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一株耐碳酸氢钠产油绿藻的絮凝收集 被引量:3

HARVESTING OF A NAHCO_3-TOLERANT OIL-PRODUCING GREEN ALGA BY FLOCCULATION
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摘要 用微藻油作生物柴油的生产原料有诸多优点,因此微藻生物柴油作为一种新型清洁能源,倍受关注。目前,微藻生物柴油的研究还处于起步阶段,要实现工业化生产还有许多问题亟待解决。其中降低成本是关键。微藻采收成本往往较高,可占微藻生物柴油总生产成本的20%-30%。
出处 《水生生物学报》 CAS CSCD 北大核心 2013年第5期989-992,共4页 Acta Hydrobiologica Sinica
基金 中国科学院知识创新工程重要方向项目(KSCX2-YW-G-060和KGCX2-YW-374-12)资助
关键词 链带藻 开放式培养 絮凝收集 Desmodesmus Open cultivation Flocculation
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参考文献15

  • 1徐进,徐旭东,方仙桃,胡晗华.高产油小球藻的筛选及其油脂分析[J].水生生物学报,2012,36(3):426-432. 被引量:27
  • 2Minowa T, Yokoya S Y, Kishimoto M. Oil production from algae cells of Dunaliella tereiolata by direct thermochemical liquefaction [J]. Fuel, 1995, 74(12): 1731-1738.
  • 3Chisti Y. Biodiesel from microalgae [J]. Biotechnology Advances, 2007, 25(3): 294-306.
  • 4Grima M E, Belarbi E H, Fernandez F G A, et al. Recovery of microalgal biomass and metabolites: process options and economics [J]. Biotechnology Advances, 2003, 20(7-8): 491-515.
  • 5Sim T S, Gob A, Becker E W. Comparison of centrifugation, dissolved air flotation and drum filtration techniques for harvesting sewage-grown algae [J]. Biomass, 1988, 16(1): 51-62.
  • 6崔景芹,郑毅,丛威,蔡昭铃.溶气气浮法采收盐藻(Dunalilla salina)细胞[J].过程工程学报,2003,3(2):151-155. 被引量:13
  • 7Zhang X Z, Hu Q, Sommerfeld M, et al. Harvesting algal biomass for biofuels using ultrafiltration membranes [J].Bioresource Technology, 2010, 101(4): 5297-5304.
  • 8Bosma R, Van Spronsen W A, Tramper J, et al. Ultrasound, a new separation technique to harvest microalgae [J]. Journal of Applied Phycology, 2003, 15(2-3): 143-153.
  • 9Sukenik A, Bilanovic D, Shelef G. Flocculation of micro- algae in brackish and seawaters [J]. Biomass, 1988, 15(3): 187-199.
  • 10马青山,贾瑟,孙丽珉,等.絮凝化学与絮凝剂(第二版).北京:中国环境科学出版社.1990,2-19.

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共引文献55

同被引文献45

  • 1沈英,赵云,李麒龙.微藻生物质采收方法的经济性和效率研究进展[J].湖北农业科学,2012,51(22):4982-4984. 被引量:8
  • 2贾少婷,殷文政.天然螺旋藻多糖的提取纯化及降血糖活性实验研究[J].农产品加工(下),2007(1):46-47. 被引量:14
  • 3Pauline S, Claire J S, Elie D, et al. Commercial applica- tions of microalgae [J] . Journal of Bioscience and Bioengi- neering, 2006, 101 (2): 87-96.
  • 4Grima E M, Belarbi E H, Fernandez F G A, et al. Re- covery of microalgal biomass and metabolites: process op- tions and economics [J] . Biotechnology Advance, 2003, 20 (7): 491-515.
  • 5Danquah M K, Gladman B, Moheimani N, et al. Microal- gal growth characteristics and subsequent influence on de-watering efficiency [ J] . Chemistry Engineering Journal, 2009, 151 (1/3):47-57.
  • 6Knuckey R M, Brown M R, Robert R, et al. Production of microalgal concentrates by flocculation and their assess- ment as aquaculture feeds [J] . Aquacuhural Engineering, 2006, 35 (3): 300-313.
  • 7Renault F, Sancey B, Badot P M, et al. Chitosan for coagu- lation/flocculation processes an ecofriendly approach [ J] . European Polymer Journal, 2009, 45 (5) : 1 337-1 348.
  • 8Zhao Q S, Cheng X J, Ji Q x, et al. Effect of organic and inorganic acids on chitosan glycerophosphate thermosensi- tive hydrogel [J] . Journal of Solgel Science and Technolo- gy, 2009, 50 (1) 111-118.
  • 9Lee A K, Lewis D M, Ashman P J. Microbial flocculation, a potentially lowcost harvesting technique for marine mi- croalgae for the production of biodiesel [J] . Journal of ap- plied phycology, 2009, 21 (5): 559-567.
  • 10Yahi H, Elmaleh S, Coma J. Algal flocculation sedimen- tation by pH increase in a continuous reactor [J] . Water Science and Technology, 1994, 30 (8) : 259-267.

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