI Yuan-guang,SHEN Guo-min,YANG Dong. Medium for Culturing Chlorella vulgaris with Sequential Heterotrophic-Autotrophic Model[J]. Chinese Journal of Process Engineering, 2006, 6(2): 277-280
Authors:LI Xing-wu  LI Yuan-guang  SHEN Guo-min  YANG Dong
Affiliation:Institute of Marine Bioprocess Engineering, State Key Laboratory of Bioreactor Engineering,East China University of Science and TechnologyInst.Marine Bioprocess Eng., East China Univ. Sci. Technol
Abstract:The medium (HA-SK medium) for culturing Chlorella vulgaris with sequential heterotrophic-autotrophic model was optimized by using the one-at-a-time strategy and uniformity experimental design. When Chlorella vulgaris was cultured with HA-SK medium in 250 mL flask, the cell density reached 13.17 g/L at the end of heterotrophic cultivation, the cellular protein and chlorophyll content were 49.75% and 30.17 mg/g after 36 h autotrophic cultivation, which were increased by 134%, 69.8% and 68.7% respectively comparing with those obtained in an initial medium. As Chlorella vulgaris was cultured with HA-SK medium in sequential 5 L bioreactor and 1 L plat photo-bioreactor system, the cell density reached 15.36 g/L at the end of heterotrophic cultivation, the cellular protein and chlorophyll content were 54.78% and 31.23 mg/g after 35 h autotrophic cultivation. The results show that the cultivation of Chlorella vulgaris with high cell density and high quality can be realized successfully by sequential heterotrophic-autotrophic model with HA-SK medium.
Keywords:sequential heterotrophic-autotrophic cultivation   Chlorella vulgaris   medium   protein content   chlorophyll content
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